首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >The role of moisture cycling in the weathering of a quartz chlorite schist in a tropical environment: findings of a laboratory simulation
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The role of moisture cycling in the weathering of a quartz chlorite schist in a tropical environment: findings of a laboratory simulation

机译:湿气循环在热带环境中石英亚氯酸盐片岩风化中的作用:实验室模拟结果

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Long-term weathering or a quartz chlorite schist via wetting and drying was studied under a simulated tropical climate. Cubic rock samples (15 mm x 15 mm x 15 mm) were cut from larger rocks and subjected to time-compressed climatic conditions simulating the tropical wet season climate at the Ranger Uranium Mine in the Northern Territory, Australia. Fragmentation, moisture content and moisture uptake rate were monitored over 5000 cycles of wetting and drying. To determine the impact of climatic variables, five climatic regimes were simulated, varying water application, temperature and drying. One of the climatic regimes reproduced observed temperature and moisture variability at the Ranger Uranium Mine, but over a compressed time scale.It is shown that wetting and drying is capable of weathering quartz chlorite schist with changes expected over a real time period of decades. While wetting and (Irving alone does produce changes to rock morphology, the incorporation of temperature variation further enhances weathering rates. Although little fragmentation occurred in experiments, significant changes to internal pore structure were observed, which could potentially enhance other weathering mechanisms. Moisture variability is shown to lead to higher weathering rates than are observed when samples are subjected only to leaching. Finally, experiments were conducted on two rock samples from the same source having only subtle differences in mineralogy. The samples exhibited quite different weathering rates leading to the conclusion that our knowledge of the role of rock type and composition in weathering is insufficient for the accurate determination of weathering rates. Copyright (c) 2005 John Wiley & Sons, Ltd.
机译:在模拟的热带气候下,研究了长期风化或通过润湿和干燥的石英绿泥石片岩。从较大的岩石上切下了立方岩样品(15毫米x 15毫米x 15毫米),并经过时间压缩的气候条件,模拟了澳大利亚北领地Ranger铀矿的热带湿季气候。在湿润和干燥的5000个循环中监测碎裂,水分含量和水分吸收率。为了确定气候变量的影响,模拟了五种气候状况,分别改变了用水量,温度和干燥程度。一种气候状况再现了Ranger铀矿的观察到的温度和湿度变化,但在压缩的时间范围内显示湿润和干燥能够风化石英亚氯酸盐片岩,预计在数十年的实时时间内会发生变化。虽然润湿和(仅通过扰动确实会改变岩石的形态,但温度变化的结合会进一步提高风化率。尽管在实验中几乎没有碎裂现象,但观察到内部孔隙结构发生了显着变化,这有可能增强其他风化机理。结果表明,与仅浸出样品相比,风化率更高;最后,对来自同一来源的两个岩石样品进行了矿物学上的细微差别的实验,样品表现出完全不同的风化率,从而得出以下结论:我们对岩石类型和成分在风化中的作用的了解不足以准确确定风化率。版权所有(c)2005 John Wiley&Sons,Ltd.

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