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Simultaneous Utilization of Acetate and Hydrogen by Geobacter sulfurreducens and Implications for Use of Hydrogen as an Indicator of Redox Conditions

机译:还原性细菌还原菌同时利用乙酸和氢,以及将氢用作氧化还原条件指标的意义

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摘要

Dissolved hydrogen concentrations,in conjunction with other geochemical indicators,are becoming an accepted means to determine terminal electron acceptor processes (TEAPs) in groundwater aquifers.Aqueous hydrogen concentrations have been found to fall within specific ranges under methanogenic,sulfate-reducing,iron-reducing,and denitrification conditions.Although hydrogen is gaining in acceptance for determining subsurface TEAPs,there is a dearth of data with regards to the kinetic coefficients for hydrogen utilization in the presence or absence of an additional electron donor under different TEAPs.This study expands the kinetic data for hydrogen utilization through a series of batch experiments,which were conducted to study the utilization of acetate and hydrogen by Geobacter sulfurreducens under iron-reducing conditions.The results of these experiments indicate that the kinetic coefficients (cell yield and first-order degradation rate) describing the rate of hydrogen utilization by G.sulfurreducens under iron-reducing conditions correlate energetically with the coefficients found in previous experiments under methanogenic and sulfate-reducing conditions.In addition,with acetate and hydrogen as simultaneous electron donors,there is slight inhibition between the two electron donors for G.sulfurreducens,and this can be modeled through competitive inhibition terms in the classic Monod formulation.Finally,a key result of this study is that the TEAP-dependent hydrogen concentration in aquifers is not related solely to the microbial kinetics of the hydrogen-consuming organisms as previously suggested but is affected by the multi-substrate kinetics of hydrogen being consumed simultaneously with other electron donors as well as the availability of the electron acceptor.
机译:溶解的氢浓度与其他地球化学指示剂一起成为确定地下水含水层中末端电子受体过程(TEAP)的公认方法。在产甲烷,还原硫酸盐,还原铁的条件下,发现含水氢浓度在特定范围内虽然氢在确定地下TEAP中的应用已广为接受,但在不同的TEAP下存在或不存在其他电子供体的情况下,关于氢利用动力学系数的数据尚缺乏。本研究扩大了动力学通过一系列分批实验获得氢利用数据,以研究在还原铁条件下土杆菌还原硫对乙酸和氢的利用。这些实验的结果表明动力学系数(细胞产率和一级降解率) )描述了G的氢利用率。在铁还原条件下,硫还原剂与先前实验在产甲烷和硫酸盐还原条件下发现的系数在能量上相关。此外,在乙酸盐和氢同时作为电子给体的情况下,两个电子给体之间对G.sulfurredens的抑制作用很小,最后,这项研究的关键结果是,含水层中依赖于TEAP的氢浓度并不仅仅与先前所建议的耗氢生物的微生物动力学有关,而是氢受多底物动力学的影响,氢与其他电子给体同时被消耗,以及电子受体的可用性。

著录项

  • 来源
    《Environmental Science & Technology》 |2005年第9期|p.3069-3076|共8页
  • 作者单位

    Department of Civil & Environmental Engineering,Lehigh University,13 East Packer Avenue,Bethlehem,Pennsylvania 18015;

    Department of Civil & Environmental Engineering,Princeton University,Princeton,New Jersey 08544;

    Department of Civil & Environmental Engineering,Princeton University,Princeton,New Jersey 08544;

  • 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

  • 入库时间 2022-08-17 14:07:55

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