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Simultaneous enhancement of nitrate removal flux and methane utilization efficiency in MBfR for aerobic methane oxidation coupled to denitrification by using an innovative scalable double-layer membrane

机译:通过使用创新的可伸缩的双层膜,同时提高MBFR中的硝酸盐去除助熔剂和MBFR中的甲烷利用效率与反硝化

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摘要

Endevours on the enhancement of nitrate removal efficiency during methane oxidation coupled with denitrification (AME-D) has always overlooked the role of membrane employed. It would be highly beneficial to enrich the biomass content and to manage biofilm on the membrane, in the utilization of methane and denitrification. In this study, an innovative and scalable double-layer membrane (DLM) was designed and prepared for a membrane biofilm reactor (MBfR), to simultaneously enhance nitrate removal flux and methane utilization efficiency during aerobic methane oxidation coupled with the denitrification (AME-D) process. The DLM allowed quick bacterial attachment and biomass accumulation for biofilm growth, which would be then self-regulated for well distribution of functional microbes on/within the DLM. Upon a high biofilm density of over 70 g-VSS m(-2) achieved on the DLM, the methane utilization efficiency of the MBfR was enhanced significantly to over 1.3 times than the control MBfR with conventional polypropylene membrane. The MBfR employed DLM also demonstrated the maximum nitrate removal flux of 740 mg-NO3- - N m(-2) d(-1) that was approximately 1.64 times of that in control MBfR at continuous-mode operation. This DLM indeed favored the enrichment of Type II aerobic methanotrophs of Methylo-cystaceae, and methanol-utilization denitrifiers of Rhodocyclaceae that preferentially utilize methanol as the cross-feeding intermediates to promote the methane utilization efficiency, and thus to enhance the nitrate removal flux. These results raised from new designed DLM confirmed the importance of membrane surface properties on the effectiveness of MBfR, and offered great potential to address challenging problems of MBfRs during engineering application. (c) 2021 Elsevier Ltd. All rights reserved.
机译:在甲烷氧化过程中加强甲烷氧化期间的硝酸盐去除效率的endevours一直忽略了所用膜的作用。在利用甲烷和反硝化的情况下,富集生物质含量并在膜上管理生物膜是非常有益的。在该研究中,设计并为膜生物膜反应器(MBFR)设计并制备了一种创新和可伸缩的双层膜(DLM),同时增强硝酸盐去除助焊剂和甲烷利用效率,同时加上脱氮(AME-D. ) 过程。 DLM允许快速细菌附着和生物量积累生物膜生长,然后将其在DLM内/内的功能性微生物的良好分布进行自调节。在DLM上实现超过70g-VSS M(-2)的高生物膜密度,MBFR的甲烷利用效率显着增强至与常规聚丙烯膜的对照MBFR的1.3倍以上。 MBFR使用的DLM还证明了在连续模式操作中的控制MBFR中的最大硝酸盐去除通量为740mg-NO 3--N-N m(-2)d(-1)的约1.64倍。该DLM确实有利于富含甲基半胱肌型有氧型甲虫的富集,以及氟葡萄糖的甲醇利用率,优先利用甲醇作为交叉进给中间体以促进甲烷利用效率,从而提高硝酸盐去除助熔剂。从新设计的DLM提出的这些结果证实了膜表面性质对MBFR的有效性的重要性,并提供了解决工程应用中MBFRS的挑战性问题的巨大潜力。 (c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Water Research》 |2021年第15期|116936.1-116936.11|共11页
  • 作者单位

    Harbin Inst Technol Shenzhen Sch Civil & Environm Engn Shenzhen 518055 Peoples R China;

    Harbin Inst Technol Shenzhen Sch Civil & Environm Engn Shenzhen 518055 Peoples R China;

    Harbin Inst Technol Shenzhen Sch Civil & Environm Engn Shenzhen 518055 Peoples R China;

    Harbin Inst Technol Shenzhen Sch Civil & Environm Engn Shenzhen 518055 Peoples R China|Shenzhen Key Lab Water Resource Utilizat & Enviro Shenzhen 518055 Peoples R China;

    Harbin Inst Technol Sch Environm State Key Lab Urban Water Resource & Environm Harbin 150090 Peoples R China;

    Harbin Inst Technol Shenzhen Sch Civil & Environm Engn Shenzhen 518055 Peoples R China;

    Harbin Inst Technol Shenzhen Sch Civil & Environm Engn Shenzhen 518055 Peoples R China;

    Harbin Inst Technol Shenzhen Sch Civil & Environm Engn Shenzhen 518055 Peoples R China;

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

    Aerobic methane oxidation coupled to denitrification (AME-D); Double-layer membrane (DLM); Membrane biofilm reactor (MBfR); Nitrate removal flux;

    机译:有氧甲烷氧化耦合到反硝化(AME-D);双层膜(DLM);膜生物膜反应器(MBFR);硝酸盐去除助焊剂;

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