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Effects of Substrate Diffusion and Anode Potential on Kinetic Parameters for Anode-Respiring Bacteria

机译:底物扩散和阳极电位对呼吸性细菌动力学参数的影响

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摘要

The substrate-utilization rate of anode-respiring bacteria (ARB) directly correlates to the current density, one of the main factors in a microbial electrolysis/fuel cell. This study first evaluates the effects of donor-substrate diffusion and anode potential on the estimation of the half-maximum-rate concentration (K_s) and the maximum specific substrate-utilization rate (q_(max)) of a mixed culture biofilm in a microbial electrolysis cell oxidizing acetate. The intrinsic K_s value is 119 g COD/m~3, substrate diffusion has a significant impact on K_s estimation, and the effect of the anode potential on K_s is small. The intrinsic q_(max) value is 22.3 g COD/g VS-d for an assumed biomass density of 50,000 g VS/m~3 (q_(max)X_f = 1120 kg C0D/m~3-d). The maximum specific growth rate (μ_(max)) is 3.2/d which is substantially faster than for acetate-utilizing methanogens and homoacetogens. Although the anode potential affects q_(max), substrate diffusion has a negligible effect The measured half-saturation anode potential (E_(ka)) is very negative, -0.448 V (vs Ag/AgCl), and this low value minimizes anode-potential limitation on the current density and the substrate-utilization rate. Thus, the ARB selected in our biofilm anode were relatively fast growers able to take advantage of their low E_(KA) value (-0.448 V).
机译:阳极呼吸细菌(ARB)的底物利用率与电流密度直接相关,电流密度是微生物电解/燃料电池中的主要因素之一。这项研究首先评估供体-基质扩散和阳极电势对微生物混合培养生物膜的半最大速率浓度(K_s)和最大比基质利用率(q_(max))的估计的影响。电解池氧化醋酸盐。 K_s的固有值为119 g COD / m〜3,衬底扩散对K_s的估计有很大的影响,阳极电势对K_s的影响很小。对于假设生物量密度为50,000 g VS / m〜3(q_(max)X_f = 1120 kg COD / m〜3-d),固有q_(max)值为22.3 g COD / g VS-d。最大比生长速率(μ_(max))为3.2 / d,这比利用乙酸盐的产甲烷菌和同质产乙酸菌的生长速度要快得多。尽管阳极电势影响q_(max),但是衬底扩散的影响可忽略不计。测得的半饱和阳极电势(E_(ka))非常负,为-0.448 V(vs Ag / AgCl),并且该较低的值可最大程度地减少阳极电流密度和基板利用率的潜在限制。因此,在我们的生物膜阳极中选择的ARB是相对较快的种植者,能够利用其低E_(KA)值(-0.448 V)。

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  • 来源
    《Environmental Science & Technology》 |2009年第19期|7571-7577|共7页
  • 作者单位

    Center for Environmental Biotechnology, The Biodesign Institute at Arizona State University, P.O. Box 875701, Tempe,Arizona 85287-5701;

    Center for Environmental Biotechnology, The Biodesign Institute at Arizona State University, P.O. Box 875701, Tempe,Arizona 85287-5701;

    Center for Environmental Biotechnology, The Biodesign Institute at Arizona State University, P.O. Box 875701, Tempe,Arizona 85287-5701;

  • 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);
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  • 正文语种 eng
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