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A laboratory study of NMR relaxation times and pore coupling in heterogeneous media

机译:非均质介质中NMR弛豫时间和孔隙耦合的室内研究

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摘要

Nuclear magnetic resonance NMR relaxation times of geologic materials are closely related to pore geometry. In heterogeneous media, however, the details of this relationship are poorly understood because of a phenomenon known as pore coupling, which arises when diffusing protons sample multiple pores before relaxing. Laboratory experiments allow us to explore whether surface geochemistry can influence pore coupling and how this process affects the observed relaxation-time distribution. Measurements of the NMR response for microporous silica gel packs, treated with varying amounts of surface-coating iron, demonstrate that samples with less iron exhibit stronger pore coupling than those with abundant iron. When pore coupling is strong, the relaxationtime distribution grossly misrepresents the underlying bimodal pore-size distribution of micropores and macropores. Specifically, the bimodal relaxation-time distribution becomes merged and the relative amplitude of the peaks fails to reflect the true macropore and micropore volume. A reduction in pore coupling, observed with increasing iron content, is attributed to a decrease in the distance protons are able to diffuse before relaxing. Basic parameters describing the shape of the relaxation-time distributions for this range of samples are well-predicted by a 1Danalytical model. Experimental results conclusively demonstrate that surface geochemistry is an important factor determining the degree to which pore coupling occurs and illustrate how this phenomenon can affect the interpretation ofNMRrelaxation measurements in heterogeneous porous media.
机译:地质材料的核磁共振NMR弛豫时间与孔隙几何形状密切相关。然而,在非均质介质中,由于称为孔耦合的现象,人们对这种关系的细节了解甚少,这种现象是在扩散质子之前在松弛之前对多个孔进行采样而产生的。实验室实验使我们能够探索表面地球化学是否会影响孔隙耦合以及该过程如何影响观测到的弛豫时间分布。用不同量的表面涂层铁处理的微孔硅胶包装的NMR响应测量表明,铁含量较低的样品比铁含量丰富的样品表现出更强的孔耦合性。当孔耦合很强时,弛豫时间分布严重代表了微孔和大孔的潜在双峰孔径分布。具体而言,双峰弛豫时间分布合并,并且峰的相对幅度无法反映真实的大孔和微孔体积。随着铁含量的增加,孔隙耦合的减少归因于质子在弛豫之前能够扩散的距离减少。一维分析模型可以很好地预测描述此范围样品的弛豫时间分布形状的基本参数。实验结果最终证明,表面地球化学是决定孔隙耦合发生程度的重要因素,并说明了这种现象如何影响非均质多孔介质中NMR弛豫测量的解释。

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