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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Experimental investigation of cement, Topopah Spring tuff, and water interactions at 200 degrees C
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Experimental investigation of cement, Topopah Spring tuff, and water interactions at 200 degrees C

机译:在200摄氏度下水泥,Topopah春季凝灰岩和水相互作用的实验研究

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The stability of minerals that tend to form in cementitious materials at elevated temperatures has been investigated experimentally. This information is needed to predict the effect of these materials on the performance of geologic radioactive waste repositories. Reaction of large amounts of cement used to build the repository with the surrounding rock and groundwater may cause changes in the hydrologic properties of the repository, impact metal canister and waste form corrosion rates, and alter the mobility of actinides in the subsurface. We have determined that 11 Angstrom-tobermorite, calcite and quartz is the stable (or at least metastable) mineral assemblage at 200 degrees C of complex experiments containing mixtures of cement, Topopah Spring tuff, diesel fuel and 3 mM NaHCO3 from analyses of the solids and solutions. Mesolite did not form in these experiments, despite predictions that it is the most stable phase. A solubility constant for 11 Angstrom-tobermorite was calculated to be equal to 10(39.4(+/-1.3))) at 200 degrees C for the following reaction: Ca-5(SiO2)(6)(OH)(10*)0.5H(2)O + 10H(+) = 5Ca(2+) + 6SiO(2(aq))+ 10.5H(2)0. 11 Angstrom - tobermorite (1) This work shows that reaction periods of at least 20 days are required to reach local equilibrium or steady-state. (C) 1998 Elsevier Science Ltd. All rights reserved. [References: 21]
机译:实验研究了趋于在水泥质材料中形成的矿物的稳定性。需要此信息来预测这些材料对地质放射性废物处置库性能的影响。用于建造储存库的大量水泥与周围的岩石和地下水反应,可能会导致储存库的水文特性发生变化,撞击金属罐和废物形成腐蚀速率,并改变act系元素在地下的流动性。我们已经确定,在包含水泥,Topopah Spring凝灰岩,柴油燃料和3 mM NaHCO3混合物的复杂实验中,在200摄氏度下11埃斯托莫脱石,方解石和石英是稳定的(或至少是亚稳态的)矿物组合。和解决方案。尽管预测到这是最稳定的相,但在这些实验中并未形成甲硅石。对于以下反应,在200℃下,11埃托蒙脱石的溶解度常数等于10(39.4(+/- 1.3))):Ca-5(SiO2)(6)(OH)(10 *) 0.5H(2)O + 10H(+)= 5Ca(2+)+ 6SiO(2(水溶液))+ 10.5H(2)0。 11埃斯托蒙脱石(1)这项工作表明,至少要有20天的反应时间才能达到局部平衡或稳态。 (C)1998 Elsevier ScienceLtd。保留所有权利。 [参考:21]

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