Degradation Rates of Plastics in the Environment

PDF Publication Title:

Degradation Rates of Plastics in the Environment ( degradation-rates-plastics-the-environment )

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 017

ACS Sustainable Chemistry & Engineering pubs.acs.org/journal/ascecg Perspective Microbial Degradation of Plastics Used in Packaging Potable Water in Nigeria. Niger. Food J. 2013, 31 (2), 63−72. (119) Leroy, V.; Cancellieri, D.; Leoni, E. Thermal Degradation of Ligno-Cellulosic Fuels: DSC and TGA Studies. Thermochim. Acta 2006, 451 (1−2), 131−138. (120)Vieyra,H.;Aguilar-Meńdez,M.A.;SanMartín-Martínez,E. Study of Biodegradation Evolution during Composting of Poly- ethylene-Starch Blends Using Scanning Electron Microscopy. J. Appl. Polym. Sci. 2013, 127 (2), 845−853. (121)Adamcova,́D.;Radziemska,M.;Zloch,J.;Dvorǎćǩova,́H.; Elbl, J.; Kynicky,́ J.; Brtnicky,́ M.; Vaverkova,́ M. D. SEM Analysis and Degradation Behavior of Conventional and Bio-Based Plastics During Composting. Acta Univ. Agric. Silvic. Mendelianae Brun. 2018, 66 (2), 349−356. (122)Arauj́o,M.A.;Cunha,A.M.;Mota,M.ChangesonSurface Morphology of Corn Starch Blend Films. J. Biomed. Mater. Res., Part A 2010, 94, 720−729. (123) Müller, R.-J. Biodegradability of Polymers: Regulations and Methods for Testing. In Biopolymers Online; Steinbüchel, A., Ed.; Wiley-VCH: Weinheim, Germany, 2005. DOI: 10.1002/ 3527600035.bpola012. (124) Muthukumar, T.; Aravinthana, A.; Dineshram, R.; Venkatesan, R.; Doble, M. Biodegradation of Starch Blended High Density Polyethylene Using Marine Bacteria Associated with Biofilm Formation and Its Isolation Characterization. J. Microb. Biochem. Technol. 2014, 06 (03), 116−122, DOI: 10.4172/1948- 5948.1000131. (125) Lambert, S.; Wagner, M. Formation of Microscopic Particles during the Degradation of Different Polymers. Chemosphere 2016, 161, 510−517. (126)Matuchova,́M.;Nyávlt,J.DeterminationofLinearGrowth Rates of Crystals (I). Calculation of Linear Growth Rates of Individual Crystal Faces from Overall Rates. Krist. Tech. 1976, 11 (2), 149−161. (127) Tosin, M.; Weber, M.; Siotto, M.; Lott, C.; Degli-Innocenti, F. Laboratory Test Methods to Determine the Degradation of Plastics in Marine Environmental Conditions. Front. Microbiol. 2012, 3, 225 DOI: 10.3389/fmicb.2012.00225. (128) Yoshida, S.; Hiraga, K.; Takehana, T.; Taniguchi, I.; Yamaji, H.; Maeda, Y.; Toyohara, K.; Miyamoto, K.; Kimura, Y.; Oda, K. A Bacterium That Degrades and Assimilates Poly(Ethylene Tereph- thalate). Science 2016, 351 (6278), 1196−1199. (129) Muthukumar, T.; Aravinthan, A.; Lakshmi, K.; Venkatesan, R.; Vedaprakash, L.; Doble, M. Fouling and Stability of Polymers and Composites in Marine Environment. Int. Biodeterior. Biodegrad. 2011, 65 (2), 276−284. (130) Arkatkar, A.; Arutchelvi, J.; Bhaduri, S.; Uppara, P. V.; Doble, M. Degradation of Unpretreated and Thermally Pretreated Poly- propylene by Soil Consortia. Int. Biodeterior. Biodegrad. 2009, 63 (1), 106−111. (131) Rutkowska, M.; Heimowska, A.; Krasowska, K.; Janik, H. Biodegradability of Polyethylene Starch Blends in Sea Water. Polym. J. Environ. Stud. 2002, 11 (3), 267−271. (132) Muthukumar, T.; Aravinthan, A.; Mukesh, D. Effect of Environment on the Degradation of Starch and Pro-Oxidant Blended Polyolefins. Polym. Degrad. Stab. 2010, 95 (10), 1988−1993. (133) Borghei, M.; Karbassi, A.; Khoramnejadian, S.; Oromiehie, A.; Javid, A. H. Microbial Biodegradable Potato Starch Based Low Density Polyethylene. Afr. J. Biotechnol. 2010, 9 (26), 4075−4080. (134) Syranidou, E.; Karkanorachaki, K.; Amorotti, F.; Franchini, M.; Repouskou, E.; Kaliva, M.; Vamvakaki, M.; Kolvenbach, B.; Fava, F.; Corvini, P. F.-X.; et al. Biodegradation of Weathered Polystyrene Films in Seawater Microcosms. Sci. Rep. 2017, 7 (1), 17991. (135) Sudhakar, M.; Doble, M.; Murthy, P. S.; Venkatesan, R. Marine Microbe-Mediated Biodegradation of Low- and High-Density Polyethylenes. Int. Biodeterior. Biodegrad. 2008, 61 (3), 203−213. (136) Luzi, F.; Fortunati, E.; Puglia, D.; Petrucci, R.; Kenny, J. M.; Torre, L. Study of Disintegrability in Compost and Enzymatic Degradation of PLA and PLA Nanocomposites Reinforced with Cellulose Nanocrystals Extracted from Posidonia oceanica. Polym. Degrad. Stab. 2015, 121, 105−115. (137) Pelegrini, K.; Donazzolo, I.; Brambilla, V.; Grisa, A. M. C.; Piazza, D.; Zattera, A. J.; Brandalise, R. N. Degradation of PLA and PLA in Composites with Triacetin and Buriti Fiber after 600 Days in a SimulatedMarineEnvironment.J.Appl.Polym.Sci.2016,133(15), na. (138) Karamanlioglu, M.; Robson, G. D. The Influence of Biotic and Abiotic Factors on the Rate of Degradation of Poly(Lactic) Acid (PLA) Coupons Buried in Compost and Soil. Polym. Degrad. Stab. 2013, 98 (10), 2063−2071. (139) O’Brine, T.; Thompson, R. C. Degradation of Plastic Carrier Bags in the Marine Environment. Mar. Pollut. Bull. 2010, 60 (12), 2279−2283. (140) Abou-Zeid, D.-M.; Müller, R.-J.; Deckwer, W.-D. Degradation of Natural and Synthetic Polyesters under Anaerobic Conditions. J. Biotechnol. 2001, 86 (2), 113−126. (141) Ishigaki, T.; Sugano, W.; Nakanishi, A.; Tateda, M.; Ike, M.; Fujita, M. The Degradability of Biodegradable Plastics in Aerobic and Anaerobic Waste Landfill Model Reactors. Chemosphere 2004, 54 (3), 225−233. (142) Luo, S.; Netravali, A. N. A Study of Physical and Mechanical Properties of Poly(Hydroxybutyrate-co-hydroxyvalerate) during Com- posting. Polym. Degrad. Stab. 2003, 80 (1), 59−66. (143) Witt, U.; Müller, R. J.; Deckwer, W.-D. Biodegradation of Polyester Copolymers Containing Aromatic Compounds. J. Macro- mol. Sci., Part A: Pure Appl.Chem. 1995, 32 (4), 851−856. (144) Singh, G.; Kaur, N.; Bhunia, H.; Bajpai, P. K.; Mandal, U. K. Degradation Behaviors of Linear Low-Density Polyethylene and Poly(L-Lactic Acid) Blends. J. Appl. Polym. Sci. 2012, 124 (3), 1993− 1998. (145) Sharon, C.; Sharon, M. Studies on Biodegradation of Polyethylene Terephthalate: A Synthetic Polymer. J. Microbiol. Biotechnol. Res. 2017, 2 (2), 248−257. (146) Müller, R.-J.; Schrader, H.; Profe, J.; Dresler, K.; Deckwer, W.- D. Enzymatic Degradation of Poly(Ethylene Terephthalate): Rapid Hydrolyse Using a Hydrolase from T. fusca. Macromol. Rapid Commun. 2005, 26 (17), 1400−1405. (147) Sivan, A.; Szanto, M.; Pavlov, V. Biofilm Development of the Polyethylene-Degrading Bacterium Rhodococcus ruber. Appl. Microbiol. Biotechnol. 2006, 72 (2), 346−352. (148) Otake, Y.; Kobayashi, T.; Asabe, H.; Murakami, N.; Ono, K. Biodegradation of Low-Density Polyethylene, Polystyrene, Polyvinyl Chloride, and Urea Formaldehyde Resin Buried under Soil for over 32 Years. J. Appl. Polym. Sci. 1995, 56 (13), 1789−1796. (149) Chandra, R.; Rustgi, R. Biodegradation of Maleated Linear Low-Density Polyethylene and Starch Blends. Polym. Degrad. Stab. 1997, 56 (2), 185−202. (150) Arvanitoyannis, I.; Biliaderis, C. G.; Ogawa, H.; Kawasaki, N. Biodegradable Films Made from Low-Density Polyethylene (LDPE), Rice Starch and Potato Starch for Food Packaging Applications: Part 1. Carbohydr. Polym. 1998, 36 (2), 89−104. (151) Wool, R. P. The Science and Engineering of Polymer Composite Degradation. In Degradable Polymers: Principles and Applications; Scott, G., Gilead, D., Eds.; Springer Netherlands: Dordrecht, 1995; pp 138−152. DOI: 10.1007/978-94-011-0571-2_7. (152) Hao, Z.; Sun, M.; Ducoste, J. J.; Benson, C. H.; Luettich, S.; Castaldi, M. J.; Barlaz, M. A. Heat Generation and Accumulation in Municipal Solid Waste Landfills. Environ. Sci. Technol. 2017, 51 (21), 12434−12442. (153) Edge, M.; Hayes, M.; Mohammadian, M.; Allen, N. S.; Jewitt, T. S.; Brems, K.; Jones, K. Aspects of Poly(Ethylene Terephthalate) Degradation for Archival Life and Environmental Degradation. Polym. Degrad. Stab. 1991, 32 (2), 131−153. (154) Bernstein, R.; Derzon, D. K.; Gillen, K. T. Nylon 6.6 Accelerated Aging Studies: Thermal−Oxidative Degradation and Its Interaction with Hydrolysis. Polym. Degrad. Stab. 2005, 88 (3), 480− 488. https://dx.doi.org/10.1021/acssuschemeng.9b06635 3510 ACS Sustainable Chem. Eng. 2020, 8, 3494−3511

PDF Image | Degradation Rates of Plastics in the Environment

PDF Search Title:

Degradation Rates of Plastics in the Environment

Original File Name Searched:

acssuschemeng-9b06635.pdf

DIY PDF Search: Google It | Yahoo | Bing

Development of a solar powered Electric Ship The Electricship website originally started off as a project to develop a comprehensive renewable, affordable, modular electric ship... More Info

Modular Boat Hull Composite The case for a unsinkable, modular composite hybrid boat hull... More Info

MS Burgenstock Hybrid Electric Catamaran Lake Lucerne Unique shuttle servicing Lucerne to the Burgenstock Resort... More Info

Ground Power Unit GPU Powered by Lithium Ion Batteries The goal of the Ground Power Unit is to provide a readily accessible, modular, ready-to-power solution for remote power... More Info

CONTACT TEL: 608-238-6001 Email: greg@electricship.com (Standard Web Page)