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Enhancing denitrification with waste sludge carbon source: the substrate metabolism process and mechanisms

机译:用废污泥碳源增强脱氮:底物代谢过程和机制

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摘要

Using waste sludge internal carbon source for nitrogen removal in wastewater has drawn much attention, due to its economic advantages and sludge reduction. In this study, the performance of enhanced denitrification with waste sludge thermal hydrolysate and fermentation liquid as carbon sources at different SCOD/N (soluble chemical oxygen demand/NO~(3)_(-)-N) was investigated. The optimum SCOD/N was 8 for sludge thermal hydrolysate and 7 for fermentation liquid, with NO~(3)_(-)-N removal efficiency of 92.3 and 98.9%, respectively, and no NO~(2)_(-)-N accumulation. To further understand the fate of sludge carbon source during denitrification, the changes of SCOD, proteins, carbohydrates, and volatile fatty acids (VFAs) were analyzed, and three-dimensional fluorescence excitation-emission matrix (EEM) spectroscopy with fluorescence regional integration (FRI) analysis was introduced. The utilization of SCOD was consistent with NO~(3)_(-)-N reduction, and the utilization efficiency of different organic matter was as follows: VFAs?>?proteins?>?carbohydrates. The soluble organic-like materials (region IV) were the most readily utilized organic matter according to three-dimensional fluorescence EEM spectroscopy. Regarding denitrification mechanisms, the denitrification rate (V~(DN)), denitrification potential (P~(DN)), heterotroph anoxic yield (Y~(H)), and the most readily biodegradable COD (S~(S)) were also investigated.
机译:由于其经济优势和污泥,在废水中使用废污泥内碳源进行氮气去除,因此引起了很多关注。在该研究中,研究了用废污泥热水解产物和发酵液作为不同SCOD / N(可溶性化学需氧/不〜(3)_( - ) - N)的碳源的增强脱氮的性能。最佳Scod / N为污泥热水解液和7用于发酵液,分别为〜(3)_( - ) - n = 92.3和98.9%,否则不〜(2)_( - ) - 积累。为了进一步了解污泥碳源的污泥碳源,分析SCOD,蛋白,碳水化合物和挥发性脂肪酸(VFA)的变化,以及具有荧光区域整合的三维荧光激发 - 发射基质(EEM)光谱(Fri介绍了分析。 Scod的利用率与NO〜(3)_( - ) - n减少一致,不同有机物质的利用效率如下:VFAs?>蛋白?>碳水化合物。根据三维荧光EEM光谱,可溶性有机样材料(区域IV)是最容易使用的有机物。关于反硝化机制,脱氮率(V〜(DN)),脱氮电位(P〜(DN)),异术缺氧产率(Y〜(H))和最易于生物降解的鳕鱼(S〜(S)是还调查了。

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