Chemical weathering in the Krishna Basin and Western Ghats of the Deccan Traps, India: Rates of basalt weathering and their controls

被引:168
|
作者
Das, A
Krishnaswami, S [1 ]
Sarin, MM
Pande, K
机构
[1] Phys Res Lab, Planetry & Geosci Div, Ahmedabad 380009, Gujarat, India
[2] Indian Inst Technol, Dept Earth Sci, Bombay 400076, Maharashtra, India
关键词
D O I
10.1016/j.gca.2004.10.014
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Rates of chemical and silicate weathering of the Deccan Trap basalts, India, have been determined through major ion measurements in the headwaters of the Krishna and the Bhima rivers, their tributaries, and the west flowing streams of the Western Ghats, all of which flow almost entirely through the Deccan basalts. Samples (n = 63) for this study were collected from 23 rivers during two consecutive monsoon seasons of 2001 and 2002. The Total dissolved solid (TDS) in the samples range from 27 to 640 mg l(-1). The rivers draining the Western Ghats that flow through patches of cation deficient lateritic soils have lower TDS (average: 74 mg l(-1)), whereas the Bhima (except at origin) and its tributaries that seem to receive Na, Cl, and SO4 from saline soils and anthropogenic inputs have values in excess of 170 mg l(-1). Many of the rivers sampled are supersaturated with respect to calcite. The chemical weathering rates (CWR) of "selected" basins, which exclude rivers supersaturated in calcite and which have high Cl and SO4, are in range of similar to 3 to similar to 60 t km(-2) y(-1). This yields an area-weighted average CWR of similar to 16 t km(-2) y(-1) for the Deccan Traps. This is a factor of similar to 2 lower than that reported for the Narmada-Tapti-Wainganga (NTW) systems draining the more northern regions of the Deccan. The difference can be because of (i) natural variations in CWR among the different basins of the Deccan, (ii) "selection" of river basin for CWR calculation in this study, and (iii) possible contribution of major ions from sources, in addition to basalts, to rivers of the northern Deccan Traps. Silicate weathering rates (SWR) in the selected basins calculated using dissolved Mg as an index varies between similar to 3 to similar to 60 t km(-2) y(-1), nearly identical to their CWR. The Ca/Mg and Na/Mg in these rivers, after correcting for rain input, are quite similar to those in average basalts of the region, suggesting near congruent release of Ca, Mg, and Na from basalts to rivers. Comparison of calculated and measured silicate-Ca in these rivers indicates that at most similar to 30% of Ca can be of nonsilicate origin, a likely source being carbonates in basalts and sediments. The chemical and silicate weathering rates of the west flowing rivers of the Deccan are similar to 4 times higher than the east flowing rivers. This difference is due to the correspondingly higher rainfall and runoff in the western region and thus reemphasises the dominant role of runoff in regulating weathering rates, The silicon weathering rate (SWR) in the Krishna Basin is similar to 15 t km(-2) y(-1), within a factor of similar to 2 to those in the Yamuna, Bhagirathi, and Alaknanda basins of the Himalaya, suggesting that under favourable conditions (intense physical weathering, high runoff) granites and the other silicates in the Himalaya weather at rates similar to those of Deccan basalts. The CO2 consumption rate for the Deccan is deduced to be similar to 3.6 x 10(5) moles km(-2) y(-1) based on the SWR. The rate, though, is two to three times lower than reported for the NTW rivers system; it still reinforces the earlier findings that, in general, basalts weather more rapidly than other silicates and that they significantly influence the atmospheric CO2 budget on long-term scales. Copyright (c) 2005 Elsevier Ltd
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页码:2067 / 2084
页数:18
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