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Biotechnological aspects of sulfate reduction with methane as electron donor

机译:甲烷作为电子给体的硫酸盐还原的生物技术方面

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Biological sulfate reduction can be used for the removal and recovery of oxidized sulfur compounds and metals from waste streams. However, the costs of conventional electron donors, like hydrogen and ethanol, limit the application possibilities. Methane from natural gas or biogas would be a more attractive electron donor. Sulfate reduction with methane as electron donor prevails in marine sediments. Recently, several authors succeeded in cultivating the responsible microorganisms in vitro. In addition, the process has been studied in bioreactors. These studies have opened up the possibility to use methane as electron donor for sulfate reduction in wastewater and gas treatment. However, the obtained growth rates of the responsible microorganisms are extremely low, which would be a major limitation for applications. Therefore, further research should focus on novel cultivation techniques.
机译:硫酸盐生物还原可用于从废物流中去除和回收氧化的硫化合物和金属。但是,常规电子供体的成本,例如氢和乙醇,限制了其应用可能性。来自天然气或沼气的甲烷将是更具吸引力的电子供体。甲烷作为电子给体的硫酸盐还原作用普遍存在于海洋沉积物中。最近,几位作者成功地在体外培养了负责任的微生物。另外,已经在生物反应器中研究了该方法。这些研究开辟了使用甲烷作为电子供体来减少废水和气体处理中硫酸盐的可能性。然而,获得的负责任微生物的生长速率极低,这将是应用的主要限制。因此,进一步的研究应集中在新颖的栽培技术上。

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