Petrographic Controls on Pore and Fissure Characteristics of Coals from the Southern Junggar Coalfield, Northwest China

The productive potential of coalbed methane projects is controlled by pore and fissure characteristics, which are intrinsically related to coal petrology. This work attempts to identify the influence of petrographic factors on the development of pore and fissure systems in the southern Junggar Coalf...

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Main Authors: Sandong Zhou, Dameng Liu, Yidong Cai, Zuleima Karpyn, Yanbin Yao
Format: Article
Language:English
Published: MDPI AG 2018-06-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/11/6/1556
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spelling doaj-3b17b5bb01994185a6bcfbd84b2dc0a82020-11-24T21:35:04ZengMDPI AGEnergies1996-10732018-06-01116155610.3390/en11061556en11061556Petrographic Controls on Pore and Fissure Characteristics of Coals from the Southern Junggar Coalfield, Northwest ChinaSandong Zhou0Dameng Liu1Yidong Cai2Zuleima Karpyn3Yanbin Yao4School of Energy Resource, China University of Geosciences (Beijing), Beijing 100083, ChinaSchool of Energy Resource, China University of Geosciences (Beijing), Beijing 100083, ChinaSchool of Energy Resource, China University of Geosciences (Beijing), Beijing 100083, ChinaJohn and Willie Leone Family Department of Energy and Mineral Engineering, Pennsylvania State University, State College, PA 16802, USASchool of Energy Resource, China University of Geosciences (Beijing), Beijing 100083, ChinaThe productive potential of coalbed methane projects is controlled by pore and fissure characteristics, which are intrinsically related to coal petrology. This work attempts to identify the influence of petrographic factors on the development of pore and fissure systems in the southern Junggar Coalfield, Northwest China. Here, Middle Jurassic coal (lignite and subbituminous) petrology in coal seam No. 45 of the southern Junggar Coalfield (SJC) is studied with respect to the characteristics of pore and fissure structure with the aid of optical microscopes, scanning electron microscopy, mercury intrusion porosimetry, and nuclear magnetic resonance analysis. Maceral analysis shows coals at the SJC are dominated by vitrinite (38–87 vol %), with moderate quantities of inertinite (1–28 vol %) and liptinite (0.5–30 vol %). Decomposition of plants occurs under slightly oxic–anoxic conditions, with good tissue retention. Four types of coal facies are classified using petrographic indices, comprising (1) lower delta plain marsh, (2) lower delta plain fen, (3) upper delta plain wet forest swamp; and (4) piedmont plain moor. Pores and fissures are generally observed in telinite, collotelinite, fusinite, and semifusinite in SJC coals, indicating that the generation of pores and fissures is strongly influenced by coal macerals. Pore and fissure structures of coals in coal facies (1) appear weakly connected, whereas those in coal facies (2) reveal good connectivity. Coals in coal facies (3) and (4) show moderate connectivity between pore and fissure structure. Therefore, pore and fissure structures are significantly controlled by coal facies. This work provides practical recommendations and implementation methods for petrological studies in future coalbed methane exploration/development in the SJC. This study also serves to predict the physical properties of pores and fissures and interpret the control mechanism of coalbed methane production using coal petrology.http://www.mdpi.com/1996-1073/11/6/1556coal petrologycoal facieslow-rank coalJunggar Basin
collection DOAJ
language English
format Article
sources DOAJ
author Sandong Zhou
Dameng Liu
Yidong Cai
Zuleima Karpyn
Yanbin Yao
spellingShingle Sandong Zhou
Dameng Liu
Yidong Cai
Zuleima Karpyn
Yanbin Yao
Petrographic Controls on Pore and Fissure Characteristics of Coals from the Southern Junggar Coalfield, Northwest China
Energies
coal petrology
coal facies
low-rank coal
Junggar Basin
author_facet Sandong Zhou
Dameng Liu
Yidong Cai
Zuleima Karpyn
Yanbin Yao
author_sort Sandong Zhou
title Petrographic Controls on Pore and Fissure Characteristics of Coals from the Southern Junggar Coalfield, Northwest China
title_short Petrographic Controls on Pore and Fissure Characteristics of Coals from the Southern Junggar Coalfield, Northwest China
title_full Petrographic Controls on Pore and Fissure Characteristics of Coals from the Southern Junggar Coalfield, Northwest China
title_fullStr Petrographic Controls on Pore and Fissure Characteristics of Coals from the Southern Junggar Coalfield, Northwest China
title_full_unstemmed Petrographic Controls on Pore and Fissure Characteristics of Coals from the Southern Junggar Coalfield, Northwest China
title_sort petrographic controls on pore and fissure characteristics of coals from the southern junggar coalfield, northwest china
publisher MDPI AG
series Energies
issn 1996-1073
publishDate 2018-06-01
description The productive potential of coalbed methane projects is controlled by pore and fissure characteristics, which are intrinsically related to coal petrology. This work attempts to identify the influence of petrographic factors on the development of pore and fissure systems in the southern Junggar Coalfield, Northwest China. Here, Middle Jurassic coal (lignite and subbituminous) petrology in coal seam No. 45 of the southern Junggar Coalfield (SJC) is studied with respect to the characteristics of pore and fissure structure with the aid of optical microscopes, scanning electron microscopy, mercury intrusion porosimetry, and nuclear magnetic resonance analysis. Maceral analysis shows coals at the SJC are dominated by vitrinite (38–87 vol %), with moderate quantities of inertinite (1–28 vol %) and liptinite (0.5–30 vol %). Decomposition of plants occurs under slightly oxic–anoxic conditions, with good tissue retention. Four types of coal facies are classified using petrographic indices, comprising (1) lower delta plain marsh, (2) lower delta plain fen, (3) upper delta plain wet forest swamp; and (4) piedmont plain moor. Pores and fissures are generally observed in telinite, collotelinite, fusinite, and semifusinite in SJC coals, indicating that the generation of pores and fissures is strongly influenced by coal macerals. Pore and fissure structures of coals in coal facies (1) appear weakly connected, whereas those in coal facies (2) reveal good connectivity. Coals in coal facies (3) and (4) show moderate connectivity between pore and fissure structure. Therefore, pore and fissure structures are significantly controlled by coal facies. This work provides practical recommendations and implementation methods for petrological studies in future coalbed methane exploration/development in the SJC. This study also serves to predict the physical properties of pores and fissures and interpret the control mechanism of coalbed methane production using coal petrology.
topic coal petrology
coal facies
low-rank coal
Junggar Basin
url http://www.mdpi.com/1996-1073/11/6/1556
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