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首页> 外文期刊>Journal of applied microbiology >Biodegradation of polyethylene by the thermophilic bacterium Brevibacillus borstelensis
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Biodegradation of polyethylene by the thermophilic bacterium Brevibacillus borstelensis

机译:嗜热性博尔氏芽孢杆菌对聚乙烯的生物降解

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Aim: To select a polyethylene-degrading micro-organism and to study the factors affecting its biodegrading activity.Methods and Results: A thermophilic bacterium Brevibaccillus borstelensis strain 707 ( isolated from soil) utilized branched low-density polyethylene as the sole carbon source and degraded it. Incubation of polyethylene with B. borstelensis ( 30 days, 50 degrees C) reduced its gravimetric and molecular weights by 11 and 30% respectively. Brevibaccillus borstelensis also degraded polyethylene in the presence of mannitol. Biodegradation of u.v. photo-oxidized polyethylene increased with increasing irradiation time. Fourier Transform Infra-Red (FTIR) analysis of photo-oxidized polyethylene revealed a reduction in carbonyl groups after incubation with the bacteria.Conclusions: This study demonstrates that polyethylene-considered to be inert- can be biodegraded if the right microbial strain is isolated. Enrichment culture methods were effective for isolating a thermophilic bacterium capable of utilizing polyethylene as the sole carbon and energy source. Maximal biodegradation was obtained in combination with photo-oxidation, which showed that carbonyl residues formed by photo-oxidation play a role in biodegradation. Brevibaccillus borstelensis also degraded the CH2 backbone of nonirradiated polyethylene.Significance and Impact of the Study: Biodegradation of polyethylene by a single bacterial strain contributes to our understanding of the process and the factors affecting polyethylene biodegradation.
机译:目的:选择一种降解聚乙烯的微生物,研究影响其降解活性的因素。方法与结果:嗜热性短杆菌Brissbaccillus borstelensis 707(从土壤中分离)以支链低密度聚乙烯为唯一碳源并降解。它。将聚乙烯与波氏芽孢杆菌一起孵育(30天,50摄氏度),其重量和分子量分别降低了11%和30%。在甘露醇存在下,波氏短杆菌也降解了聚乙烯。紫外线的生物降解光氧化聚乙烯随照射时间的增加而增加。对光氧化聚乙烯进行傅里叶变换红外(FTIR)分析发现与细菌孵育后羰基减少。结论:这项研究表明,如果分离出正确的微生物菌株,则认为聚乙烯是惰性的可以被生物降解。富集培养方法对于分离能够利用聚乙烯作为唯一碳和能源的嗜热细菌是有效的。结合光氧化获得最大的生物降解,这表明由光氧化形成的羰基残基在生物降解中起作用。 borstelensis短杆菌也降解了非辐照聚乙烯的CH2骨架。研究的意义和影响:单一细菌菌株对聚乙烯的生物降解有助于我们了解该过程以及影响聚乙烯生物降解的因素。

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