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Electrical energy storage with engineered biological systems

机译:工程生物系统的电能存储

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摘要

The availability of renewable energy technologies is increasing dramatically across the globe thanks to their growing maturity. However, large scale electrical energy storage and retrieval will almost certainly be a required in order to raise the penetration of renewable sources into the grid. No present energy storage technology has the perfect combination of high power and energy density, low financial and environmental cost, lack of site restrictions, long cycle and calendar lifespan, easy materials availability, and fast response time. Engineered electroactive microbes could address many of the limitations of current energy storage technologies by enabling rewired carbon fixation, a process that spatially separates reactions that are normally carried out together in a photosynthetic cell and replaces the least efficient with non-biological equivalents. If successful, this could allow storage of renewable electricity through electrochemical or enzymatic fixation of carbon dioxide and subsequent storage as carbon-based energy storage molecules including hydrocarbons and non-volatile polymers at high efficiency. In this article we compile performance data on biological and non-biological component choices for rewired carbon fixation systems and identify pressing research and engineering challenges.
机译:得益于它们的日趋成熟,可再生能源技术的可用性在全球范围内急剧增加。然而,为了提高可再生能源向电网的渗透,几乎肯定需要大规模的电能存储和回收。当前没有一种储能技术具有高功率和能量密度,低财务和环境成本,缺乏场地限制,周期和日历寿命长,容易获得材料以及快速响应时间的完美组合。工程化的电活性微生物可以通过实现碳固定连接来解决当前能量存储技术的许多局限性,碳固定可以在空间上分离通常在光合作用细胞中一起进行的反应,并用非生物等效物替代效率最低的过程。如果成功,这将允许通过二氧化碳的电化学或酶固定来存储可再生电力,并随后以高效率将其作为包括碳氢化合物和非挥发性聚合物的碳基储能分子进行存储。在本文中,我们针对有线固碳系统的生物和非生物组件选择收集性能数据,并确定紧迫的研究和工程挑战。

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