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Thermal and evolved Gas Analyzer: Part of the Mars Volatile and Climate Surveyor integrated payload

机译:热和演化气体分析仪:火星挥发物和气候测量仪的一部分,有效载荷

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The Thermal and Evolved Gas Analyzer (TEGA) on the Mars Polar Lander spacecraft is composed of two separate components which are closely coupled: a Differential Scanning Calorimeter (DSC) and an Evolved Gas Analyzer (EGA). TEGA has the capability of performing differential scanning calorimetry on eight small (0.038 mL) soil samples selected in the vicinity of the lander. The samples will be heated in ovens to temperatures up to 950 degreesC, and the volatile compounds water and carbon dioxide, which are released during the heating, will be analyzed in the EGA. The power required by the sample oven is continuously monitored during the heating and compared to that required to heat simultaneously a similar, but empty, oven. The power difference is the output of the DSC. Both endothermic and exothermic phase transitions can be detected, and the data can be used in the identification of the phases present. By correlating the gas release with the calorimetry, the abundance of the volatile compounds associated with the different phases can be determined. The EGA may also be able to detect the release of oxygen associated with any superoxide that may be on the surface of the soil grains. The instrument can detect the melting of ice in the DSC down to abundances on the order of 0.2% of the sample, and it can detect the decomposition of calcite, CaCO3, down to abundances of 0.5%. Using the EGA, TEGA can detect small amounts of water, down to 8 ppm in the sample, and it can detect the associated release of CO2 down to the equivalent abundances of 0.03%. The EGA also has the ability to determine the C-13/C-12 ratio in the evolved CO2, but it is not clear if the accuracy of this ratio will be sufficient to address the scientific issues. [References: 45]
机译:火星Polar Lander航天器上的热和演化气体分析仪(TEGA)由紧密耦合的两个独立组件组成:差示扫描量热仪(DSC)和演化气体分析仪(EGA)。 TEGA能够对着陆器附近选择的八个小(0.038 mL)土壤样品进行差示扫描量热法。样品将在烤箱中加热到950摄氏度,加热过程中释放的挥发性化合物水和二氧化碳将在EGA中进行分析。样品烤箱所需的功率在加热过程中被连续监控,并与同时加热类似但空的烤箱所需的功率进行比较。功率差是DSC的输出。吸热和放热的相变都可以被检测到,并且该数据可以用于识别存在的相。通过将气体释放量与热量法相关联,可以确定与不同相相关的挥发性化合物的丰度。 EGA还可以检测与土壤颗粒表面上任何超氧化物有关的氧气释放。该仪器可以检测到DSC中冰的融化程度降至样品的0.2%左右,并且可以检测到方解石CaCO3的分解程度降至0.5%。使用EGA,TEGA可以检测到少量的水,样品中的水含量低至8 ppm,并且可以检测到相关的CO2释放量,直至等效丰度为0.03%。 EGA还具有确定释放出的CO2中C-13 / C-12比率的能力,但尚不清楚该比率的准确性是否足以解决科学问题。 [参考:45]

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