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首页> 外文期刊>Science of the total environment >Role of clay-associated humic substances in catalyzing bioreduction of structural Fe(III) in nontronite by Shewanella putrefaciens CN32
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Role of clay-associated humic substances in catalyzing bioreduction of structural Fe(III) in nontronite by Shewanella putrefaciens CN32

机译:粘土相关腐殖质物质在雪松普雷斯普雷甲苯的非巨石岩催化结构Fe(III)生物植物中的作用

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摘要

Previous studies have shown that humic substances can serve as electron shuttle to catalyze bioreduction of structural Fe(Ⅲ) in clay minerals, but it is unclear if clay-sorbed humic substances can serve the same function. It is unknown if the electron shuttling function is dependent on electron donor type and if humic substances undergo change as a result. In this study, humic acid (HA) and fulvicacid (FA) were sorbed onto nontronite (NAu-2) surface. Structural Fe(Ⅲ) in HA- and FA-coated NAu-2 samples was bioreduced by Shewanella putrefaciens CN32 using H_2 and lactate as electron donors. The results showed a contrasting effect of humic substances on bioreduction of structural Fe(Ⅲ), depending on the electron donor type. With H_2 as electron donor, humic substances had little effect on bioreduction of Fe(Ⅲ) (the reduction extent: 26.2%, 27.4%, 29.3% for HA-coated, FA-coated, and uncoated NAu-2, respectively). In contrast, these substances significantly enhanced bioreduction of Fe(Ⅲ) with lactate as electron donor (the reduction extent: 20.2%, 20.7%, 11.5% for HA-coated, FA-coated, and uncoated NAu-2, respectively). This contrasting behavior is likely caused by the difference in reaction free energy and electron transport process between H_2 and lactate. When H_2 served as electron donor, more energy was released than when lactate served as electron donor. In addition, because of different cellular locations of lactate dehydrogenase (inner membrane) and H_2 hydrogenase (the periplasm), electrons generated by H_2 hydrogenase may pass through the electron transport chain more rapidly than those generated from lactate dehydrogenase. Through their functions as electron shuttle and/or carbon source, clay-sorbed HA/FA underwent partial transformation to amino acids and other compounds. The availability of external carbon source played an important role in the amount and type of secondary product generation. These results have important implications for coupled iron and carbon biogeochemical cycles in clay- and humic substance-rich environments.
机译:以前的研究表明,腐殖质物质可以用作电子往复,以催化粘土矿物中结构Fe(Ⅲ)的生物培养,但尚不清楚粘土腐殖质物质是否可以用于相同的功能。如果电子穿梭功能取决于电子供体类型,并且由于腐殖质物质因结果而发生变化。在本研究中,腐殖酸(HA)和富氟酸(FA)被吸附在非巨石(NAU-2)表面上。 Ha-and的Nau-2样品中的结构Fe(Ⅲ)由Shewanella Putrefaciens CN32使用H_2并作为电子供体乳酸乳酸生成。结果表明,腐殖质物质对结构Fe(Ⅲ)的生物测量,这取决于电子供体型。随着H_2作为电子供体,腐殖质物质对Fe(Ⅲ)的生物测量效果不大(减少程度:26.2%,27.4%,22.3%,分别为HA涂覆,Fa涂层和未涂覆的Nau-2)。相比之下,这些物质显着增强了Fe(Ⅲ)的生物植物,乳酸乳酸作为电子供体(减少程度:20.2%,20.7%,11.5%,对于HA涂覆,Fa涂层和未涂覆的Nau-2)。这种对比行为可能是由H_2和乳酸乳酸之间的反应自由能和电子传输过程的差异引起的。当H_2用作电子供体时,释放更多的能量比乳酸作为电子给体的能量。另外,由于乳酸脱氢酶(内膜)和H_2氢酶(周质)的不同细胞位置,由H_2氢酶产生的电子可以通过电子传输链的方式比由乳酸脱氢酶产生的电子传输链更快。通过它们作为电子往复和/或碳源的功能,粘土HA / FA接受氨基酸和其他化合物的部分转化。外部碳源的可用性在二次产物生成的量和类型中起重要作用。这些结果对粘土和腐殖质物质的环境中的偶联铁和碳生物地球化学循环具有重要意义。

著录项

  • 来源
    《Science of the total environment》 |2020年第1期|140213.1-140213.17|共17页
  • 作者单位

    Department of Geology and Environmental Earth Science Miami University Oxford OH 45056 USA;

    Environmental Molecular Sciences Laboratory Pacific Northwest National Laboratory P.O. Box 999 Richland Washington 99354 USA;

    Environmental Molecular Sciences Laboratory Pacific Northwest National Laboratory P.O. Box 999 Richland Washington 99354 USA;

    Department of Chemistry and Biochemistry Miami University Oxford. OH 45056 USA;

    State Key Laboratory of Biogeology and Environmental Geology. China University of Geosciences Wuhan 430074 China;

    State Key Laboratory of Biogeology and Environmental Geology China University of Geosciences Beijing 100083 China;

    School of Environmental Science and Engineering Southern University of Science and Technology Shenzhen 518055 China;

    Department of Geology and Environmental Earth Science Miami University Oxford OH 45056 USA State Key Laboratory of Biogeology and Environmental Geology China University of Geosciences Beijing 100083 China;

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

    Humic substances; H_2; Iron reduction; Lactate; Nontronite; Shewanella putrefaciens CN32;

    机译:腐殖质;H_2;铁减少;乳酸;非巨石;Shechanella Putrefaciens CN32;

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