Lithological controls on chemical weathering signatures in the semi-arid climatic regime: Study based on tropical small scale catchments

IF 3.1 2区 地球科学 Q2 GEOGRAPHY, PHYSICAL Geomorphology Pub Date : 2025-02-01 DOI:10.1016/j.geomorph.2024.109521
Ravi Kant Prasad , Naman Deep Singh , Sunil Kumar Singh , Vikrant Jain
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Abstract

Lithological controls on chemical weathering can be better constrained by studying catchments having different lithologic settings in similar climatic conditions. This study compares the weathering fluxes in two small catchments having different lithology in semi-arid region (500–800 mm year-1 rainfall) in western India: The West Banas River (2100 km2 area, 372 m relief) draining granitic/gneissic rocks and the Berach River (610 km2 area; 542 m relief) flowing through shales. Sample collected in the year 2016 and 2017, were analysed for chemical composition to evaluate chemical weathering fluxes. Inverse model analysis and Soil and Water Assessment tool (SWAT) simulated runoff were combined to estimate the annual weathering fluxes. Total dissolved solids (TDS) in the West Banas ranged from 71 to 428 mgL−1(avg. 227 mgL−1), while the Berach River showed TDS of 190–712 mgL−1(avg. 370 mgL−1), with a few higher values due to anthropogenic sources. Silicate weathering rate (SilWR) is estimated as 7.7 ± 1.7 tons km−2y−1 for the granitic West Banas catchment whereas 5.7 ± 1.2 tons km−2y−1 for the shale lithology in the Berach River. The weathering susceptibility ratio of shale to granite is derived as 2:3. The weathering intensity is highly controlled by the susceptible minerals present in these rocks. The posteriori results of elemental ratios of the silicate endmember in shale lithology basin (Berach River) shows strong indication of incongruent weathering in the basin as a result of their constituting minerals has already gone through at least one cycle of chemical weathering during their formation. Saline-alkaline soils (SAS) contribute significantly to dissolved loads, especially in the Berach (38 ± 12 %), compared to the West Banas (26 ± 7 %). The cations derived from different lithologic sources have a dependency on the drainage basin area. However, other topographical factors showed minor control on chemical weathering.
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半干旱气候条件下岩石对化学风化特征的控制:基于热带小尺度流域的研究
通过研究在相似气候条件下具有不同岩性背景的集水区,可以更好地约束岩性对化学风化的控制。本研究比较了印度西部半干旱区(年降雨量500-800毫米)两个不同岩性小集水区的风化通量:西巴纳斯河(2100平方公里面积,372米地形)排水花岗岩/片麻岩和白拉赫河(610平方公里面积;海拔542米)流经页岩。在2016年和2017年收集的样本进行了化学成分分析,以评估化学风化通量。采用逆模型分析和SWAT模拟径流相结合的方法估算年风化通量。西巴纳斯的总溶解固形物(TDS)为71 ~ 428 mgL−1(平均g)。白拉赫河的TDS为190 ~ 712 mgL−1(avg)。370 mgL−1),由于人为来源,有一些更高的值。西巴纳斯花岗岩集水区的硅酸盐风化速率(SilWR)估计为7.7±1.7吨km - 2y - 1,而白拉赫河页岩岩性的硅酸盐风化速率为5.7±1.2吨km - 2y - 1。推导出页岩与花岗岩的风化敏感性比为2:3。风化强度受岩石中易感矿物的高度控制。页岩岩性盆地(白拉赫河)硅酸盐端元元素比值的后验结果表明,由于其构成矿物在形成过程中已经历了至少一个化学风化旋回,表明该盆地存在不均匀风化。与西巴纳斯(26±7%)相比,盐碱土壤(SAS)对溶解负荷有显著贡献,特别是在白桦河(38±12%)。不同岩性来源的阳离子依赖于流域面积。而其他地形因素对化学风化作用的影响较小。
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来源期刊
Geomorphology
Geomorphology 地学-地球科学综合
CiteScore
8.00
自引率
10.30%
发文量
309
审稿时长
3.4 months
期刊介绍: Our journal''s scope includes geomorphic themes of: tectonics and regional structure; glacial processes and landforms; fluvial sequences, Quaternary environmental change and dating; fluvial processes and landforms; mass movement, slopes and periglacial processes; hillslopes and soil erosion; weathering, karst and soils; aeolian processes and landforms, coastal dunes and arid environments; coastal and marine processes, estuaries and lakes; modelling, theoretical and quantitative geomorphology; DEM, GIS and remote sensing methods and applications; hazards, applied and planetary geomorphology; and volcanics.
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