煤孔隙系统分布及其对煤物性的影响

IF 2.3 4区 环境科学与生态学 Q3 ENGINEERING, CHEMICAL
Mingjun Zou, Yue Sun, Zibin Ding, Runze Li
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引用次数: 0

摘要

煤孔隙系统控制着煤的物理性质,对煤的地质封存有重要影响。采用核磁共振(NMR)测量累积振幅比法,对10个样品的煤孔隙系统进行了分类,分析了各孔隙系统对煤物性的作用。实现以下认知。10个样品可分为发育型、扩散型、清净型和渗透型4种类型。最大镜质组反射率和表观密度与扩散孔体积百分比呈轻微正相关,与澄清孔体积百分比呈轻微负相关。孔隙度与扩散孔体积百分比呈微负相关,与渗透孔体积百分比呈微正相关。不可还原水饱和度与扩散孔体积百分比增加40%渗透孔体积百分比呈线性关系。渗透率与添加50%渗透孔体积百分比的清净体积百分比呈指数关系。表明渗透孔是可动水和不可还原水的结合体,两者占整个渗透孔体积的近一半。而对于渗透孔而言,其对渗透率的影响作用比其对不可还原含水饱和度的影响作用更为突出。深入研究孔隙对气水运移的作用,对指导煤层气抽采和CO2地质封存的工程过程具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Distribution of coal pore system and its function on coal physical property

Distribution of coal pore system and its function on coal physical property

Distribution of coal pore system and its function on coal physical property

Distribution of coal pore system and its function on coal physical property

Coal pore system controls physical properties of coals and influences CO2 geological sequestration greatly. By using cumulative amplitude ratio method of nuclear magnetic resonance (NMR) measurements, this paper classifies coal pore system of ten samples and analyzes the function of each pore system on coal physical property. Following cognitions are achieved. Ten samples can be divided into four types, and they are all developed type, diffusion pore dominated type, cleat dominated type, and permeation pore dominated type. Both maximum vitrinite reflectance and apparent density have slight positive relationships versus volumetric percentage of diffusion pore, while slight negative relationships with volumetric percentage of cleat. Porosity has a slight negative correlation with volumetric percentage of diffusion pore and a slight positive relationship with volumetric percentage of permeation pore. Irreducible water saturation has a linear relationship versus volumetric percentage of diffusion pore added by 40% of volumetric percentage of permeation pore. Permeability has an exponential relationship versus volumetric percentage of cleat added by 50% of volumetric percentage of permeation pore. It indicates that permeation pore acts as a combination of movable water and irreducible water, and both of them occupy nearly a half the volume of the entire permeation pore. However, as for permeation pore, its function to influence permeability is more emphatic than that to influence irreducible water saturation. It is of great significance to deeply investigate the pore function on gas and water migration and can be useful to guide the engineering processes during coalbed methane drainage and CO2 geological sequestration.

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来源期刊
Environmental Progress & Sustainable Energy
Environmental Progress & Sustainable Energy 环境科学-工程:化工
CiteScore
5.00
自引率
3.60%
发文量
231
审稿时长
4.3 months
期刊介绍: Environmental Progress , a quarterly publication of the American Institute of Chemical Engineers, reports on critical issues like remediation and treatment of solid or aqueous wastes, air pollution, sustainability, and sustainable energy. Each issue helps chemical engineers (and those in related fields) stay on top of technological advances in all areas associated with the environment through feature articles, updates, book and software reviews, and editorials.
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