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首页> 外文期刊>Research Letters in Biochemistry >Production of Laccase by Cochliobolus sp. Isolated from Plastic Dumped Soils and Their Ability to Degrade Low Molecular Weight PVC
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Production of Laccase by Cochliobolus sp. Isolated from Plastic Dumped Soils and Their Ability to Degrade Low Molecular Weight PVC

机译:Cochliobolus sp。生产漆酶。从塑料垃圾堆中分离出来并降解低分子量聚氯乙烯的能力

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One of the utmost man-made problems faced today has been the ever-increasing plastic waste filling the world. It accounts for an estimated 20–30% (by volume) of municipal solid waste in landfill sites worldwide. Research on plastic biodegradation has been steadily growing over the past four decades. Several fungi have been identified that produce enzymes capable of plastic degradation in various laboratory conditions. This paper presents a study that determined the ability of fungi to degrade low molecular weight polyvinyl chloride (PVC) by the enzyme laccase. We have isolated a fungal species, Cochliobolus sp., from plastic dumped soils and they were cultured on Czapek Dox Agar slants at 30°C. The effectiveness of this fungal species on the degradation of commercial low molecular weight polyvinyl chloride (PVC) was studied under laboratory conditions. Significant differences were observed from the FTIR, GC-MS, and SEM results in between control and Cochliobolus sp. treated PVC.
机译:今天面临的最严重的人为问题之一是不断增加的填充塑料废料的世界。它估计占全球垃圾填埋场中城市固体垃圾的20%至30%(按体积计)。在过去的四十年中,塑料生物降解的研究一直在稳步增长。已经鉴定出几种真菌,它们能在各种实验室条件下产生可塑性降解的酶。本文提出了一项研究,该研究确定了真菌通过酶漆酶降解低分子量聚氯乙烯(PVC)的能力。我们从倾倒的塑料土壤中分离出一种真菌物种Cochliobolus sp。,并将它们在30°C的Czapek Dox Agar斜面上培养。在实验室条件下研究了这种真菌对降解商业低分子量聚氯乙烯(PVC)的有效性。 FTIR,GC-MS和SEM结果在对照和Cochliobolus sp之间观察到显着差异。处理过的PVC。

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