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柴北缘侏罗纪煤显微组分与泥炭沉积速率

鲁静 杨敏芳 孙晓禹 邵龙义 张凤海

矿业科学学报2018,Vol.3Issue(1):1-8,8.
矿业科学学报2018,Vol.3Issue(1):1-8,8.DOI:10.19606/j.cnki.jmst.2018.01.001

柴北缘侏罗纪煤显微组分与泥炭沉积速率

Jurassic coal maceral and deposition rate of peat in the northern Qaidam Basin

鲁静 1杨敏芳 2孙晓禹 1邵龙义 1张凤海1

作者信息

  • 1. 煤炭资源与安全开采国家重点实验室, 北京 100083
  • 2. 中国石油勘探开发研究院廊坊分院, 河北 廊坊 065007
  • 折叠

摘要

Abstract

To reveal peat accumulation characteristics of Jurassic coal seams in northern Qaidam Basin, coal petrology of the main coal seams and spectral analysis of coal seam No. 7 in Gaoquan open-pit mine were investigated. Results show that the volume of organic macerals varies considerably(120 samples), the average content of vitrinine and inertinite are 49. 9% and 41. 1% respectively,the former mainly comprises collodetrinite (ave. 19. 1%) and telinite (ave. 12. 1%),and the later primarily comprises semifusinite (ave. 19. 3%) and inertodetrinite (ave. 12. 3%). Sporinite (ave. 2. 5%) is the major component of liptinite (ave. 2. 8%). Three effective thickness periods of 0. 68 m,1. 00 m and 1. 82 m in coal No. 7 were recognized through the spectrum analysis,and the ratio of them is similar to that of the peat development period precession and obliquity cycle. As a result,the variation of coal vitrinite and inertinite is affected by the precession and slop of Milankovitch astronomical cycle. The spectrum signal of three thickness periods were reconstructed by the Multi Taper Method (MTM),from which the total deposition time (approximately 371 ka) and the average peat sedimentation rate (ave. 0. 2 mm/a) of coal No. 7 was obtained. The peat sedimentation rate of coal No. 7 is lower than the highest rate(about 0. 5 ~ 1. 6 mm/a)of Holocene deposited in lower altitude area with similar latitude.

关键词

煤岩学/泥炭沉积速率/米兰科维奇/侏罗纪/柴达木

Key words

coal petrology/peat deposition rate/Milankovitch/Jurassic/Qaidam

分类

天文与地球科学

引用本文复制引用

鲁静,杨敏芳,孙晓禹,邵龙义,张凤海..柴北缘侏罗纪煤显微组分与泥炭沉积速率[J].矿业科学学报,2018,3(1):1-8,8.

基金项目

国家自然科学基金(41472131 ()

41772161) ()

教育部新世纪优秀人才项目(2013102050020) (2013102050020)

矿业科学学报

2096-2193

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