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昆虫可消化泡沫塑料的发现 被引量:4

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作者 陈重光
出处 《科学启蒙》 2005年第3期15-15,共1页
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  • 1曹沁,林毅博,陈军,肖明.黄粉虫及其肠道微生物对聚氯乙烯的生物降解作用[J].微生物学通报,2020,47(2):390-400. 被引量:12
  • 2俞文灿.可降解塑料的应用、研究现状及其发展方向[J].中山大学研究生学刊(自然科学与医学版),2007,28(1):22-32. 被引量:36
  • 3Arnaud R, Dabin P, Lemaire J, et al. Photooxidation and biodegradation of commercial photodegradable polyethylenes[J]. Polymer Degradation and Stability. 1994, 46(2): 211-224.
  • 4Weiland M, Daro A, David C. Biodegradation of thermally oxidized polyethylene[J]. Polymer Degradation and Stability. 1995, 48(2): 275-289.
  • 5Koutny M, Sancelme M, Dabin C, et al. Acquired biodegradability of polyethylenes containing pro-oxidant additives[J ]. Polymer Degradation and Stability. 2006, 91(7): 1495-1503.
  • 6Yoshito Ohtake, Tomoko Kobayashi, Hitoshi Asabe, Nobunao Murakami K O. Oxidative degradation and molecular weight change of LDPE buried under bioactive soil for 32-37 years[J]. Journal of Applied Polymer Science. 1998, 70(9): 1643-1648.
  • 7Chandra R, Rustgi R. Biodegradation of maleated linear low-density polyethylene and starch blends[J]. Polymer Degradation and Stability. 1997, 56(2): 185-202.
  • 8Orhan Y, Buyukgungor H. Enhancement of biodegradability of disposable polyethylene in controlled biological soil[J]. International Biodeterioration & Biodegradation. 2000, 45(1-2): 49-55.
  • 9Albertsson A C, Barenstedt C, Karlsson S, et al. Degradation product pattern and morphology changes as means to differentiate abiotically and biotically aged degradable polyethylene[J]. Polymer. 1995, 36(16): 3075-3083.
  • 10El-shafei H A, Abd E N, Kansoh A L, et al. Biodegradation of disposable polyethylene by fungi and Streptomyces species[J]. Polymer Degradation and Stability. 1998, 62(2): 361-365.

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