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Kinetics of Microbial and Chemical Reduction of Humic Substances: Implications for Electron Shuttling

机译:腐殖质微生物和化学还原的动力学:对电子穿梭的影响

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摘要

Humic substances (HS) are redox-active natural organic compounds and serve as electron shuttles between microorganisms and iron(lll) minerals. Here we demonstrate that electron shuttling is possible only at concentrations of dissolved HS of at least 5-10 mg C/L Although such concentrations can be found in many rivers, lakes, and even in some aquifers there are also many marine and freshwater systems with DOC < 5 mg C/L where consequently electron shuttling is not expected to happen. We found that in the case of HS concentrations which do not limit electron shuttling, Geobacter sulfurreducens transfers electrons to HS at least 27 times faster than to Fe(lll)hydroxide. Microbially reduced HS transfer electrons to ferrihydrite at least 7 times faster than cells thereby first demonstrating that microbial mineral reduction via HS significantly accelerates Fe(lll) mineral reduction and second that electron transfer from reduced HS to Fe(lll) minerals represents the rate-limiting step in microbial Fe(lll) mineral reduction via HS. Microbial reduction of HS transfers as many electrons to HS as chemical reduction with H_2 indicating that all redox-active functional groups that can be reduced at a redox potential of -418 mV (E_h~0 of H_2/H~+ redox couple at pH 7) can also be reduced by microorganisms.
机译:腐殖质(HS)是具有氧化还原活性的天然有机化合物,可充当微生物与铁(III)矿物之间的电子穿梭物。在这里,我们证明,只有在溶解的HS浓度至少为5-10 mg C / L时,电子才能穿梭。尽管在许多河流,湖泊甚至某些含水层中都可以发现这种浓度,但海洋和淡水系统中也有DOC <5 mg C / L,因此预计不会发生电子穿梭。我们发现,在HS浓度不限制电子穿梭的情况下,Geobacter硫还原剂将电子转移到HS的速度至少比转移到氢氧化Fe(III)的速度快27倍。微生物还原的HS将电子转移至水铁矿的速度至少比细胞快7倍,因此首先证明了通过HS进行的微生物矿物质还原显着加速了Fe(III)矿物的还原,其次证明了从还原的HS到Fe(III)矿物的电子转移代表了速率限制通过HS减少微生物中Fe(III)矿物的含量。 HS的微生物还原将电子转移到HS上,与H_2的化学还原一样多,这表明所有可以在-418 mV的氧化还原电势下还原的氧化还原活性官能团(pH值为7的H_2 / H〜+氧化还原对的E_h〜0 )也可以被微生物减少。

著录项

  • 来源
    《Environmental Science & Technology》 |2008年第10期|p.3563-3569|共7页
  • 作者

    JIE JIANG; ANDREAS KAPPLER;

  • 作者单位

    Geomicrobiology Group, Center for Applied Geosciences, University of Tuebingen, Sigwartstrasse 10, D-72076 Tubingen, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境化学;
  • 关键词

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