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Understanding the origin and evolution of water in the Moon through lunar sample studies

机译:通过月球样本研究了解月球中水的起源和演变

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摘要

A paradigm shift has recently occurred in our knowledge and understanding of water in the lunar interior. This has transpired principally through continued analysis of returned lunar samples using modern analytical instrumentation. While these recent studies have undoubtedly measured indigenous water in lunar samples they have also highlighted our current limitations and some future challenges that need to be overcome in order to fully understand the origin, distribution and evolution of water in the lunar interior. Another exciting recent development in the field of lunar science has been the unambiguous detection of water or water ice on the surface of the Moon through instruments flown on a number of orbiting spacecraft missions. Considered together, sample-based studies and those from orbit strongly suggest that the Moon is not an anhydrous planetary body, as previously believed. New observations and measurements support the possibility of a wet lunar interior and the presence of distinct reservoirs of water on the lunar surface. Furthermore, an approach combining measurements of water abundance in lunar samples and its hydrogen isotopic composition has proved to be of vital importance to fingerprint and elucidate processes and source(s) involved in giving rise to the lunar water inventory. A number of sources are likely to have contributed to the water inventory of the Moon ranging from primordial water to meteorite-derived water ice through to the water formed during the reaction of solar wind hydrogen with the lunar soil. Perhaps two of the most striking findings from these recent studies are the revelation that at least some portions of the lunar interior are as water-rich as some Mid-Ocean Ridge Basalt source regions on Earth and that the water in the Earth and the Moon probably share a common origin.
机译:最近我们对月球内部水的认识和理解发生了范式转变。这主要是通过使用现代分析仪器对返回的月球样品进行持续分析而实现的。尽管这些最新研究无疑测量了月球样品中的本地水,但它们也突显了我们目前的局限性和未来需要克服的一些挑战,以便充分了解月球内部水的来源,分布和演变。月球科学领域的另一个令人振奋的最新进展是,通过在许多轨道飞行器飞行任务中飞行的仪器,对月球表面的水或水冰进行了明确的检测。综合考虑,基于样本的研究和来自轨道的研究强烈表明,月球并非如先前所相信的无水行星体。新的观测和测量结果支持月球内部湿润以及月球表面存在明显的水库的可能性。此外,一种结合月球样品中水丰度及其氢同位素组成的测量方法已被证明对指纹和阐明导致月球水存量的过程和来源至关重要。从原始水到陨石衍生的水冰,再到太阳风中的氢与月球土壤反应形成的水,有许多来源可能对月球的水存有贡献。这些最新研究可能得出的两个最惊人的发现是,月球内部的至少某些部分与地球上某些中洋海玄武岩源区一样富含水,并且地球和月球中的水可能有着共同的血统。

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