Weathering control over geomorphology of supermature Proterozoic Delhi quartzites of India

Tripathi, Jayant K. ; Rajamani, V. (2003) Weathering control over geomorphology of supermature Proterozoic Delhi quartzites of India Earth Surface Processes and Landforms, 28 (13). pp. 1379-1387. ISSN 0197-9337

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Official URL: http://onlinelibrary.wiley.com/doi/10.1002/esp.501...

Related URL: http://dx.doi.org/10.1002/esp.501

Abstract

Quartz and quartzite are thought to be resistant as a mineral and a rock respectively; however, we have shown that the presence of small amounts of pyrite in the quartzites makes them vulnerable to weathering. We observe that weathering of Proterozoic quartzite in the semi-arid conditions around Delhi proceeded from fractures towards the inside and produced weathering rinds. The chemical index of alteration (CIA), which is actually a measure of weathering of aluminosilicate minerals, increases from the core outwards, through the rinds. Although aluminosilicate minerals occur only as minor phases (<2 per cent), their weathering indicates a movement of the weathering front from the periphery towards the core. We have suggested a coupled mechanism in which the dissolution of pyrites by moving water produced a sulphate-bearing acidic solution and ferrous iron, which reacted with aluminosilicate minerals and quartz, respectively. This initially makes the Delhi quartzite porous and subsequently friable. The total disintegration of grain to grain contacts imparted friability to this quartzite to produce silica sand. Subsequent physical erosion of loose sand, produced during rind development in the outermost zones, has given rise to features like tors, spheroids, gullies, cavities and small-scale caves on these quartzites. Thus, the terrain has acquired ruggedness in semi-arid conditions.

Item Type:Article
Source:Copyright of this article belongs to John Wiley and Sons.
Keywords:Weathering Geochemistry; Quartzites; Semi-arid; Delhi
ID Code:38444
Deposited On:29 Apr 2011 11:02
Last Modified:29 Apr 2011 11:02

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