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On the Performance Potential of Bioelectrochemical Life Support Systems

机译:生物电化学生命支持系统的性能潜力

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An area of growing multi-disciplinary research and revolutionary development for bio-processing on Earth is bioelectrochemical systems. These systems exploit the capability of many microorganisms to act as biocatalysts, enhancing the performance of electrochemical processes which convert low-value materials into valuable products. Many varieties of such processes hold potential value for space exploration as means to recycle metabolic waste and other undesirable materials or in situ resources into oxygen, water, and other valuable substances. However, the wide range of possible reactants, products, configurations, and operating parameters, along with the early stage of development and application on the ground necessitate thorough consideration of which, if any, possibility(ies) could outperform existing technologies and should thus receive investment for space applications. In turn, the decision depends on the theoretical and practical limits of performance and the value of the reactant-product conversions within spaceflight scenarios, and should, to the greatest extent possible, be examined from the perspective of a fully designed, integrated system, rather than as an isolated unit lacking critical components like valves and pumps. Herein, we select a series of possible reactant-product conversions, develop concept process flow diagrams for each, and estimate theoretical and (where sufficient literature data allows) practical performance limitations of each. The objective was to estimate the costs, benefits, and risks of each concept in order to aid strategic decisions in the early-phase technology development effort.
机译:生物电化学系统是地球生物处理领域不断发展的多学科研究和革命性发展的领域。这些系统利用了许多微生物作为生物催化剂的能力,从而增强了将低价材料转化为有价值产品的电化学过程的性能。这种过程的许多变种作为将新陈代谢废物和其他不良物质或原地资源循环利用为氧气,水和其他有价值物质的手段,对于太空探索具有潜在的价值。但是,广泛的可能的反应物,产物,构型和操作参数,以及在地面上的开发和应用的早期阶段,必须仔细考虑(如果有的话)其性能可能会超过现有技术,因此应该接受空间应用投资。反过来,该决定取决于性能和飞行方案中的理论和实践极限以及反应物-产物转化的价值,因此,应该从一个完整设计的集成系统的角度来最大程度地研究该决定,而不是而不是缺少阀门和泵等关键部件的隔离单元。本文中,我们选择了一系列可能的反应物-产物转化,为每种反应物开发了概念过程流程图,并估算了每种反应物的理论和(在足够的文献数据允许的情况下)实际性能的局限性。目的是估计每个概念的成本,收益和风险,以帮助在早期技术开发工作中进行战略决策。

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