首页> 外文会议>KKU International Engineering Conference >Additional Gas Resource for Coal Bed Methane by Applying Underground Coal Gasification and Enhanced Coal Bed Methane
【24h】

Additional Gas Resource for Coal Bed Methane by Applying Underground Coal Gasification and Enhanced Coal Bed Methane

机译:煤层甲烷的额外气体资源通过应用地下煤气化和增强煤层甲烷

获取原文

摘要

Methane gas obtained from coal sources can be classified into two categories i.e Coal Bed Methane (CBM) and Underground Coal Gasification (UCG) gases. The Industry today often neglects the importance of capturing the UCG as important source of methane potential besides the surface gasification potential. This research will evaluate on the new resource estimation of methane as reserves with application of new technological advances in exploitation. As an analysis, the UCG energy return is significantly higher than that of CBM. Both CBM and UCG output gas can be liquefied, or used as a direct feedstock to local power stations. The CO_2 generated from UCG process may be used for Enhanced Coal Bed Methane (ECBM) process because of more adsorption capacity than methane, may lead to additional methane potential. Deeper coal seams may be targeted for CBM, followed by UCG for additional resources in the form of coal gas. A depleted CBM area may be targeted for UCG with some modification on the well profile. Developing an integrated and centrally controlled approach to exploit the coal resources in which, the appropriate extraction methodology should be identified for each particular target coal-seam or groups of coal seam. It is important to strategize the sequencing of energy extraction methods to provide an optimal balance between the energy delivery for sustainable future and its true socio-economic value. As from this analysis, with 245.6 acres of coal, estimated gas can be produced is 3.25 TSCF which is 101 BSCF is coming from CBM, 3.14 TSCF from UCG and another 14.45 BSCF is from ECBM.
机译:从煤炭获得的甲烷气体可以分为两类I.E煤层甲烷(CBM)和地下煤气化(UCG)气体。今天的行业往往忽略了除了表面气化潜力外面捕获UCG作为甲烷电位的重要来源的重要性。本研究将评估甲烷新资源估算作为储备的剥削新技术进步。作为分析,UCG能量返回显着高于CBM。 CBM和UCG输出气体都可以液化,或用作局部发电站的直接原料。从UCG工艺产生的CO_2可用于增强的煤层(ECBM)过程,因为比甲烷更多的吸附容量,可能导致额外的甲烷电位。更深的煤层可以针对CBM,然后是UCG以煤气形式的额外资源。可以针对UCG靶向UCG的耗尽的CBM区域。开发综合和中央控制的方法来利用煤炭资源,应当为每个特定的目标煤层或煤层组识别适当的提取方法。重要的是要使能源提取方法的排序来策略能量提取方法的排序,以提供可持续未来的能源交付与其真正的社会经济价值之间的最佳平衡。根据该分析,占地245.6英亩的煤,可以生产估计的气体是3.25 TSCF,即101 BSCF来自CBM,3.14来自UCG,另外14.45 BSCF来自ECBM。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号