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淮北煤田祁南煤矿深部区煤层气的气体含量、地球化学特征及意义

Gas content, geochemical characteristics and implications of coalbed methane from the Deep Area of Qi'Nan Coalmine in Huaibei Coalfield.

作者信息

Wei Qiang, Chen Song, Yi Wangfei, Gui Herong, Jiang Wei, Li Fengli, Li Shengjie

机构信息

Hubei Key Laboratory of Petroleum Geochemistry and Environment, Yangtze University, Wuhan, 430100, China.

School of Resources and Civil Engineering, Suzhou University, Suzhou, 234000, China.

出版信息

Sci Rep. 2024 Nov 16;14(1):28334. doi: 10.1038/s41598-024-79922-x.

Abstract

The objective of this work is to investigate the implications of geological influence factors on gas content and geochemical characteristics of deep-buried (> 800 m) coalbed methane (CBM) reservoirs. Results show that bituminous coal accounts for the majority, which exhibits similar maturity but differ in maceral and chemical constituents. CBM reservoirs show low porosity, low permeability and moderate temperature, with thickness of 0.85-4.15 m. In addition, the total gas content is 4.58-12.33 m/t (average of 8.83 m/t). CH is the main component with concentration of 92.83-99.22% (average of 96.68%), and the δC and δD is - 53.78‰--44.62‰ (average of - 48.82‰) and - 223.93‰---4.49‰ (average of - 215.37‰), respectively. All CBM samples are the mixtures of thermogenic gases and secondary biogenic gases with CO reduction. In addition, gas content characteristic at the critical point of burial depth is the result by positive and negative geological effects. CH concentration shows a wide range with the increases of buried depth, while the numerical values of which for the selected samples display complex variation characteristics. Furthermore, the values of δC and δD become heavier with the increases of buried depth. Besides, the above two geochemical parameters are related to R and reservoir temperature.

摘要

这项工作的目的是研究地质影响因素对深埋(>800米)煤层气(CBM)储层气体含量和地球化学特征的影响。结果表明,烟煤占多数,其成熟度相似,但在显微组分和化学成分上有所不同。煤层气储层孔隙度低、渗透率低、温度适中,厚度为0.85 - 4.15米。此外,总气体含量为4.58 - 12.33立方米/吨(平均8.83立方米/吨)。甲烷是主要成分,浓度为92.83% - 99.22%(平均96.68%),δC和δD分别为-53.78‰--44.62‰(平均-48.82‰)和-223.93‰---4.49‰(平均-215.37‰)。所有煤层气样品都是热成因气和次生生物成因气与CO还原的混合物。此外,埋藏深度临界点处的气体含量特征是正负地质作用的结果。随着埋藏深度增加,甲烷浓度变化范围较宽,所选样品的数值呈现复杂变化特征。此外,随着埋藏深度增加,δC和δD值变重。此外,上述两个地球化学参数与R和储层温度有关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22a2/11569160/bd0d9879be69/41598_2024_79922_Fig1_HTML.jpg

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