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首页> 外文期刊>Journal of Environmental Management >Microbial community responses to agricultural biomass addition in aerated constructed wetlands treating low carbon wastewater
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Microbial community responses to agricultural biomass addition in aerated constructed wetlands treating low carbon wastewater

机译:微生物群落对农业生物量的反应,加气构建的湿地处理低碳废水

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摘要

Using agricultural biomasses as solid carbon substrates in constructed wetlands (CWs) could be an effective way to achieve sustainable nitrogen removal for carbon-limited wastewater treatments. This study investigated the response of bacteria community in CWs to the addition of agricultural biomasses (wheat straw, walnut shell and apricot pit). Results indicated that the addition of different agricultural biomasses had distinct influence on bacterial communities in CWs. Both wheat straw and walnut shell increased the diversity of microbial communities and optimized the structure of microorganisms. The effect of apricot pit on the richness and evenness of microbial communities was not significant, but the composition of microorganisms was significantly affected at the phylum level, especially the relative abundance of phylum Saccharibacteria. Moreover, the addition of agricultural biomasses in CWs acclimatized more functional bacteria including nitrifier and denitrifier, which were proved to be positively correlated with the high-rate denitrification performance. The obtained results would be beneficial to understand the underlying microbial mechanism of nitrogen removal in CWs with agricultural biomass and provide some guidance on the practical application of CWs.
机译:用农业生物量作为构造湿地(CWS)中的固体碳基材可以是实现可持续氮去除用于碳限量废水处理的有效方法。本研究调查了细菌界在CWS中的响应添加到添加农业生物量(麦子秸秆,核桃壳和杏坑)。结果表明,不同农业生物量的增加对CWS中的细菌群落有明显影响。麦秸和核桃壳两种麦子秸秆和核桃壳都会增加微生物群落的多样性,并优化了微生物的结构。杏坑对微生物群落的丰富性和均匀性的影响并不重要,但在门水平的情况下,微生物的组成显着影响,尤其是脂肪酸痛的相对丰富。此外,在CWS中添加农业生物量适应更多的功能细菌,包括硝化物和解氮化,这被证明与高速率反硝化性能正相关。获得的结果是有益于了解CWS与农业生物量的氮气去除的潜在微生物机制,并对CWS的实际应用提供一些指导。

著录项

  • 来源
    《Journal of Environmental Management 》 |2020年第15期| 110912.1-110912.7| 共7页
  • 作者单位

    School of Environment and Planning Liaocheng University Liaocheng Shandong 252000 PR China College of Resources and Environment Northwest A&F Umversity Yangling Shaanxi 712100 PR China;

    School of Environment and Planning Liaocheng University Liaocheng Shandong 252000 PR China Shandong Liaohe Environmental Protection Technology Co. Ltd. Liaocheng Shandong 252000 PR China;

    College of Resources and Environment Northwest A&F Umversity Yangling Shaanxi 712100 PR China;

    College of Resources and Environment Northwest A&F Umversity Yangling Shaanxi 712100 PR China;

    College of Resources and Environment Northwest A&F Umversity Yangling Shaanxi 712100 PR China;

    Department of Bioscience Aarhus University Aarhus 8000C Denmark;

    College of Resources and Environment Northwest A&F Umversity Yangling Shaanxi 712100 PR China Department of Bioscience Aarhus University Aarhus 8000C Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Constructed wetlands; Agricultural biomass; Microbial community; Nitrogen removal; Low carbon wastewater;

    机译:建造的湿地;农业生物量;微生物群落;氮气去除;低碳废水;

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