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首页> 外文期刊>Journal of Advanced Research >Robustness of anaerobes exposed to cyanuric acid contaminated wastewater and achieving efficient removal via optimized co-digestion scheme
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Robustness of anaerobes exposed to cyanuric acid contaminated wastewater and achieving efficient removal via optimized co-digestion scheme

机译:暴露于氰尿酸污染废水的厌氧的鲁棒性并通过优化的共消化方案实现有效的去除

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摘要

The impact of various industrial pollutants on anaerobes and the biodegradation potentials need much emphasis. This study aims to investigate the response of anaerobic microbial systems to cyanuric acid (CA) exposure; CA is toxic and possible carcinogen. First, the long-term exposure of mixed culture bacteria (i.e., municipal sludge) to low-strength wastewater containing 20?mg/L CA was conducted in an up-flow anaerobic staged reactor. Stable performance and sludge granulation were observed, and the microbial community structure showed the progression of genus Acinetobacter known as CA degrader. Second, batch-mode experiment was performed to examine the CA biodegradability at higher doses (up to 250?mg/L of CA) in the absence and presence of glucose as a co-substrate; response surface-based optimization was used to design this experiment and to estimate the optimum CA-glucose combination. CA removal of 77–98% was achieved when CA was co-digested with glucose (250–1,000?mg/L), after 7?days-incubation at temperature of 37?°C, compared to 34% when CA was solely digested. Further, the obtained methane yield dropped when CA exceeded over 125?mg/L, though the deterioration was mitigated by addition of higher concentration of glucose. Overall, we conclude that CA is efficiently degraded under anaerobic conditions when being co-digested with readily assimilable substrate.
机译:各种工业污染物对Anaerobes的影响和生物降解潜力需要重点。本研究旨在探讨厌氧微生物系统对氰尿酸(CA)暴露的响应; Ca是有毒和可能的致癌物。首先,在上流厌氧分型反应器中进行混合培养细菌(即,城市污泥)与含有20μmMg/ L的低强度废水的长期暴露。观察到稳定的性能和污泥造粒,微生物群落结构显示出称为Ca降解剂的acineTobacter属的进展。其次,进行批量模式实验以在不存在和存在作为共衬底的情况下以较高剂量(高达250×mg / L的CA)检查Ca生物降解性;基于响应表面的优化用于设计该实验并估计最佳Ca-葡萄糖组合。当Ca用葡萄糖(250-1,000?Mg / L)共消化时,达到77-98%的Ca除去77-98%,在37Ω·℃的温度下孵育时,与34%相比,当CA完全消化时。此外,当Ca超过125μmg/ L时,所得甲烷产率下降,但通过加入较高浓度的葡萄糖来减轻劣化。总的来说,我们得出结论,当与易于可吸收的基材共消化时,CA在厌氧条件下有效地降解。

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