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Lyophilization for water recovery

机译:冻干水回收

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摘要

An energy-efficient lyophilization technique is being developed to recover water from highly contaminated spacecraft waste streams. In the lyophilization process, water in an aqueous waste is frozen and then sublimed, separating the waste into a dried solid material and liquid water. This technology is ideally suited to applications such as the Mars Reference Mission, where water recovery rates approaching 100% are desirable but production of CO{sub}2 is not. Candidate wastes include feces, concentrated brines from water processors, and other solid wastes that contain water. To operate in microgravity, and to minimize power consumption, thermoelectric heat pumps can be used in place of traditional fluid cycle heat pumps. A mathematical model of a thermoelectric lyophilizer is described and used to generate energy use and processing rate estimates.
机译:正在开发一种节能的冻干技术以从高度污染的航天器废物流中恢复水。在冻干过程中,水性废物中的水被冷冻然后升华,将废物分离成干燥的固体材料和液态水。该技术非常适合于诸如火星参考任务的应用,其中水恢复率接近100%是理想的,但CO {Sub} 2的产生不是。候选废物包括粪便,来自水处理器的浓缩盐水,以及含有水的其他固体废物。为了以微匍匐操作,并最大限度地减少功耗,可以使用热电热泵代替传统的流体循环热泵。描述了热电冻干器的数学模型,并用于产生能量使用和处理速率估计。

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