在低级煤炭中对玻璃层和坚固层的多尺度孔状特征
Chao Zheng1,2, Yue Chen3, Wulin Lei4
1College of New Energy, Long Dong University, Qingyang, 745000, China. zhengc0624@126.com.
Scientific reports
|October 14, 2025
概括
煤床甲 (CBM) 的发展受到煤的孔隙结构的影响. 与玻璃相比,杜拉因在流体迁移方面表现出优越的孔隙特性,有助于在低级煤中有效地提取CBM.
科学领域:
- 地质地质地质地质地质地
- 石油工程是石油工程中的一个.
- 材料科学 材料科学 材料科学
背景情况:
- 煤床甲 (CBM) 提取依赖于煤炭内部复杂的孔隙断裂系统.
- 了解煤类型之间的孔隙结构差异对于优化CBM回收至关重要.
研究的目的:
- 通过使用多尺度方法来表征玻璃层和长层的全孔尺寸分布.
- 分析玻璃层和长层之间的微孔和有效毛孔的差异.
- 评估孔状特征如何影响低级煤中的甲扩散和透.
主要方法:
- 多尺度孔隙特征. 多尺度孔隙特征.
- 全孔尺寸分布分析.
- 对玻璃层和长层孔隙特性进行比较分析 (SSA,PV,有效孔隙,孔隙连接性).
主要成果:
- 玻璃显示较高的孔特定表面积 (SSA) 和孔体积 (PV) 比杜拉因,主要是由于超微孔.
- 煤矿库的有效孔隙性通常很低 (<50%),表明很大一部分孔隙是封闭的.
- 杜拉因具有优越的有效孔隙性,平均孔隙大小和孔隙连接性,有利于流体迁移.
结论:
- 杜雷恩的孔隙结构比维特林的更有利于流体迁移.
- 这些发现为低级煤炭的有效CBM开发提供了洞察力.
- 马类型对煤炭的CBM储存和运输能力产生重大影响.
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