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Surface diffusivity of cleaved NaCl crystals as a function of humidity: Impedance spectroscopy measurements and implications for crack healing in rock salt

机译:作为湿度的裂解NaCl晶体的表面扩散性:阻抗光谱测量和岩盐中裂纹愈合的影响

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摘要

Rock salt offers an attractive host rock for geological storage applications, because of its naturally low permeability and the ability of excavation-induced cracks to heal by fluid-assisted diffusive mass transfer. However, while diffusive transport rates in bulk NaCl solution are rapid and well characterized, such data are not directly applicable to storage conditions where crack walls are coated with thin adsorbed water films. To reliably predict healing times in geological storage applications, data on mass transport rates in adsorbed films are needed. We determined the surface diffusivity in such films for conditions with absolute humidities (AH) ranging from 1 to 18 g/m (relative humidities (RH) of 4%-78%) by measuring the surface impedance of single NaCl crystals. We use the impedance results to calculate the effective surface diffusivity S = DδC using the Nernst-Einstein equation. The S values obtained lie in the range 1 × 10 m s at very dry conditions to 1 × 10 m s for the deliquescence point at 296 K, which is in reasonable agreement with existing values for grain boundary diffusion under wet conditions. Estimates for the diffusivity D made assuming a film thickness δ of 50-90 nm and no major effects of thickness on the solubility C lie in the range of 1 × 10 to 8 × 10 m s for the highest humidities studied (14-18 g/m AH, 60%-78% RH). For geological storage systems in rock salt, we predict S values between 1 × 10 - 8 × 10 m s. These imply crack healing rates 6 to 7 orders of magnitude lower than expected for brine-filled cracks.
机译:岩盐为地质储存应用提供了一个有吸引力的主体岩石,因为它具有自然低渗透性和挖掘诱导的裂缝通过流体辅助扩散传质愈合的能力。然而,虽然散装NaCl溶液中的漫射率快速且很好地表征,但是这种数据不可用于储存条件,其中裂缝壁涂有薄吸附的水膜。为了可靠地预测地质储存应用中的愈合时间,需要在吸附薄膜中进行质量传输速率的数据。通过测量单个NaCl晶体的表面阻抗,我们确定了这种薄膜中的表面扩散性,用于具有1至18g / m(相对湿度(RH)的4%-78%)。我们使用阻抗结果来计算使用NERNST-EINSTEI方程来计算有效表面扩散率S =DΔC。获得的S值在1×10ms的范围内为1×10ms,在296k的潮解点处为1×10m s,这与湿条件下的晶粒边界扩散的现有值合理。假设薄膜厚度δ为50-90nm的薄膜厚度Δ估计,对于所研究的最高湿度(14-18克/),溶解度C的厚度厚度的主要效果在1×10至8×10ms的范围内(14-18克/ M艾,60%-78%RH)。对于岩盐中的地质储存系统,我们预测了1×10-8×10m S之间的值。这些意味着裂纹愈合率为6至7个数量级低于盐水填充裂缝的预期。

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