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Gas Metabolism Evidence in Support of the Juxtaposition of Hydrogen-Producing and Methanogenic Bacteria in Sewage Sludge and Lake Sediments

机译:气体代谢证据支持污水污泥和湖泊沉积物中产氢和产甲烷细菌的并置

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摘要

We developed new techniques to measure dissolved H2 and H2 consumption kinetics in anoxic ecosystems that were not dependent on headspace measurements or gas transfer-limited experimentation. These H2 metabolism parameters were then compared with measured methane production rates, and estimates of H2 production and interspecies H2 transfer were made. The H2 pool sizes were 205 and 31 nM in sewage sludge from an anaerobic digestor and in sediments (24 m) from Lake Mendota, respectively. The H2 turnover rate constants, as determined by using in situ pool sizes and temperatures, were 103 and 31 h−1 for sludge and sediment, respectively. The observed H2 turnover rate accounted for only 5 to 6% of the expected H2-CO2-dependent methanogenesis in these ecosystems. Our results are in general agreement with the results reported previously and are used to support the conclusion that most of the H2-dependent methanogenesis in these ecosystems occurs as a consequence of direct interspecies H2 transfer between juxtapositioned microbial associations within flocs or consortia.
机译:我们开发了新技术来测量缺氧生态系统中溶解的H2和H2消耗动力学,该技术不依赖于顶空测量或气体传输受限的实验。然后将这些H2代谢参数与测得的甲烷产生速率进行比较,并估算H2产生和种间H2转移。来自厌氧消化池的污水污泥和来自门多塔湖的沉积物(24 m)中的H2池大小分别为205和31 nM。使用原位池大小和温度确定的H2周转速率常数,污泥和沉积物的H2周转速率常数分别为103和31 h -1 。在这些生态系统中,观察到的H2转化率仅占预期的H2-CO2依赖性甲烷生成的5至6%。我们的结果与先前报道的结果基本一致,并被用于支持以下结论:这些生态系统中大多数H2依赖的甲烷生成是由于絮凝物或集团中并置的微生物协会之间直接的种间H2转移而发生的。

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