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A urine-fuelled soil-based bioregenerative life support system for long-term and long-distance manned space missions

机译:基于尿液的土壤生物再生生命支持系统,用于长期和远距离载人航天任务

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A soil-based cropping unit fuelled with human urine for long-term manned space missions was investigated with the aim to analyze whether a closed-loop nutrient cycle from human liquid wastes was achievable. Its ecohydrology and biogeochemistry were analysed in microgravity with the use of an advanced computational tool. Urine from the crew was used to supply primary (N, P, and K) and secondary (S, Ca and Mg) nutrients to wheat and soybean plants in the controlled cropping unit. Breakdown of urine compounds into primary and secondary nutrients as well as byproduct gases, adsorbed, and uptake fractions were tracked over a period of 20 years. Results suggested that human urine could satisfy the demand of at least 3 to 4 out of 6 nutrients with an offset in pH and salinity tolerable by plants. It was therefore inferred that a urine-fuelled life support system can introduce a number of advantages including: (1) recycling of liquids wastes and production of food; (2) forgiveness of neglect as compared to engineered electro-mechanical systems that may fail under unexpected or unplanned conditions; and (3) reduction of supply and waste loads during space missions.
机译:研究了一种以人类尿液为燃料的土壤种植单元,用于长期载人航天任务,目的是分析是否可以实现人类液体废物的养分循环。使用先进的计算工具在微重力下分析了其生态水文学和生物地球化学。机组中的尿液用于向受控种植单元中的小麦和大豆植物供应主要(N,P和K)和次要(S,Ca和Mg)营养。在20年的时间里,跟踪了尿液化合物分解为主要和次要营养素以及副产物气体,吸附和吸收分数的过程。结果表明,人类尿液可以满足6种养分中至少3至4种的需求,而植物可以忍受的pH值和盐度有所降低。因此,据推测,以尿液为燃料的生命支持系统可以带来许多好处,包括:(1)废液的回收和食品的生产; (2)与在意外或计划外条件下可能会失效的工程机电系统相比,忽略的宽恕; (3)减少太空飞行任务中的供应和废物负荷。

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