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Laboratory simulation of the salt weathering of schist: II. Fragmentation of fine schist particles

机译:片岩盐风化的实验室模拟:II。片岩细颗粒破碎

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Recent developments in long term landform evolution modelling have created a new demand for quantitative salt weathering data, and in particular data describing the size distribution of the weathered rock fragments. To enable future development of rock breakdown models for use in landscape evolution and soil production models, laboratory work was undertaken to extend existing schist/salt weathering fragmentation studies to include an examination of the breakdown of sub-millimetre quartz chlorite schist particles in a seasonally wet tropical climate. Laser particle sizing was used to assess the impact of different experimental procedures on the resulting particle size distribution. The results reveal that salt weathering under a range of realistic simulated tropical wet season conditions produces a significant degree of schist particle breakdown. The fragmentation of the schist is characterized by splitting of the larger fragments into mid-sized product with finer material produced, possibly from the breakdown of mid-sized fragments when weathering is more advanced. Salinity, the salt addition method and temperature were all found to affect weathering rates. Subtle differences in mineralogy also produce variations in weathering patterns and rates. It is also shown that an increase in drying temperature leads to accelerated weathering rates, however, the geometry of the fracture process is not significantly affected. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:长期地貌演化模型的最新发展对定量盐分风化数据提出了新的要求,尤其是描述风化岩石碎片尺寸分布的数据。为使将来能够用于景观演化和土壤生产模型的岩石分解模型的开发,实验室开展了一些工作,以扩展现有的片岩/盐风化破碎研究,包括对季节性湿润的亚毫米石英亚氯酸盐片岩片岩颗粒的分解进行检查。热带气候。激光粒度分析用于评估不同实验程序对所得粒度分布的影响。结果表明,在一系列现实的模拟热带雨季条件下,盐的风化作用会产生大量的片岩颗粒分解。片岩的碎片化特征是将较大的碎片分裂成中等尺寸的产品,并产生了较细的物质,这可能是由于风化程度更高时中型碎片的分解所致。盐度,添加盐的方法和温度都影响风化率。矿物学上的细微差异也会导致风化模式和风速变化。还显示出干燥温度的升高导致加速的风化速率,但是,断裂过程的几何形状没有受到显着影响。版权所有(c)2006 John Wiley&Sons,Ltd.

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