中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Deep weathering along a granite ridgeline in a subtropical climate

文献类型:期刊论文

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作者Wenjing Liu; Congqiang Liu; Susan L. Brantley; Zhifang Xu; Tong Zhao; Taoze Liu; Chong Yu; Dingshuai Xue; Zhiqi Zhao; Lifeng Cui
刊名Chemical Geology ; Chemical Geology
出版日期2016 ; 2016
卷号427页码:17-34
关键词Granite Granite weathering pedogenesis soil Formation interflow weathering pedogenesis soil Formation interflow
英文摘要

Bulk chemical composition and mineralogy were examined in three soil profiles and a deeper 11-meter profile weathering on a granite ridgeline under subtropical climate conditions in south China. The weathering sequence is delineated by mineralogy and major element variations. Apatite, biotite, hornblende and plagioclase dissolve early during weathering, resulting in nearly 100% Ca and Na loss and significant Mg, Fe and P depletion at depth. The K-feldspar reaction front begins at the depth of depletion of plagioclase, leading to a loss of ~ 80% of the K at the land surface near the bottom of the ridgeline and almost 100% at the top. Dissolution of quartz and other silicates releases about 60% of Si in the profiles. Kaolinite is the dominant clay mineral and it transforms to gibbsite in the uppermost layer. The soil horizon (upper 100 cm) is the zone dominated by pedogenic processes, including active biological activity, physical erosion and influx of high concentrations of atmospheric components (especially CO2 and O2). The pedogenic processes are characterized by low pH (~ 4.54 to 5.85), high clay content (kaolinite: 6–16 wt.%; gibbsite: 2–8 wt.%) and total organic carbon content (0.13–3.93%) and intensive fracturing and dissolution of quartz and K-feldspar compared with the lower horizons.

Accumulation of organic material and resistant minerals downslope is attributed to down-ridge movement of water (termed here, interflow) and weathering products in the uppermost 100 cm down the ridgeline. Using a mass balance model calculation for the catena that assumes steady-state soil thickness at all sites, the bottom profile shows the highest apparent total chemical weathering loss rate (~ 14 g m− 2 y− 1) whereas the middle position shows the highest physical erosion loss rate (~ 44 g m− 2 y− 1). SiO2 accounts for about 84% of the chemical weathering outflux from the soil horizons along the ridgeline hillslope. Chemical weathering rates at the bottom of the hillslope may be accelerated by high concentrations of organic material and by dissolution of kaolinite.

This study demonstrates that mineral reaction fronts in granite become separated over depth intervals of meters and that elemental fluxes and release mechanisms vary with position along a ridgeline catena。

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Bulk chemical composition and mineralogy were examined in three soil profiles and a deeper 11-meter profile weathering on a granite ridgeline under subtropical climate conditions in south China. The weathering sequence is delineated by mineralogy and major element variations. Apatite, biotite, hornblende and plagioclase dissolve early during weathering, resulting in nearly 100% Ca and Na loss and significant Mg, Fe and P depletion at depth. The K-feldspar reaction front begins at the depth of depletion of plagioclase, leading to a loss of ~ 80% of the K at the land surface near the bottom of the ridgeline and almost 100% at the top. Dissolution of quartz and other silicates releases about 60% of Si in the profiles. Kaolinite is the dominant clay mineral and it transforms to gibbsite in the uppermost layer. The soil horizon (upper 100 cm) is the zone dominated by pedogenic processes, including active biological activity, physical erosion and influx of high concentrations of atmospheric components (especially CO2 and O2). The pedogenic processes are characterized by low pH (~ 4.54 to 5.85), high clay content (kaolinite: 6–16 wt.%; gibbsite: 2–8 wt.%) and total organic carbon content (0.13–3.93%) and intensive fracturing and dissolution of quartz and K-feldspar compared with the lower horizons.

Accumulation of organic material and resistant minerals downslope is attributed to down-ridge movement of water (termed here, interflow) and weathering products in the uppermost 100 cm down the ridgeline. Using a mass balance model calculation for the catena that assumes steady-state soil thickness at all sites, the bottom profile shows the highest apparent total chemical weathering loss rate (~ 14 g m− 2 y− 1) whereas the middle position shows the highest physical erosion loss rate (~ 44 g m− 2 y− 1). SiO2 accounts for about 84% of the chemical weathering outflux from the soil horizons along the ridgeline hillslope. Chemical weathering rates at the bottom of the hillslope may be accelerated by high concentrations of organic material and by dissolution of kaolinite.

This study demonstrates that mineral reaction fronts in granite become separated over depth intervals of meters and that elemental fluxes and release mechanisms vary with position along a ridgeline catena。

语种英语 ; 英语
源URL[http://ir.gyig.ac.cn/handle/42920512-1/9630]  
专题地球化学研究所_环境地球化学国家重点实验室
作者单位1.Key Laboratory of Shale Gas and Geoengineering, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China
2.Earth and Environmental Systems Institute and the Department of Geosciences, The Pennsylvania State University, University Park, PA 16802, USA
3.University of Chinese Academy of Sciences, Beijing 100049, China
4.Key Laboratory of Mineral Resources, Institute of Geology and Geophysics, Chinese Academy of Sciences, Beijing 100029, China
5.State Key Laboratory of Environmental Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang, Guizhou 550002, China
推荐引用方式
GB/T 7714
Wenjing Liu,Congqiang Liu,Susan L. Brantley,et al. Deep weathering along a granite ridgeline in a subtropical climate, Deep weathering along a granite ridgeline in a subtropical climate[J]. Chemical Geology, Chemical Geology,2016, 2016,427, 427:17-34, 17-34.
APA Wenjing Liu.,Congqiang Liu.,Susan L. Brantley.,Zhifang Xu.,Tong Zhao.,...&Xin Gu.(2016).Deep weathering along a granite ridgeline in a subtropical climate.Chemical Geology,427,17-34.
MLA Wenjing Liu,et al."Deep weathering along a granite ridgeline in a subtropical climate".Chemical Geology 427(2016):17-34.

入库方式: OAI收割

来源:地球化学研究所

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