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首页> 外文期刊>Environmental Science: Water Research & Technology >A thermal imaging methodology to study evaporation kinetics in mine tailings
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A thermal imaging methodology to study evaporation kinetics in mine tailings

机译:矿井尾矿中蒸发动力学的热成像方法

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Predicting why, how, and when mine tailings disposal sites become prone to dust scattering events is often hampered by our limited understanding of the factors that affect the drying rates from their surface layers. As a case study, thermal imaging is demonstrated here to be a valuable tool to study the evaporation mechanisms and rates from bauxite residues as a function of their thickness and physicochemical properties, as well as environmental conditions. These investigations reveal that their late stage drying rates are limited by gas phase diffusion through the interstitial air within their internal microporosity. The smallness of the effective diffusion coefficient indicates that water adsorption on bauxite residues surfaces is the dominant phenomenon responsible for their slow water vapour transport kinetics, a phenomenon that ultimately controls their late stage drying rates, that is when dust scattering is most likely to occur. As such, application of this thermal imaging methodology in the field may also contribute to improve the accuracy of risk assessment protocols, support intervention and mitigation strategies, underpin optimization efforts for mining residues management, and improve forecasting of fugitive dust emissions from mine tailings by enabling more accurate predictions of the evolution in their surface drying state.
机译:预测原因,如何以及矿井尾矿处理场所变得容易受到灰尘散射事件,由于我们对影响其表面层的干燥速率的因素有限的因素,通常会受到阻碍。作为案例研究,此处证明了热成像,是一种有价值的工具,以研究铝土矿残留物的蒸发机理和率,以及它们的厚度和物理化学性质以及环境条件。这些研究表明,其晚期干燥率受到通过内部微孔中的间质空气的气相扩散的限制。有效扩散系数的小于铝土矿残留表面的水吸附是负责其缓慢水蒸气运输动力学的主要现象,这是最终控制其晚期干燥率的现象,即当灰尘散射最有可能发生时。因此,在该领域的这种热成像方法的应用也可能有助于提高风险评估协议,支持干预和缓解策略的准确性,支持采矿残留物管理的优化努力,并通过启用改善矿井尾矿逃逸排放的预测更准确地预测其表面干燥状态的进化。

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