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Trash-to-Gas: Converting Space Trash into Useful Products

机译:垃圾转化为气体:将空间垃圾转化为有用的产品

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NASA's Logistics Reduction and Repurposing project is a collaborative effort in which NASA is determined to reduce total logistical mass through reduction, reuse and recycling of various wastes and components of long duration space missions and habitats. LRR is focusing on four distinct advanced areas of study: Advanced Clothing System, Logistics-to-Living, Heat Melt Compactor and Trash to Supply Gas (TtSG). The objective of TtSG is to develop technologies that convert material waste, human waste and food waste into high-value products. High-value products include life support oxygen and water, rocket fuels, raw material production feedstocks, and other energy sources. There are multiple pathways for converting waste to products involving single or multi-step processes. This paper discusses thermal oxidation methods of converting waste to methane. Different wastes, including food, food packaging, Maximum Absorbency Garments, human waste simulants, and cotton washcloths have been evaluated in a thermal degradation reactor under conditions promoting pyrolysis, gasification or incineration. The goal was to evaluate the degradation processes at varying temperatures and ramp cycles and to maximize production of desirable products and minimize high molecular weight hydrocarbon (tar) production. Catalytic cracking was also evaluated to minimize tar production. The quantities of CO_2, CO, CH_4, and H_2O were measured under the different thermal degradation conditions. The conversion efficiencies of these products were used to determine the best methods for producing desired products.
机译:NASA的减少和再利用后勤项目是一项协作工作,其中NASA决心通过减少,再利用和回收各种废物以及长期太空任务和栖息地的组成部分来减少总物流量。 LRR专注于四个不同的高级研究领域:高级服装系统,后勤到生活,热熔压实机和垃圾供应气(TtSG)。 TtSG的目标是开发将材料废物,人类废物和食物废物转化为高价值产品的技术。高价值产品包括生命维持氧气和水,火箭燃料,原料生产原料以及其他能源。有多种途径将废物转化为涉及单步或多步过程的产品。本文讨论了将废物转化为甲烷的热氧化方法。在促进热解,气化或焚烧的条件下,在热降解反应器中评估了各种废物,包括食品,食品包装,最大吸收性服装,人类废物模拟物和棉质抹布。目的是评估在变化的温度和升温周期下的降解过程,并最大程度地生产所需产品,并最大程度地减少高分子量烃(焦油)的生产。还评估了催化裂化以最大程度地减少焦油的产生。在不同的热降解条件下测定了CO_2,CO,CH_4和H_2O的含量。这些产品的转化效率用于确定生产所需产品的最佳方法。

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