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Volatile Analysis by Pyrolysis of Regolith for planetary resource exploration

机译:稀土资源热解挥发分分析

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The extraction and identification of volatile resources that could be utilized by humans including water, oxygen, noble gases, and hydrocarbons on the Moon, Mars, and small planetary bodies will be critical for future long-term human exploration of these objects. Vacuum pyrolysis at elevated temperatures has been shown to be an efficient way to release volatiles trapped inside solid samples. In order to maximize the extraction of volatiles, including oxygen and noble gases from the breakdown of minerals, a pyrolysis temperature of 1400°C or higher is required, which greatly exceeds the maximum temperatures of current state-of-the-art flight pyrolysis instruments. Here we report on the recent optimization and field testing results of a high temperature pyrolysis oven and sample manipulation system coupled to a mass spectrometer instrument called Volatile Analysis by Pyrolysis of Regolith (VAPoR). VAPoR is capable of heating solid samples under vacuum to temperatures above 1300°C and determining the composition of volatiles released as a function of temperature.
机译:提取和识别人类可以利用的挥发性资源,包括月球,火星和小型行星体上的水,氧气,稀有气体和碳氢化合物,对于人类未来长期探索这些物体至关重要。事实证明,高温下的高温热解是释放滞留在固体样品中的挥发物的有效方法。为了最大程度地从矿物分解中提取挥发物,包括氧气和稀有气体,需要达到1400°C或更高的热解温度,该温度大大超过了当前最先进的飞行热解仪器的最高温度。在这里,我们报告了高温热解炉和样品处理系统与质谱仪仪器(通过Regolith的热解挥发分析法(VAPoR))耦合的最新优化和现场测试结果。 VAPoR能够将固体样品在真空下加热到1300°C以上的温度,并确定随温度变化释放的挥发物的成分。

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