Ma Ben, Zhang Haihan, Huang Tinglin, Chen Shengnan, Sun Weimin, Yang Wanqiu, Niu Limin, Liu Xiang, Liu Hanyan, Pan Sixuan, Liu Huan, Zhang Xiaoli
Shaanxi Key Laboratory of Environmental Engineering, Key Laboratory of Northwest Water Resource, Environment and Ecology, MOE, Xi'an University of Architecture and Technology, Xi'an 710055, China.
School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, Xi'an 710055, China.
Environ Sci Technol. 2023 Apr 4;57(13):5252-5263. doi: 10.1021/acs.est.2c08770. Epub 2023 Mar 21.
The key limiting factors in the treatment of low C/N micropolluted water bodies are deficient essential electron donors for nitrogen removal processes. An iron/activated carbon aquagel (IACA) was synthesized as a slowly released inorganic electron donor to enhance aerobic denitrification performance in low C/N micropolluted water treatment. The denitrification efficiency in IACA reactors was enhanced by more than 56.72% and the highest of 94.12% was accomplished compared with those of the control reactors. Moreover, the COD removal efficiency improved by more than 34.32% in IACA reactors. The Illumina MiSeq sequencing consequence explained that the denitrifying bacteria with facultative denitrification, iron oxidation, and iron reduction function were located in the dominant species niches in the IACA reactors (e.g., , , and ). The diversity and richness of the denitrifying bacterial communities were enhanced in the IACA reactors. Network analysis indicated that aerobic denitrifying bacterial consortia in IACA reactors presented a more complicated co-occurrence structure. The IACA reactors presented the potential for long-term denitrification operation. This study affords a pathway to utilize IACA, promoting aerobic denitrification during low C/N micropolluted water body treatment.
低C/N微污染水体处理中的关键限制因素是脱氮过程中必需电子供体不足。合成了一种铁/活性炭水凝胶(IACA)作为缓慢释放的无机电子供体,以提高低C/N微污染水处理中的好氧反硝化性能。与对照反应器相比,IACA反应器中的反硝化效率提高了56.72%以上,最高达到94.12%。此外,IACA反应器中的化学需氧量去除效率提高了34.32%以上。Illumina MiSeq测序结果表明,具有兼性反硝化、铁氧化和铁还原功能的反硝化细菌位于IACA反应器中的优势物种生态位(例如, 、 和 )。IACA反应器中反硝化细菌群落的多样性和丰富度得到增强。网络分析表明,IACA反应器中的好氧反硝化细菌聚集体呈现出更复杂的共生结构。IACA反应器具有长期反硝化运行的潜力。本研究提供了一条利用IACA的途径,促进低C/N微污染水体处理过程中的好氧反硝化。