中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
Relationship between nanoscale deformation of coal structure and metamorphic-deformed environments

文献类型:期刊论文

作者Ju, YW; Jiang, B; Hou, QL; Wang, GL
刊名Chinese science bulletin
出版日期2005-08-01
卷号50期号:16页码:1784-1795
关键词Coal structure Nano-scale deformation Macromolecular structure Pore structure Metamorphic-deformed environment
ISSN号1001-6538
DOI10.1360/04wd0205
通讯作者Ju, yw(juyw@gucas.ac.cn)
英文摘要There is a more consanguineous relation between nano-scale deformation of coal structure and metamorphic-deformed environment. in different metamorphic-deformed environments, deformation in the coal structure can occur not only at micro-scale, but also at nano-scale, and even leads to the change of molecular structure and nano-scale pore (< 100 nm) structure. the latter is the main space absorbing coalbed methane. through x-ray diffraction (xrd) and liquid-nitrogen absorption methods, the characteristics of macromolecular and nano-scale pore structures of coals in different metamorphic-deformed environments and deformational series of coals have been studied. by combining with high-resolution transmission electron microcopy (hrtem), the macromolecular and nano-scale pore structures are also directly observed. these results demonstrate that the stacking l-c of the macromolecular bsu in tectonic coals increases quickly from the metamorphic-deformed environment of low rank coals to that of high rank coals. for different deformed tectonic coals, in the same metamorphic-deformed environment, the difference of l-c is obvious. these changes reflect chiefly the difference of different temperature and stress effect of nano-scale deformation in tectonic coals. the factor of temperature plays a greater role in the increase of macromolecular structure parameters l-c, the influence of stress factor is also important. with the stress strengthening, l-c shows an increasing trend, and l-a/l-c shows a decreasing trend. therefore, l-c and l-a/l-c can be used as the indicator of nano-scale deformation degree of tectonic coals. with increasing temperature and pressure, especially oriented stress, the orientation of molecular structure becomes stronger, and ordering degree of gnets and the arrangement of bsu are obviously enhanced. for the deformation of nano-scale pore structure, in the same metamorphic-deformed environment, along with the strengthening of stress, the ratio of mesopores to its total pores volume of tectonic coals reduces to a large extent, the ratio of volume of nucropores and the pores whose diameters are lower than micropores increases, and sub-micropores and ultra-micropores can be found. moreover, the ratio of specific surface area of mesopores to its total pores reduces rapidly while the amount of sub-micropores increases more quickly. the ductile structure coal has a change in pore parameters similar to that of weak brittle deformation. there are differences in the deformation and evolution of nano-scale pore structure of different kinds of tectonic coals formed in different metamorphic-deformational environments. in short, temperature and confining pressure play some role in the change of nano-scale pore structure parameters, whereas stress has important influence on the evolution of characteristic parameters in nano-scale pore structure of tectonic coals.
WOS研究方向Science & Technology - Other Topics
WOS类目Multidisciplinary Sciences
语种英语
WOS记录号WOS:000232609200019
出版者SCIENCE PRESS
URI标识http://www.irgrid.ac.cn/handle/1471x/2377357
专题中国科学院大学
通讯作者Ju, YW
作者单位1.China Univ Min & Technol, Coll Mineral Resource & Geosci, Xuzhou 221008, Peoples R China
2.Grad Univ, Chinese Acad Sci, Lab Computat Geodynam, Coll Geosci, Beijing 100049, Peoples R China
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GB/T 7714
Ju, YW,Jiang, B,Hou, QL,et al. Relationship between nanoscale deformation of coal structure and metamorphic-deformed environments[J]. Chinese science bulletin,2005,50(16):1784-1795.
APA Ju, YW,Jiang, B,Hou, QL,&Wang, GL.(2005).Relationship between nanoscale deformation of coal structure and metamorphic-deformed environments.Chinese science bulletin,50(16),1784-1795.
MLA Ju, YW,et al."Relationship between nanoscale deformation of coal structure and metamorphic-deformed environments".Chinese science bulletin 50.16(2005):1784-1795.

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来源:中国科学院大学

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