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Removal of Heavy Metals from Aqueous Solutions with the Use of Lignins and Biomass


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Mousavi SJ, Parvini M, Ghorbani M. Experimental Design Data for the Zinc Ions Adsorption Based On Mesoporous Modified Chitosan Using Central Composite Design Method. Carbohydrate Polymers 2018; 188: 197–212. DOI: 10.1016/J.Carbpol.2018.01.105 MousaviSJ ParviniM GhorbaniM Experimental Design Data for the Zinc Ions Adsorption Based On Mesoporous Modified Chitosan Using Central Composite Design Method Carbohydrate Polymers 2018 188 197 212 10.1016/J.Carbpol.2018.01.105 Open DOISearch in Google Scholar

Kumar V, Parihar RD, Sharma A, Bakshi P, Singh Sidhu GP, Bali AS, Karaouzas I, Bhardwaj R, Thukral A.K, Gyasi-Agyei Y, Rodrigo-Comino J. Global Evaluation of Heavy Metal Content in Surface Water Bodies: A Meta-Analysis Using Heavy Metal Pollution Indices and Multivariate Statistical Analyses. Chemosphere 2019; 236, 124364. DOI: 10.1016/J.Chemosphere.2019.124364. KumarV PariharRD SharmaA BakshiP Singh SidhuGP BaliAS KaraouzasI BhardwajR ThukralA.K Gyasi-AgyeiY Rodrigo-CominoJ Global Evaluation of Heavy Metal Content in Surface Water Bodies: A Meta-Analysis Using Heavy Metal Pollution Indices and Multivariate Statistical Analyses Chemosphere 2019 236 124364. 10.1016/J.Chemosphere.2019.124364 Open DOISearch in Google Scholar

Bolisetty S, Peydayesh M, Mezzenga R. Sustainable Technologies for Water Purification from Heavy Metals: Review and Analysis. Chemical Society Reviews 2019; 48(2): 463–487. DOI: 10.1039/C8cs00493e BolisettyS PeydayeshM MezzengaR Sustainable Technologies for Water Purification from Heavy Metals: Review and Analysis Chemical Society Reviews 2019 48 2 463 487 10.1039/C8cs00493e 30603760 Open DOISearch in Google Scholar

Ezeabara C, Okanume O, Emeka A, Okeke C, Mbaekwe E. Heavy Metal Contamination of Herbal Drugs: Implication for Human Health-a Review. International Journal Of Tropical Disease & Health 2014; 4(10): 1044–58. DOI: 10.9734/Ijtdh/2014/11481. EzeabaraC OkanumeO EmekaA OkekeC MbaekweE Heavy Metal Contamination of Herbal Drugs: Implication for Human Health-a Review International Journal Of Tropical Disease & Health 2014 4 10 1044 58 10.9734/Ijtdh/2014/11481 Open DOISearch in Google Scholar

Karimi F, Ayati A, Tanhaei B, Sanati AL, Afshar S, Kardan A, Dabirifar Z, Karaman C. Removal of Metal Ions Using a New Magnetic Chitosan Nano-Bio-Adsorbent; A Powerful Approach in Water Treatment. Environmental Research 2022; 203: 111753. DOI: 10.1016/J.Envres.2021.111753. KarimiF AyatiA TanhaeiB SanatiAL AfsharS KardanA DabirifarZ KaramanC Removal of Metal Ions Using a New Magnetic Chitosan Nano-Bio-Adsorbent; A Powerful Approach in Water Treatment Environmental Research 2022 203 111753. 10.1016/J.Envres.2021.111753 34331923 Open DOISearch in Google Scholar

Baby R, Saifullah B, Hussein MZ. Palm Kernel Shell as an Effective Adsorbent for the Treatment of Heavy Metal Contaminated Water. Scientific Reports 2019; 9(1). DOI: 10.1038/S41598-019-55099-6. BabyR SaifullahB HusseinMZ Palm Kernel Shell as an Effective Adsorbent for the Treatment of Heavy Metal Contaminated Water Scientific Reports 2019 9 1 10.1038/S41598-019-55099-6 690863831831850 Open DOISearch in Google Scholar

Cheshmazar E, Arfaeinia H, Karimyan K, Sharafi H, Hashemi SE. Dataset for Effect Comparison of Irrigation by Wastewater and Ground Water on Amount of Heavy Metals in Soil and Vegetables: Accumulation, Transfer Factor and Health Risk Assessment. Data in Brief 2018; 18, 1702–10. DOI: 10.1016/J.Dib.2018.04.108. CheshmazarE ArfaeiniaH KarimyanK SharafiH HashemiSE Dataset for Effect Comparison of Irrigation by Wastewater and Ground Water on Amount of Heavy Metals in Soil and Vegetables: Accumulation, Transfer Factor and Health Risk Assessment Data in Brief 2018 18 1702 10 10.1016/J.Dib.2018.04.108 599874429904670 Open DOISearch in Google Scholar

Yadav VB, Gadi R, Kalra S. Clay Based Nanocomposites for Removal of Heavy Metals from Water: A Review. Journal Of Environmental Management 2019; 232: 803–17. DOI: 10.1016/J.Jenvman.2018.11.120. YadavVB GadiR KalraS Clay Based Nanocomposites for Removal of Heavy Metals from Water: A Review Journal Of Environmental Management 2019 232 803 17 10.1016/J.Jenvman.2018.11.120 30529868 Open DOISearch in Google Scholar

Dhakal RP, Ghimire KN, Inoue K, Yano M, Makino K. Acidic Polysaccharide Gels for Selective Adsorption of Lead (II) Ion. Separation and Purification Technology 2005; 42(3): 219–25. DOI: 10.1016/J.Seppur.2004.07.016. DhakalRP GhimireKN InoueK YanoM MakinoK Acidic Polysaccharide Gels for Selective Adsorption of Lead (II) Ion Separation and Purification Technology 2005 42 3 219 25 10.1016/J.Seppur.2004.07.016 Open DOISearch in Google Scholar

Chakraborty R, Asthana A, Singh AK, Jain B, Susan AB. Adsorption of Heavy Metal Ions by Various Low-Cost Adsorbents: A Review. International Journal Of Environmental Analytical Chemistry 2020; 1–38. DOI: 10.1080/03067319.2020.1722811. ChakrabortyR AsthanaA SinghAK JainB SusanAB Adsorption of Heavy Metal Ions by Various Low-Cost Adsorbents: A Review International Journal Of Environmental Analytical Chemistry 2020 1 38 10.1080/03067319.2020.1722811 Open DOISearch in Google Scholar

Mansoorian HJ, Mahvi AH, Jafari AJ. Removal of Lead and Zinc from Battery Industry Wastewater Using Electrocoagulation Process: Influence of Direct and Alternating Current by Using Iron and Stainless Steel Rod Electrodes. Separation and Purification Technology 2014; 135: 165–75. DOI: 10.1016/J.Seppur.2014.08.012. MansoorianHJ MahviAH JafariAJ Removal of Lead and Zinc from Battery Industry Wastewater Using Electrocoagulation Process: Influence of Direct and Alternating Current by Using Iron and Stainless Steel Rod Electrodes Separation and Purification Technology 2014 135 165 75 10.1016/J.Seppur.2014.08.012 Open DOISearch in Google Scholar

Fernández Y, Marañón E, Castrillón L, Vázquez I. Removal of Cd and Zn from Inorganic Industrial Waste Leachate by Ion Exchang. Journal Of Hazardous Materials 2005; 126 (1–3): 169–75. DOI: 10.1016/J.Jhazmat.2005.06.016. FernándezY MarañónE CastrillónL VázquezI Removal of Cd and Zn from Inorganic Industrial Waste Leachate by Ion Exchang Journal Of Hazardous Materials 2005 126 1–3 169 75 10.1016/J.Jhazmat.2005.06.016 16081205 Open DOISearch in Google Scholar

Castelblanque J, Salimbeni F. NF and RO Membranes for the Recovery and Reuse of Water and Concentrated Metallic Salts from Waste Water Produced in the Electroplating Process. Desalination 2004; 167, 65–73. DOI: 10.1016/J.Desal.2004.06.114. CastelblanqueJ SalimbeniF NF and RO Membranes for the Recovery and Reuse of Water and Concentrated Metallic Salts from Waste Water Produced in the Electroplating Process Desalination 2004 167 65 73 10.1016/J.Desal.2004.06.114 Open DOISearch in Google Scholar

Kurniawan TA, Chan GY, Lo WH, Babel S. Physico–Chemical Treatment Techniques for Wastewater Laden with Heavy Metals. Chemical Engineering Journal 2006; 118(1–2): 83–98. DOI: 10.1016/J.Cej.2006.01.015. KurniawanTA ChanGY LoWH BabelS Physico–Chemical Treatment Techniques for Wastewater Laden with Heavy Metals Chemical Engineering Journal 2006 118 1–2 83 98 10.1016/J.Cej.2006.01.015 Open DOISearch in Google Scholar

Zamora-Ledezma C, Negrete-Bolagay D, Figueroa F, Zamora-Ledezma E, Ni M, Alexis F, Guerrero VH. Heavy Metal Water Pollution: A Fresh Look About Hazards, Novel And Conventional Remediation Methods. Environmental Technology & Innovation 2021; 22, 101504. DOI: 10.1016/J.Eti.2021.101504. Zamora-LedezmaC Negrete-BolagayD FigueroaF Zamora-LedezmaE NiM AlexisF GuerreroVH Heavy Metal Water Pollution: A Fresh Look About Hazards, Novel And Conventional Remediation Methods Environmental Technology & Innovation 2021 22 101504. 10.1016/J.Eti.2021.101504 Open DOISearch in Google Scholar

Bilal M, Ihsanullah I, Younas M, Ul Hassan Shah M. Recent Advances in Applications of Low-Cost Adsorbents for the Removal of Heavy Metals from Water: A Critical Review. Separation and Purification Technology 2022; 278, 119510. DOI: 10.1016/J.Seppur.2021.119510. BilalM IhsanullahI YounasM Ul Hassan ShahM Recent Advances in Applications of Low-Cost Adsorbents for the Removal of Heavy Metals from Water: A Critical Review Separation and Purification Technology 2022 278 119510. 10.1016/J.Seppur.2021.119510 Open DOISearch in Google Scholar

Sud D, Mahajan G, Kaur M. Agricultural Waste Material As Potential Adsorbent For Sequestering Heavy Metal Ions from Aqueous Solutions – A Review. Bioresource Technology 2008; 99(14): 6017–27. DOI:10.1016/J.Biortech.2007.11.064. SudD MahajanG KaurM Agricultural Waste Material As Potential Adsorbent For Sequestering Heavy Metal Ions from Aqueous Solutions – A Review Bioresource Technology 2008 99 14 6017 27 10.1016/J.Biortech.2007.11.064 Open DOISearch in Google Scholar

Lagergren S. About the Theory of So-Called Adsorption of Soluble Substances. Kungliga Svenska Vetenskapsakademiens, Handlingar, Band 24, 1898, 1–39. LagergrenS About the Theory of So-Called Adsorption of Soluble Substances Kungliga Svenska Vetenskapsakademiens, Handlingar 24 1898 1 39 Search in Google Scholar

Ho YS, Mckay G. Pseudo-Second Order Model for Sorption Processes. Process Biochemistry 1999; 34(5): 451–65. DOI:10.1016/S0032-9592(98)00112-5. HoYS MckayG Pseudo-Second Order Model for Sorption Processes Process Biochemistry 1999 34 5 451 65 10.1016/S0032-9592(98)00112-5 Open DOISearch in Google Scholar

Ge Y, Li Z, Kong Y, Song Q, Wang K. Heavy Metal Ions Retention by Bi-Functionalized Lignin: Synthesis, Applications and Adsorption Mechanisms. Journal Of Industrial And Engineering Chemistry 2014; 20(6):4429–36. DOI:10.1016/J.Jiec.2014.02.011. GeY LiZ KongY SongQ WangK Heavy Metal Ions Retention by Bi-Functionalized Lignin: Synthesis, Applications and Adsorption Mechanisms Journal Of Industrial And Engineering Chemistry 2014 20 6 4429 36 10.1016/J.Jiec.2014.02.011 Open DOISearch in Google Scholar

Low KS, Lee CK, Liew SC. Sorption of Cadmium and Lead from Aqueous Solutions by Spent Grain. Process Biochemistry 2000; 36(1–2):59–64. DOI:10.1016/S0032-9592(00)00177-1. LowKS LeeCK LiewSC Sorption of Cadmium and Lead from Aqueous Solutions by Spent Grain Process Biochemistry 2000 36 1–2 59 64 10.1016/S0032-9592(00)00177-1 Open DOISearch in Google Scholar

Ding P, Huang KL, Li GY, Zeng WW. Mechanisms and Kinetics of Chelating Reaction Between Novel Chitosan Derivatives and Zn(II). Journal of Hazardous Materials 2007; 146(1–2): 58–64. DOI:10.1016/J.Jhazmat.2006.11.061. DingP HuangKL LiGY ZengWW Mechanisms and Kinetics of Chelating Reaction Between Novel Chitosan Derivatives and Zn(II) Journal of Hazardous Materials 2007 146 1–2 58 64 10.1016/J.Jhazmat.2006.11.061 Open DOISearch in Google Scholar

Wu Y, Zhang S, Guo X, Huang H. Adsorption of Chromium(III) on Lignin. Bioresource Technology 2008; 99(16): 7709–15. DOI:10.1016/J.Biortech.2008.01.069 WuY ZhangS GuoX HuangH Adsorption of Chromium(III) on Lignin Bioresource Technology 2008 99 16 7709 15 10.1016/J.Biortech.2008.01.069 Open DOISearch in Google Scholar

Liang FB, Song YL, Huang CP, Zhang J, Chen BH. Adsorption of Hexavalent Chromium on a Lignin-Based Resin: Equilibrium, Thermodynamics, and Kinetics. Journal of Environmental Chemical Engineering 2013; 1(4): 1301–8. DOI:10.1016/J.Jece.2013.09.025. LiangFB SongYL HuangCP ZhangJ ChenBH Adsorption of Hexavalent Chromium on a Lignin-Based Resin: Equilibrium, Thermodynamics, and Kinetics Journal of Environmental Chemical Engineering 2013 1 4 1301 8 10.1016/J.Jece.2013.09.025 Open DOISearch in Google Scholar

Brdar M, Takaci A, Sciban M, Rakic D. Isotherms for the Adsorption of Cu(II) onto Lignin: Comparison of Linear and Non-Linear Methods. Chemical Industry 2012; 66(4): 497–503. DOI:10.2298/Hemind111114003b. BrdarM TakaciA ScibanM RakicD Isotherms for the Adsorption of Cu(II) onto Lignin: Comparison of Linear and Non-Linear Methods Chemical Industry 2012 66 4 497 503 10.2298/Hemind111114003b Open DOISearch in Google Scholar

Wu Q, Ren M, Zhang X, Li C, Li T, Yang Z, Chen Z, Wang L. Comparison of Cd(II) Adsorption Properties onto Cellulose, Hemicellulose and Lignin Extracted from Rice Bran. LWT 2021; 144: 111230. DOI:10.1016/J.Lwt.2021.111230. WuQ RenM ZhangX LiC LiT YangZ ChenZ WangL Comparison of Cd(II) Adsorption Properties onto Cellulose, Hemicellulose and Lignin Extracted from Rice Bran LWT 2021 144 111230 10.1016/J.Lwt.2021.111230 Open DOISearch in Google Scholar

Zhang Y, Zheng R, Zhao J, Zhang Y, Wong PK, Ma F. Biosorption of Zinc from Aqueous Solution using Chemically Treated Rice Husk. Biomed Research International 2013; 2013:1–7. DOI:10.1155/2013/365163. ZhangY ZhengR ZhaoJ ZhangY WongPK MaF Biosorption of Zinc from Aqueous Solution using Chemically Treated Rice Husk Biomed Research International 2013 2013 1 7 10.1155/2013/365163 369311723841065 Open DOISearch in Google Scholar

Zhang Y, Zheng R, Zhao J, Zhang Y, Wong PK, Ma F. Biosorption of Zinc from Aqueous Solution Using Chemically Treated Rice Husk. Biomed Research International 2013; 1–7. DOI:10.1155/2013/365163. ZhangY ZhengR ZhaoJ ZhangY WongPK MaF Biosorption of Zinc from Aqueous Solution Using Chemically Treated Rice Husk Biomed Research International 2013 1 7 10.1155/2013/365163 Open DOISearch in Google Scholar

Ahmad F, Zaidi S. Potential use of Agro/Food Wastes as Biosorbents in the Removal of Heavy Metals. Emerging Contaminants 2020; Intechopen. AhmadF ZaidiS Potential use of Agro/Food Wastes as Biosorbents in the Removal of Heavy Metals Emerging Contaminants 2020 Intechopen 10.5772/intechopen.94175 Search in Google Scholar

Bartczak P, Norman M, Klapiszewski Ł, Karwańska N, Kawalec M, Baczyńska M, Wysokowski M, Zdarta J, Ciesielczyk F, Jesionowski T. Removal of Nickel(II) and Lead(II) Ions from Aqueous Solution Using Peat as a Low-Cost Adsorbent: A Kinetic and Equilibrium Study. Arabian Journal Of Chemistry 2018; 11(8): 1209–22. DOI:10.1016/J.Arabjc.2015.07.018. BartczakP NormanM KlapiszewskiŁ KarwańskaN KawalecM BaczyńskaM WysokowskiM ZdartaJ CiesielczykF JesionowskiT Removal of Nickel(II) and Lead(II) Ions from Aqueous Solution Using Peat as a Low-Cost Adsorbent: A Kinetic and Equilibrium Study Arabian Journal Of Chemistry 2018 11 8 1209 22 10.1016/J.Arabjc.2015.07.018 Open DOISearch in Google Scholar

Ahmad M, Manzoor K, Ikram S. Versatile Nature of Hetero-Chitosan Based Derivatives as Biodegradable Adsorbent for Heavy Metal Ions. A Review. International Journal Of Biological Macromolecules 2017; 105: 190–203. DOI:10.1016/J.Ijbiomac.2017.07.008. AhmadM ManzoorK IkramS Versatile Nature of Hetero-Chitosan Based Derivatives as Biodegradable Adsorbent for Heavy Metal Ions. A Review International Journal Of Biological Macromolecules 2017 105 190 203 10.1016/J.Ijbiomac.2017.07.008 28735891 Open DOISearch in Google Scholar

Xiao F, Cheng J, Cao W, Yang C, Chen J, Luo Z. Removal of Heavy Metals from Aqueous Solution Using Chitosan-Combined Magnetic Biochars. Journal of Colloid and Interface Science 2019; 540: 579–84. DOI:10.1016/J.Jcis.2019.01.068. XiaoF ChengJ CaoW YangC ChenJ LuoZ Removal of Heavy Metals from Aqueous Solution Using Chitosan-Combined Magnetic Biochars Journal of Colloid and Interface Science 2019 540 579 84 10.1016/J.Jcis.2019.01.068 30677611 Open DOISearch in Google Scholar

Kavitha E, Sowmya A, Prabhakar S, Jain P, Surya R, Rajesh MP. Removal and Recovery of Heavy Metals through Size Enhanced Ultrafiltration Using Chitosan Derivatives and Optimization with Response Surface Modeling. International Journal Of Biological Macromolecules 2019; 132: 278–88. DOI:10.1016/J.Ijbiomac.2019.03.128. KavithaE SowmyaA PrabhakarS JainP SuryaR RajeshMP Removal and Recovery of Heavy Metals through Size Enhanced Ultrafiltration Using Chitosan Derivatives and Optimization with Response Surface Modeling International Journal Of Biological Macromolecules 2019 132 278 88 10.1016/J.Ijbiomac.2019.03.128 Open DOISearch in Google Scholar

Khan A, Ali N, Bilal M, Malik S, Badshah S, Iqbal HM. Engineering Functionalized Chitosan-Based Sorbent Material: Characterization and Sorption of Toxic Elements. Applied Sciences 2019; 9(23): 5138. DOI:10.3390/App9235138. KhanA AliN BilalM MalikS BadshahS IqbalHM Engineering Functionalized Chitosan-Based Sorbent Material: Characterization and Sorption of Toxic Elements Applied Sciences 2019 9 23 5138 10.3390/App9235138 Open DOISearch in Google Scholar

Ali N, Khan A, Malik S, Badshah S, Bilal M, Iqbal HM. Chitosan-Based Green Sorbent Material for Cations Removal From an Aqueous Environment. Journal Of Environmental Chemical Engineering 2020; 8(5): 104064. DOI:10.1016/J.Jece.2020.104064. AliN KhanA MalikS BadshahS BilalM IqbalHM Chitosan-Based Green Sorbent Material for Cations Removal From an Aqueous Environment Journal Of Environmental Chemical Engineering 2020 8 5 104064. 10.1016/J.Jece.2020.104064 Open DOISearch in Google Scholar

Borsagli FG, Borsagli A. Chemically Modified Chitosan Bio-Sorbents for the Competitive Complexation of Heavy Metals Ions: A Potential Model for the Treatment of Wastewaters and Industrial Spills. Journal of Polymers and the Environment 2019; 27(7): 1542–56. DOI:10.1007/S10924-019-01449-4. BorsagliFG BorsagliA Chemically Modified Chitosan Bio-Sorbents for the Competitive Complexation of Heavy Metals Ions: A Potential Model for the Treatment of Wastewaters and Industrial Spills Journal of Polymers and the Environment 2019 27 7 1542 56 10.1007/S10924-019-01449-4 Open DOISearch in Google Scholar

Pooladi A, Bazargan-Lari R. Simultaneous Removal of Copper and Zinc Ions by Chitosan/Hydroxyapatite/Nano-Magnetite Composite. Journal of Materials Research and Technology 2020; 9(6): 14841–52. DOI:10.1016/J.Jmrt.2020.10.057. PooladiA Bazargan-LariR Simultaneous Removal of Copper and Zinc Ions by Chitosan/Hydroxyapatite/Nano-Magnetite Composite Journal of Materials Research and Technology 2020 9 6 14841 52 10.1016/J.Jmrt.2020.10.057 Open DOISearch in Google Scholar

Anquan D, Li P. Removal of Zinc and Copper Ions from Water by Chitosan Coated Permutite Granules, International Conference on Materials for Renewable Energy and Environment (ICMREE), Chengdu, China, IEEE; 2013 DOI: 10.1109/Icmree.2013.6893731. AnquanD LiP Removal of Zinc and Copper Ions from Water by Chitosan Coated Permutite Granules International Conference on Materials for Renewable Energy and Environment (ICMREE) Chengdu, China, IEEE 2013 10.1109/Icmree.2013.6893731 Open DOISearch in Google Scholar

Seyedmohammadi J, Motavassel M, Maddahi MH, Nikmanesh S. Application of Nanochitosan and Chitosan Particles for Adsorption of Zn(II) Ions Pollutant from Aqueous Solution to Protect Environment. Modeling Earth Systems and Environment 2016; 2(3). DOI:10.1007/S40808-016-0219-2. SeyedmohammadiJ MotavasselM MaddahiMH NikmaneshS Application of Nanochitosan and Chitosan Particles for Adsorption of Zn(II) Ions Pollutant from Aqueous Solution to Protect Environment Modeling Earth Systems and Environment 2016 2 3 10.1007/S40808-016-0219-2 Open DOISearch in Google Scholar

Kwiatkowska S, Wójcik. The Use of Alginates for The Sorption of Cu (II) Ions (In Polish) Zeszyty Naukowe. Inżynieria Chemiczna i Procesowa, Politechnika Łódzka, 1999; Z. 26: 75–80. KwiatkowskaS Wójcik The Use of Alginates for The Sorption of Cu (II) Ions (In Polish) Zeszyty Naukowe. Inżynieria Chemiczna i Procesowa, Politechnika Łódzka 1999 26 75 80 Search in Google Scholar

Gao X, Guo C, Hao J, Zhao Z, Long H, Li M. Adsorption of Heavy Metal Ions by Sodium Alginate Based Adsorbent-A Review and New Perspectives. International Journal Of Biological Macromolecules 2020; 164: 4423–34. DOI: 10.1016/J.Ijbiomac.2020.09.046. GaoX GuoC HaoJ ZhaoZ LongH LiM Adsorption of Heavy Metal Ions by Sodium Alginate Based Adsorbent-A Review and New Perspectives International Journal Of Biological Macromolecules 2020 164 4423 34 10.1016/J.Ijbiomac.2020.09.046 32931827 Open DOISearch in Google Scholar

Hasan MM. Algae As Nutrition, Medicine and Cosmetic: The Forgotten History, Present Status and Future Trends. World Journal of Pharmacy and Pharmaceutical Sciences 2017; 1934–59. DOI: 10.20959/Wjpps20176-9447. HasanMM Algae As Nutrition, Medicine and Cosmetic: The Forgotten History, Present Status and Future Trends World Journal of Pharmacy and Pharmaceutical Sciences 2017 1934 59 10.20959/Wjpps20176-9447 Open DOISearch in Google Scholar

Wang Y, Feng Y, Zhang XF, Zhang X, Jiang J, Yao J. Alginate-Based Attapulgite Foams as Efficient and Recyclable Adsorbents for the Removal of Heavy Metals. Journal of Colloid and Interface Science 2018; 514: 190–8. DOI:10.1016/J.Jcis.2017.12.035. WangY FengY ZhangXF ZhangX JiangJ YaoJ Alginate-Based Attapulgite Foams as Efficient and Recyclable Adsorbents for the Removal of Heavy Metals Journal of Colloid and Interface Science 2018 514 190 8 10.1016/J.Jcis.2017.12.035 29257973 Open DOISearch in Google Scholar

Yang N, Wang R, Rao P, Yan L, Zhang W, Wang J, Chai F. The Fabrication of Calcium Alginate Beads as a Green Sorbent for Selective Recovery of Cu(II) from Metal Mixtures. Crystals 2019; 9(5): 255. DOI:10.3390/Cryst9050255. YangN WangR RaoP YanL ZhangW WangJ ChaiF The Fabrication of Calcium Alginate Beads as a Green Sorbent for Selective Recovery of Cu(II) from Metal Mixtures Crystals 2019 9 5 255 10.3390/Cryst9050255 Open DOISearch in Google Scholar

Kołodyńska D, Gęca M, Skwarek E, Goncharuk O. Titania-Coated Silica Alone and Modified by Sodium Alginate as Sorbents for Heavy Metal Ions. Nanoscale Research Letters 2018; 13(1). DOI:10.1186/S11671-018-2512-7. KołodyńskaD GęcaM SkwarekE GoncharukO Titania-Coated Silica Alone and Modified by Sodium Alginate as Sorbents for Heavy Metal Ions Nanoscale Research Letters 2018 13 1 10.1186/S11671-018-2512-7 Open DOISearch in Google Scholar

Nastaj J, Przewłocka A, Rajkowska-Myśliwiec M. Biosorption Of Ni(II), Pb(II) and Zn(II) on Calcium Alginate Beads: Equilibrium, Kinetic and Mechanism Studies. Polish Journal of Chemical Technology 2016; 18(3): 81–7. DOI:10.1515/Pjct-2016-0052. NastajJ PrzewłockaA Rajkowska-MyśliwiecM Biosorption Of Ni(II), Pb(II) and Zn(II) on Calcium Alginate Beads: Equilibrium, Kinetic and Mechanism Studies Polish Journal of Chemical Technology 2016 18 3 81 7 10.1515/Pjct-2016-0052 Open DOISearch in Google Scholar

Cardoso SL, Costa CS, Da Silva MG, Vieira MG. Insight Into Zinc(II) Biosorption on Alginate Extraction Residue: Kinetics, Isotherm and Thermodynamics. Journal Of Environmental Chemical Engineering 2020; 8(3): 103629. DOI:10.1016/J.Jece.2019.103629. CardosoSL CostaCS Da SilvaMG VieiraMG Insight Into Zinc(II) Biosorption on Alginate Extraction Residue: Kinetics, Isotherm and Thermodynamics Journal Of Environmental Chemical Engineering 2020 8 3 103629. 10.1016/J.Jece.2019.103629 Open DOISearch in Google Scholar

Wei Zhan, Chuanhui Xu, Guangfu Qian, Guohuan Huang, Xiuzhen Tang, Baofeng Lin: Adsorption Of Cu(II), Zn(II), and Pb(II) from Aqueous Single and Binary Metal Solutions by Regenerated Cellulose and Sodium Alginate Chemically Modified with Polyethyleneimine. RSC Advances 2018; 33. DOI: 10.1039/C8ra02055h. ZhanWei XuChuanhui QianGuangfu HuangGuohuan TangXiuzhen Baofeng Lin: Adsorption Of Cu(II), Zn(II), and Pb(II) from Aqueous Single and Binary Metal Solutions by Regenerated Cellulose and Sodium Alginate Chemically Modified with Polyethyleneimine RSC Advances 2018 33 10.1039/C8ra02055h Open DOISearch in Google Scholar

Ighalo JO, Adeniyi AG. Adsorption of Pollutants by Plant Bark Derived Adsorbents: an Empirical Review. Journal of Water Process Engineering 2020; 35: 101228. DOI:10.1016/J.Jwpe.2020.101228. IghaloJO AdeniyiAG Adsorption of Pollutants by Plant Bark Derived Adsorbents: an Empirical Review Journal of Water Process Engineering 2020 35 101228. 10.1016/J.Jwpe.2020.101228 Open DOISearch in Google Scholar

Al Talebi, Zainab Abbas. Agri-Food Wastes For Heavy Metals Removal From Water. IOP Conference Series: Materials Science And Engineering. IOP Publishing, 2021; 1–12. DOI:10.1088/1757-899X/1058/1/012020. AlTalebi ZainabAbbas Agri-Food Wastes For Heavy Metals Removal From Water IOP Conference Series: Materials Science And Engineering IOP Publishing 2021 1 12 10.1088/1757-899X/1058/1/012020 Open DOISearch in Google Scholar

Vasudevan M, Ajithkumar PS, Singh RP, Natarajan N. Mass Transfer Kinetics Using Two-Site Interface Model for Removal of Cr(VI) from Aqueous Solution with Cassava Peel and Rubber Tree Bark as Adsorbents. Environmental Engineering Research 2016; 21(2): 152–63. DOI:10.4491/Eer.2015.152. VasudevanM AjithkumarPS SinghRP NatarajanN Mass Transfer Kinetics Using Two-Site Interface Model for Removal of Cr(VI) from Aqueous Solution with Cassava Peel and Rubber Tree Bark as Adsorbents Environmental Engineering Research 2016 21 2 152 63 10.4491/Eer.2015.152 Open DOISearch in Google Scholar

Bailey SE, Olin TJ, Bricka RM, Adrian DD. A Review of Potentially Low-Cost Sorbents for Heavy Metals. Water Research. 1999; 33(11): 2469–79. DOI:10.1016/S0043-1354(98)00475-8. BaileySE OlinTJ BrickaRM AdrianDD A Review of Potentially Low-Cost Sorbents for Heavy Metals Water Research 1999 33 11 2469 79 10.1016/S0043-1354(98)00475-8 Open DOISearch in Google Scholar

Akar S, Lorestani B, Sobhanardakani S, Cheraghi M, Moradi O. Surveying the Efficiency of Platanus Orientalis Bark as Biosorbent for Ni And Cr(VI) Removal from Plating Wastewater as a Real Sample. Environmental Monitoring and Assessment, 2019; 191(6). DOI:10.1007/S10661-019-7479-Z. AkarS LorestaniB SobhanardakaniS CheraghiM MoradiO Surveying the Efficiency of Platanus Orientalis Bark as Biosorbent for Ni And Cr(VI) Removal from Plating Wastewater as a Real Sample Environmental Monitoring and Assessment 2019 191 6 10.1007/S10661-019-7479-Z Open DOISearch in Google Scholar

Singh U, Singh BP, Yadav A, Singh KK. Sorption of Copper And Zinc Using Fibres of Cocos Nucifera. Journal of Chemical And Pharmaceutical Research 2011; 3(1): 707–714, ISSN No: 0975-7384. SinghU SinghBP YadavA SinghKK Sorption of Copper And Zinc Using Fibres of Cocos Nucifera Journal of Chemical And Pharmaceutical Research 2011 3 1 707 714 ISSN No: 0975-7384. Search in Google Scholar

Igwe JC, Abia AA, Ibeh CA. Adsorption Kinetics and Intraparticulate Diffusivities of Hg, As and Pb Ions on Unmodified and Thiolated Coconut Fiber. International Journal of Environmental Science & Technology. 2007; 5(1): 83–92. DOI:10.1007/Bf03326000. IgweJC AbiaAA IbehCA Adsorption Kinetics and Intraparticulate Diffusivities of Hg, As and Pb Ions on Unmodified and Thiolated Coconut Fiber International Journal of Environmental Science & Technology 2007 5 1 83 92 10.1007/Bf03326000 Open DOISearch in Google Scholar

Joseph L, Jun BM, Flora JR, Park CM, Yoon Y. Removal of Heavy Metals from Water Sources in the Developing World Using Low-Cost Materials: A Review. Chemosphere 2019; 229: 142–59. DOI:10.1016/J.Chemosphere.2019.04.198. JosephL JunBM FloraJR ParkCM YoonY Removal of Heavy Metals from Water Sources in the Developing World Using Low-Cost Materials: A Review Chemosphere 2019 229 142 59 10.1016/J.Chemosphere.2019.04.198 31078029 Open DOISearch in Google Scholar

Afroze S, Sen TK. A Review on Heavy Metal Ions and Dye Adsorption from Water by Agricultural Solid Waste Adsorbents. Water, Air, Soil Pollution 2018; 229(7): 1–50. DOI:10.1007/S11270-018-3869-Z. AfrozeS SenTK A Review on Heavy Metal Ions and Dye Adsorption from Water by Agricultural Solid Waste Adsorbents Water, Air, Soil Pollution 2018 229 7 1 50 10.1007/S11270-018-3869-Z Open DOISearch in Google Scholar

Srivastava S, Agrawal SB, Mondal MK. A Review on Progress of Heavy Metal Removal Using Adsorbents of Microbial and Plant Origin. Environmental Science and Pollution Research 2015; 22(20): 15386–415. DOI:10.1007/S11356-015-5278-9. SrivastavaS AgrawalSB MondalMK A Review on Progress of Heavy Metal Removal Using Adsorbents of Microbial and Plant Origin Environmental Science and Pollution Research 2015 22 20 15386 415 10.1007/S11356-015-5278-9 26315592 Open DOISearch in Google Scholar

Bulgariu L, Bulgariu D. Functionalized Soy Waste Biomass - A Novel Environmental-Friendly Biosorbent for the Removal of Heavy Metals from Aqueous Solution. Journal of Cleaner Production 2018; 197: 875–85. DOI: 10.1016/J.Jclepro.2018.06.261. BulgariuL BulgariuD Functionalized Soy Waste Biomass - A Novel Environmental-Friendly Biosorbent for the Removal of Heavy Metals from Aqueous Solution Journal of Cleaner Production 2018 197 875 85 10.1016/J.Jclepro.2018.06.261 Open DOISearch in Google Scholar

Choi HJ, Lee SM. Heavy Metal Removal from Acid Mine Drainage by Calcined Eggshell and Microalgae Hybrid System. Environmental Science And Pollution Research 2015; 22(17): 13404–11. DOI:10.1007/S11356-015-4623-3. ChoiHJ LeeSM Heavy Metal Removal from Acid Mine Drainage by Calcined Eggshell and Microalgae Hybrid System Environmental Science And Pollution Research 2015 22 17 13404 11 10.1007/S11356-015-4623-3 Open DOISearch in Google Scholar

Harripersadth C, Musonge P, Makarfi Isa Y, Morales MG, Sayago A. The Application of Eggshells and Sugarcane Bagasse as Potential Biomaterials in the Removal of Heavy Metals from Aqueous Solutions. South African Journal of Chemical Engineering 2020; 34: 142–50. DOI:10.1016/J.Sajce.2020.08.002. HarripersadthC MusongeP Makarfi IsaY MoralesMG SayagoA The Application of Eggshells and Sugarcane Bagasse as Potential Biomaterials in the Removal of Heavy Metals from Aqueous Solutions South African Journal of Chemical Engineering 2020 34 142 50 10.1016/J.Sajce.2020.08.002 Open DOISearch in Google Scholar

Petrella A, Spasiano D, Acquafredda P, De Vietro N, Ranieri E, Cosma P, Rizzi V, Petruzzelli V, Petruzzelli D. Heavy Metals Retention (Pb(II), Cd(II), Ni(II)) from Single and Multimetal Solutions by Natural Biosorbents from the Olive Oil Milling Operations. Process Safety and Environmental Protection 2018; 114: 79–90. DOI:10.1016/J.Psep.2017.12.010. PetrellaA SpasianoD AcquafreddaP De VietroN RanieriE CosmaP RizziV PetruzzelliV PetruzzelliD Heavy Metals Retention (Pb(II), Cd(II), Ni(II)) from Single and Multimetal Solutions by Natural Biosorbents from the Olive Oil Milling Operations Process Safety and Environmental Protection 2018 114 79 90 10.1016/J.Psep.2017.12.010 Open DOISearch in Google Scholar

Chao HP, Chang CC, Nieva A. Biosorption of Heavy Metals on Citrus Maxima Peel, Passion Fruit Shell, and Sugarcane Bagasse in a Fixed-Bed Column. Journal Of Industrial And Engineering Chemistry 2014; 20(5): 3408–14. DOI:10.1016/J.Jiec.2013.12.027. ChaoHP ChangCC NievaA Biosorption of Heavy Metals on Citrus Maxima Peel, Passion Fruit Shell, and Sugarcane Bagasse in a Fixed-Bed Column Journal Of Industrial And Engineering Chemistry 2014 20 5 3408 14 10.1016/J.Jiec.2013.12.027 Open DOISearch in Google Scholar

Martins AE, Pereira MS, Jorgetto AO, Martines MA, Silva RI, Saeki MJ, Castro GR. The Reactive Surface of Castor Leaf Ricinus Communis L. Powder as a Green Adsorbent for the Removal of Heavy Metals from Natural River Water. Applied Surface Science 2013; 276: 24–30. DOI:10.1016/J.Apsusc.2013.02.096. MartinsAE PereiraMS JorgettoAO MartinesMA SilvaRI SaekiMJ CastroGR The Reactive Surface of Castor Leaf Ricinus Communis L. Powder as a Green Adsorbent for the Removal of Heavy Metals from Natural River Water Applied Surface Science 2013 276 24 30 10.1016/J.Apsusc.2013.02.096 Open DOISearch in Google Scholar

Ganesan S. Waste Fruit Cortexes For The Removal Of Heavy Metals From Water. Green Adsorbents to Remove Metals, Dyes and Boron from Polluted Water 2021; 323–350. DOI:10.1007/978-3-030-47400-3_13. GanesanS Waste Fruit Cortexes For The Removal Of Heavy Metals From Water Green Adsorbents to Remove Metals, Dyes and Boron from Polluted Water 2021 323 350 10.1007/978-3-030-47400-3_13 Open DOISearch in Google Scholar

Wang Q, Li JS, Poon CS. Recycling of Incinerated Sewage Sludge Ash as an Adsorbent for Heavy Metals Removal from Aqueous Solutions. Journal Of Environmental Management 2019; 247: 509–17. DOI:10.1016/J.Jenvman.2019.06.115. WangQ LiJS PoonCS Recycling of Incinerated Sewage Sludge Ash as an Adsorbent for Heavy Metals Removal from Aqueous Solutions Journal Of Environmental Management 2019 247 509 17 10.1016/J.Jenvman.2019.06.115 Open DOISearch in Google Scholar

Gupta AD, Rawat KP, Bhadauria V, Singh H. Recent Trends in the Application of Modified Starch in the Adsorption of Heavy Metals from Water: A Review. Carbohydrate Polymers 2021; 269: 117763. DOI:10.1016/J.Carbpol.2021.117763. GuptaAD RawatKP BhadauriaV SinghH Recent Trends in the Application of Modified Starch in the Adsorption of Heavy Metals from Water: A Review Carbohydrate Polymers 2021 269 117763. 10.1016/J.Carbpol.2021.117763 34294282 Open DOISearch in Google Scholar

Haq F, Yu H, Wang L, Teng L, Haroon M, Khan RU, Mehmood S, Bilal-Ul-Amin, Ullah RS, Khan A, Nazir A. Advances In Chemical Modifications of Starches and their Applications. Carbohydrate Research 2019; 476: 12–35. DOI: 10.1016/J.Carres.2019.02.007. HaqF YuH WangL TengL HaroonM KhanRU MehmoodS Bilal-Ul-Amin UllahRS KhanA NazirA Advances In Chemical Modifications of Starches and their Applications Carbohydrate Research 2019 476 12 35 10.1016/J.Carres.2019.02.007 Open DOISearch in Google Scholar

Dupont L, Bouanda J, Dumonceau J, Aplincourt M. Biosorption of Cu(II) and Zn(II) Onto a Lignocellulosic Substrate Extracted from Wheat Bran. Environmental Chemistry Letters 2005; 2(4): 165–8. DOI:10.1007/S10311-004-0095-2. DupontL BouandaJ DumonceauJ AplincourtM Biosorption of Cu(II) and Zn(II) Onto a Lignocellulosic Substrate Extracted from Wheat Bran Environmental Chemistry Letters 2005 2 4 165 8 10.1007/S10311-004-0095-2 Open DOISearch in Google Scholar

Iqbal M, Saeed A, Kalim I. Characterization of Adsorptive Capacity and Investigation of Mechanism of Cu2+, Ni2+ and Zn2+ Adsorption on Mango Peel Waste from Constituted Metal Solution and Genuine Electroplating Effluent. Separation Science And Technology 2009; 44(15): 3770–91. DOI: 10.1080/01496390903182305. IqbalM SaeedA KalimI Characterization of Adsorptive Capacity and Investigation of Mechanism of Cu2+, Ni2+ and Zn2+ Adsorption on Mango Peel Waste from Constituted Metal Solution and Genuine Electroplating Effluent Separation Science And Technology 2009 44 15 3770 91 10.1080/01496390903182305 Open DOISearch in Google Scholar

Banu I. Sorption Kinetics of Zinc and Nickel Ions on Maize Cob. Scientific Study & Research VII (2), 2006; 331–336, ISSN 1582-540X. BanuI Sorption Kinetics of Zinc and Nickel Ions on Maize Cob Scientific Study & Research VII 2 2006 331 336 ISSN 1582-540X. Search in Google Scholar

Thakur LS, Parmar M. Adsorption of Heavy Metal (Cu2+, Ni2+ And Zn2+) from Synthetic Waste Water by Tea Waste Adsorbent. International Journal of Chemical and Physical Sciences 2013; 2(6): 6–19. ThakurLS ParmarM Adsorption of Heavy Metal (Cu2+, Ni2+ And Zn2+) from Synthetic Waste Water by Tea Waste Adsorbent International Journal of Chemical and Physical Sciences 2013 2 6 6 19 Search in Google Scholar

Sud D, Mahajan G, Kaur M. Agricultural Waste Material as Potential Adsorbent for Sequestering Heavy Metal Ions from Aqueous Solutions – A Review. Bioresource Technology 2008; 99(14): 6017–27. DOI:10.1016/J.Biortech.2007.11.064. SudD MahajanG KaurM Agricultural Waste Material as Potential Adsorbent for Sequestering Heavy Metal Ions from Aqueous Solutions – A Review Bioresource Technology 2008 99 14 6017 27 10.1016/J.Biortech.2007.11.064 Open DOISearch in Google Scholar

Luef E, Prey T, Kubicek CP. Biosorption of Zinc by Fungal Mycelial Wastes. Applied Microbiology and Biotechnology 1991; 34(5): 688–92. DOI: 10.1007/Bf00167924. LuefE PreyT KubicekCP Biosorption of Zinc by Fungal Mycelial Wastes Applied Microbiology and Biotechnology 1991 34 5 688 92 10.1007/Bf00167924 Open DOISearch in Google Scholar

Tahir A, Akram A, Ahmed AM, Sholkamy EN, Mostafa AA. In Vitro Compatibility of Fungi for the Biosorption of Zinc(II) and Copper(II) from Electroplating Effluent. Current Science 2017; 112(04): 839. DOI:10.18520/Cs/V112/I04/839-844. TahirA AkramA AhmedAM SholkamyEN MostafaAA In Vitro Compatibility of Fungi for the Biosorption of Zinc(II) and Copper(II) from Electroplating Effluent Current Science 2017 112 04 839 10.18520/Cs/V112/I04/839-844 Open DOISearch in Google Scholar

Kılıç Z, Atakol O, Aras S, Cansaran-Duman D, Emregul E. Biosorption Properties of Zinc(II) from Aqueous Solutions by Pseudevernia Furfuracea (L.) Zopf. Journal Of The Air & Waste Management Association 2014; 64(10): 1112–21. DOI:10.1080/10962247.2014.926299. KılıçZ AtakolO ArasS Cansaran-DumanD EmregulE Biosorption Properties of Zinc(II) from Aqueous Solutions by Pseudevernia Furfuracea (L.) Zopf Journal Of The Air & Waste Management Association 2014 64 10 1112 21 10.1080/10962247.2014.926299 Open DOISearch in Google Scholar

Borowiecki T, Kijeński J, Machnikowski J, Ściążko M. Clean Energy, Chemical Products and Coal Fuels - Evaluation of the Development Potential. (In Polish), ICHPW, Zabrze 2008. BorowieckiT KijeńskiJ MachnikowskiJ ŚciążkoM Clean Energy, Chemical Products and Coal Fuels - Evaluation of the Development Potential. (In Polish) ICHPW Zabrze 2008 Search in Google Scholar

Ricordel S. Heavy Metals Removal by Adsorption onto Peanut Husks Carbon: Characterization, Kinetic Study and Modeling. Separation and Purification Technology 2001; 24(3): 389–401. DOI:10.1016/S1383-5866(01)00139-3. RicordelS Heavy Metals Removal by Adsorption onto Peanut Husks Carbon: Characterization, Kinetic Study and Modeling Separation and Purification Technology 2001 24 3 389 401 10.1016/S1383-5866(01)00139-3 Open DOISearch in Google Scholar

Mishra V, Majumder CB, Agarwal VK. Sorption of Zn(II) Ion onto the Surface of Activated Carbon Derived from Eucalyptus Bark Saw Dust from Industrial Wastewater: Isotherm, Kinetics, Mechanistic Modeling, and Thermodynamics. Desalination and Water Treatment 2012; 46(1–3): 332–51. DOI:10.1080/19443994.2012.677556. MishraV MajumderCB AgarwalVK Sorption of Zn(II) Ion onto the Surface of Activated Carbon Derived from Eucalyptus Bark Saw Dust from Industrial Wastewater: Isotherm, Kinetics, Mechanistic Modeling, and Thermodynamics Desalination and Water Treatment 2012 46 1–3 332 51 10.1080/19443994.2012.677556 Open DOISearch in Google Scholar

Tuomikoski Kupila, Romar Bergna, Kangas Runtti, Lassi. Zinc Adsorption by Activated Carbon Prepared from Lignocellulosic Waste Biomass. Applied Sciences 2019; 9(21): 4583. DOI:10.3390/App9214583. KupilaTuomikoski BergnaRomar RunttiKangas Lassi Zinc Adsorption by Activated Carbon Prepared from Lignocellulosic Waste Biomass Applied Sciences 2019 9 21 4583 10.3390/App9214583 Open DOISearch in Google Scholar

Jędrzejczak P, Collins MN, Jesionowski T, Klapiszewski Ł. The Role of Lignin and Lignin-Based Materials in Sustainable Construction - A Comprehensive Review. International Journal Of Biological Macromolecules 2021; 187: 624–50. DOI:10.1016/J.Ijbiomac.2021.07.125. JędrzejczakP CollinsMN JesionowskiT KlapiszewskiŁ The Role of Lignin and Lignin-Based Materials in Sustainable Construction - A Comprehensive Review International Journal Of Biological Macromolecules 2021 187 624 50 10.1016/J.Ijbiomac.2021.07.125 34302869 Open DOISearch in Google Scholar

Klapiszewski Ł, Szalaty TJ, Jesionowski T. Depolymerization and Activation of Lignin: Current State of Knowledge and Perspectives Trends and Applications, Editor: Poletto M. Intechopen 2018; ISBN: 978-953-51-3902-7, DOI: 10.5772/Intechopen.70376. KlapiszewskiŁ SzalatyTJ JesionowskiT Depolymerization and Activation of Lignin: Current State of Knowledge and Perspectives Trends and Applications Editor: PolettoM. Intechopen 2018 ISBN: 978-953-51-3902-7, 10.5772/Intechopen.70376 Open DOISearch in Google Scholar

Surewicz W. Fundamentals of Pulp Technology (In Polish), Wydawnictwa Naukowo-Techniczne Warszawa, 1971. SurewiczW Fundamentals of Pulp Technology (In Polish) Wydawnictwa Naukowo-Techniczne Warszawa 1971 Search in Google Scholar

Wandelt P. Technology Of Cellulose And Paper. Pulp Technology (In Polish), Wydawnictwa Szkolne i Pedagogiczne, Warszawa, 1996. WandeltP Technology Of Cellulose And Paper. Pulp Technology (In Polish) Wydawnictwa Szkolne i Pedagogiczne Warszawa 1996 Search in Google Scholar

Saratale RG, Saratale GD, Ghodake G, Cho SK, Kadam A, Kumar G, Jeon BH, Pant D, Bhatnagar A, Shin HS. Wheat Straw Extracted Lignin in Silver Nanoparticles Synthesis: Expanding its Prophecy Towards Antineoplastic Potency and Hydrogen Peroxide Sensing Ability. International Journal of Biological Macromolecules 2019; 128:391–400. DOI:10.1016/J.Ijbiomac.2019.01.120. SarataleRG SarataleGD GhodakeG ChoSK KadamA KumarG JeonBH PantD BhatnagarA ShinHS Wheat Straw Extracted Lignin in Silver Nanoparticles Synthesis: Expanding its Prophecy Towards Antineoplastic Potency and Hydrogen Peroxide Sensing Ability International Journal of Biological Macromolecules 2019 128 391 400 10.1016/J.Ijbiomac.2019.01.120 Open DOISearch in Google Scholar

Ganewatta MS, Lokupitiya HN, Tang C. Lignin Biopolymers in the Age of Controlled Polymerization. Polymers 2019; 11(7):1176. DOI: 10.3390/Polym11071176. GanewattaMS LokupitiyaHN TangC Lignin Biopolymers in the Age of Controlled Polymerization Polymers 2019 11 7 1176 10.3390/Polym11071176 668056031336845 Open DOISearch in Google Scholar

Karmanov AP, Kanarsky AV, Kocheva LS, Belyy VA, Semenov EI, Rachkova NG, Bogdanovich NI, Pokryshkin SA. Chemical Structure and Polymer Properties of Wheat and Cabbage Lignins – Valuable Biopolymers For Biomedical Applications. Polymer 2021; 220: 123571. DOI: 10.1016/J.Polymer.2021.123571. KarmanovAP KanarskyAV KochevaLS BelyyVA SemenovEI RachkovaNG BogdanovichNI PokryshkinSA Chemical Structure and Polymer Properties of Wheat and Cabbage Lignins – Valuable Biopolymers For Biomedical Applications Polymer 2021 220 123571. 10.1016/J.Polymer.2021.123571 Open DOISearch in Google Scholar

Tortora M, Cavalieri F, Mosesso P, Ciaffardini F, Melone F, Crestini C. Ultrasound Driven Assembly of Lignin into Microcapsules for Storage and Delivery of Hydrophobic Molecules. Biomacromolecules 2014, 15(5): 1634–43. DOI:10.1021/Bm500015j. TortoraM CavalieriF MosessoP CiaffardiniF MeloneF CrestiniC Ultrasound Driven Assembly of Lignin into Microcapsules for Storage and Delivery of Hydrophobic Molecules Biomacromolecules 2014 15 5 1634 43 10.1021/Bm500015j Open DOISearch in Google Scholar

Rahman MM, Arafat KM, Jin Y, Chen H, Jahan MS. Structural Characterization of Potassium Hydroxide Liquor Lignin and Its Application in Biorefinery. Biomass Conversion and Biorefinery 2021. DOI:10.1007/S13399-020-01202-1. RahmanMM ArafatKM JinY ChenH JahanMS Structural Characterization of Potassium Hydroxide Liquor Lignin and Its Application in Biorefinery Biomass Conversion and Biorefinery 2021 10.1007/S13399-020-01202-1 Open DOISearch in Google Scholar

Schneider WD, Dillon AJ, Camassola M. Lignin Nanoparticles Enter the Scene: A Promising Versatile Green Tool For Multiple Applications. Biotechnology Advances 2020. DOI:10.1016/J.Biotechadv.2020.107685. SchneiderWD DillonAJ CamassolaM Lignin Nanoparticles Enter the Scene: A Promising Versatile Green Tool For Multiple Applications Biotechnology Advances 2020 10.1016/J.Biotechadv.2020.107685 33383155 Open DOISearch in Google Scholar

Bruijnincx P, Weckhuysen B, Gruter GJ, Westenbroek A, Edith Engelen-Smeets: Lignin Valorisation 2016, The Importance of a Full Value Chain Approach, Utrecht University, 2016; Page 1–22, OCLC Number:951662206. BruijnincxP WeckhuysenB GruterGJ WestenbroekA Edith Engelen-Smeets: Lignin Valorisation 2016, The Importance of a Full Value Chain Approach Utrecht University 2016 1 22 OCLC Number:951662206. Search in Google Scholar

Ge Y, Li Z. Application of Lignin and its Derivatives in Adsorption of Heavy Metal Ions in Water: A Review. ACS Sustainable Chemistry & Engineering 2018; 6(5): 7181–92. DOI: 10.1021/Acssuschemeng.8b01345. GeY LiZ Application of Lignin and its Derivatives in Adsorption of Heavy Metal Ions in Water: A Review ACS Sustainable Chemistry & Engineering 2018 6 5 7181 92 10.1021/Acssuschemeng.8b01345 Open DOISearch in Google Scholar

Zijlstra DS, De Santi A, Oldenburger B, De Vries J, Barta K, Deuss PJ. Extraction of Lignin with High B-O-4 Content by Mild Ethanol Extraction and Its Effect on the Depolymerization Yield. Journal of Visualized Experiments 2019; (143). DOI:10.3791/58575. ZijlstraDS De SantiA OldenburgerB De VriesJ BartaK DeussPJ Extraction of Lignin with High B-O-4 Content by Mild Ethanol Extraction and Its Effect on the Depolymerization Yield Journal of Visualized Experiments 2019 143 10.3791/58575 30663678 Open DOISearch in Google Scholar

Bertella S, Luterbacher JS. Lignin Functionalization for the Production of Novel Materials. Trends in Chemistry 2020; 2(5): 440–53. DOI: 10.1016/J.Trechm.2020.03.001. BertellaS LuterbacherJS Lignin Functionalization for the Production of Novel Materials Trends in Chemistry 2020 2 5 440 53 10.1016/J.Trechm.2020.03.001 Open DOISearch in Google Scholar

Martín-Sampedro R, Santos JI, Fillat Ú, Wicklein B, Eugenio ME, Ibarra D. Characterization of Lignins from Populus Alba L. Generated as by-Products in Different Transformation Processes: Kraft Pulping, Organosolv and Acid Hydrolysis. International Journal of Biological Macromolecules 2019; 126: 18–29. DOI: 10.1016/J.Ijbiomac.2018.12.158. Martín-SampedroR SantosJI FillatÚ WickleinB EugenioME IbarraD Characterization of Lignins from Populus Alba L. Generated as by-Products in Different Transformation Processes: Kraft Pulping, Organosolv and Acid Hydrolysis International Journal of Biological Macromolecules 2019 126 18 29 10.1016/J.Ijbiomac.2018.12.158 30572057 Open DOISearch in Google Scholar

Dessbesell L, Paleologou M, Leitch M, Pulkki R, Xu C. Global Lignin Supply Overview and Kraft Lignin Potential as an Alternative for Petroleum-Based Polymers. Renewable and Sustainable Energy Reviews 2020; 123: 109768. DOI:10.1016/J.Rser.2020.109768. DessbesellL PaleologouM LeitchM PulkkiR XuC Global Lignin Supply Overview and Kraft Lignin Potential as an Alternative for Petroleum-Based Polymers Renewable and Sustainable Energy Reviews 2020 123 109768. 10.1016/J.Rser.2020.109768 Open DOISearch in Google Scholar

Chen H, Qu X, Liu N, Wang S, Chen X, Liu S. Study of the Adsorption Process of Heavy Metals Cations on Kraft Lignin. Chemical Engineering Research and Design 2018; 139: 248–58. DOI:10.1016/J.Cherd.2018.09.028. ChenH QuX LiuN WangS ChenX LiuS Study of the Adsorption Process of Heavy Metals Cations on Kraft Lignin Chemical Engineering Research and Design 2018 139 248 58 10.1016/J.Cherd.2018.09.028 Open DOISearch in Google Scholar

Li Jingjing. Isolation of Lignin from Wood, Faculty of Technology, Imatra Paper Technology, Bachelor’s Thesis 2011. LiJingjing Isolation of Lignin from Wood, Faculty of Technology Imatra Paper Technology, Bachelor’s Thesis 2011 Search in Google Scholar

Judith Becker, Christoph Wittmann: A Field of Dreams: Lignin Valorization into Chemicals, Materials, Fuels, and Health-Care Products, Biotechnology Advances, 2019; 37(6). DOI:10.1016/J.Biotechadv.2019.02.016. BeckerJudith WittmannChristoph A Field of Dreams: Lignin Valorization into Chemicals, Materials, Fuels, and Health-Care Products, Biotechnology Advances 2019 37 6 10.1016/J.Biotechadv.2019.02.016 30959173 Open DOISearch in Google Scholar

Singh SK. Solubility of Lignin and Chitin in Ionic Liquids and their Biomedical Applications. International Journal of Biological Macromolecules 2019; 132: 265–77. DOI:10.1016/J.Ijbiomac.2019.03.182. SinghSK Solubility of Lignin and Chitin in Ionic Liquids and their Biomedical Applications International Journal of Biological Macromolecules 2019 132 265 77 10.1016/J.Ijbiomac.2019.03.182 30930266 Open DOISearch in Google Scholar

Bulgariu L, Bulgariu D, Malutan T, Macoveanu M. Adsorption of Lead(II) Ions from Aqueous Solution onto Lignin. Adsorption Science & Technology 2009; 27(4):435–45. DOI:10.1260/026361709790252623. BulgariuL BulgariuD MalutanT MacoveanuM Adsorption of Lead(II) Ions from Aqueous Solution onto Lignin Adsorption Science & Technology 2009 27 4 435 45 10.1260/026361709790252623 Open DOISearch in Google Scholar

Pagnanelli F, Mainelli S, Vegliò F, Toro L. Heavy Metal Removal by Olive Pomace: Biosorbent Characterisation and Equilibrium Modelling. Chemical Engineering 2003; 58(20): 4709–17. DOI:10.1016/J.Ces.2003.08.001. PagnanelliF MainelliS VegliòF ToroL Heavy Metal Removal by Olive Pomace: Biosorbent Characterisation and Equilibrium Modelling Chemical Engineering 2003 58 20 4709 17 10.1016/J.Ces.2003.08.001 Open DOISearch in Google Scholar

Strzemiecka B, Klapiszewski Ł, Jamrozik A, Szalaty T, Matykiewicz D, Sterzyński T, Voelkel A, Jesionowski T. Physicochemical Characterization of Functional Lignin–Silica Hybrid Fillers for Potential Application in Abrasive Tools. Materials 2016; 9(7): 517. DOI:10.3390/Ma9070517. StrzemieckaB KlapiszewskiŁ JamrozikA SzalatyT MatykiewiczD SterzyńskiT VoelkelA JesionowskiT Physicochemical Characterization of Functional Lignin–Silica Hybrid Fillers for Potential Application in Abrasive Tools Materials 2016 9 7 517 10.3390/Ma9070517 Open DOISearch in Google Scholar

Ge Y, Li Z. Application of Lignin and its Derivatives in Adsorption of Heavy Metal Ions in Water: A Review. ACS Sustainable Chemistry & Engineering 2018; 6(5): 7181–92. DOI: 10.1021/Acssuschemeng.8b01345. GeY LiZ Application of Lignin and its Derivatives in Adsorption of Heavy Metal Ions in Water: A Review ACS Sustainable Chemistry & Engineering 2018 6 5 7181 92 10.1021/Acssuschemeng.8b01345 Open DOISearch in Google Scholar

Szalaty TJ, Klapiszewski Ł, Jesionowski T. Recent Developments in Modification of Lignin Using Ionic Liquids for the Fabrication of Advanced Materials – A Review. Journal Of Molecular Liquids 2020; 301, 112417. DOI: 10.1016/J.Molliq.2019.112417. SzalatyTJ KlapiszewskiŁ JesionowskiT Recent Developments in Modification of Lignin Using Ionic Liquids for the Fabrication of Advanced Materials – A Review Journal Of Molecular Liquids 2020 301 112417. 10.1016/J.Molliq.2019.112417 Open DOISearch in Google Scholar

Kweon DK, Choi JK, Kim EK, Lim ST. Adsorption of Divalent Metal Ions by Succinylated and Oxidized Corn Starches. Carbohydrate Polymers 2001; 46(2): 171–7. DOI: 10.1016/S0144-8617(00)00300-3. KweonDK ChoiJK KimEK LimST Adsorption of Divalent Metal Ions by Succinylated and Oxidized Corn Starches Carbohydrate Polymers 2001 46 2 171 7 10.1016/S0144-8617(00)00300-3 Open DOISearch in Google Scholar

Ghiorghita CA, Borchert KB, Vasiliu AL, Zaharia MM, Schwarz D, Mihai M. Porous Thiourea-Grafted-Chitosan Hydrogels: Synthesis and Sorption of Toxic Metal Ions from Contaminated Waters. Colloids and Surfaces A: Physicochemical and Engineering Aspects 2020; 607, 125504. DOI: 10.1016/J.Colsurfa.2020.125504. GhiorghitaCA BorchertKB VasiliuAL ZahariaMM SchwarzD MihaiM Porous Thiourea-Grafted-Chitosan Hydrogels: Synthesis and Sorption of Toxic Metal Ions from Contaminated Waters Colloids and Surfaces A: Physicochemical and Engineering Aspects 2020 607 125504. 10.1016/J.Colsurfa.2020.125504 Open DOISearch in Google Scholar

Jiang H, Yang Y, Lin Z, Zhao B, Wang J, Xie J, Zhang A. Preparation of a Novel Bio-Adsorbent of Sodium Alginate Grafted Polyacrylamide/Graphene Oxide Hydrogel for the Adsorption of Heavy Metal Ion. Science of the Total Environment 2020; 744, 140653. DOI: 10.1016/J.Scitotenv.2020.140653. JiangH YangY LinZ ZhaoB WangJ XieJ ZhangA Preparation of a Novel Bio-Adsorbent of Sodium Alginate Grafted Polyacrylamide/Graphene Oxide Hydrogel for the Adsorption of Heavy Metal Ion Science of the Total Environment 2020 744 140653. 10.1016/J.Scitotenv.2020.140653 32693272 Open DOISearch in Google Scholar

Ge Y, Li Z, Kong Y, Song Q, Wang K. Heavy Metal Ions Retention by Bi-Functionalized Lignin: Synthesis, Applications and Adsorption Mechanisms. Journal of Industrial and Engineering Chemistry 2014; 20(6): 4429–36. DOI:10.1016/J.Jiec.2014.02.011. GeY LiZ KongY SongQ WangK Heavy Metal Ions Retention by Bi-Functionalized Lignin: Synthesis, Applications and Adsorption Mechanisms Journal of Industrial and Engineering Chemistry 2014 20 6 4429 36 10.1016/J.Jiec.2014.02.011 Open DOISearch in Google Scholar

Popovic AL, Rusmirovic JD, Velickovic Z, Kovacevic T, Jovanovic A, Cvijetic I, Marinkovic AD. Kinetics and Column Adsorption Study of Diclofenac and Heavy-Metal Ions Removal by Amino-Functionalized Lignin Microspheres. Journal of Industrial and Engineering Chemistry 2021; 93: 302–14. DOI:10.1016/J.Jiec.2020.10.006. PopovicAL RusmirovicJD VelickovicZ KovacevicT JovanovicA CvijeticI MarinkovicAD Kinetics and Column Adsorption Study of Diclofenac and Heavy-Metal Ions Removal by Amino-Functionalized Lignin Microspheres Journal of Industrial and Engineering Chemistry 2021 93 302 14 10.1016/J.Jiec.2020.10.006 Open DOISearch in Google Scholar

Jin C, Liu G, Wu G, Huo S, Liu Z, Kong Z. Facile Fabrication of Crown Ether Functionalized Lignin-Based Biosorbent for the Selective Removal of Pb(II), Industrial Crops and Products 2020; 155, 112829. DOI: 10.1016/J.Indcrop.2020.112829. JinC LiuG WuG HuoS LiuZ KongZ Facile Fabrication of Crown Ether Functionalized Lignin-Based Biosorbent for the Selective Removal of Pb(II) Industrial Crops and Products 2020 155 112829. 10.1016/J.Indcrop.2020.112829 Open DOISearch in Google Scholar

Peng X, Wu Z, Li Z. A Bowl-Shaped Biosorbent Derived From Sugarcane Bagasse Lignin for Cadmium Ion Adsorption. Cellulose 2020; 27(15): 8757–68. DOI:10.1007/S10570-020-03376-3. PengX WuZ LiZ A Bowl-Shaped Biosorbent Derived From Sugarcane Bagasse Lignin for Cadmium Ion Adsorption Cellulose 2020 27 15 8757 68 10.1007/S10570-020-03376-3 Open DOISearch in Google Scholar

Zhang Y, Ni S, Wang X, Zhang W, Lagerquist L, Qin M, Willför S, Xu C, Fatehi P. Ultrafast Adsorption of Heavy Metal Ions onto Functionalized Lignin-Based Hybrid Magnetic Nanoparticles. Chemical Engineering Journal 2019; 372: 82–91. DOI:10.1016/J.Cej.2019.04.111. ZhangY NiS WangX ZhangW LagerquistL QinM WillförS XuC FatehiP Ultrafast Adsorption of Heavy Metal Ions onto Functionalized Lignin-Based Hybrid Magnetic Nanoparticles Chemical Engineering Journal 2019 372 82 91 10.1016/J.Cej.2019.04.111 Open DOISearch in Google Scholar

Klapiszewski Ł, Bartczak P, Szatkowski T, Jesionowski T. Removal of Lead(II) Ions by an Adsorption Process with the Use of an Advanced SiO2/Lignin Biosorbent, Polish Journal of Chemical Technology 2017; 19(1): 48–53. DOI:10.1515/Pjct-2017-0007. KlapiszewskiŁ BartczakP SzatkowskiT JesionowskiT Removal of Lead(II) Ions by an Adsorption Process with the Use of an Advanced SiO2/Lignin Biosorbent Polish Journal of Chemical Technology 2017 19 1 48 53 10.1515/Pjct-2017-0007 Open DOISearch in Google Scholar

Shi X, Qiao Y, An X, Tian Y, Zhou H., High-Capacity Adsorption of Cr(VI) by Lignin-Based Composite: Characterization, Performance and Mechanism. International Journal of Biological Macromolecules 2020; 159: 839–49. DOI:10.1016/J.Ijbiomac.2020.05.130. ShiX QiaoY AnX TianY ZhouH. High-Capacity Adsorption of Cr(VI) by Lignin-Based Composite: Characterization, Performance and Mechanism International Journal of Biological Macromolecules 2020 159 839 49 10.1016/J.Ijbiomac.2020.05.130 32445824 Open DOISearch in Google Scholar

Duan Y, Freyburger A, Kunz W, Zollfrank C., Lignin/Chitin Films and their Adsorption Characteristics for Heavy Metal Ions. Acs Sustainable Chemistry & Engineering 2018; 6(5): 6965–73. DOI:10.1021/Acssuschemeng.8b00805. DuanY FreyburgerA KunzW ZollfrankC. Lignin/Chitin Films and their Adsorption Characteristics for Heavy Metal Ions Acs Sustainable Chemistry & Engineering 2018 6 5 6965 73 10.1021/Acssuschemeng.8b00805 Open DOISearch in Google Scholar

Nair V, Panigrahy A, Vinu R. Development of Novel Chitosan-Lignin Composites for Adsorption of Dyes and Metal Ions from Wastewater. Chemical Engineering Journal 2014; 254, 491–502. DOI: 10.1016/J.Cej.2014.05.045. NairV PanigrahyA VinuR Development of Novel Chitosan-Lignin Composites for Adsorption of Dyes and Metal Ions from Wastewater Chemical Engineering Journal 2014 254 491 502 10.1016/J.Cej.2014.05.045 Open DOISearch in Google Scholar

Sun XF, Hao Y, Cao Y, Zeng Q. Superadsorbent Hydrogel Based on Lignin and Montmorillonite for Cu(II) Ions Removal From Aqueous Solution. International Journal Of Biological Macromolecules 2019; 127: 511–9. DOI: 10.1016/J.Ijbiomac.2019.01.058. SunXF HaoY CaoY ZengQ Superadsorbent Hydrogel Based on Lignin and Montmorillonite for Cu(II) Ions Removal From Aqueous Solution International Journal Of Biological Macromolecules 2019 127 511 9 10.1016/J.Ijbiomac.2019.01.058 Open DOISearch in Google Scholar

Mohan D, Pittman CU, Steele PH. Single, Binary and Multi-Component Adsorption of Copper and Cadmium from Aqueous Solutions on Kraft Lignin-A Biosorbent. Journal of Colloid And Interface Science 2006; 297(2): 489–504. DOI: 10.1016/J.Jcis.2005.11.023. MohanD PittmanCU SteelePH Single, Binary and Multi-Component Adsorption of Copper and Cadmium from Aqueous Solutions on Kraft Lignin-A Biosorbent Journal of Colloid And Interface Science 2006 297 2 489 504 10.1016/J.Jcis.2005.11.023 16375914 Open DOISearch in Google Scholar

Stahel W. The Circular Economy. Nature 2016; 531: 435–438. DOI:10.1038/531435a StahelW The Circular Economy Nature 2016 531 435 438 10.1038/531435a 27008952 Open DOISearch in Google Scholar

Wan Ngah WS, Hanafiah MA. Removal of Heavy Metal Ions from Wastewater by Chemically Modified Plant Wastes as Adsorbents: A Review. Bioresource Technology 2008; 99(10): 3935–48. DOI:10.1016/J.Biortech.2007.06.011. Wan NgahWS HanafiahMA Removal of Heavy Metal Ions from Wastewater by Chemically Modified Plant Wastes as Adsorbents: A Review Bioresource Technology 2008 99 10 3935 48 10.1016/J.Biortech.2007.06.011 Open DOISearch in Google Scholar