粘土矿物控制着细粒河流沉积物的硅同位素变化:物理侵蚀与化学风化之间的权衡意义

IF 3.6 2区 地球科学 Q1 GEOCHEMISTRY & GEOPHYSICS Chemical Geology Pub Date : 2024-06-22 DOI:10.1016/j.chemgeo.2024.122249
Chen Ling , Zhifei Liu , Xun Yu , Yulong Zhao , Fernando P. Siringan , Khanh Phon Le , Edlic Sathiamurthy , Chen-Feng You , Kaiyun Chen
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引用次数: 0

摘要

河流沉积物中的稳定硅(Si)同位素可以帮助人们深入了解地球表面的硅酸盐风化过程。然而,由于缺乏全面的研究,人们无法充分了解大陆风化过程中影响硅同位素分馏的因素。本研究通过对南海周边13条河流细粒沉积物中Si同位素的分析,观察到大量碎屑沉积物(63微米)中Si同位素的显著变化,δ30Si值在-0.17‰至-1.09‰之间。在盆地尺度上,δ30Si 值受到气候条件、岩性和构造环境等多种控制因素的影响,与粘土矿物的含量有着密切的关系。风化类型和强度的特征最终反映在风化产物上,特别是粘土矿物。通过对全球主要河流中多种粒度的数据进行汇编,可以观察到基于粘土矿物分类的 δ30Si 和 Al/Si 比率之间存在密切的相关性,且不受区域和粒度变化的影响。随着主要粘土矿物群从伊利石/绿泥石过渡到直闪石和高岭石,硅同位素分馏程度逐渐增加。这一序列表明了从更强烈的物理侵蚀到更密集的化学风化的转变,表明了风化机制从风化受限向迁移受限的过渡。这项研究揭示了硅同位素组成与粘土矿物组合之间的内在联系,为类似的稳定同位素研究提供了启示,并为了解大陆风化过程及其对全球碳循环的贡献提供了一个潜在指标。
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Clay minerals control silicon isotope variations of fine-grained river sediments: Implication for the trade-off between physical erosion and chemical weathering

Stable silicon (Si) isotopes in fluvial sediments can provide insights into understanding silicate weathering processes on the Earth's surface. However, a lack of comprehensive studies has hindered full understanding of the factors influencing Si isotope fractionation during continental weathering. In this study, through the analysis of Si isotopes in fine-grained sediments from 13 rivers surrounding the South China Sea, significant variation of Si isotopes in bulk detrital sediments (<63 μm) was observed, with δ30Si values ranging from −0.17‰ to −1.09‰. At basin scale, the δ30Si values are influenced by multiple controlling factors such as climatic conditions, lithology, and tectonic settings, which have a close relationship with the content of clay minerals. The characteristics of weathering types and intensities are ultimately reflected in the weathering products, specifically clay minerals. Compiling data across multiple grain sizes from major rivers globally, robust correlations based on clay mineral classification between δ30Si and Al/Si ratio have been observed, which are unaffected by regional and grain-size variations. As the dominant clay mineral group transitions from illite/chlorite to smectite and kaolinite, the degree of Si isotope fractionation increases progressively. This sequence indicates a shift from stronger physical erosion to more intensive chemical weathering, suggesting a transition in the weathering regime from weathering-limited to transport-limited. This study reveals the intrinsic link between Si isotopic compositions and clay mineral assemblages, providing implications for similar stable isotope research and offering a potential indicator for understanding continental weathering processes and their contributions to the global carbon cycle.

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来源期刊
Chemical Geology
Chemical Geology 地学-地球化学与地球物理
CiteScore
7.20
自引率
10.30%
发文量
374
审稿时长
3.6 months
期刊介绍: Chemical Geology is an international journal that publishes original research papers on isotopic and elemental geochemistry, geochronology and cosmochemistry. The Journal focuses on chemical processes in igneous, metamorphic, and sedimentary petrology, low- and high-temperature aqueous solutions, biogeochemistry, the environment and cosmochemistry. Papers that are field, experimentally, or computationally based are appropriate if they are of broad international interest. The Journal generally does not publish papers that are primarily of regional or local interest, or which are primarily focused on remediation and applied geochemistry. The Journal also welcomes innovative papers dealing with significant analytical advances that are of wide interest in the community and extend significantly beyond the scope of what would be included in the methods section of a standard research paper.
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