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Discerning Lunar Pyroclastic and Impact Glasses via Raman Spectroscopy
Xiaojia Zeng;  Xiongyao Li;  Jianzhong Liu;  Bing Mo;  Wen Yu;  Hong Tang
2020
发表期刊Journal of Geophysical Research: Planets
卷号125期号:12页码:1-15
摘要

It is a challenge to distinguish the various lunar glasses, which are characterized by complex origin (volcanic eruption or impact melting) and large compositional variation (picritic, basaltic, or feldspathic). In this work, we present the Raman spectra (200–1,500 cm−1) of a series of lunar glasses (i.e., pyroclastic glasses [PGs], mare impact glasses [MIGs], and highland impact glasses [HIGs]), which were recognized in lunar breccia meteorites Northwest Africa 7948, 10480, 12384. As the Raman technique is sensitive to the composition of glasses, our results show that different types of lunar glasses exhibit various Raman peak positions (RPP) in 400–600 cm−1 and 800–1,200 cm−1 spectral ranges. Specifically, RPP for PGs commonly shift upward to high frequency in the 400–600 cm−1 spectral range (i.e., > 570 cm−1), compared with the RPP for MIGs and HIGs (i.e., < 570 cm−1). In addition, MIGs and HIGs can be distinguished by the relationship of their RPP in 400–600 and 800–1,200 cm−1 ranges (i.e., for MIG, RPP800–1,200 > 1,510 − RPP400–600; for HIG, RPP800–1,200 < 1,510 − RPP400−600). Based on these observations, new Raman diagnostic criteria were proposed to discern lunar pyroclastic and impact glasses (although there may be instances of lunar glasses with different compositions than those measured here). This method offers a nondestructive, quick, and low‐cost way for distinguishing different types of lunar glasses in laboratory (e.g., for the future returned‐soils sampled by Chang'E‐5).

关键词Lunar Glass Lunar Soil Raman
收录类别SCI
语种英语
文献类型期刊论文
条目标识符http://ir.gyig.ac.cn/handle/42920512-1/11210
专题月球与行星科学研究中心
作者单位1.Center for Lunar and Planetary Sciences, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang, China
2.Key Laboratory of Space Manufacturing Technology, Chinese Academy of Sciences, Beijing, China, 3CAS Center for Excellence in Comparative Planetology, Hefei, China
推荐引用方式
GB/T 7714
Xiaojia Zeng;Xiongyao Li;Jianzhong Liu;Bing Mo;Wen Yu;Hong Tang. Discerning Lunar Pyroclastic and Impact Glasses via Raman Spectroscopy[J]. Journal of Geophysical Research: Planets,2020,125(12):1-15.
APA Xiaojia Zeng;Xiongyao Li;Jianzhong Liu;Bing Mo;Wen Yu;Hong Tang.(2020).Discerning Lunar Pyroclastic and Impact Glasses via Raman Spectroscopy.Journal of Geophysical Research: Planets,125(12),1-15.
MLA Xiaojia Zeng;Xiongyao Li;Jianzhong Liu;Bing Mo;Wen Yu;Hong Tang."Discerning Lunar Pyroclastic and Impact Glasses via Raman Spectroscopy".Journal of Geophysical Research: Planets 125.12(2020):1-15.
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