首页> 外文期刊>Microgravity science and technology >EurCROPIS - 'Euglena gracilis: Combined Regenerative Organic-food Production in Space' - A Space Experiment Testing Biological Life Support Systems Under Lunar And Martian Gravity
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EurCROPIS - 'Euglena gracilis: Combined Regenerative Organic-food Production in Space' - A Space Experiment Testing Biological Life Support Systems Under Lunar And Martian Gravity

机译:EurCROPIS-'Euglena gracilis:合成的可再生有机食品在空间中的生产'-一项在月球和火星重力下测试生物生命支持系统的空间实验

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摘要

Human space exploration needs stable life support systems for the supply of oxygen, water and food for each human explorer due to long term missions. The most promising approach for building stable life support systems is a combination of physico-chemical and biological systems. These hybrid systems combine the reliability of physico-chemical and the sustainability of biological life support systems. Also the disadvantages, which are the finite resources of physico-chemical and the imperfect reliability of biological systems, are mutually balanced. To improve the reliability of biological life support systems, a combination of different biological systems may stabilize the whole approach during long term operations. The satellite mission Eu:CROPIS (Euglena gracilis: Combined Regenerative Organic-food Production In Space) is a testbed for investigating the behavior of combined biological life support systems under the influence of altered gravity, here, Lunar and Martian gravity. The core systems are a biological trickle filter for processing urine into a fertilizer solution via nitrification and Euglena gracilis, a photosynthetic protist which is able to produce oxygen and biomass while protecting the whole system against high ammonia concentrations.
机译:由于长期任务,人类太空探索需要稳定的生命支持系统来为每个人类探索者提供氧气,水和食物。建立稳定的生命支持系统最有希望的方法是物理化学和生物系统的结合。这些混合系统结合了物理化学的可靠性和生物生命支持系统的可持续性。缺点是,物理化学资源有限,生物系统可靠性不完善,这些缺点相互抵消。为了提高生物生命支持系统的可靠性,在长期操作过程中,不同生物系统的组合可以稳定整个方法。卫星任务Eu:CROPIS(Euglena gracilis:太空中的组合再生有机食品生产)是一个试验台,用于研究重力变化(此处为月球和火星重力)影响下的组合生物生命支持系统的行为。核心系统是生物滴滤池,用于通过硝化作用和光合原生生物Euglena gracilis将尿液处理成肥料溶液,该植物能够产生氧气和生物质,同时保护整个系统免受高氨浓度的影响。

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