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Efficient biodegradation of low-density polyethylene by cyanobacteria isolated from submerged polyethylene surface in domestic sewage water

机译:用浸没式聚乙烯表面中污水水分中分离的枯枝杆菌的高密度聚乙烯生物降解

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Two dominant cyanobacterial species, Phormidium lucidum and Oscillatoria subbrevis , isolated from submerged polyethylene carry bags in domestic sewage water were found to be capable of degrading low-density polyethylene (LDPE) sheets efficiently. The FT-IR, SEM, NMR, CHN content, thermal, and tensile strength of PE were monitored for structural, morphological, and chemical changes of PE. The CHN analysis corroborated about 4% carbon utilization by the cyanobacterial species from the PE. The rapid growth of cyanobacterial species on the PE surface suggested that the microorganisms continued to gain energy from the PE. The reduction in lamellar thickness, weight, and crystallinity of the cyanobacterial-treated PE pointed to an efficient biodegradation process without any pro-oxidant additives or pretreatment. Alteration in bond indices computed from FT-IR spectroscopy revealed changes in functional group and side chain features indicating biodegradation. The enhanced laccase and manganese peroxidase activity corroborated the biodegradation. The_(13)C-NMR spectroscopy of the PE is consistent with short branching providing further evidence of biodegradation. Scanning electron microscopy and optical microscopy exhibited large grooves on the surface suggesting significant disruption of polyethylene structure.
机译:发现两种中淋巴化术物种,Phormidimidum和Oscillatia Subbria,从浸没式聚乙烯携带袋中分离在国内污水中,发现能够有效地降解低密度聚乙烯(LDPE)片。监测PE的FT-IR,SEM,NMR,CHN含量,热量和拉伸强度,用于PE的结构,形态学和化学变化。 CHN分析通过PE的碳酸杆菌物种证实了约4%的碳利用。体育表面上的蓝藻物种的快速生长表明微生物继续从PE中获得能量。在没有任何促氧化剂添加剂或预处理的情况下指向有效的生物降解过程的半细菌处理的PE的层状厚度,重量和结晶度的降低。从FT-IR光谱计算的粘合指数的变化显示出具有生物降解的功能组和侧链特征的变化。增强的漆酶和锰过氧化物酶活性证实了生物降解。 PE的_(13)C-NMR光谱与短分支一致,提供了生物降解的进一步证据。扫描电子显微镜和光学显微镜在表面上表现出大凹槽,表明聚乙烯结构的显着破坏。

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