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Reflectance spectroscopy applied to clay mineralogy and alteration intensity of a thick basaltic weathering sequence in Hainan Island, South China

机译:反射光谱应用于华南海南岛厚玄武岩风化序列的粘土矿物学和改变强度

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摘要

Visible/Near Infrared Reflectance spectroscopy (350-2500 nm) is an efficient and effective tool to identify and semi-quantify clay minerals, Fe3+ (oxyhydr)oxides, and their crystal-chemistry/structure. Even so, there have been few studies systematically describing how spectroscopy can be applied to mineralogical evolution during weathering. This study investigated reflectance spectra of a long core of a thick basaltic weathering sequence in Hainan Island and a series of transformation products from montmorillonite to kaolinite to present spectral features associated with weathering trends. In combination with X-ray diffraction and geochemical results, mineralogical transitions and weathering intensity of the core samples were described from a spectroscopic perspective. Several different pmtoliths were spectroscopically recognized in the Hainan weathering sequence, consistent with geological observation and geochemical analysis. Overprinted on these multiple protoliths was a discernable weathering sequence observable by infrared spectroscopic methods. Clay minerals changed upwards in section from TOT type (nontronite) to TO type (kaolinite), and finally to O type (gibbsite) hydroxide clay-size particles as the result of gradual hydrolysis of silicates and leaching of mobile elements with weathering. The relative abundance of hydroxyl to interlayer water, observable by the band depth ratio of spectral absorptions around 1400 nm and 1900 nm (BD1400/BD1900), increased progressively and correlated positively with the chemical index of alteration and Al2O3 concentration. The increasing BD1400/BD1900 index value with weathering was the result of gradual leaching of interlayer cations (e. g. Na+, K+), and their water complexes within interlayers, and gradual formation of M-OH layers by hydrolysis. Owing to leaching of Mg and release of Fe, the octahedral M-OH formed by hydrolysis was gradually dominated by Al-OH. Reflectance spectroscopy is a powerful tool to identify protolith changes in weathering sequences and for studying clay mineralogical transitions and weathering intensity. This spectroscopic approach could have great value for understanding weathering related to paleoclimate on Earth or other planets using field spectroscopy and remote sensing.
机译:可见/近红外反射光谱(350-2500nm)是一种有效且有效的工具,可识别和半量化粘土矿物,Fe3 +(氧水)氧化物及其晶体化学/结构。即便如此,有很少的研究系统地描述了如何在风化期间将光谱应用应用于矿物学演变。本研究研究了海南岛厚玄武岩风化序列的长核的反射光谱,以及来自蒙脱石的一系列转化产物,从蒙脱石到高岭石,以呈现与风化趋势相关的光谱特征。结合X射线衍射和地球化学结果,从光谱观点描述了核心样品的矿物转变和核心样本的耐候强度。在海南风化序列中,几种不同的PMToliths在海南风化序列中被光谱识别,与地质观察和地球化学分析一致。在这些多种促果上叠印是可观察到的可辨认的风化序列,可观察到红外光谱法。粘土矿物从Tot型(非巨石)的部分向上变为型(高岭石),最后通过逐渐水解硅酸盐和静脉化的移动元件与风化的偶然水解的结果,氢氧化物粘土尺寸粒子。通过谱吸收的带深率为约1400nm和1900nm(BD1400 / BD1900)的波段深度比观察到的相对丰度,随着改变的化学指标和Al2O3浓度而逐渐增加和相关。随着风化的增加的BD1400 / BD1900指标值是层间阳离子逐渐浸出(例如Na +,K +)的结果,并通过水解逐渐形成M-OH层的水分复合物。由于Mg的浸出和Fe释放,通过水解形成的八面体M-OH逐渐由Al-OH逐渐支配。反射光谱是一种强大的工具,可以识别耐候性序列中的促果实变化以及研究粘土矿物学转变和耐候强度。这种光谱方法可能具有很大的价值,可以使用场光谱和遥感在地球或其他行星上与古娱乐相关的风化。

著录项

  • 来源
    《Applied clay science》 |2021年第2期|105923.1-105923.12|共12页
  • 作者单位

    Univ Hong Kong Div Earth & Planetary Sci Hong Kong Peoples R China|Univ Hong Kong Lab Space Res Hong Kong Peoples R China;

    Chinese Acad Sci Guangzhou Inst Geochem Key Lab Mineral & Metallogeny Guangdong Prov Key Lab Mineral Phys & Mat Guangzhou Peoples R China;

    Univ Hong Kong Div Earth & Planetary Sci Hong Kong Peoples R China|Univ Hong Kong Lab Space Res Hong Kong Peoples R China;

    Nat Hist Museum Dept Earth Sci Cromwell Rd London SW7 5BD England;

    Northeastern Univ Sch Resources & Civil Engn Shenyang 110819 Peoples R China;

    Chinese Acad Sci Guangzhou Inst Geochem Key Lab Mineral & Metallogeny Guangdong Prov Key Lab Mineral Phys & Mat Guangzhou Peoples R China;

    Chinese Acad Sci Guangzhou Inst Geochem Key Lab Mineral & Metallogeny Guangdong Prov Key Lab Mineral Phys & Mat Guangzhou Peoples R China;

    Chinese Acad Sci Guangzhou Inst Geochem Key Lab Mineral & Metallogeny Guangdong Prov Key Lab Mineral Phys & Mat Guangzhou Peoples R China;

    Chinese Acad Sci Guangzhou Inst Geochem State Key Lab Isotope Geochem Guangzhou Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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