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Enhanced quinoline removal by zero-valent iron-coupled novel anaerobic processes: performance and underlying function analysis

机译:零价铁偶联新型厌氧工艺增强的喹啉去除性能和基本功能

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摘要

Quinoline is toxic and difficult to degrade biologically; thus, it is a serious threat to the safety of ecosystems. To promote quinoline reduction, zero-valent iron (ZVI) was introduced into an anaerobic digestion (AD) system through batch experiments. The performance of three different types of ZVI ( i.e. , iron powder, iron scrap and rusty iron scrap) on quinoline degradation, methane production, formation of volatile fatty acids (VFAs) and chemical oxygen demand (COD) removal were investigated systematically. Compared to the AD system alone, quinoline and COD removal as well as the production of methane and acetic acid were effectively enhanced by ZVI, especially rusty iron scrap. The removal efficiencies of quinoline and COD were increased by 28.6% and 19.9%, respectively. The enhanced effects were attributed to the high accumulation of ferrous ions and high pH self-buffering capability, which were established by ZVI addition. Furthermore, high-throughput sequencing analysis indicated that the functional microorganisms in the ZVI-AD system were higher than in the AD system, and the added types of ZVI played important roles in structuring the innate microbial community in waste activated sludge (WAS). Especially, high enrichment of microorganisms capable of degrading quinoline, such as Pseudomonas and Bacillus , in the coupled system was detected.
机译:喹啉有毒,难以生物降解;因此,这严重威胁了生态系统的安全。为了促进喹啉还原,通过分批实验将零价铁(ZVI)引入厌氧消化(AD)系统。系统地研究了三种不同类型的ZVI(即铁粉,铁屑和生锈的铁屑)在喹啉降解,甲烷生成,挥发性脂肪酸(VFA)形成和化学需氧量(COD)去除方面的性能。与单独的AD系统相比,ZVI(尤其是生锈的铁屑)可有效提高喹啉和COD的去除以及甲烷和乙酸的产生。喹啉和COD的去除率分别提高了28.6%和19.9%。增强的作用归因于通过添加ZVI建立的亚铁离子的高积累和高pH自缓冲能力。此外,高通量测序分析表明,ZVI-AD系统中的功能微生物高于AD系统,并且ZVI的添加类型在构建废活性污泥(WAS)中的固有微生物群落方面起着重要作用。特别地,在偶联系统中检测到能够降解喹啉的微生物如假单胞菌和芽孢杆菌的高度富集。

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