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Transformation and utilization of slowly biodegradable organic matters in biological sewage treatment of anaerobic anoxic oxic systems

机译:缓慢可降解有机物在厌氧缺氧富氧系统生物污水处理中的转化和利用

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This study examined the distribution of carbon sources in two anaerobic anoxic oxic (AAO) sewage treatment plants in Xi'an and investigated the transformation characteristics and utilization potential of slowly biodegradable organic matters (SBOM). Results indicated under anaerobic and aerobic conditions, SBOM could be transformed at a rate of 65% in 8 h into more readily biologically utilizable substrates such as volatile fatty acids (VFAs), polysaccharides and proteins. Additionally, non-biodegradable humus-type substances which are difficult to biodegrade and readily accumulate, were also generated. These products could be further hydrolyzed to aldehyde and ketone compounds and then transformed into substances with significant oxygen-containing functional groups and utilized subsequently. The molecular weights of proteinoid substances had a wide distribution and tended to decrease over time. Long hours of microbial reaction increased the proportion of micromolecular substances. This particular increase generated significant bioavailability, which can greatly improve the efficiency of nitrogen removal. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文研究了西安市两个厌氧缺氧(AAO)污水处理厂的碳源分布,并研究了可缓慢降解的有机物(SBOM)的转化特性和利用潜力。结果表明,在厌氧和有氧条件下,SBOM可以在8小时内以65%的速率转化为更易生物利用的底物,例如挥发性脂肪酸(VFA),多糖和蛋白质。另外,还产生了难以生物降解且易于积累的不可生物降解的腐殖质型物质。这些产物可以进一步水解为醛和酮化合物,然后转化为具有明显的含氧官能团的物质,随后加以利用。类蛋白物质的分子量具有较宽的分布,并且随着时间的流逝倾向于降低。长时间的微生物反应增加了微分子物质的比例。这种特殊的增加产生了显着的生物利用度,可以大大提高氮的去除效率。 (C)2016 Elsevier Ltd.保留所有权利。

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