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Degradation of polyethylene by a fungus, Penicillium simplicissimum YK

机译:真菌,Penicillium simplicissimum YK降解聚乙烯

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摘要

We isolated a strain of Penicillium simplicissimum, YK, for use in the biodegradation of polyethylene, characterizing the fungus and examining how to treat the polyethylene before cultivation to make degradation more complete. Degradation was monitored by high-temperature gel-permeation chromatography of the molecular weight distribution of polyethylene before and after the fungus was cultivated with it. Polyethylene with starting molecular weights of 4000 to 28,000 had lower molecular weights after 3 months of liquid cultivation with hyphae of the fungus. UV irradiation of polyethylene or its incubation with nitric acid at 80℃ for 6 days before cultivation caused functional groups to be inserted into the polyethylene. The strain grew better on a solid medium with 0.5/100 polyethylene when it was irradiated for 500 h than when it was not irradiated. Polyethylene with a molecular weight of 100,000 or higher after nitric acid treatment had lower molecular weight after 3 months of liquid cultivation with hyphae of the fungus. The efficiency of polyethylene degradation depended on the growth phase in pure cultivation of the fungus. Functional groups inserted into polyethylene aided biodegradation. Bioremediation of polyethylene may become possible.
机译:我们分离了一种简单的青霉菌YK,用于聚乙烯的生物降解,表征真菌并研究在培养前如何处理聚乙烯以使其降解更完全。通过高温凝胶渗透色谱法对真菌培养前后聚乙烯的分子量分布进行监测。起始分子量为4000至28,000的聚乙烯在用真菌的菌丝液体培养3个月后具有较低的分子量。聚乙烯的紫外线辐射或在80℃的硝酸中孵育6天后才能将官能团插入聚乙烯中。在辐照500 h时,在含0.5 / 100聚乙烯的固体培养基上,菌株的生长比未辐照时更好。硝酸处理后分子量为100,000或更高的聚乙烯在用真菌的菌丝液体培养3个月后具有较低的分子量。聚乙烯降解的效率取决于真菌纯培养中的生长期。插入聚乙烯的官能团有助于生物降解。聚乙烯的生物修复可能成为可能。

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