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高盐废水中盐分对氨同化生物系统的影响。

The effect of salinity on ammonium-assimilating biosystems in hypersaline wastewater treatment.

机构信息

School of Environmental Science and Engineering, Shandong University, 250100 Jinan, China.

School of Civil Engineering, Shandong University, 250061 Jinan, China.

出版信息

Sci Total Environ. 2022 Jul 10;829:154622. doi: 10.1016/j.scitotenv.2022.154622. Epub 2022 Mar 17.

Abstract

The ammonium-assimilating biosystem is a promising solution to improve the susceptible biological nitrogen removal (BNR) and to achieve nitrogen recovery in saline wastewater treatment. However, the treatment performance and functional stability of ammonium-assimilating biosystems have not been fully illuminated in hypersaline wastewater. In this study, although the dramatic decrease of removal efficiency of NH-N and PO-P was observed in ammonium-assimilating biosystems under the salinity from 3% to 7%, the direction of nitrogen conversions through assimilation was insusceptible to high salinity. The extremely low concentrations of nitrite and nitrate accumulation and abundances of nitrification functional genes confirmed that the process of nitrification was negligible in all biosystems. Ammonium-assimilating biosystems maintained robustness and functional stability in hypersaline wastewater. The increase of salinity stimulated the production of EPS and changed the microbial community by enriching Proteobacteria and halophilic genera. We anticipate that the ammonium-assimilating biosystem could be a promising strategy for hypersaline wastewater treatment and future practical applications.

摘要

氨同化生物系统是提高敏感生物脱氮(BNR)和实现含盐废水氮回收的有前途的解决方案。然而,在高盐废水条件下,氨同化生物系统的处理性能和功能稳定性尚未得到充分阐明。在本研究中,尽管在 3%至 7%盐度下,氨同化生物系统中 NH-N 和 PO-P 的去除效率显著下降,但通过同化进行氮转化的方向不受高盐度的影响。亚硝酸盐和硝酸盐积累的极低浓度以及硝化功能基因的丰度证实,硝化过程在所有生物系统中都可以忽略不计。氨同化生物系统在高盐废水中保持了强大的功能稳定性。盐度的增加通过富集变形菌门和嗜盐属来刺激 EPS 的产生并改变微生物群落。我们预计,氨同化生物系统可能是一种有前途的高盐废水处理策略,也适用于未来的实际应用。

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