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100 years of microbial electricity production: three concepts for the future

机译:微生物发电的100年:未来的三个概念

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SummaryBioelectrochemical systems (BES) have been explored according to three main concepts: to produce energy from organic substrates, to generate products and to provide specific environmental services. In this work, by using an engineering approach, biological conversion rates are calculated for BES resp. anaerobic digestion. These rates are compared with currents produced by chemical batteries and chemical fuel cells in order to position BES in the ‘energy’-market. To evaluate the potential of generating various products, the biochemistry behind the biological conversion rates is examined in relation to terminal electron transfer molecules. By comparing kinetics rather than thermodynamics, more insight is gained in the biological bottlenecks that hamper a BES. The short-term future for BES research and its possible application is situated in smart niches in sustainable environmental development, i.e. in processes where no large currents or investment cost intensive reactors are needed to obtain the desired results. Some specific examples are identified.
机译:总结已根据三个主要概念对生物电化学系统(BES)进行了研究:从有机底物中产生能量,产生产品并提供特定的环境服务。在这项工作中,通过使用工程方法,计算了BES响应的生物转化率。厌氧消化。将这些费率与化学电池和化学燃料电池产生的电流进行比较,以便将BES定位于“能源”市场。为了评估产生各种产物的潜力,相对于末端电子转移分子,研究了生物转化率背后的生物化学。通过比较动力学而不是热力学,可以在阻碍BES的生物学瓶颈中获得更多的见识。 BES研究的短期前景及其可能的应用位于可持续环境发展的智能领域,即不需要大电流或投资成本高的反应堆来获得所需结果的过程。确定了一些具体示例。

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