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以污泥发酵液与尾水混合液为外碳源的中试A/O脱氮除磷特性

[Characteristics of Nutrient Removal in a Pilot-scale A/O with Mixture of Sludge Fermentation Liquor and Tail Water as External Carbon Source].

作者信息

Rong Yi, Shao Jin-Bo, Yu You-Cheng, Shi Xuan, Jin Peng-Kang

机构信息

School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.

Shaanxi Urstar Environmental Technology Co., Ltd., Baoji 721300, China.

出版信息

Huan Jing Ke Xue. 2020 Nov 8;41(11):5089-5096. doi: 10.13227/j.hjkx.202004241.

Abstract

To resolve the issue of sewage fluctuation and discontinuity in a rural district of China, a new operation mode of replenishing the mixture of fermentation liquor and tail water during the off-flow period was proposed, and the nutrient removal performance of a pilot-scale A/O system with this operation mode was investigated. The results of beaker experiments found that the mixture of tail water and fermentation liquor at a ratio of 12:1 had better denitrification and phosphorus release/absorption characteristics than the raw water, and theoretically had the function of enhancing denitrification and phosphorus removal performances. The results of a 97 d pilot test showed that the removal efficiency of TN and TP was improved after the system was adjusted from the constant flow mode to this new operation mode, and the average removal rate of TN and TP increased from 69.27% and 86.94% to 73.34% and 89.94%, respectively. The corresponding average effluent concentration decreased from 15.77 mg·L and 0.80 mg·L to 13.76 mg·L and 0.64 mg·L. The sequencing results of the 16S rRNA gene showed that this new operation mode was beneficial to the enrichment of five common hydrolytic acidizing bacteria genera, six phosphorus-accumulating organisms genera, and four denitrifying bacteria genera. This was also the main reason for the improved nutrient removal performance. According to the long-term monitoring of the characteristics of activated sludge, this new operating mode will degrade the sedimentation performance of activated sludge in the system, and the average SVI increased from 106 mL·g to 131 mL·g. However, this degree of deterioration did not adversely affect the sludge activity and nutrients removal performance of the system, and there was no sludge bulking in the entire experiment. The results of this study have shown that the A/O system can maintain and improve the performance of nutrients removal by replenishing the mixture of tail water and sludge fermentation liquor when the flow is cut off. This will provide new ideas for the design and operation of sewage treatment plants in rural areas in the future.

摘要

为解决中国某农村地区污水流量波动和不连续的问题,提出了一种在断流期补充发酵液与尾水混合液的新运行模式,并研究了采用该运行模式的中试规模A/O系统的营养物去除性能。烧杯实验结果表明,尾水与发酵液以12:1的比例混合时,其反硝化和磷释放/吸收特性优于原水,理论上具有增强反硝化和除磷性能的作用。97天的中试试验结果表明,系统从恒流模式调整为这种新运行模式后,TN和TP的去除效率得到提高,TN和TP的平均去除率分别从69.27%和86.94%提高到73.34%和89.94%。相应的平均出水浓度从15.77mg·L和0.80mg·L降至13.76mg·L和0.64mg·L。16S rRNA基因测序结果表明,这种新运行模式有利于5个常见水解酸化菌属、6个聚磷菌属和4个反硝化菌属的富集。这也是营养物去除性能提高的主要原因。根据对活性污泥特性的长期监测发现,这种新运行模式会使系统中活性污泥的沉降性能下降,平均污泥体积指数(SVI)从106mL·g增加到131mL·g。然而,这种程度的恶化并未对系统的污泥活性和营养物去除性能产生不利影响,且整个实验过程中未出现污泥膨胀现象。本研究结果表明,A/O系统在断流时通过补充尾水与污泥发酵液的混合液,能够维持并提高营养物去除性能。这将为未来农村地区污水处理厂的设计和运行提供新思路。

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