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Towards synthetic biological approaches to resource utilization on space missions

机译:朝着合成生物方法利用空间飞行任务资源

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摘要

This paper demonstrates the significant utility of deploying non-traditional biological techniques to harness available volatiles and waste resources on manned missions to explore the Moon and Mars. Compared with anticipated non-biological approaches, it is determined that for 916 day Martian missions: 205 days of high-quality methane and oxygen Mars bioproduction with Methanobacterium thermoautotrophicum can reduce the mass of a Martian fuel-manufacture plant by 56%; 496 days of biomass generation with Arthrospira platensis and Arthrospira maxima on Mars can decrease the shipped wet-food mixed-menu mass for a Mars stay and a one-way voyage by 38%; 202 days of Mars polyhydroxybutyrate synthesis with Cupriavidus necator can lower the shipped mass to three-dimensional print a 120 m3 six-person habitat by 85% and a few days of acetaminophen production with engineered Synechocystis sp. PCC 6803 can completely replenish expired or irradiated stocks of the pharmaceutical, thereby providing independence from unmanned resupply spacecraft that take up to 210 days to arrive. Analogous outcomes are included for lunar missions. Because of the benign assumptions involved, the results provide a glimpse of the intriguing potential of ‘space synthetic biology’, and help focus related efforts for immediate, near-term impact.
机译:本文展示了部署非传统生物技术来利用载人的任务中的挥发性物质和废物资源探索月球和火星的重要作用。与预期的非生物方法相比,可以确定在916天的火星任务中:205天的高质量甲烷和氧气火星利用自生甲烷菌的生物生产可以使火星燃料制造工厂的质量降低56%;在火星上用Artthrospira platensis和Arthrospira maxima产生的496天生物量可减少在火星停留和单程航行中运送的湿粮混合菜单质量,减少38%;使用Cupriavidus necator进行202天的Mars多羟基丁酸酯合成可以将运送的质量降低到3D打印的120 m 3 6人栖息地的35%,而使用工程化的集胞藻(Synechochocystis sp。)可以生产几天的对乙酰氨基酚。 PCC 6803可以完全补充过期或受辐照的药品库存,从而与长达210天的无人补给航天器保持独立。月球任务包括类似的结果。由于所涉及的良性假设,这些结果使人对“空间合成生物学”的潜在潜力有所了解,并有助于集中精力进行相关工作,以产生近期的近期影响。

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