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Bio-Regenerative Life Support System Development for Lunar/Mars Habitats

机译:月球/火星栖息地生物再生生命支持系统开发

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Bio-regenerative Life Support Systems (BLSS) uses biological processes to support an astronaut crew, and includes atmosphere revitalization, water recycling, food production, and organic waste recycling. The University of Arizona Controlled Environment Agriculture Center (UA-CEAC), Systems and Industrial Engineering Department, Sadler Machine Co. (USA) and Italian collaborators, Thales Alenia Space Italia (TAS-I), Aero-Sekur, SpA, and University of Naples Federico Ⅱ are developing BLSS for future Lunar/Mars surface missions. Current efforts at UA-CEAC include operation of four BLSS Lunar Greenhouse (LGH) Prototype Units with the primary purpose of demonstrating poly-culture production of food crops in a semi-closed gaseous cycle, and preliminary efforts of waste DWE-Composting, Solar Concentrating Plant Lighting/Power System, and System Monitoring/Telepresence Support. TAS-I, the University of Naples, and Aero-Sekur BLSS efforts in Italy include operation of Recyclab, the EDEN chamber, and the development of space plant growth chambers. UA-CEAC efforts are supported by NASA Ralph Steckler Phase II Space Grant while the Italian collaborators have been supported by ESA, ASI, and regional, and internal sources. Based on NASA crop production area estimates the LGH with its four modules will support a four person crew with 100% of their water/atmosphere recycling, and 50%of their total daily dietary caloric intake, (~1000 kcal per person). The use of BLSS in conjunction with physicochemical life support systems offers redundant life support systems for increased crew safety and a healthy diet. Unique features of the LGH effort are its closed system approach, poly-culture production for a diverse vegetarian diet, efforts to close the water cycle, integration of composting into the water and air revitalization cycles, fiber-optic delivery of concentrated sunlight for crop production, and near real-time remote decision support capabilities.
机译:生物再生生命支持系统(BLSS)使用生物过程来支持宇航员,并包括大气再生,水循环利用,食品生产和有机废物循环利用。亚利桑那大学控制环境农业中心(UA-CEAC),系统和工业工程系,萨德勒机器公司(美国)和意大利合作者,泰雷兹·阿莱尼亚太空意大利(TAS-I),Aero-Sekur,SpA和University of University那不勒斯·费德里科Ⅱ(Naples FedericoⅡ)正在为未来的月球/火星水面飞行任务开发BLSS。 UA-CEAC目前的工作包括运行四个BLSS月球温室(LGH)原型装置,其主要目的是在半封闭的气态循环中展示粮食作物的多元养殖生产;以及废物DWE-堆肥,太阳能集散的初步工作。工厂照明/电源系统,以及系统监视/网真支持。 TAS-I,那不勒斯大学和Aero-Sekur BLSS在意大利的工作包括Recyclab的运营,EDEN室以及太空植物生长室的开发。 UA-CEAC的工作得到了NASA拉尔夫·史达克勒二期太空资助的支持,而意大利的合作者得到了ESA,ASI,区域和内部资源的支持。根据美国国家航空航天局(NASA)的农作物生产区域,LGH及其四个模块将支持四人乘员,他们的水/大气再循环量为100%,每日饮食热量摄入总量的50%(每人约1000大卡)。将BLSS与理化生命支持系统结合使用可提供冗余的生命支持系统,以提高机组人员的安全性和健康饮食。 LGH的独特之处在于其封闭系统的方法,多种多样的素食饮食的多元文化生产,封闭水循环的努力,将堆肥整合到水和空气中的再生循环,通过光纤输送集中日光以用于农作物生产以及近乎实时的远程决策支持功能。

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