首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhanced bioremediation of 4-nonylphenol and cadmium co-contaminated sediment by composting with Phanerochaete chrysosporium inocula
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Enhanced bioremediation of 4-nonylphenol and cadmium co-contaminated sediment by composting with Phanerochaete chrysosporium inocula

机译:通过将4-壬基酚和镉共污染沉积物增强了4-壬基酚和镉共污染的沉积物的生物修复

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摘要

Composting is identified as an effective approach for solid waste disposal. The bioremediation of 4-nonylphenol (4NP) and cadmium (Cd) co-contaminated sediment was investigated by composting with Phanerochaete chrysosporium (P. chrysosporium) inocula. P. chrysosporium inocula and proper C/N ratios (25.51) accelerated the composting process accompanied with faster total organic carbon loss, 4NP degradation and Cd passivation. Microbiological analysis demonstrated that elevated activities of lignocellulolytic enzymes and sediment enzymes was conducive to organic chemical transformation. Bacterial community diversity results illustrated that Firmicutes and Proteobacteria were predominant species during the whole composting process. Aerobic cellulolytic bacteria and organic degrading species played significant roles. Toxicity characteristic leaching procedure (TCLP) extraction and germination indices results indicated the efficient detoxification of 4NP and Cd co-contaminated sediment after 120 days of composting. Overall, results demonstrated that P. chrysosporium enhanced composting was available for the bioremediation of 4NP and Cd co-contaminated sediment.
机译:堆肥被确定为固体废物处理的有效方法。通过将Phanerochaete Chrysosporium(P. Chrysosporium)接种物堆肥研究了4-壬基酚(4NP)和镉(CD)共污染沉积物的生物修复。 P. Chrysporiumachula和适当的C / N比率(25.51)加速了堆肥过程伴随着更快的总有机碳损失,4NP降解和CD钝化。微生物分析表明,木质纤维素溶解酶和沉积物酶的升高有利于有机化学转化。细菌群落多样性结果表明,在整个堆肥过程中,迫切和植物体内均为主要物种。有氧纤维素溶解细菌和有机降解物种发挥了重要作用。毒性特征浸出程序(TCLP)提取和萌发指数结果表明,在堆肥120天后的4NP和Cd共污染沉积物的有效解毒。总体而言,结果表明,P. Chrysosporium增强堆肥可用于4NP和Cd共污染沉积物的生物修复。

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