Estimation of reserves and prospective resources of Coalbed methane (CBM) in Peru

IF 0.1 Q4 ENERGY & FUELS
Juan Carlos Santivañez H., Walter Erick Cano T.
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引用次数: 0

Abstract

Methane and coal form together during carbonification, a process in which the biomass is converted by biological and geological forces into coal. Methane is adsorbed by the molecular structure of coal and is released by a simple desorption process when the water present in the fissures of the coal formation is dislodged. Although the development of these unconventional deposits of Coalbed Methane (CBM) has not been applied in Peru, there is a good prospect of CBM development in the Goyllarisquizga and Jatunhuasi formations. Reserve estimation techniques include volumetric material balance, decrease curve analysis, simulation studies, and geophysical techniques. Entries for initially estimation of original gas in place (OGIP include geological parameters, specific parameters of carbon layer methane (CBM), and production history. Bituminous coal from the Goyllarisquizga and Jatunhuasi basins is very suitable for the exploration of CBM in terms of its depth of occurrence, the thickness of coal formation, coal reserve, and area extension. Consequently, the total gas that can be produced is 3 TSCF.
秘鲁煤层气储量及远景资源量估算
甲烷和煤在碳化过程中一起形成,在这个过程中,生物量被生物和地质力转化为煤。甲烷被煤的分子结构吸附,当煤层裂隙中的水被排出时,甲烷通过简单的解吸过程释放。尽管这些非常规煤层气矿床的开发尚未在秘鲁得到应用,但Goyllarisquizga和Jatunhuasi地层的煤层气开发前景良好。储量估算技术包括体积物质平衡、递减曲线分析、模拟研究和地球物理技术。原始天然气初始估算条目(OGIP)包括地质参数、碳层甲烷(CBM)的具体参数和生产历史。Goyllarisquizga和Jatunhuasi盆地的烟煤在产深、煤层厚度、煤炭储量和面积扩展方面非常适合煤层气勘探。因此,可以产生的总气体为3TSCF。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
0.80
自引率
0.00%
发文量
7
审稿时长
15 weeks
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