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Hybrid life support systems with integrated fuel cells and photobioreactors for a lunar base

机译:带有集成燃料电池和光生物反应器的混合生命支持系统,用于月球基地

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摘要

The development of regenerative and sustainable life support systems (LSS) is a basic prerequisite to realize human long-term habitation in space. An efficient and reliable LSS is of high importance for assembling a future research base on the Moon and for further human space exploration missions beyond Low Earth Orbit. Because of longer distance to Earth and longer transfer times new requirements appear for LSS operation and functionality in comparison to the International Space Station. The minimization of resupply mass is a crucial factor to cope with this challenge. Regenerating the main media oxygen, water, and carbon as well as demonstrating a closed loop are essential milestones for an efficient and sustainable LSS. The logical step between partly regenerative physico-chemical and bioregenerative LSS is a so-called hybrid LSS characterized by the crosslinked integration of physico-chemical and simple biological system components. The Institute of Space Systems of the University of Stuttgart (IRS), the Institute of Technical Thermodynamics (ITT) of the German Aerospace Centre (DLR) and the Fraunhofer-Institute for Interfacial Engineering and Biotechnology (IGB) work together in a project on advanced LSS research and development. The IRS will investigate the integration of a photobioreactor (PBR) for algae cultivation as biological component and a reversible proton exchange membrane fuel cell (PEFC) as physico-chemical component into an LSS. Algae in the PBR absorb the carbon dioxide exhaled by the crew and produce biomass (food) and oxygen under light influence. The oxygen can be directed either into the crew cabin or into the fuel cell for generating electricity. Vice versa the electrolysis process splits water (from the PBR or the fuel cell process) into oxygen and hydrogen used as energy storage or propellant. Main task at IRS is a feasibility study on the mentioned technologies, considering the capability of media and product regeneration as well as the ability of integration of the components into a system. Synergies, mass reduction, dissimilar redundancy, and safety enhancement must be taken into account in order to specify integration problems and filtration costs. The IGB supports this study by its expertise in PBR operation, algae cultivation, and algae species selection. The ITT investigates the coupling of the PBR with three different fuel cell types: namely PEFC, SOFC (Solid Oxide Fuel Cell), and AFC (Alkaline Fuel Cell) under electrochemical performance aspects. The influence of PBR products on performance and lifetime of the different fuel cells is of high interest. The potential of potable water and electrical power supply is considered.
机译:发展可再生和可持续的生命支持系统(LSS)是实现人类在太空中长期居住的基本前提。有效和可靠的LSS对于在月球上组装未来的研究基地以及在低地球轨道之外开展进一步的人类太空探索任务至关重要。与国际空间站相比,由于与地球的距离更长且传输时间更长,因此对LSS操作和功能提出了新的要求。使补给质量最小化是应对这一挑战的关键因素。再生主要介质中的氧气,水和碳,并展现出一个封闭的环路,是高效,可持续的LSS的重要里程碑。在部分再生的物理化学和生物再生LSS之间的逻辑步骤是所谓的混合LSS,其特征在于物理化学和简单生物系统组件的交联整合。斯图加特大学空间系统研究所(IRS),德国航空航天中心(DLR)的技术热力学研究所(ITT)和弗劳恩霍夫界面工程与生物技术研究所(IGB)共同开展了一项高级研究项目LSS研发。美国国税局将研究将藻类培养的光生物反应器(PBR)作为生物成分,并将可逆质子交换膜燃料电池(PEFC)作为理化成分整合到LSS中。 PBR中的藻类吸收机组人员呼出的二氧化碳,并在轻微影响下产生生物质(食物)和氧气。氧气可以被引入乘员舱或进入燃料电池以发电。反之亦然,电解过程会将水(来自PBR或燃料电池过程)分解成氧气和氢气,用作能量存储或推进剂。 IRS的主要任务是对上述技术进行可行性研究,同时考虑介质和产品再生的能力以及将组件集成到系统中的能力。为了指定集成问题和过滤成本,必须考虑协同作用,减少质量,不同的冗余度和增强安全性。 IGB通过其在PBR操作,藻类培养和藻类选择方面的专业知识来支持这项研究。 ITT在电化学性能方面研究了PBR与三种不同燃料电池类型的耦合:PEFC,SOFC(固体氧化物燃料电池)和AFC(碱性燃料电池)。 PBR产品对不同燃料电池的性能和寿命的影响引起了广泛关注。考虑了饮用水和电源的潜力。

著录项

  • 来源
    《Aerospace science and technology》 |2013年第1期|169-176|共8页
  • 作者单位

    University of Stuttgart, Institute of Space Systems, Pfaffenwaldring 31, D-70569 Stuttgart, Germany;

    University of Stuttgart, Institute of Space Systems, Pfaffenwaldring 31, D-70569 Stuttgart, Germany;

    University of Stuttgart, Institute of Space Systems, Pfaffenwaldring 31, D-70569 Stuttgart, Germany;

    German Aerospace Centre (DLR), Institute of Technical Thermodynamics, Pfaffenwaldring 38-40, D-70569 Stuttgart, Germany;

    Fraunhofer-Gesellschaft, Institute for Interfacial Engineering and Biotechnology, Nobelstr. 12, D-70569 Stuttgart, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    life support; hybrid; fuel cell; algae; photobioreactor; lunar base; moon;

    机译:生命保障;杂种燃料电池;藻类光生物反应器月球基地月亮;

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