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Enhanced anaerobic degradation of selected nitrogen heterocyclic compounds with the assistance of carboxymethyl cellulose

机译:通过羧甲基纤维素的辅助增强所选氮杂环化合物的厌氧降解

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Carboxymethyl cellulose (CMC) is a modified cellulose compound that is dispersible in water. Microbial anaerobic degradation of nitrogen heterocyclic compounds (NHCs) in wastewater treatment may be enhanced by CMC addition, but this remains uncertain due to a lack of experimental evidence. In this study, It was demonstrated that CMC is a suitable co-metabolic matrix in an enhanced anaerobic degradation of quinoline and indole in coal gasification wastewater. When the dosage of CMC was 0.5 mg/L, a reactor exhibited a high degradation efficiency on quinoline and indole, with ratios of 9523 +/- 1.99% and 94.33 +/- 3.45%. The addition of CMC increased the concentration of extracellular polymeric substances in anaerobic sludge and increased the particle size of the sludge, which improved the microbial stability and sedimentation of anaerobic granular sludge. Analysis of high-throughput sequencing indicated that the addition of CMC improved the richness and diversity of bacterial and archaea communities. Acetic acid metabolism was the primary mechanism to produce methane during anaerobic degradation of NHCs wastewater. (C) 2019 Elsevier B.V. All rights reserved.
机译:羧甲基纤维素(CMC)是可分散在水中的改性纤维素化合物。 CMC加入可以提高废水处理中氮杂环化合物(NHC)的微生物厌氧化合物(NHC),但由于缺乏实验证据,这仍然不确定。在该研究中,证明CMC是一种合适的共代谢基质,其在煤气化废水中提高喹啉和吲哚的厌氧降解。当CMC的剂量为0.5mg / L时,反应器对喹啉和吲哚表现出高的降解效率,比率为9523 +/- 1.99%和94.33 +/- 3.45%。加入CMC增加了厌氧污泥中细胞外聚合物物质的浓度,增加了污泥的粒度,这改善了厌氧颗粒污泥的微生物稳定性和沉降。高通量测序分析表明,添加CMC改善了细菌和古群落的丰富性和多样性。乙酸代谢是在NHCS废水的厌氧降解过程中生产甲烷的主要机制。 (c)2019 Elsevier B.v.保留所有权利。

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