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二氯异氰尿酸钠处理对提高剩余活性污泥厌氧发酵生物降解性的影响

Effect of sodium dichloroisocyanurate treatment on enhancing the biodegradability of waste-activated sludge anaerobic fermentation.

作者信息

Jin Baodan, Niu Jintao, Wang Lan, Zhao Jianguo, Li Yu, Pang Long, Zhang Miao

机构信息

Henan Collaborative Innovation Center of Environmental Pollution Control and Ecological Restoration, School of Material and Chemical Engineering, Zhengzhou University of Light Industry, Zhengzhou, 450001, China.

Henan Hengan Environmental Protection Technology Co., Ltd, Zhengzhou, 450001, China.

出版信息

J Environ Manage. 2021 Jun 1;287:112353. doi: 10.1016/j.jenvman.2021.112353. Epub 2021 Mar 15.

DOI:10.1016/j.jenvman.2021.112353
PMID:33735677
Abstract

In the present study, a novel oxidant (sodium dichloroisocyanurate, NaCl(NCO); SDIC) combined with microorganisms was employed to achieve a higher performance of waste-activated sludge (WAS) anaerobic fermentation. Four concentrations of SDIC (0, 0.3, 0.6, and 1.0 mg SDIC/mg SS) were studied in WAS fermentation systems. The results showed that the release of proteins and polysaccharides was enhanced by the addition of SDIC with values of 1002.25 mg COD/L and 680.25 mg COD/L, respectively, and these values increased 14.46-18.07 times (proteins) and 3.74-7.40 times (polysaccharides) compared with that of the blank test. Additionally, the short-chain fatty acids also increased 2.24 times. The rate of extraction of organic substances from the sludge increased from 3.03% to 33.33%. Furthermore, the fermented sludge with the SDIC treatment had higher hydrolytic acidification efficiencies for bovine serum albumin and glucose, increasing from 4.558% to 9.91% and 2.976%-6.764%, respectively. However, SDIC treatment of the conventional fermented sludge resulted in lower hydrolytic acidification efficiencies with values of 4.978%-1.781% and 3.334%-0.582%, respectively. Biological enzyme analysis also showed that SDIC enhanced α-glucosidase and protease activity but inhibited dehydrogenase, alkaline phosphatase, and acid phosphatase activity. Proteobacteria and Comamonas were the main microbial communities observed in the WAS anaerobic fermentation.

摘要

在本研究中,采用一种新型氧化剂(二氯异氰尿酸钠,NaCl(NCO);SDIC)与微生物相结合的方法,以实现更高的废弃活性污泥(WAS)厌氧发酵性能。在WAS发酵系统中研究了四种浓度的SDIC(0、0.3、0.6和1.0 mg SDIC/mg SS)。结果表明,添加SDIC可提高蛋白质和多糖的释放量,分别为1002.25 mg COD/L和680.25 mg COD/L,与空白试验相比,这些值分别增加了14.46 - 18.07倍(蛋白质)和3.74 - 7.40倍(多糖)。此外,短链脂肪酸也增加了2.24倍。污泥中有机物的提取率从3.03%提高到33.33%。此外,经SDIC处理的发酵污泥对牛血清白蛋白和葡萄糖具有更高的水解酸化效率,分别从4.558%提高到9.91%和从2.976% - 6.764%。然而,用SDIC处理传统发酵污泥导致水解酸化效率较低,分别为4.978% - 1.781%和3.334% -

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