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Bureau of Indian Standards (BIS): IS 10335:2016 - Tobacco and Tobacco Products - Glossary of Terms (Third Revision); New Delhi, India, 2016. Bureau of Indian Standards (BIS) IS 10335:2016 - Tobacco and Tobacco Products - Glossary of Terms (Third Revision) New Delhi, India 2016 Search in Google Scholar

Ganster, J. and H.-P. Fink: Cellulose and Cellulose Acetate; in: Bio-Based Plastics: Materials and Applications, edited by S. Kabasci, Fraunhofer-Institute for Environmental, Safety, and Energy Technology UMSICHT, Germany, 2014, pp. 35–592. DOI: 10.1002/9781118676646.ch3 GansterJ. FinkH.-P. Cellulose and Cellulose Acetate in: Bio-Based Plastics: Materials and Applications edited by KabasciS. Fraunhofer-Institute for Environmental, Safety, and Energy Technology UMSICHT Germany 2014 35 592 10.1002/9781118676646.ch3 Open DOISearch in Google Scholar

Zhou, X., X. Lin, K.L. White, S. Lin, H. Wu, S. Cao, L. Huang, and L. Chen: Effect of the Degree of Substitution on the Hydrophobicity of Acetylated Cellulose for Production of Liquid Marbles; Cellulose 23 (2016) 811–821. DOI: 10.1007/s10570-015-0856-z ZhouX. LinX. WhiteK.L. LinS. WuH. CaoS. HuangL. ChenL. Effect of the Degree of Substitution on the Hydrophobicity of Acetylated Cellulose for Production of Liquid Marbles Cellulose 23 2016 811 821 10.1007/s10570-015-0856-z Open DOISearch in Google Scholar

Puls, J., S.A. Wilson, and D. Hölter: Degradation of Cellulose-Acetate-Based Materials: A Review; J. Polym. Environ. 19 (2011) 152–165. DOI: 10.1007/s10924-010-0258-0 PulsJ. WilsonS.A. HölterD. Degradation of Cellulose-Acetate-Based Materials: A Review J. Polym. Environ. 19 2011 152 165 10.1007/s10924-010-0258-0 Open DOISearch in Google Scholar

Ho, L.C., D.D. Martin, and W.C. Lindemann: Inability of Microorganisms to Degrade Cellulose Acetate Reverse-Osmosis Membranes; Appl. Environ. Microbiol. 45 (1983), 418–427. DOI: 10.1128/aem.45.2.418-427.1983 HoL.C. MartinD.D. LindemannW.C. Inability of Microorganisms to Degrade Cellulose Acetate Reverse-Osmosis Membranes Appl. Environ. Microbiol. 45 1983 418 427 10.1128/aem.45.2.418-427.1983 24230216346192 Open DOISearch in Google Scholar

Komarek, R.J., R.M. Gardner, C.M. Buchanan, and S.C. Gedon: Biodegradation of Radiolabelled Cellulose Acetate and Cellulose Propionate; J. Appl. Polymer Sci. 50 (1993) 1739–1746. DOI: 10.1002/APP.1993.070501009 KomarekR.J. GardnerR.M. BuchananC.M. GedonS.C. Biodegradation of Radiolabelled Cellulose Acetate and Cellulose Propionate J. Appl. Polymer Sci. 50 1993 1739 1746 10.1002/APP.1993.070501009 Open DOISearch in Google Scholar

Buchanan, C.M., R.M. Gardner, and R.J. Komarek: Aerobic Biodegradation of Cellulose Acetate; J. Appl. Polymer Sci. 47 (1993) 1709–1719. DOI: 10.1002/app.1993.070471001 BuchananC.M. GardnerR.M. KomarekR.J. Aerobic Biodegradation of Cellulose Acetate J. Appl. Polymer Sci. 47 1993 1709 1719 10.1002/app.1993.070471001 Open DOISearch in Google Scholar

Gu, J.D., D.T. Eberiel, S.P. McCarthy, and R.A. Gross: Cellulose Acetate Biodegradability Upon Exposure to Simulated Aerobic Composting and Anaerobic Bioreactor Environments; J. Environ. Polym. Degr. 1 (1993) 143–153. DOI: 10.1007/BF01418207 GuJ.D. EberielD.T. McCarthyS.P. GrossR.A. Cellulose Acetate Biodegradability Upon Exposure to Simulated Aerobic Composting and Anaerobic Bioreactor Environments J. Environ. Polym. Degr. 1 1993 143 153 10.1007/BF01418207 Open DOISearch in Google Scholar

Bonanomi, G., G. Incerti, G. Cesarano, S.A. Gaglione, and V. Lanzotti: Cigarette Butt Decomposition and Associated Chemical Changes Assessed by 13C CPMAS NMR; PLOS ONE (2015) 1–16. DOI: 10.1371/journal.pone.0117393 BonanomiG. IncertiG. CesaranoG. GaglioneS.A. LanzottiV. Cigarette Butt Decomposition and Associated Chemical Changes Assessed by 13C CPMAS NMR PLOS ONE 2015 1 16 10.1371/journal.pone.0117393 430797925625643 Open DOISearch in Google Scholar

Bonanomi, G., G. Maisto, A. De Marco, G. Cesarano, M. Zotti, P. Mazzei, G. Libralato, A. Staropoli, A. Siciliano, F. De Filippis, A. La Storia, A. Piccolo, F. Vinale, A. Crasto, M. Guida, D. Ercolini, and G. Incerti: The Fate of Cigarette Butts in Different Environments: Decay Rate, Chemical Changes and Ecotoxi-city Revealed by a 5-Years Decomposition Experiment; Environ. Pollut. 261 (2020) 1–11. DOI: 10.1016/j.envpol.2020.114108 BonanomiG. MaistoG. De MarcoA. CesaranoG. ZottiM. MazzeiP. LibralatoG. StaropoliA. SicilianoA. De FilippisF. La StoriaA. PiccoloA. VinaleF. CrastoA. GuidaM. ErcoliniD. IncertiG. The Fate of Cigarette Butts in Different Environments: Decay Rate, Chemical Changes and Ecotoxi-city Revealed by a 5-Years Decomposition Experiment Environ. Pollut. 261 2020 1 11 10.1016/j.envpol.2020.114108 32044614 Open DOISearch in Google Scholar

Yadav, N. and M. Hakkarainen: Degradable or not? Cellulose Acetate as a Model for Complicated Interplay Between Structure, Environment and Degradation; Chemosphere 265 (2021) 128–731. DOI: 10.1016/j.chemosphere.2020.128731 YadavN. HakkarainenM. Degradable or not? Cellulose Acetate as a Model for Complicated Interplay Between Structure, Environment and Degradation Chemosphere 265 2021 128 731 10.1016/j.chemosphere.2020.128731 33127118 Open DOISearch in Google Scholar

International Organization for Standardization (ISO): ISO 14855-1:2012 Determination of the Ultimate Aerobic Biodegradability of Plastic Materials Under Controlled Composting Conditions – Method by Analysis of Evolved Carbon Dioxide – Part 1: General Method; ISO, Geneva, Switzerland, 2012. International Organization for Standardization (ISO) ISO 14855-1:2012 Determination of the Ultimate Aerobic Biodegradability of Plastic Materials Under Controlled Composting Conditions – Method by Analysis of Evolved Carbon Dioxide – Part 1: General Method ISO Geneva, Switzerland 2012 Search in Google Scholar

American Society for Testing and Materials (ASTM): ASTM D-5338:2015 Standard Test Method for Determining the Aerobic Biodegradation of Plastic Materials Under Controlled Composting Conditions, Incorporating Thermophilic Temperatures; ASTM, West Conshohocken, PA, USA. DOI: 10.1520/D5338-15R21 American Society for Testing and Materials (ASTM) ASTM D-5338:2015 Standard Test Method for Determining the Aerobic Biodegradation of Plastic Materials Under Controlled Composting Conditions, Incorporating Thermophilic Temperatures ASTM West Conshohocken, PA, USA 10.1520/D5338-15R21 Open DOISearch in Google Scholar

American Society for Testing and Materials (ASTM): ASTM D-6400:2019 Standard Specification for Labelling of Plastics Designed to be Aerobically Composted in Municipal or Industrial Facilities; ASTM, West Conshohocken, PA, USA. DOI: 10.1520/D6400-19 American Society for Testing and Materials (ASTM) ASTM D-6400:2019 Standard Specification for Labelling of Plastics Designed to be Aerobically Composted in Municipal or Industrial Facilities ASTM West Conshohocken, PA, USA 10.1520/D6400-19 Open DOISearch in Google Scholar

European Committee for Standardization (CEN): EN 13432:2000 Packaging — Requirements for Packaging Recoverable Through Composting and Biodegradation – Test Scheme and Evaluation Criteria for the Final Acceptance of Packaging; CEN, Brussels, Belgium, 2000. DOI: 10.31030/9010637 European Committee for Standardization (CEN) EN 13432:2000 Packaging — Requirements for Packaging Recoverable Through Composting and Biodegradation – Test Scheme and Evaluation Criteria for the Final Acceptance of Packaging CEN Brussels, Belgium 2000 10.31030/9010637 Open DOISearch in Google Scholar

Deutsches Institut für Normung (DIN): Bestimmung der vollständigen aeroben Bioabbaubarkeit von Kunststoff-Materialien unter den Bedingungen kontrollierter Kompostierung - Verfahren mittels Analyse des freigesetzten Kohlenstoffdioxides - Teil 1: Allgemeines Verfahren [Determination of the ultimate aerobic biodegradability of plastic materials under controlled composting conditions - Method by analysis of evolved carbon dioxide - Part 1: General method ]; DIN, Berlin, Germany, 2012. DOI: 10.31030/1939267 Deutsches Institut für Normung (DIN) Bestimmung der vollständigen aeroben Bioabbaubarkeit von Kunststoff-Materialien unter den Bedingungen kontrollierter Kompostierung - Verfahren mittels Analyse des freigesetzten Kohlenstoffdioxides - Teil 1: Allgemeines Verfahren [Determination of the ultimate aerobic biodegradability of plastic materials under controlled composting conditions - Method by analysis of evolved carbon dioxide - Part 1: General method ] DIN Berlin, Germany 2012 10.31030/1939267 Open DOISearch in Google Scholar

International Organization for Standardization (ISO): ISO 17088:2021 Plastics – Organic Recycling – Specifications for Compostable Plastics; ISO, Geneva, Switzerland, 2021. International Organization for Standardization (ISO) ISO 17088:2021 Plastics – Organic Recycling – Specifications for Compostable Plastics ISO Geneva, Switzerland 2021 Search in Google Scholar

European Committee for Standardization (CEN): EN ISO 14855-1:2012 Determination of the Ultimate Aerobic Biodegradability and Disintegration of Plastic Materials Under Controlled Composting Conditions. Method by Analysis of Evolved Carbon Dioxide; European Standards. European Committee for Standardization (CEN) EN ISO 14855-1:2012 Determination of the Ultimate Aerobic Biodegradability and Disintegration of Plastic Materials Under Controlled Composting Conditions. Method by Analysis of Evolved Carbon Dioxide European Standards Search in Google Scholar

International Organization for Standardization (ISO): ISO 17556:2019 Plastics — Determination of the Ultimate Aerobic Biodegradability in Soil by Measuring the Oxygen Demand in a Respirometer or the Amount of Carbon Dioxide Evolved; ISO, Geneva, Switzerland, 2019. International Organization for Standardization (ISO) ISO 17556:2019 Plastics — Determination of the Ultimate Aerobic Biodegradability in Soil by Measuring the Oxygen Demand in a Respirometer or the Amount of Carbon Dioxide Evolved ISO Geneva, Switzerland 2019 Search in Google Scholar

British Standards Institution (BSI): PAS 9017:2020 Plastics – Biodegradation of Polyolefin in an Open-Air Terrestrial Environment – Specification; The British Standards Institution, London, UK, 2020. British Standards Institution (BSI) PAS 9017:2020 Plastics – Biodegradation of Polyolefin in an Open-Air Terrestrial Environment – Specification The British Standards Institution London, UK 2020 Search in Google Scholar

Japanese Institute for Standardization (JIS): JIS K6953-1:2011 Determination of the Ultimate Aerobic Biodegradability of Plastic Materials Under Controlled Composting Conditions — Method by Analysis of Evolved Carbon Dioxide – Part 1: General Method; JSA, Tokyo, Japan, 2011. Japanese Institute for Standardization (JIS) JIS K6953-1:2011 Determination of the Ultimate Aerobic Biodegradability of Plastic Materials Under Controlled Composting Conditions — Method by Analysis of Evolved Carbon Dioxide – Part 1: General Method JSA Tokyo, Japan 2011 Search in Google Scholar

Bureau of Indian Standards (BIS): IS 5402 Part 1:2021: Microbiology of Food and Animal Feeding Stuffs — Horizontal Method for the Enumeration of Micro-Organisms — Colony-Count Technique at 30 °C; Bureau of Indian Standards, New Delhi, India, 2021. Bureau of Indian Standards (BIS) IS 5402 Part 1:2021: Microbiology of Food and Animal Feeding Stuffs — Horizontal Method for the Enumeration of Micro-Organisms — Colony-Count Technique at 30 °C Bureau of Indian Standards New Delhi, India 2021 Search in Google Scholar

Bureau of Indian Standards (BIS): IS 5403:1999: Method for Yeast and Mould Count of Foodstuffs and Animal Feeds; Bureau of Indian Standards, New Delhi, India, 1999. Bureau of Indian Standards (BIS) IS 5403:1999: Method for Yeast and Mould Count of Foodstuffs and Animal Feeds Bureau of Indian Standards New Delhi, India 1999 Search in Google Scholar

International Organization for Standardization (ISO): ISO 3308:2012. Routine Analytical Cigarette-Smoking Machine — Definitions and Standard Conditions; ISO, Geneva, Switzerland, 2012. International Organization for Standardization (ISO) ISO 3308:2012. Routine Analytical Cigarette-Smoking Machine — Definitions and Standard Conditions ISO Geneva, Switzerland 2012 Search in Google Scholar

International Organization for Standardization (ISO): ISO 17175:2012. Bidis — Determination of Total and Nicotine-Free Dry Particulate Matter Using Linear Routine Analytical Smoking Machine; ISO, Geneva, Switzerland, 2012. International Organization for Standardization (ISO) ISO 17175:2012. Bidis — Determination of Total and Nicotine-Free Dry Particulate Matter Using Linear Routine Analytical Smoking Machine ISO Geneva, Switzerland 2012 Search in Google Scholar

Kenney, J.F. and E.S. Keeping: Mathematics of Statistics, Part. 2; 2nd edition, Van Nostrand, Princeton, NJ, USA, 1951. KenneyJ.F. KeepingE.S. Mathematics of Statistics, Part. 2 2nd edition Van Nostrand Princeton, NJ, USA 1951 Search in Google Scholar

Hintersteiner, I., M. Himmelsbach, and W.W. Buchberger: Characterization and Quantitation of Polyolefin Microplastics in Personal-Care Products Using High-Temperature Gel-Permeation Chromatography; Anal. Bioanal. Chem. 407 (2015) 1253–1259. DOI: 10.1007/s00216-014-8318-2 HintersteinerI. HimmelsbachM. BuchbergerW.W. Characterization and Quantitation of Polyolefin Microplastics in Personal-Care Products Using High-Temperature Gel-Permeation Chromatography Anal. Bioanal. Chem. 407 2015 1253 1259 10.1007/s00216-014-8318-2 25410643 Open DOISearch in Google Scholar

Parani. K. and M. Sivasankari: Degradation of Tendu Leaf Extract Using Pleurotus djamor; Int. J. Recent Res. Aspects 6 (2019) 20–24. ParaniK. SivasankariM. Degradation of Tendu Leaf Extract Using Pleurotus djamor Int. J. Recent Res. Aspects 6 2019 20 24 Search in Google Scholar

Cerdia De-Tow: Speeding of Biodegradation; Available at https://www.cerdia.com/en/products-and-innovation.html Cerdia De-Tow Speeding of Biodegradation Available at https://www.cerdia.com/en/products-and-innovation.html Search in Google Scholar

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