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首页> 外文期刊>Science of the total environment >Mixed-culture biocathodes for acetate production from CO_2 reduction in the microbial electrosynthesis: Impact of temperature
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Mixed-culture biocathodes for acetate production from CO_2 reduction in the microbial electrosynthesis: Impact of temperature

机译:用于醋酸盐的混合培养生物病变从CO_2减少微生物电气结合:温度的影响

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摘要

The temperature effect on bioelectrochemical reduction of CO_2 to acetate with a mixed-culture biocathode in the microbial electrosynthesis was explored. The results showed that maximum acetate amount of 525.84 ± 1.55 mg L~(-1) and fastest acetate formation of 49.21 ± 0.49 mg L~(-1) d~(-1) were obtained under mesophilic conditions. Electron recovery efficiency for CO_2 reduction to acetate ranged from 14.50 ± 2.20% to 64.86 ± 2.20%, due to propi-onate, butyrate and H2 generation. Mesophilic conditions were demonstrated to be more favorable for biofilm formation on the cathode, resulting in a stable and dense biofilm. At phylum level, the relative abundance of Bacteroidetes phylum in the biofilm remarkably increased under mesophilic conditions, compared with that at psychrophilic and thermophilic conditions. At genus level, the Clostridium, Treponema, Acidithiobacillus, Acetobacterium and Acetoanaerobium were found to be dominated genera in the biofilm under mesophilic conditions, while genera diversity decreased under psychrophilic and thermophilic conditions.
机译:探讨了在微生物电气合成中与混合培养生物病变的CO_2对乙酸盐的生物电化学效应。结果表明,在中抚化条件下获得最大乙酸盐量为525.84±1.55mg L〜(-1)和最快的乙酸乙酸盐形成。由于丙酸甲酯,丁酸酯和H2代,CO_2减少的电子回收效率从14.50±2.20%到64.86±2.20%。在阴极上证明了嗜苯胺的条件以更有利的是生物膜形成,导致稳定和致密的生物膜。在Phymum水平,在嗜合性条件下,生物膜中的Bacteroides Phylum的相对丰度显着增加,与心理和嗜热条件相比。在培养条件下,发现梭菌,粒膜,酸酐,乙杆菌和乙腺癌,乙杆菌和乙腺癌在生物膜下是主导的,而活性和嗜热条件下的属多样性降低。

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  • 来源
    《Science of the total environment 》 |2021年第10期| 148128.1-148128.10| 共10页
  • 作者单位

    CAS Key Laboratory for Urban Pollutant Conversion Department of Environmental Science and Engineering University of Science & Technology of China Hefei China Key Laboratory of Water Pollution Control and Wastewater Reuse of Anhui Province Anhui Provincial Key Laboratory of Environmental Pollution Control and Resource Reuse Anhui Jianzhu University Hefei China;

    CAS Key Laboratory for Urban Pollutant Conversion Department of Environmental Science and Engineering University of Science & Technology of China Hefei China School of Physics and Materials Engineering Hefei Normal University Hefei China;

    CAS Key Laboratory for Urban Pollutant Conversion Department of Environmental Science and Engineering University of Science & Technology of China Hefei China;

    CAS Key Laboratory for Urban Pollutant Conversion Department of Environmental Science and Engineering University of Science & Technology of China Hefei China;

    CAS Key Laboratory for Urban Pollutant Conversion Department of Environmental Science and Engineering University of Science & Technology of China Hefei China;

    CAS Key Laboratory for Urban Pollutant Conversion Department of Environmental Science and Engineering University of Science & Technology of China Hefei China;

    Key Laboratory of Water Pollution Control and Wastewater Reuse of Anhui Province Anhui Provincial Key Laboratory of Environmental Pollution Control and Resource Reuse Anhui Jianzhu University Hefei China;

    CAS Key Laboratory for Urban Pollutant Conversion Department of Environmental Science and Engineering University of Science & Technology of China Hefei China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Microbial electrosynthesis; Carbon dioxide; Acetate; Temperature;

    机译:微生物电气合成;二氧化碳;醋酸盐;温度;

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