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首页> 外文期刊>Biotechnology and Bioengineering >pH, redox potential and local biofilm potential microenvironments within Geobacter sulfurreducens biofilms and their roles in electron transfer
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pH, redox potential and local biofilm potential microenvironments within Geobacter sulfurreducens biofilms and their roles in electron transfer

机译:地球细菌硫还原生物膜内的pH,氧化还原电势和局部生物膜电势微环境及其在电子转移中的作用

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摘要

The limitation of pH inside electrode-respiring biofilms is a well-known concept. However, little is known about how pH and redox potential are affected by increasing current inside biofilms respiring on electrodes. Quantifying the variations in pH and redox potential with increasing current is needed to determine how electron transfer is tied to proton transfer within the biofilm. In this research, we quantified pH and redox potential variations in electrode-respiring Geobacter sulfurreducens biofilms as a function of respiration rates, measured as current. We also characterized pH and redox potential at the counter electrode. We concluded that (1) pH continued to decrease in the biofilm through different growth phases, showing that the pH is not always a limiting factor in a biofilm and (2) decreasing pH and increasing redox potential at the biofilm electrode were associated only with the biofilm, demonstrating that G. sulfurreducens biofilms respire in a unique internal environment. Redox potential inside the biofilm was also compared to the local biofilm potential measured by a graphite microelectrode, where the tip of the microelectrode was allowed to acclimatize inside the biofilm. Biotechnol.
机译:呼吸电极生物膜内部的pH值限制是众所周知的概念。然而,关于如何通过电极上呼吸的生物膜内部电流的增加如何影响pH和氧化还原电势知之甚少。需要确定随着电流的增加pH和氧化还原电势的变化,以确定电子转移与生物膜内质子转移的联系。在这项研究中,我们量化了电极呼吸性Geobacter sulphreducens生物膜的pH和氧化还原电位变化,该变化是呼吸速率的函数,以电流测量。我们还表征了对电极的pH和氧化还原电位。我们得出的结论是:(1)生物膜在不同的生长期中pH持续降低,这表明pH值并不总是生物膜的限制因素,(2)pH的降低和生物膜电极氧化还原电位的升高仅与生物膜相关。生物膜,证明硫还原菌可在独特的内部环境中呼吸。还将生物膜内部的氧化还原电势与通过石墨微电极测量的局部生物膜电势进行了比较,在石墨微电极上,使微电极的尖端适应了生物膜内部。生物技术。

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