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Implications of pore space characteristics on diffusive transport in basalts and granites

机译:孔隙空间特征对玄武岩和花岗岩扩散运移的影响

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A detailed characterization of the pore space is crucial for understanding of transport and element transfer in rocks. Here, the effect of differences in texture and content of secondary minerals on transport in pore systems was determined for two rocks of widespread occurrence, mid-ocean ridge basalts (MORB) and granites. Pore space characteristics were analyzed by Hg-porosimetry, intrusion of a molten alloy, and synchrotron-based X-ray tomographic microscopy. For evaluating the role of pore space characteristics for the prediction of diffusive transport, data on porosity, and the effective diffusion coefficient (D_(eff)) were compared. Extended connective pore systems due to cracks and mineral dissolution are present in samples of both rocks, indicating high internal specific surface area. Uneven pore size distributions in altered MORB samples can be assigned to secondary minerals. Pore spaces determined by X-ray tomography, used to determine main direction of pores in the 3-D orthogonal system, suggest a slight anisotropy. In log-log plots, both rocks show roughly a linear dependence of D_(eff) for H_2O and compounds with comparable diffusivities (D_2O, monovalent cations, and anions) on porosity, but at same porosity D_(eff) is clearly higher in granitic than in basaltic samples. This difference is increasing with decreasing porosity, indicating that at low porosities the efficiency of element transport in basaltic samples is diminished, mainly inherited by the presence of small pores slowing down diffusion. The fact that diffusive transport in basaltic rocks is stronger dependent on porosity than in granitic rocks shows that also other rock characteristics such as pore size distribution and tortuosity of the pore network, highly affected by the alteration degree, can markedly affect transport and reactivity of pore solution.
机译:孔隙空间的详细表征对于理解岩石中的运移和元素转移至关重要。在这里,确定了两种分布广泛的岩石,即中洋脊玄武岩(花岗岩)和花岗岩对次生矿物质地和含量的差异对孔隙系统中运输的影响。孔隙空间特征通过汞孔隙率法,熔融合金的侵入以及基于同步加速器的X射线断层扫描显微镜进行了分析。为了评估孔隙空间特征在预测扩散运移中的作用,比较了孔隙率数据和有效扩散系数(D_(eff))。两种岩石的样品中均存在因裂纹和矿物溶解而导致的扩展的连通孔隙系统,表明内部比表面积较高。改变的MORB样品中孔径分布不均匀可归因于次生矿物。由X射线断层摄影术确定的孔隙空间(用于确定3-D正交系统中孔隙的主要方向)显示出轻微的各向异性。在对数对数图中,两种岩石均显示出H_2O和具有相当扩散率(D_2O,一价阳离子和阴离子)的化合物对孔隙率的线性关系,但在相同孔隙率下,花岗岩中的D_(eff)明显更高比玄武岩样品这种差异随着孔隙度的降低而增加,这表明在低孔隙度下,玄武岩样品中元素的运移效率会降低,这主要是由于存在小孔隙而减缓了扩散。玄武岩中的扩散运移比孔隙度对花岗岩的依赖性更大,这表明受蚀变程度影响较大的其他岩石特征,例如孔径分布和孔网的曲折度,也会显着影响孔隙的运移和反应性。解。

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