Cite

Kowalik P. Wykorzystanie biomasy jako surowca energetycznego. W: Termochemiczne przetwórstwo węgla i biomasy (in Polish). Red. Ściążko M., Zieliński H., Wyd. Instytutu Chemicznej Przeróbki Węgla, 2003, Kraków–Zabrze, pp. 39–41 KowalikP. Wykorzystanie biomasy jako surowca energetycznego W: Termochemiczne przetwórstwo węgla i biomasy (in Polish) Red. ŚciążkoM. ZielińskiH. Wyd. Instytutu Chemicznej Przeróbki Węgla 2003 Kraków–Zabrze 39 41 Search in Google Scholar

Mirowski T., Mokrzycki E., Uliasz-Bocheńczyk A. Energetyczne wykorzystanie biomasy (in Polish). Wyd. IGSMiE PAN, 2018, Kraków MirowskiT. MokrzyckiE. Uliasz-BocheńczykA. Energetyczne wykorzystanie biomasy (in Polish) Wyd. IGSMiE PAN 2018 Kraków Search in Google Scholar

Daniel Z., Juliszewski T., Kowalczyk Z., Malinowski M., Sobol Z., Paulina Wrona P., Metoda szczegółowej klasyfikacji odpadów z sektora rolniczego i rolnospożywczego (in Polish), Infrastruktura i Ekologia Terenów Wiejskich, Nr 2/IV/2012, pp. 141–152 DanielZ. JuliszewskiT. KowalczykZ. MalinowskiM. SobolZ. Paulina WronaP. Metoda szczegółowej klasyfikacji odpadów z sektora rolniczego i rolnospożywczego (in Polish) Infrastruktura i Ekologia Terenów Wiejskich Nr 2/IV/2012, 141 152 Search in Google Scholar

Główny Urząd Statystyczny, Ochrona środowiska 2010 (in Polish), Wydawnictwo GUS, 2010, Warszawa Główny Urząd Statystyczny Ochrona środowiska 2010 (in Polish) Wydawnictwo GUS 2010 Warszawa Search in Google Scholar

Arvanitoyannis I. S, Kassaveti A, Ladas D, Food Waste Treatment Methodologies, Waste Management for the Food Industries, 2008, pp. 345 ArvanitoyannisI. S KassavetiA LadasD Food Waste Treatment Methodologies Waste Management for the Food Industries 2008 345 10.1016/B978-012373654-3.50009-2 Search in Google Scholar

Listwan A., Baic I., Łuksa A., Podstawy gospodarki odpadami niebezpiecznymi (in Polish), Wydawnictwo Politechniki Radomskiej, 2009, Radom ListwanA. BaicI. ŁuksaA. Podstawy gospodarki odpadami niebezpiecznymi (in Polish) Wydawnictwo Politechniki Radomskiej 2009 Radom Search in Google Scholar

Główny Urząd Statystyczny, Ochrona środowiska 2021 (in Polish), Wydawnictwo GUS., 2021, Warszawa Główny Urząd Statystyczny Ochrona środowiska 2021 (in Polish) Wydawnictwo GUS. 2021 Warszawa Search in Google Scholar

Borowski G., Metody przetwarzania odpadów drobnoziarnistych na produkty użyteczne (in Polish), Wydawnictwo Politechniki Lubelskiej, 2013, Lublin BorowskiG. Metody przetwarzania odpadów drobnoziarnistych na produkty użyteczne (in Polish) Wydawnictwo Politechniki Lubelskiej 2013 Lublin Search in Google Scholar

Ławińska, K.; Wodziński, P.; Modrzewski, R., A Method for determining sieve holes blocking degree, Physicochem. Probl. Miner. Process. 2015, 51, 15–22. DOI: 10.5277/ppmp150102 ŁawińskaK. WodzińskiP. ModrzewskiR. A Method for determining sieve holes blocking degree Physicochem. Probl. Miner. Process 2015 51 15 22 10.5277/ppmp150102 Open DOISearch in Google Scholar

Ławińska K, Modrzewski R, Serweta W. The phenomenon of screen blocking for mixtures of varying blocking grain content. Gospodarka Surowcami Mineralnymi – Mineral Resources Management 2018, 34 (1), pp.83–95. DOI 10.24425/118638 ŁawińskaK ModrzewskiR SerwetaW The phenomenon of screen blocking for mixtures of varying blocking grain content Gospodarka Surowcami Mineralnymi – Mineral Resources Management 2018 34 1 83 95 10.24425/118638 Open DOISearch in Google Scholar

Ławińska K, Wodziński P, Modrzewski R. A method for determining sieve holes blocking degree. Physicochemical Problems Of Mineral Processing 2015, 51 (1), pp.15–22. DOI: 10.5277/ppmp150102 ŁawińskaK WodzińskiP ModrzewskiR A method for determining sieve holes blocking degree Physicochemical Problems Of Mineral Processing 2015 51 1 15 22 10.5277/ppmp150102 Open DOISearch in Google Scholar

Ławińska K, Modrzewski R, Wodziński P. Mathematical and empirical description of screen blocking. Granular Matter 2016, 18 (1). DOI: 10.1007/s10035-016-0622-4 ŁawińskaK ModrzewskiR WodzińskiP Mathematical and empirical description of screen blocking Granular Matter 2016 18 1 10.1007/s10035-016-0622-4 Open DOISearch in Google Scholar

Ławińska K, Wodziński P, Modrzewski R. Verification of the mathematical model of the screen blocking process. Powder Technology 2014, 256, pp.506–511. DOI: 10.1016/j.powtec.2014.01.074 ŁawińskaK WodzińskiP ModrzewskiR Verification of the mathematical model of the screen blocking process Powder Technology 2014 256 506 511 10.1016/j.powtec.2014.01.074 Open DOISearch in Google Scholar

Modrzewski R., Wodziński P., The results of process investigations of a double-frequency screen. Physicochemical Problems of Mineral Processing, 2010, vol. 44, pages 169–178. ModrzewskiR. WodzińskiP. The results of process investigations of a double-frequency screen Physicochemical Problems of Mineral Processing 2010 44 169 178 Search in Google Scholar

Modrzewski R., Wodziński P., Grained material classification on a double frequency screen. Physicochemical Problems of Mineral Processing, 2011, vol. 46, pages 5–12. ModrzewskiR. WodzińskiP. Grained material classification on a double frequency screen Physicochemical Problems of Mineral Processing 2011 46 5 12 Search in Google Scholar

Brown D., Rock mechanics for underground mining, JKMRC Internal Reports, 1992, pp. 444–445. BrownD. Rock mechanics for underground mining JKMRC Internal Reports 1992 444 445 Search in Google Scholar

Napier-Nunn T.J., Morrell S., Morrisom R.D., Kojovic T., Mineral Comminution Circuits: Their Operation and Optimisation, JRMC / University of Queensland, Monograph Series in Mining and Mineral Processing 2, 1999. Napier-NunnT.J. MorrellS. MorrisomR.D. KojovicT. Mineral Comminution Circuits: Their Operation and Optimisation JRMC / University of Queensland, Monograph Series in Mining and Mineral Processing 2 1999 Search in Google Scholar

Olejnik T.P., Selected mineral materials grinding rate and its effect on product granulometric composition, Physicochem. Probl. Miner. Process. 49 (2), 2013, 407–418. OlejnikT.P. Selected mineral materials grinding rate and its effect on product granulometric composition Physicochem. Probl. Miner. Process 49 2 2013 407 418 Search in Google Scholar

Eksi D., Benzer A.H., Sargin A., Genc O., A new method for determination of fine particle breakage, Minerals Engineerng 24 (2011), pp. 216–220. EksiD. BenzerA.H. SarginA. GencO. A new method for determination of fine particle breakage Minerals Engineerng 24 2011 216 220 10.1016/j.mineng.2010.08.006 Search in Google Scholar

Vizcarra T.G., Wightman E.M., Johnson N.W., Manlapig E.V., The effect of breakage mechanism on the mineral liberation properties of sulphide ores, Minerals Engineering 23 (2010), pp. 374–382, DOI: 10.1016/j.mineng.2009.11.012. VizcarraT.G. WightmanE.M. JohnsonN.W. ManlapigE.V. The effect of breakage mechanism on the mineral liberation properties of sulphide ores Minerals Engineering 23 2010 374 382 10.1016/j.mineng.2009.11.012 Open DOISearch in Google Scholar

Siuda R., Kwiatek J., Obraniak A., Gluba T., Olejnik T.P., Marszałek-Gubiec A., Pietrasik T., Comparison of granulation methods of lime-gypsum fertilizer (Porównanie metod granulacji nawozu wapienno-gipsowego), Przemysł Chemiczny, 97/09 (2018), 1549–1553, DOI: 10.15199/62.2018.9.32. SiudaR. KwiatekJ. ObraniakA. GlubaT. OlejnikT.P. Marszałek-GubiecA. PietrasikT. Comparison of granulation methods of lime-gypsum fertilizer (Porównanie metod granulacji nawozu wapienno-gipsowego) Przemysł Chemiczny 97 09 2018 1549 1553 10.15199/62.2018.9.32 Open DOISearch in Google Scholar

Olejnik T.P., Kinetics of frinding ceramic bulk considering grinding media contact points, Physicochemical Problems of Mineral Processing, (44) 2010, 187–194. OlejnikT.P. Kinetics of frinding ceramic bulk considering grinding media contact points Physicochemical Problems of Mineral Processing 44 2010 187 194 Search in Google Scholar

Heim A. Olejnik T.P., Pawlak A., Using statistical moments to describe grinding in a ball mill for industrial-scale process, Chemical Engineering and Processing – Process Intensification, 44 (2), 2005, 263–266. HeimA. OlejnikT.P. PawlakA. Using statistical moments to describe grinding in a ball mill for industrial-scale process Chemical Engineering and Processing – Process Intensification 44 2 2005 263 266 10.1016/j.cep.2004.02.020 Search in Google Scholar

Olejnik T. P., Sobiecka E., Utilitarian Technological Solutions to Reduce CO2 Emission in the Aspect of Sustainable Development, PROBLEMY EKOROZWOJU – PROBLEMS OF SUSTAINABLE DEVELOPMENT, 12 (2), 2017, 173–179. OlejnikT. P. SobieckaE. Utilitarian Technological Solutions to Reduce CO2 Emission in the Aspect of Sustainable Development PROBLEMY EKOROZWOJU – PROBLEMS OF SUSTAINABLE DEVELOPMENT 12 2 2017 173 179 Search in Google Scholar

Taylor, F.W., The Principles of Scientific Management, Easton, Hive Publishing Comp. (1985) p. 13. TaylorF.W. The Principles of Scientific Management Easton Hive Publishing Comp. 1985 13 Search in Google Scholar

Aman S., Tomas J., Kalman H., Breakage probability of irregularly shaped particles, Chemical Engineering Science 65 (2010) pp.1503–1512, DOI: 10.1016/j.ces.2009.10.016. AmanS. TomasJ. KalmanH. Breakage probability of irregularly shaped particles Chemical Engineering Science 65 2010 1503 1512 10.1016/j.ces.2009.10.016 Open DOISearch in Google Scholar

Baryga A., Połeć B., Klasa A., Olejnik T.P., Application of Sugar Beet Pulp Digestate as a Soil Amendment in the Production of Energy Maize, Processes (2021), 9, 765. https://doi.org/10.3390/pr9050765 BarygaA. PołećB. KlasaA. OlejnikT.P. Application of Sugar Beet Pulp Digestate as a Soil Amendment in the Production of Energy Maize Processes 2021 9 765 https://doi.org/10.3390/pr9050765 10.3390/pr9050765 Search in Google Scholar

Bazin C., St-Pierre M., Hodouin D., Calibration of the perfect mixing model to a dry grinding mill, Powder Tech. 149, 2005, pp.93–105; DOI: 10.1016/j.powtec.2004.11.014. BazinC. St-PierreM. HodouinD. Calibration of the perfect mixing model to a dry grinding mill Powder Tech. 149 2005 93 105 10.1016/j.powtec.2004.11.014 Open DOISearch in Google Scholar

Kryszak D., Bartoszewicz A., Szufa S., Piersa P., Obraniak A., Olejnik T.P., Modeling of Transport of Loose Products with the Use of the Non-Grid Method of Discrete Elements (DEM), Processes (2020), 8, 1489. KryszakD. BartoszewiczA. SzufaS. PiersaP. ObraniakA. OlejnikT.P. Modeling of Transport of Loose Products with the Use of the Non-Grid Method of Discrete Elements (DEM) Processes 2020 8 1489 10.3390/pr8111489 Search in Google Scholar

Siuda R., Kwiatek J., Szufa S., Obraniak A., Piersa P., Adrian Ł., Modrzewski R., Ławińska K., Siczek K., Olejnik T.P., Industrial Verification and Research Development of Lime–Gypsum Fertilizer Granulation Method, Minerals (2021), 11, 119. https://doi.org/10.3390/min11020119. SiudaR. KwiatekJ. SzufaS. ObraniakA. PiersaP. AdrianŁ. ModrzewskiR. ŁawińskaK. SiczekK. OlejnikT.P. Industrial Verification and Research Development of Lime–Gypsum Fertilizer Granulation Method Minerals 2021 11 119 https://doi.org/10.3390/min11020119. 10.3390/min11020119 Search in Google Scholar

Sobiecka E., Kołaciński Z., Rincón J. Ma., Szymański Ł., Olejnik T.P. “Coloured sintered glass-ceramics from hospital incineration fly ash”, Materials Letters, on-line, (2019), 252, 35–37, DOI: 10.1016/j.matlet.2019.05.047. SobieckaE. KołacińskiZ. RincónJ. Ma. SzymańskiŁ. OlejnikT.P. Coloured sintered glass-ceramics from hospital incineration fly ash Materials Letters on-line, 2019 252 35 37 10.1016/j.matlet.2019.05.047 Open DOISearch in Google Scholar

Einav I., Breakage mechanics - Part I: Theory, Jour. of the Mechanics and Physics of Solids 55 (2007) pp.1274–1297; doi: 10.1016/j.jmps.2006.11.003. EinavI. Breakage mechanics - Part I: Theory Jour. of the Mechanics and Physics of Solids 55 2007 1274 1297 10.1016/j.jmps.2006.11.003 Open DOISearch in Google Scholar

Olejnik T. P., Analysis of the breakage rate function for selected process parameters in quartzite milling, Chem. Process Eng., 2012, 33 (1), 117–129. OlejnikT. P. Analysis of the breakage rate function for selected process parameters in quartzite milling Chem. Process Eng. 2012 33 1 117 129 10.2478/v10176-012-0011-4 Search in Google Scholar

Hejft R., Obidziński S., Pressure agglomeration of materials of plant origin – pelletizing and briquetting (part one), Journal of Research and Applications in Agricultural Engineering, 1/2014, Vol. 59(1), 44–47. HejftR. ObidzińskiS. Pressure agglomeration of materials of plant origin – pelletizing and briquetting (part one) Journal of Research and Applications in Agricultural Engineering 1/ 2014 59 1 44 47 Search in Google Scholar

Skonecki S., Potręć M., Wpływ wilgotności na ciśnieniowe zagęszczanie biomasy roślinnej (in Polish), Zeszyty Problemowe Postępów Nauk Rolniczych, 2010, 546, 341–346. SkoneckiS. PotręćM. Wpływ wilgotności na ciśnieniowe zagęszczanie biomasy roślinnej (in Polish) Zeszyty Problemowe Postępów Nauk Rolniczych 2010 546 341 346 Search in Google Scholar

Skonecki S., Kulig R., Łysiak G., Models of pressure compaction and their application for wheat meal. Int. Agrophys., 2014, 28, 125–130. SkoneckiS. KuligR. ŁysiakG. Models of pressure compaction and their application for wheat meal Int. Agrophys. 2014 28 125 130 10.2478/intag-2013-0035 Search in Google Scholar

Shaw M.D., Feedstock and process variables influencing biomass densification. A Thesis, Department of Agricultural and Bioresource Engineering, University of Saskatchewan, 2008, Saskatoon, Saskatchewan, Canada. ShawM.D. Feedstock and process variables influencing biomass densification A Thesis, Department of Agricultural and Bioresource Engineering, University of Saskatchewan 2008 Saskatoon, Saskatchewan, Canada Search in Google Scholar

Niedziolka I., Szymanek M., Zuchniarz A., Zawiślak K., Characteristics of pellets produced from selected plants mixes, TEKA Kom. Mot. Energ. Roln. – OL PAN, 2008, Vol. 8, 157–162. NiedziolkaI. SzymanekM. ZuchniarzA. ZawiślakK. Characteristics of pellets produced from selected plants mixes TEKA Kom. Mot. Energ. Roln. – OL PAN 2008 8 157 162 Search in Google Scholar

Kaliyan N., Morey R.V., Factors affecting strength and durability of densified biomass products, Biomass Bioenerg. 33, 2009, 337–359. KaliyanN. MoreyR.V. Factors affecting strength and durability of densified biomass products Biomass Bioenerg 33 2009 337 359 10.1016/j.biombioe.2008.08.005 Search in Google Scholar

Szpryngiel M., Kraszkiewicz A., Kachel-Jakubowska M., Niedziólka I., Ocena gęstości usypowej i energochłonności produkcji peletów w peleciarce z dwustronną matrycą płaską (in Polish), Inżynieria Rolnicza, 2011, 6 (131), 215–222. SzpryngielM. KraszkiewiczA. Kachel-JakubowskaM. NiedziólkaI. Ocena gęstości usypowej i energochłonności produkcji peletów w peleciarce z dwustronną matrycą płaską (in Polish) Inżynieria Rolnicza 2011 6 131 215 222 Search in Google Scholar

Niedziółka I., Szpryngiel M., Magdalena Kachel-Jakubowska M., Kraszkiewicz A., Zawiślak K., Sobczak P., Nadulski R., Assessment of the energetic and mechanical properties of pellets produced from agricultural biomass, Renewable Energy, 2015, 76, 312–317. NiedziółkaI. SzpryngielM. Magdalena Kachel-JakubowskaM. KraszkiewiczA. ZawiślakK. SobczakP. NadulskiR. Assessment of the energetic and mechanical properties of pellets produced from agricultural biomass Renewable Energy 2015 76 312 317 10.1016/j.renene.2014.11.040 Search in Google Scholar

Miranda T., Montero I., Sepúlveda F.J., Arranz J.I., Rojas C.V., Nogales S., A review of pellets from different sources, Materials, 2015, 8, 1413–1427. MirandaT. MonteroI. SepúlvedaF.J. ArranzJ.I. RojasC.V. NogalesS. A review of pellets from different sources Materials 2015 8 1413 1427 10.3390/ma8041413550705228788009 Search in Google Scholar

Azargohar, R.; Nanda, S.; Dalai, A.K., Densification of agricultural wastes and forest residues: A review on influential parameters and treatments, Recent Adv. Biofuels Bioenergy Util., 2018, 27–51. AzargoharR. NandaS. DalaiA.K. Densification of agricultural wastes and forest residues: A review on influential parameters and treatments Recent Adv. Biofuels Bioenergy Util. 2018 27 51 10.1007/978-981-13-1307-3_2 Search in Google Scholar

Peng, J.; Bi, X.T.; Lim, C.J.; Peng, H.; Kim, C.S.; Jia, D.; Zuo, H., Sawdust as an effective binder for making torrefied pellets. Appl. Energy, 2015, 157, 491–498. PengJ. BiX.T. LimC.J. PengH. KimC.S. JiaD. ZuoH. Sawdust as an effective binder for making torrefied pellets Appl. Energy 2015 157 491 498 10.1016/j.apenergy.2015.06.024 Search in Google Scholar

Harun, N.Y.; Parvez, A.M.; Afzal, M.T., Process and energy analysis of pelleting agricultural and woody biomass blends, Sustainability, 2018, 10, 1–9. HarunN.Y. ParvezA.M. AfzalM.T. Process and energy analysis of pelleting agricultural and woody biomass blends Sustainability 2018 10 1 9 10.3390/su10061770 Search in Google Scholar

Liu, Z.; Mi, B.; Jiang, Z.; Fei, B.; Cai, Z.; Liu, X., Improved bulk density of bamboo pellets as biomass for energy production, Renewable Energy, 2016, 86, 1–7. LiuZ. MiB. JiangZ. FeiB. CaiZ. LiuX. Improved bulk density of bamboo pellets as biomass for energy production Renewable Energy 2016 86 1 7 10.1016/j.renene.2015.08.011 Search in Google Scholar

García, R.; Gil, M.V.; Rubiera, F.; Pevida, C., Pelletization of wood and alternative residual biomass blends for producing industrial quality pellets, Fuel, 2019, 251, 739–753. GarcíaR. GilM.V. RubieraF. PevidaC. Pelletization of wood and alternative residual biomass blends for producing industrial quality pellets Fuel 2019 251 739 753 10.1016/j.fuel.2019.03.141 Search in Google Scholar

Arranz J.I., Analysis of densified of the combination from different biomass waste. Doctoral Thesis, University of Extremadura, 2011, Badajoz, Spain. ArranzJ.I. Analysis of densified of the combination from different biomass waste Doctoral Thesis, University of Extremadura 2011 Badajoz, Spain Search in Google Scholar

Miranda T., Arranz J.I., Montero I., Román S., Rojas C.V., Nogales S., Characterization and combustion of olive pomace and forest residue pellets, Fuel Processing Technology, 2012, 103, 91–96. MirandaT. ArranzJ.I. MonteroI. RománS. RojasC.V. NogalesS. Characterization and combustion of olive pomace and forest residue pellets Fuel Processing Technology 2012 103 91 96 10.1016/j.fuproc.2011.10.016 Search in Google Scholar

Chou C.S., Sheau-Horng Lin S.H., Wen-Chung Lu W.C., Preparation and characterization of solid biomass fuel made from rice straw and rice bran, Fuel Processing Technology, 2009, 90, 980–987. ChouC.S. Sheau-Horng LinS.H. Wen-Chung LuW.C. Preparation and characterization of solid biomass fuel made from rice straw and rice bran Fuel Processing Technology 2009 90 980 987 10.1016/j.fuproc.2009.04.012 Search in Google Scholar

Nasrin, A.B., Ma A.N., Mohammad S., Rohaya M.H., Azali A., Zainal Z., Oil palm biomass as potential substitution raw materials for commercial biomass briquettes production, American Journal of Applied Sciences, 2008, 5, 179–183. NasrinA.B. MaA.N. MohammadS. RohayaM.H. AzaliA. ZainalZ. Oil palm biomass as potential substitution raw materials for commercial biomass briquettes production American Journal of Applied Sciences 2008 5 179 183 10.3844/ajassp.2008.179.183 Search in Google Scholar

Celma R., Cuadros F., López-Rodríguez F., Characterization of pellets from industrial tomato residues, Food Bioprod Process, 2008, 90, Issue 4, 700–706. CelmaR. CuadrosF. López-RodríguezF. Characterization of pellets from industrial tomato residues Food Bioprod Process 2008 90 4 700 706 10.1016/j.fbp.2012.01.007 Search in Google Scholar

Stahl M., Berghel J., Energy efficient pilot-scale production of wood fuel pellets made from a raw material mix including sawdust and rapeseed cake, Biomass and Bioenergy, 35 (2011), 4849–4854. StahlM. BerghelJ. Energy efficient pilot-scale production of wood fuel pellets made from a raw material mix including sawdust and rapeseed cake Biomass and Bioenergy 35 2011 4849 4854 10.1016/j.biombioe.2011.10.003 Search in Google Scholar

Nielsen N.P.K., Importance of raw material properties in wood pellet production - effects of differences in wood properties for the energy requirements of pelletizing and the pellet quality. Forest & Landscape Denmark, Faculty of Life Sciences, University of Copenhagen, Copenhagen, 2009. NielsenN.P.K. Importance of raw material properties in wood pellet production - effects of differences in wood properties for the energy requirements of pelletizing and the pellet quality Forest & Landscape Denmark, Faculty of Life Sciences, University of Copenhagen Copenhagen 2009 Search in Google Scholar

Öhman, M., Boman, C., Hedman, H. & Eklund, R., Residential Combustion Performance of Pelletized Hydrolysis Residue from Lignocellulosic Ethanol production. Energy & fuels, 2006, Vol. 20, pp. 1298–1304. ÖhmanM. BomanC. HedmanH. EklundR. Residential Combustion Performance of Pelletized Hydrolysis Residue from Lignocellulosic Ethanol production Energy & fuels 2006 20 1298 1304 10.1021/ef058030g Search in Google Scholar

Stolarski M., Wykorzystanie biomasy do produkcji peletu (in Polish), Czysta Energia 55/2006. s.28. StolarskiM. Wykorzystanie biomasy do produkcji peletu (in Polish) Czysta Energia 55 2006 s.28 Search in Google Scholar

Wandrasz J.W. Wandrasz A.J., Paliwa formowane (in Polish), Wyd. Seidel-Przywecki, Warszawa 2006. WandraszJ.W. WandraszA.J. Paliwa formowane (in Polish) Wyd. Seidel-Przywecki Warszawa 2006 Search in Google Scholar

Wandrasz J.W., Paliwa, paliwa formowane, formowanie paliw (in Polish). Praca zb. pod red. Wandrasz J.W. Termiczne unieszkodliwianie odpadów. Restrukturyzacja procesów termicznych (in Polish), Wyd. PZITS Poznań 2007, s. 105–112. WandraszJ.W. Paliwa, paliwa formowane, formowanie paliw (in Polish) Praca zb. pod red. WandraszJ.W. Termiczne unieszkodliwianie odpadów. Restrukturyzacja procesów termicznych (in Polish) Wyd. PZITS Poznań 2007 105 112 Search in Google Scholar

Obidzinski S., Pelletisation of biomass waste with potato pulp content, International Agrophisics, 2014, Vol. 28 (1), 85–91. ObidzinskiS. Pelletisation of biomass waste with potato pulp content International Agrophisics 2014 28 1 85 91 10.2478/intag-2013-0030 Search in Google Scholar

Obidzinski S., Utilization of post-production waste of potato pulp and buckwheat hulls in the form of pellets, Polish Journal of Environmental Studies, Vol. 23 (2014), 1391–1395. ObidzinskiS. Utilization of post-production waste of potato pulp and buckwheat hulls in the form of pellets Polish Journal of Environmental Studies 23 2014 1391 1395 Search in Google Scholar

Obidziński S., Dołżyńska M., Badanie procesu zagęszczania odpadów zbożowych (in Polish), Przemysł Chemiczny, R. 96, nr 11 (2017), 1000–1003. ObidzińskiS. DołżyńskaM. Badanie procesu zagęszczania odpadów zbożowych (in Polish) Przemysł Chemiczny 96 11 2017 1000 1003 10.15199/62.2017.11.28 Search in Google Scholar

Obidziński S., Dołżyńska M., Kowczyk-Sadowy M., Jadwisieńczak K., Sobczak P., Densification and fuel properties of onion husks, Energies, 2019, 12, 4687, DOI: 10.3390/en12244687. ObidzińskiS. DołżyńskaM. Kowczyk-SadowyM. JadwisieńczakK. SobczakP. Densification and fuel properties of onion husks Energies 2019 12 4687 10.3390/en12244687 Open DOISearch in Google Scholar

Dołżyńska M., Obidziński S., Kowczyk-Sadowy M., Krasowska M., Densification and combustion of cherry stones, Energies, 2019, 12, 3042, DOI: 10.3390/en12163042. DołżyńskaM. ObidzińskiS. Kowczyk-SadowyM. KrasowskaM. Densification and combustion of cherry stones Energies 2019 12 3042 10.3390/en12163042 Open DOISearch in Google Scholar

Obidziński S., Dołżyńska M., Puchlik M., Pelletization of post-harvest tobacco waste and investigation of fuel gas emissions from pellet combustion, Energies, 2020, 13, 6002, DOI: 10.3390/en13226002. ObidzińskiS. DołżyńskaM. PuchlikM. Pelletization of post-harvest tobacco waste and investigation of fuel gas emissions from pellet combustion Energies 2020 13 6002 10.3390/en13226002 Open DOISearch in Google Scholar

Dołżyńska M., Obidziński S., Piekut J., Yildiz G., The utilization of plum stones for pellet production and investigation of post-combustion flue gas emissions, Energies, 2020, 13, 5107, DOI: 10.3390/en13195107. DołżyńskaM. ObidzińskiS. PiekutJ. YildizG. The utilization of plum stones for pellet production and investigation of post-combustion flue gas emissions Energies 2020 13 5107 10.3390/en13195107 Open DOISearch in Google Scholar

Wilaipon P., Trirattanasirichai K., Tangchaichit K., The effects of moderate die pressure on banana-peel briquettes, The 2nd International Conference on Thermal Engineering and Applications, 2006, United Arab Emirates. WilaiponP. TrirattanasirichaiK. TangchaichitK. The effects of moderate die pressure on banana-peel briquettes The 2nd International Conference on Thermal Engineering and Applications 2006 United Arab Emirates Search in Google Scholar

Wilaipon P., Physical characteristics of maize cob briquette under moderate die pressure, American Journal of Applied Sciences, 2007, 4, n.12, 995–998. WilaiponP. Physical characteristics of maize cob briquette under moderate die pressure American Journal of Applied Sciences 2007 4 12 995 998 10.3844/ajassp.2007.995.998 Search in Google Scholar

Wilaipon P., The effects of briquetting pressure on banana-peel briquette and the banana waste in northern Thailand, American Journal of Applied Sciences, 2009, 6, 167–171. WilaiponP. The effects of briquetting pressure on banana-peel briquette and the banana waste in northern Thailand American Journal of Applied Sciences 2009 6 167 171 10.3844/ajassp.2009.167.171 Search in Google Scholar

Oliveira Maia B., Souza O., Marangoni C., Hotza D., Oliveira A.P., Sellin N., Production and characterization of fuel briquettes from banana leaves waste, Chemical Engineering Transactions, 2014, 37, 439–444. Oliveira MaiaB. SouzaO. MarangoniC. HotzaD. OliveiraA.P. SellinN. Production and characterization of fuel briquettes from banana leaves waste Chemical Engineering Transactions 2014 37 439 444 Search in Google Scholar

Sellin N., de Oliveira B.G., Marangoni C., Souza O., de Oliveira A.P.N., de Oliveira T.M.N., Use of Banana culture waste to produce briquettes, Chemical Engineering Transactions, 2013, 32, 349–354, DOI: 10.3303/CET1332059 SellinN. de OliveiraB.G. MarangoniC. SouzaO. de OliveiraA.P.N. de OliveiraT.M.N. Use of Banana culture waste to produce briquettes Chemical Engineering Transactions 2013 32 349 354 10.3303/CET1332059 Open DOISearch in Google Scholar

Szyszlak-Bargłowicz J., Słowik T., Zając G., Blicharz-Kania A., Zdybel B., Andrejko D., Obidziński S., Energy parameters of Miscanthus biomass pellets supplemented with copra meal in terms of energy consumption during the pressure agglomeration process, Energies 2021, 14 (14), 4167, DOI: 10.3390/en14144167. Szyszlak-BargłowiczJ. SłowikT. ZającG. Blicharz-KaniaA. ZdybelB. AndrejkoD. ObidzińskiS. Energy parameters of Miscanthus biomass pellets supplemented with copra meal in terms of energy consumption during the pressure agglomeration process Energies 2021 14 14 4167 10.3390/en14144167 Open DOISearch in Google Scholar

Woo D-G., Kim S.H., Kim T.H., Solid Fuel Characteristics of Pellets Comprising Spent Coffee Grounds and Wood Powder, Energies 2021, 14 (2), 371, DOI: 103390/en14020371. WooD-G. KimS.H. KimT.H. Solid Fuel Characteristics of Pellets Comprising Spent Coffee Grounds and Wood Powder Energies 2021 14 2 371 103390/en14020371 Open DOISearch in Google Scholar

Obraniak A., Gluba T., Ławińska K., Derbiszewski B. Minimisation of environmental effects related with storing fly ash from combustion of hard coal, Environment Protection Engineering 2018, Vol. 44 (4), pp. 177–189. DOI: 10.5277/epe180412. ObraniakA. GlubaT. ŁawińskaK. DerbiszewskiB. Minimisation of environmental effects related with storing fly ash from combustion of hard coal Environment Protection Engineering 2018 44 4 177 189 10.5277/epe180412 Open DOISearch in Google Scholar

Lawinska K., Serweta W., Modrzewski R. Studies on water absorptivity and desorptivity of tannery shavings-based composites with mineral additives, Przemysł Chemiczny, 2019, 98 (1), pp.106–109. LawinskaK. SerwetaW. ModrzewskiR. Studies on water absorptivity and desorptivity of tannery shavings-based composites with mineral additives Przemysł Chemiczny 2019 98 1 106 109 Search in Google Scholar

Lawinska K., Modrzewski R., Serweta W. Tannery Shavings and Mineral Additives as a Basis of New Composite Materials, Fibres & Textiles in Eastern Europe 2019, 27, 5(137), pp.89–93. DOI: 10.5604/01.3001.0013.2906. LawinskaK. ModrzewskiR. SerwetaW. Tannery Shavings and Mineral Additives as a Basis of New Composite Materials Fibres & Textiles in Eastern Europe 2019 27 5(137) 89 93 10.5604/01.3001.0013.2906 Open DOISearch in Google Scholar

Ławińska K., Modrzewski R., Obraniak A. Comparison of Granulation Methods for Tannery Shavings. FIBRES & TEXTILES in Eastern Europe 2020, 28, 5(143), pp. 119–123. DOI: 10.5604/01.3001.0014.2396. ŁawińskaK. ModrzewskiR. ObraniakA. Comparison of Granulation Methods for Tannery Shavings FIBRES & TEXTILES in Eastern Europe 2020 28 5(143) 119 123 10.5604/01.3001.0014.2396 Open DOISearch in Google Scholar

Ławinska K., Szufa S., Modrzewski R., Obraniak A., Wężyk T., Rostocki A., Olejnik T., Obtaining Granules from Waste Tannery Shavings and Mineral Additives by Wet Pulp Granulation, Molecules 2020, 25, 5419, DOI: 103390/molecules25225419. ŁawinskaK. SzufaS. ModrzewskiR. ObraniakA. WężykT. RostockiA. OlejnikT. Obtaining Granules from Waste Tannery Shavings and Mineral Additives by Wet Pulp Granulation Molecules 2020 25 5419 103390/molecules25225419 Open DOISearch in Google Scholar

Ławińska K., Obraniak A., Modrzewski R., Granulation Process of Waste Tanning Savings, Fibers & Textiles In Eastern Europe 2019, 27, 2 (134). ŁawińskaK. ObraniakA. ModrzewskiR. Granulation Process of Waste Tanning Savings Fibers & Textiles In Eastern Europe 2019 27 2 (134) 10.5604/01.3001.0012.9994 Search in Google Scholar

Ławińska K., Szufa S., Obraniak A., Olejnik T., Siuda R., Kwiatek J., Ogrodowczyk D., Disc Granulation Process of Carbonation Lime Mud as a Method of Post-Production Waste Management, Energies 2020, 13, 3419; DOI: 10.3390/en13133419. ŁawińskaK. SzufaS. ObraniakA. OlejnikT. SiudaR. KwiatekJ. OgrodowczykD. Disc Granulation Process of Carbonation Lime Mud as a Method of Post-Production Waste Management Energies 2020 13 3419 10.3390/en13133419 Open DOISearch in Google Scholar

Siuda R., Kwiatek J., Szufa S., Obraniak A., Piersa P., Adrian Ł., Modrzewski R., Ławińska K., Siczek K., Olejnik T.P., Industrial Verification and Research Development of Lime–Gypsum Fertilizer Granulation Method, Minerals 2021, 11, 119, DOI: 10.3390/min11020119. SiudaR. KwiatekJ. SzufaS. ObraniakA. PiersaP. AdrianŁ. ModrzewskiR. ŁawińskaK. SiczekK. OlejnikT.P. Industrial Verification and Research Development of Lime–Gypsum Fertilizer Granulation Method Minerals 2021 11 119 10.3390/min11020119 Open DOISearch in Google Scholar

Ławińska K., Gendaszewska D., Grzesiak E., Lasoń-Rydel M., Obraniak A. Otoczkowanie nasion strączkowych hydrolizatami kolagenu z odpadów garbarskich (in Polish). Przemysł Chemiczny 96/9, (2017), DOI: 10.15199/62.2017.9.11. ŁawińskaK. GendaszewskaD. GrzesiakE. Lasoń-RydelM. ObraniakA. Otoczkowanie nasion strączkowych hydrolizatami kolagenu z odpadów garbarskich (in Polish) Przemysł Chemiczny 96 9 2017 10.15199/62.2017.9.11 Open DOISearch in Google Scholar

Ławińska K., Gendaszewska D., Grzesiak E., Jagiełło J., Obraniak A. Zagospodarowanie odpadów garbarskich w nasiennictwie (in Polish). Przemysł Chemiczny 96/11 (2017), 2344–2347, DOI: 10.15199/62.2017.11.24. ŁawińskaK. GendaszewskaD. GrzesiakE. JagiełłoJ. ObraniakA. Zagospodarowanie odpadów garbarskich w nasiennictwie (in Polish) Przemysł Chemiczny 96 11 2017 2344 2347 10.15199/62.2017.11.24 Open DOISearch in Google Scholar

Obraniak A. Wpływ nawilżania roztworem skrobi ziemniaczanej na mechanizmy granulacji talerzowej (in Polish). Przemysł Chemiczny 96/11 (2017), 2339–2343, DOI: 10.15199/62.2017.11.23. ObraniakA. Wpływ nawilżania roztworem skrobi ziemniaczanej na mechanizmy granulacji talerzowej (in Polish) Przemysł Chemiczny 96 11 2017 2339 2343 10.15199/62.2017.11.23 Open DOISearch in Google Scholar

Bergman P.C.A., Boersma A.R., Zwart R.W.R., Kiel J.H.A., Torrefaction of biomass existing coal-fired power stations. ECN publication 2005, ECN-C-05-013, Netherlands. BergmanP.C.A. BoersmaA.R. ZwartR.W.R. KielJ.H.A. Torrefaction of biomass existing coal-fired power stations ECN publication 2005 ECN-C-05-013, Netherlands Search in Google Scholar

Jakubiak, M., Kordylewski, W., Toryfikacja biomasy (in Polish). Archiwum Spalania, Vol. 10, nr 1–2, Polski Instytut Spalania, 2010, pp. 11–25 JakubiakM. KordylewskiW. Toryfikacja biomasy (in Polish) Archiwum Spalania 10 1–2 Polski Instytut Spalania 2010 11 25 Search in Google Scholar

Kopczyński, M., i J. Zuwała., Biomasa toryfikowana – nowe paliwo dla energetyki (in Polish). Chemik, t. 67, 6, Stowarzyszenie Inżynierów i Techników Przemysłu Chemicznego, Zakład Wydawniczy CHEMPRESS-SITPChem, 2013, s. 540–51. KopczyńskiM. ZuwałaJ. Biomasa toryfikowana – nowe paliwo dla energetyki (in Polish) Chemik, t. 67, 6, Stowarzyszenie Inżynierów i Techników Przemysłu Chemicznego, Zakład Wydawniczy CHEMPRESS-SITPChem 2013 540 51 Search in Google Scholar

Kopczyński M., Zuwała J., Toryfikacja biomasy drogą do eliminacji barier technologicznych wielkoskalowego jej współspalania (in Polish). Polityka Energetyczna, Tom 16, Zeszyt 4, Instytut Gospodarki Surowcami Mineralnymi i Energią PAN, 2013, pp. 271–284 KopczyńskiM. ZuwałaJ. Toryfikacja biomasy drogą do eliminacji barier technologicznych wielkoskalowego jej współspalania (in Polish) Polityka Energetyczna 16 4 Instytut Gospodarki Surowcami Mineralnymi i Energią PAN 2013 271 284 Search in Google Scholar

Kratofil M., Zarzycki R., Kobyłecki R., Bis Z., Analiza procesu toryfikacji biomasy (in Polish). Zeszyty Naukowe Politechniki Rzeszowskiej. Mechanika, 2015, Tom XXXII, Zeszyt 87 (291), nr 2, pp. 119–126 KratofilM. ZarzyckiR. KobyłeckiR. BisZ. Analiza procesu toryfikacji biomasy (in Polish) Zeszyty Naukowe Politechniki Rzeszowskiej. Mechanika 2015 XXXII 87 (291), nr 2, 119 126 10.7862/rm.2015.12 Search in Google Scholar

Szufa, S., Piersa, P., Adrian Ł., Czerwińska J., Lewandowski A., Lewandowska W., Sielski J., Dzikuć M., Wróbel M., Jewiarz M., Knapczyk A., Sustainable Drying and Torrefaction Processes of Miscanthus for Use as a Pelletized Solid Biofuel and Biocarbon-Carrier for Fertilizers. Molecules 2021, 26, 1014, DOI: 10.3390/molecules26041014 SzufaS. PiersaP. AdrianŁ. CzerwińskaJ. LewandowskiA. LewandowskaW. SielskiJ. DzikućM. WróbelM. JewiarzM. KnapczykA. Sustainable Drying and Torrefaction Processes of Miscanthus for Use as a Pelletized Solid Biofuel and Biocarbon-Carrier for Fertilizers Molecules 2021 26 1014 10.3390/molecules26041014791856033672961 Open DOISearch in Google Scholar

Szufa S., Use of superheated steam in the process of biomass torrefaction. Przemysł Chemiczny 2020, 99, 1797–1801, DOI: 10.15199/62.2020.12.22 SzufaS. Use of superheated steam in the process of biomass torrefaction Przemysł Chemiczny 2020 99 1797 1801 10.15199/62.2020.12.22 Open DOISearch in Google Scholar

Piersa P., Szufa S., Czerwińska J., Ünyay H., Adrian Ł., Wielgosinski G., Obraniak A., Lewandowska W., Marczak-Grzesik M., Dzikuć M., Romanowska-Duda Z., Olejnik T.P., Pine Wood and Sewage Sludge Torrefaction Process for Production Renewable Solid Biofuels and Biochar as Carbon Carrier for Fertilizers. Energies 2021, 14, 8176, DOI: 10.3390/en14238176 PiersaP. SzufaS. CzerwińskaJ. ÜnyayH. AdrianŁ. WielgosinskiG. ObraniakA. LewandowskaW. Marczak-GrzesikM. DzikućM. Romanowska-DudaZ. OlejnikT.P. Pine Wood and Sewage Sludge Torrefaction Process for Production Renewable Solid Biofuels and Biochar as Carbon Carrier for Fertilizers Energies 2021 14 8176 10.3390/en14238176 Open DOISearch in Google Scholar

Romanowska-Duda Z., Szufa S., Grzesik M., Piotrowski K., Janas R., The Promotive Effect of Cyanobacteria and Chlorella sp. Foliar Biofertilization on Growth and Metabolic Activities of Willow (Salix viminalis L.) Plants as Feedstock Production, Solid Biofuel and Biochar as C Carrier for Fertilizers via Torrefaction Process. Energies 2021, 14, 5262, DOI: 10.3390/en14175262 Romanowska-DudaZ. SzufaS. GrzesikM. PiotrowskiK. JanasR. The Promotive Effect of Cyanobacteria and Chlorella sp. Foliar Biofertilization on Growth and Metabolic Activities of Willow (Salix viminalis L.) Plants as Feedstock Production, Solid Biofuel and Biochar as C Carrier for Fertilizers via Torrefaction Process Energies 2021 14 5262 10.3390/en14175262 Open DOISearch in Google Scholar

Szufa S., Piersa P., Adrian Ł., Sielski J., Grzesik M., Romanowska-Duda Z., Piotrowski K., Lewandowska W., Acquisition of Torrefied Biomass from Jerusalem Artichoke Grown in a Closed Circular System Using Biogas Plant Waste. Molecules 2020, 25, 3862. DOI: 10.3390/molecules25173862 SzufaS. PiersaP. AdrianŁ. SielskiJ. GrzesikM. Romanowska-DudaZ. PiotrowskiK. LewandowskaW. Acquisition of Torrefied Biomass from Jerusalem Artichoke Grown in a Closed Circular System Using Biogas Plant Waste Molecules 2020 25 3862 10.3390/molecules25173862750339432854284 Open DOISearch in Google Scholar

Szufa S., Wielgosiński G., Piersa P., Czerwińska J., Dzikuć M., Adrian Ł., Lewandowska W., Marczak M., Torrefaction of Straw from Oats and Maize for Use as a Fuel and Additive to Organic Fertilizers—TGA Analysis, Kinetics as Products for Agricultural Purposes. Energies 2020, 13, 2064, DOI: 10.3390/en13082064 SzufaS. WielgosińskiG. PiersaP. CzerwińskaJ. DzikućM. AdrianŁ. LewandowskaW. MarczakM. Torrefaction of Straw from Oats and Maize for Use as a Fuel and Additive to Organic Fertilizers—TGA Analysis, Kinetics as Products for Agricultural Purposes Energies 2020 13 2064 10.3390/en13082064 Open DOISearch in Google Scholar

Szufa S., Dzikuc M., Adrian L., Piersa P., Romanowska-Duda Z., Lewandowska W., Marczak M., Blaszczuk A., Piwowar A., Torrefaction of oat straw to use as solid biofuel, an additive to organic fertilizers for agriculture purposes and activated carbon - TGA analysis, kinetics. E3S Web Conference, 154 (2020) 02004, DOI: 10.1051/e3sconf/202015402004 SzufaS. DzikucM. AdrianL. PiersaP. Romanowska-DudaZ. LewandowskaW. MarczakM. BlaszczukA. PiwowarA. Torrefaction of oat straw to use as solid biofuel, an additive to organic fertilizers for agriculture purposes and activated carbon - TGA analysis, kinetics E3S Web Conference 154 2020 02004 10.1051/e3sconf/202015402004 Open DOISearch in Google Scholar

Szufa S., Adrian Ł., Piersa P., Romanowska-Duda Z., Grzesik M., Cebula A., Kowalczyk S., Experimental studies on energy crops torrefaction process using batch reactor to estimate torrefaction temperature and residence time. Renewable Energy Sources: Engineering, Technology, Innovation. Springer Proceedings in Energy, Springer Cham, 2018, p. 365–373, DOI: 10.1007/978-3-319-72371-6_35 SzufaS. AdrianŁ. PiersaP. Romanowska-DudaZ. GrzesikM. CebulaA. KowalczykS. Experimental studies on energy crops torrefaction process using batch reactor to estimate torrefaction temperature and residence time Renewable Energy Sources: Engineering, Technology, Innovation Springer Proceedings in Energy Springer Cham 2018 365 373 10.1007/978-3-319-72371-6_35 Open DOISearch in Google Scholar

Szufa S., Adrian Ł., Piersa P., Romanowska-Duda Z., Ratajczyk-Szufa J., Torrefaction process of millet and cane using batch reactor. Renewable Energy Sources: Engineering, Technology, Innovation. Springer Proceedings in Energy, Springer Cham, 2020, p. 371–379, DOI: 10.1007/978-3-030-13888-2_37 SzufaS. AdrianŁ. PiersaP. Romanowska-DudaZ. Ratajczyk-SzufaJ. Torrefaction process of millet and cane using batch reactor Renewable Energy Sources: Engineering, Technology, Innovation Springer Proceedings in Energy Springer Cham 2020 371 379 10.1007/978-3-030-13888-2_37 Open DOISearch in Google Scholar

Chen W-H., Lin B-J., Lin Y-Y., Chu Y-S., Aristotle T. Ubando A.T., Pau Loke Show P.L., Ong H.C., Chang J-S., Shih-Hsin Ho S-H., Culaba A.B., Pétrissans A., Pétrissans M., Progress in biomass torrefaction: Principles, applications and challenges. Progress in Energy and Combustion Science, 2021, Volume 82, 100887, DOI: 10.1016/j.pecs.2020.100887 ChenW-H. LinB-J. LinY-Y. ChuY-S. AristotleT. UbandoA.T. Pau Loke ShowP.L. OngH.C. ChangJ-S. Shih-Hsin HoS-H. CulabaA.B. PétrissansA. PétrissansM. Progress in biomass torrefaction: Principles, applications and challenges Progress in Energy and Combustion Science 2021 82 100887 10.1016/j.pecs.2020.100887 Open DOISearch in Google Scholar