Experimental Study of the Pore Structure and Permeability of Coal by Acidizing

The permeability of coal reservoirs prominently determines methane flow in reservoirs. A large amount of coal reservoirs containing methane, however, have low permeability because pores in reservoirs are sealed. To solve this issue, we investigated the pore structure and permeability law of coal thr...

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Main Authors: Bo Zhao, Guangcai Wen, Haitao Sun, Xusheng Zhao
Format: Article
Language:English
Published: MDPI AG 2018-05-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/11/5/1162
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spelling doaj-e94d28c1966a4d268b0f255d480d22922020-11-24T23:54:04ZengMDPI AGEnergies1996-10732018-05-01115116210.3390/en11051162en11051162Experimental Study of the Pore Structure and Permeability of Coal by AcidizingBo Zhao0Guangcai Wen1Haitao Sun2Xusheng Zhao3College of Resources and Environment Science, Chongqing University, Chongqing 400030, ChinaCollege of Resources and Environment Science, Chongqing University, Chongqing 400030, ChinaGas Research Branch, China Coal Technology and Engineering Group Chongqing Research Institute, Chongqing 400037, ChinaGas Research Branch, China Coal Technology and Engineering Group Chongqing Research Institute, Chongqing 400037, ChinaThe permeability of coal reservoirs prominently determines methane flow in reservoirs. A large amount of coal reservoirs containing methane, however, have low permeability because pores in reservoirs are sealed. To solve this issue, we investigated the pore structure and permeability law of coal through contrastive analysis of the microstructure and macrostructure before and after acidizing, using ASAP 2020 and triaxial servo-controlled seepage equipment. An analysis of the experimental data revealed the mechanism and the key parameters of acidizing, such as acid mass fraction and acidizing time. In addition, we hold that the optimal mass fraction for the test specimens is about 12~15%. Furthermore, the acid reaction is divided into three stages according to characteristics of the reaction progress. An analysis of the reaction kinetics of “HCl-HF” states that the significant factors will impact the process of reaction, like the composition of coal, surface area of the acid-coal reaction, mass fraction of acids, and environment of the reaction system. The results provide a new idea and research method for further enhancing permeability and gas extraction.http://www.mdpi.com/1996-1073/11/5/1162acidizingcoalspecific surface areapore volumepermeabilityHCl-HF system
collection DOAJ
language English
format Article
sources DOAJ
author Bo Zhao
Guangcai Wen
Haitao Sun
Xusheng Zhao
spellingShingle Bo Zhao
Guangcai Wen
Haitao Sun
Xusheng Zhao
Experimental Study of the Pore Structure and Permeability of Coal by Acidizing
Energies
acidizing
coal
specific surface area
pore volume
permeability
HCl-HF system
author_facet Bo Zhao
Guangcai Wen
Haitao Sun
Xusheng Zhao
author_sort Bo Zhao
title Experimental Study of the Pore Structure and Permeability of Coal by Acidizing
title_short Experimental Study of the Pore Structure and Permeability of Coal by Acidizing
title_full Experimental Study of the Pore Structure and Permeability of Coal by Acidizing
title_fullStr Experimental Study of the Pore Structure and Permeability of Coal by Acidizing
title_full_unstemmed Experimental Study of the Pore Structure and Permeability of Coal by Acidizing
title_sort experimental study of the pore structure and permeability of coal by acidizing
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2018-05-01
description The permeability of coal reservoirs prominently determines methane flow in reservoirs. A large amount of coal reservoirs containing methane, however, have low permeability because pores in reservoirs are sealed. To solve this issue, we investigated the pore structure and permeability law of coal through contrastive analysis of the microstructure and macrostructure before and after acidizing, using ASAP 2020 and triaxial servo-controlled seepage equipment. An analysis of the experimental data revealed the mechanism and the key parameters of acidizing, such as acid mass fraction and acidizing time. In addition, we hold that the optimal mass fraction for the test specimens is about 12~15%. Furthermore, the acid reaction is divided into three stages according to characteristics of the reaction progress. An analysis of the reaction kinetics of “HCl-HF” states that the significant factors will impact the process of reaction, like the composition of coal, surface area of the acid-coal reaction, mass fraction of acids, and environment of the reaction system. The results provide a new idea and research method for further enhancing permeability and gas extraction.
topic acidizing
coal
specific surface area
pore volume
permeability
HCl-HF system
url http://www.mdpi.com/1996-1073/11/5/1162
work_keys_str_mv AT bozhao experimentalstudyoftheporestructureandpermeabilityofcoalbyacidizing
AT guangcaiwen experimentalstudyoftheporestructureandpermeabilityofcoalbyacidizing
AT haitaosun experimentalstudyoftheporestructureandpermeabilityofcoalbyacidizing
AT xushengzhao experimentalstudyoftheporestructureandpermeabilityofcoalbyacidizing
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