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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Effect of chemical reactions on the hydrologic properties of fractured and rubbelized glass media
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Effect of chemical reactions on the hydrologic properties of fractured and rubbelized glass media

机译:化学反应对碎玻璃化玻璃介质水文性质的影响

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Understanding the effect of chemical reactions on the hydrologic properties of geological media, such as porosity, permeability and dispersivity, is critical to many natural and engineered sub-surface systems. Influence of glass corrosion (precipitation and dissolution) reactions on fractured and rubbelized (crushed) forms HAN28 and LAWBP1, two candidate waste glass forms for a proposed immobilized low-activity waste (ILAW) disposal facility at the Hanford, WA site, was investigated. Flow and tracer transport experiments were conducted using fractured and rubbelized forms, before and after subjecting them to corrosion using vapor hydration testing (VHT) at 200 degrees C temperature and 200 psig pressure, causing the precipitation of alteration products. Data were analyzed using analytical expressions and CXT-FIT, a transport parameter optimization code, for the estimation of the hydrologic characteristics before and after VHT. It was found that glass reactions significantly influence the hydrologic properties of ILAW glass media. Hydrologic properties of rubbelized glass decreased due to precipitation reactions, whereas those of fractured glass media increased due to reaction which led to unconfined expansion of fracture aperture. The results are unique and useful to better understand the effect of chemical reactions on the hydrologic properties of fractured and rubbelized stony media in general and glass media in particular. (c) 2005 Elsevier Ltd. All rights reserved.
机译:了解化学反应对地质介质的水文特性(例如孔隙度,渗透性和分散性)的影响,对于许多天然和工程化的地下系统至关重要。研究了玻璃腐蚀(沉淀和溶解)反应对HAN28和LAWBP1破碎和磨碎(粉碎)形态的影响,这是华盛顿州汉福德拟建的固定化低活性废物(ILAW)处置设施的两种候选废玻璃形态。流动和示踪剂运输实验是使用断裂和磨碎的形式进行的,在使用200℃的温度和200 psig压力的蒸汽水化试验(VHT)对其进行腐蚀之前和之后进行腐蚀,然后沉积蚀变产物。使用解析表达式和运输参数优化代码CXT-FIT分析数据,以估算VHT前后的水文特征。发现玻璃反应显着影响ILAW玻璃介质的水文性质。由于沉淀反应,玻璃化玻璃的水文性质下降,而由于反应,碎玻璃介质的水文性质增加,导致破裂孔的无限制膨胀。这些结果是独特的,有助于更好地理解化学反应对破碎的和磨碎的石质介质(尤其是玻璃介质)的水文性质的影响。 (c)2005 Elsevier Ltd.保留所有权利。

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