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Trash-to-Gas: Using Waste Products to Minimize Logistical Mass During Long Duration Space Missions

机译:垃圾转化为气体:在长时间的太空任务中使用废物减少后勤质量

摘要

Just as waste-to-energy processes utilizing municipal landftll and biomass wastes are finding increased terrestrial uses, the Trash-to-Gas (TtG) project seeks to convert waste generated during spaceflight into high value commodities. These include methane for propulsion and water for life support in addition to a variety of other gasses. TtG is part of the Logistic Reduction and Repurposing (LRR) project under the NASA Advanced Exploration Systems Program. The LRR project will enable a largely mission-independent approach to minimize logistics contributions to total mission architecture mass. LRR includes technologies that reduce the amount of consumables that need to be sent to space, repurpose items sent to space, or convert wastes to commodities. Currently, waste generated on the International Space Station is stored inside a logistic module which is de-orbited into Earth's atmosphere for destruction. The waste consists of food packaging, food, clothing and other items. This paper will discuss current results on incineration as a waste processing method. Incineration is part of a two step process to produce methane from waste: first the waste is converted to carbon oxides; second, the carbon oxides are fed to a Sabatier reactor where they are converted to methane. The quantities of carbon dioxide, carbon monoxide, methane and water were measured under the different thermal degradation conditions. The overall carbon conversion efficiency and water recovery are discussed.
机译:就像利用市政垃圾和生物质废物的废物转化为能源的过程正在发现越来越多的陆地用途一样,垃圾转化为天然气(TtG)项目的目的是将航天过程中产生的废物转化为高价值商品。其中包括用于推进的甲烷和用于维持生命的水,以及多种其他气体。 TtG是NASA高级勘探系统计划下的后勤减少和再利用(LRR)项目的一部分。 LRR项目将使很大程度上独立于任务的方法成为可能,以最大程度地减少后勤对总体任务架构质量的贡献。 LRR包括的技术可以减少需要发送到太空的消耗品的数量,改变发送到太空的物品的用途或将废物转化为商品的技术。目前,国际空间站产生的废物被存储在一个物流模块中,该模块被送入地球大气层以进行销毁。废物包括食品包装,食品,衣物和其他物品。本文将讨论焚化作为废物处理方法的最新结果。焚化是从废物中产生甲烷的两步法的一部分:首先将废物转化为碳氧化物;第二,将碳氧化物送入Sabatier反应器,在此将其转化为甲烷。在不同的热降解条件下测量了二氧化碳,一氧化碳,甲烷和水的量。讨论了总碳转化效率和水回收率。

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