Distribution and mode of occurrence of Jurassic 3-1 coal from Hengshan
-
摘要: 煤中微量元素Sr和Ba的分布和赋存模式对研究煤层成煤古环境和煤炭的洁净利用有重要的意义。通过对横山5个矿区24个主采煤层煤样的工业分析、元素分析、矿物组成分析,采用相关性分析和逐级化学提取实验,研究该主采煤层中Sr和Ba的分布和赋存模式。研究发现,区内超过75%煤样属于特低灰煤;约96%的煤样全硫质量分数超过1%;主要的矿物成分为高岭石、黄铁矿和方解石。超过总分析煤样75%的样品中Sr和Ba富集,且在水平方向上Sr和Ba含量北部较南部更高。煤中Sr和Ba主要负载在天青石、重晶石、菱锶矿、碳酸钡矿、方解石和文石等矿物中。煤中Sr和Ba富集的主要原因是煤层中含有负载这两种元素的矿物。Abstract: The distribution and mode of occurrence of Sr and Ba are important to study the coal seam coal-forming palaeosedimentary environment and coal clean utilization. The distribution and mode of occurrence of Sr and Ba in the 24 main mined seams from 5 coal mines in Hengshan were studied using proximate analysis, ultimate analysis, mineral constituent analysis, correlation analysis, and sequential extraction experiment. 75% coal sample were ultra-low ash coal. The total sulfur content of about 96% coals was more than 1%. Kaolinite, pyrite and calcite were main mineral composition in the studied coals. Sr and Ba were enriched in more than 75% coals, and the content of Sr and Ba was higher in the north than in the south of the study area. All results showed that Sr and Ba were mainly carried by celestite, barite, strontium, witherite, calcite and aragonite in the studied coals. The occurrence of mineral containing Sr and Ba in the coal seam causes the enrichment of Sr and Ba.
-
Keywords:
- Sr /
- Ba /
- mode of occurrence /
- Jurassic /
- Yan'an Formation /
- coal
-
-
[1] 裴荣富,梅燕雄,毛景文,等. 中国中生代成矿作用[M]. 北京:地质出版社,2008:35-36. [2] 窦廷焕,肖达先,董雅琴,等. 神府东胜矿区煤中微量元素初步研究[J]. 煤田地质与勘探,1998,26(3):11-15. DOU Tinghuan,XIAO Daxian,DONG Yaqin,et al. Preliminary study on the trace elements in coals of Dongsheng mining district,Shenfu coalfield[J]. Coal Geology & Exploration,1998,26(3):11-15.
[3] 王海江. 神东煤中有害元素分布特征初步研究[J]. 煤质技术,2007(3):7-9. WANG Haijiang. The primary study on the distribution of harmful elements in Shendong coals[J]. Coal Quality Technology,2007(3):7-9.
[4] 汪小妹,焦养泉,吴立群,等. 鄂尔多斯盆地东胜-神木地区侏罗系煤中常量元素地球化学特征[J]. 沉积学报,2011,29(3):520-528. WANG Xiaomei,JIAO Yangquan,WU Liqun,et al. Major element geochemistry of Jurassic coal in Dongsheng-Shenmu area,Ordos basin[J]. Acta Sedimentologica Sinica,2011,29(3):520-528.
[5] ZHAO Cunliang,SUN Yuzhuang,XIAO Lin,et al. The occurrence of barium in a Jurassic coal in the Huangling 2 mine,Ordos basin,northern China[J]. Fuel,2014,128:428-432.
[6] 周桂萍,刘吉堂,范志斌,等. 电厂燃料[M]. 北京:中国电力出版社,2007:200-201. [7] 中国煤炭工业协会. 煤中各种形态硫的测定方法:GB/T 215-2003[S]. 北京:中国标准出版社,2003. [8] 陈陇刚,陈磊,陈丽荣,等. 陕北侏罗纪煤田神府矿区含煤地层及煤层的重新厘定划分[J]. 陕西地质,2005,23(1):70-78. CHEN Longgang,CHEN Lei,CHEN Lirong,et al. Strats and coals seams in the Shenfu coal deposit of the Jurassic coal-field in northern Shaanxi[J]. Geology of Shaanxi,2005,23(1):70-78.
[9] 李志民. 鄂尔多斯盆地侏罗纪凹陷湖泊的淤浅机制和聚煤作用-以陕西榆横区为例[M]. 北京:地质出版社,1992:82-82. [10] 中国煤炭工业协会. 煤炭质量分级第1部分:灰分:GB/T 15224.1-2010[S]. 北京:中国标准出版社,2010. [11] 中国煤炭工业协会. 煤炭质量分级第2部分:硫分:GB/T 15224.2-2010[S]. 北京:中国标准出版社,2010. [12] 宋党育. 煤中矿物质的定量及赋存特征研究[M]. 徐州:中国矿业大学出版社,2011:29-30. [13] DAI Shifeng,REN Deyi,CHOU Chenlin,et al. Geo-chemistry of trace elements in Chinese coals:A review of abundances,genetic types,impacts on human health, and industrial utilization[J]. International Journal of Coal Geology,2012,94:3-21.
[14] CHATZIAPOSTOLOU A,KALAITZIDIS S,PAPAZISIMOU S,et al. Mode of occurrence of trace elements in the Pellana lignite(SE Peloponnese,Greece)[J]. International Journal of Coal Gelogy,2006,65(1/2):3-16.
[15] SPEARS D A,BORREGO A G,COX A,et al. Use of laster ablation ICP-MS to determine trace element distributions in coals,with special reference to V,Ge and Al[J]. International Journal of Coal Gelogy,2007,72:165-176.
[16] ESKENAZY G M. Trace elements geochemistry of the Do-brudza coal basin,Bulgaria[J]. International Journal of Coal Geology,2009,78(3):192-200.
[17] ZHOU Jibin,ZHUANG Xinguo,ALASTUEY A,et al. Geochemistry and mineralogy of coal in the recently explored Zhundong large coal field in the Junggar basin,Xinjiang Province,China[J]. International Journal of Coal Geology,2010,82(1/2):51-67.
[18] DAI Shifeng,ZOU Jianhua,JIANG Yaofa,et al. Min-eralogical and geochemical compositions of the Pennsylvanian coal in the Adaohai mine,Daqingshan coalfield,Inner Mongolia,China:Modes of occurrence and origin of diaspore, gorceixite, and ammonian illite[J]. International Journal of Coal Geology,2012,94:250-270.
[19] DAI Shifeng,ZHANG Weiguo,WARD C R,et al. Min-eralogical and geochemical anomalies of Late Permian coals from the Fusui coalfield, Guangxi Province,southern China:Influences of terrigenous materials and hydrothermal fluids[J]. International Journal of Coal Geology,2013,105:60-84.
[20] 朱长生,李大华. 重庆长河碥煤矿晚三叠世2号煤中微量元素的赋存状态[J]. 矿物岩石地球化学通报,2009,28(3):259-263. ZHU Changsheng,LI Dahua. Occurrences of trace elements in the No.2 coal of the Changhebian coal mine,Chongqing,China[J]. Bulletin of Mineralogy,Petrology and Geochemistry,2009,28(3):259-263.
[21] 吕海亮,陈皓侃,李文,等. 义马煤中几种微量元素的赋存形态研究[J]. 燃料化学学报,2003,31(1):31-34. LYU Hailiang,CHEN Haokan,LI Wen,et al. Mode of occurrence of several harmful trace elements in Yima coal[J]. Journal of Fuel Chemistry and Technology,2003,31(1):31-34.
[22] SPEARS D A. The determination of trace element distribu-tion in coals using sequential chemical leching-A new approach to an old method[J]. Fuel,2013,114:31-37.
[23] RILEY K W,FRENCH D H,FARRELL O P,et al. Mode of occurrence of trace and minor elements in some Australian coals[J]. International Journal of Coal Geology,2012,94:214-224.
[24] DAVIDSON R M,CLARKE L B. Trace elements in coal[M]. London:IEA Coal Research Publisher,1996:27-49.
[25] WANG Jie,YAMADA O,NAKAZATO T,et al. Statistical analysis of the concentrations of trace elements in a wide diversity of coals and its implications for understanding elemental modes of occurrence[J]. Fuel,2008,87(10/11):2211-2222.
-
期刊类型引用(3)
1. 秦身钧,徐飞,崔莉,王金喜,李神勇,赵泽森,肖林,郭彦霞,赵存良. 煤型战略关键微量元素的地球化学特征及资源化利用. 煤炭科学技术. 2022(03): 1-38 . 百度学术
2. 王双美. 青龙寺井田主采煤层古泥炭沼泽演化规律研究. 煤炭科学技术. 2021(03): 181-188 . 百度学术
3. 杜芳鹏,李聪聪,乔军伟,魏云迅,张光超,雒铮,谭富荣. 陕北府谷矿区煤炭资源清洁利用潜势及方式探讨. 煤田地质与勘探. 2018(03): 11-14 . 本站查看
其他类型引用(7)
计量
- 文章访问数: 105
- HTML全文浏览量: 36
- PDF下载量: 10
- 被引次数: 10