阳离子同位素追踪化学风化作用

IF 6.3 3区 综合性期刊 Q1 Multidisciplinary
Long-Fei Gou , Fang Huang , Shouye Yang , Gangjian Wei , Zhi-Qi Zhao , Zhangdong Jin
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引用次数: 0

摘要

随着时间的推移,岩石和矿物的化学风化作用改变了岩石圈、水圈和大气的地球化学成分,通过消耗大气中的二氧化碳来调节地球表面的温度,从而维持我们这个可居住的星球。阳离子作为化学风化过程中最具流动性的物质,被认为是化学风化的地球化学示踪剂。在过去的几十年里,人们提出了许多示踪剂来监测化学风化,主要集中在阳离子的含量和比例上。由于与阳离子性质的不同,它们提供的不同时间尺度的化学风化信息可能不一致甚至是错误的,以至于一些研究途径陷入了僵局。利用同一元素同位素的相同性质及其所携带的高维信息,利用阳离子稳定同位素客观地追踪化学风化过程,已成为化学风化研究的一个快速发展方向。本文综述了稳定阳离子同位素(δ7Li、δ26Mg、δ41K、δ44/40Ca、δ87/85Rb、δ88/86Sr和δ138/134Ba)示踪化学风化的研究进展,并指出了发展趋势和存在的问题。在综合考虑各种阳离子同位素的优缺点后,我们建议将多种阳离子同位素相互补充和支持的组合作为未来的发展方向,以获得化学风化各过程的可靠信息。这将为客观追踪化学风化提供最有效的方法,从而加深我们对可居住地表温度的调控机制的认识。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cation isotopes trace chemical weathering
Chemical weathering of rocks and minerals alters the geochemical compositions of the lithosphere, hydrosphere, and atmosphere over time, regulating Earth's surface temperature by consuming atmospheric CO2 so as to sustain our habitable planet. As the most mobile species in the processes of chemical weathering, cations are thought to be robust geochemical tracers of chemical weathering. Over the past decades, numerous tracers have been proposed for monitoring chemical weathering, mainly focusing on the contents and ratios of cations. Because of the difference from the properties of cations, information that they provide on chemical weathering over different timescales can be inconsistent or even false, such that some avenues of research have reached an impasse. By virtue of the identical properties of isotopes of the same element and the high-dimensional information that they carry, the stable isotopes of cations have been employed to objectively trace chemical weathering processes, which has become a rapidly developing direction of chemical weathering research. In this review, we summarize the progress made in tracing chemical weathering via the stable cation isotopes (δ7Li, δ26Mg, δ41K, δ44/40Ca, δ87/85Rb, δ88/86Sr, and δ138/134Ba) and point out the development trends and persisting problems. After considering the virtues and deficiencies of various cation isotopes, we recommend the combination of multiple cation isotopes that complement and support one another as the future direction to obtain the reliable information on each process of chemical weathering. This should provide the most effective method for objectively tracing chemical weathering, thereby deepening our understanding of the regulatory mechanisms influencing the habitable surficial temperature.
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来源期刊
Fundamental Research
Fundamental Research Multidisciplinary-Multidisciplinary
CiteScore
4.00
自引率
1.60%
发文量
294
审稿时长
79 days
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