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异养硝化菌生物强化活性炭滤柱去除饮用水中氨氮的季节性影响

Seasonal-related effects on ammonium removal in activated carbon filter biologically enhanced by heterotrophic nitrifying bacteria for drinking water treatment.

机构信息

State Key Laboratory of Urban Water Resource and Environment, School of Municipal and Environmental Engineering, Harbin Institute of Technology, Harbin, 150090, People's Republic of China.

School of Energy and Civil Engineering, Harbin University of Commerce, Harbin, 150028, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2017 Aug;24(24):19569-19582. doi: 10.1007/s11356-017-9522-3. Epub 2017 Jul 5.

Abstract

To determine the potential effects of seasonal changes on water temperature and water quality upon removal of ammonium and organic carbon pollutants and to characterize the variations in microbial characteristics, a pilot-scale activated carbon filter biologically enhanced with heterotrophic nitrifying bacteria was investigated for 528 days. The results show that 69.2 ± 28.6% of ammonium and 23.1 ± 11.6% of the dissolved organic carbon were removed by the biologically enhanced activated carbon (BEAC) reactor. It is shown that higher biodegradable dissolved organic carbon enhances ammonium removal, even at low temperatures. The C/N ratio consumed by the BEAC reactor reached a steady value (i.e., 3.3) after 2 months of operation. Despite seasonal fluctuations and competition of the indigenous community, the heterotrophic nitrifying bacteria (Acinetobacter sp. HRBLi 16 and Acinetobacter harbinensis strain HITLi 7) remained relatively stable. The amount of carbon source was the most significant environmental parameter and dramatically affected the microbial community compositions in the BEAC reactor. The present study provides new insights into the application of a BEAC reactor for ammonium removal from drinking water, resisting strong seasonal changes.

摘要

为了确定在去除氨氮和有机碳污染物时季节变化对水温及水质的潜在影响,并分析微生物特性的变化,本研究采用具有异养硝化功能的生物增强型活性炭过滤器进行了为期 528 天的中试研究。结果表明,生物增强型活性炭(BEAC)反应器对氨氮和溶解性有机碳的去除率分别为 69.2±28.6%和 23.1±11.6%。结果表明,即使在低温条件下,较高的可生物降解溶解性有机碳也能增强氨氮的去除效果。BEAC 反应器的 C/N 比在运行 2 个月后达到稳定值(即 3.3)。尽管受到季节性波动和土著微生物群落的竞争,异养硝化菌(不动杆菌属 HRBLi 16 和不动杆菌属 HITLi 7)仍保持相对稳定。碳源数量是最显著的环境参数,显著影响 BEAC 反应器中的微生物群落组成。本研究为 BEAC 反应器在去除饮用水中的氨氮方面的应用提供了新的见解,该反应器能够抵抗强烈的季节性变化。

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