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黔西北晚二叠世含煤岩系高分辨率层序地层与聚煤模式研究
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摘要
本研究针对黔西北晚二叠世龙潭组含煤岩系进行研究,在利用黔西北丰富的测井、岩芯数据等资料的基础上结合沉积学及高分辨层序地层学基本理论对黔西北晚二叠世含煤岩系进行深入剖析,并建立起了黔西北晚二叠世含煤岩系的等时层序地层格架。最后在等时地层格架下探讨了黔西北晚二叠世的聚煤模式。认为黔西北聚煤受控于地体旋转与海平面升降叠加引起的聚煤环境的非均一性变化。
     (1)依据晚二叠世含煤岩系岩芯和测井曲线所反映出来的沉积旋回性特点对晚二叠世含煤岩系共识别出3个三级复合层序。从重点钻孔剖面的解析及等时地层格架下的连井沉积相所反映出研究区的沉积环境及其在垂向上组合特征的综合分析中,归纳出研究区东部复合层序Ⅰ主要为碳酸盐台地沉积,以西为障壁潟湖、上三角洲沉积组合。复合层序Ⅱ在研究区东部继续发育碳酸岩盐沉积,以西则发育下三角洲沉积。复合层序Ⅲ在研究区以东碳酸盐岩沉积范围扩大,以西的障壁-潟湖的沉积范围缩小,而发育局限潮下沉积。
     (2)黔西北晚二叠世沉积环境主要为滨外碳酸盐台地沉积体系、障壁型碎屑岸线沉积体系、三角洲沉积体系及曲流河—湖泊沉积体系。其富煤带的形成与分布直接受控于古地理环境,富煤带与三角洲沉积组合关系最为密切。其次为障壁型碎屑岸线沉积组合。
     (3)研究区晚二叠世含煤岩系的形成经历了龙潭期—长兴期持续海进的过程。总体来说,在复合层序Ⅰ沉积阶段,聚煤中心在南部水城一带;在复合层序Ⅱ沉积阶段,聚煤中心则沿北东方向北迁移至金沙仁怀;在复合层序Ⅲ沉积阶段,由于陆地顺时针方向的旋转下切幅度偏大,研究区金沙、仁怀、桐梓等地区为碳酸岩盐台地沉积环境,使得聚煤中心发生向南的回迁。
     (4)聚煤环境的变迁及聚煤中心迁移的动力机制,在很大程度上认为与研究区陆地在晚二叠世发生的顺时针方向的旋转运动叠加相对海平面的变化引起的可容纳空间的非均一性变化有关,并在旋转旋回沉积的作用下发生聚煤中心的逆时针方向的迁移。旋转旋回沉积也能较好解释邵龙义教授提出的幕式聚煤中一次聚煤可以横跨不同的相区甚至不同的聚煤盆地的聚煤模式。
In this paper, Northwestern Late Permian Longtan Formation coal-bearing rocks have been studied,Extensive use of logging in Northwestern, core data and other data and the sedimentology and high resolution sequence stratigraphy of basic theory, Northwestern Late Permian Coal Measures sequence boundary has been divided,And establish the Late Permian in northwest Guizhou Coal Measures sequence stratigraphic framework. Finally, the next isochronous stratigraphic framework of the Late Permian in northwest Guizhou coal accumulation mode. Coal center that was controlled by the migration of the rotation caused by plate rotation cycle deposition mechanism.
     (1)Through the Late Permian coal-bearing rocks of the core and logging the sedimentary cyclicity reflected characteristics of the Late Permian coal-bearing rock strata to identify a total of three three composite sequences. Single well and connected well on the comparative analysis,In the study area east of the main composite sequence carbonate platform depositsⅠ, west of the barrier lagoon, on the delta deposit portfolio. Composite SequenceⅡcontinue to develop in the study area east of Brush salt deposits, west of the delta deposits under development. Composite SequenceⅢin the study area east of the carbonate rocks extend to the west of the deposition of narrow barrier lagoon, while the development of limited tidal deposition.
     (2)Northwestern Late Permian sedimentary environment is primarily outside the carbonate platform depositional system of coast, barrier shoreline clastic depositional system, delta system and the meandering river lake sedimentary system.The Late Permian coal-rich belt directly controlled by the formation and distribution of ancient geography, the rich deposits of coal with a combination with Delta most closely. Followed by the combination of barrier shoreline deposits
     (3) In the study area of the Late Permian coal-bearing rocks of the formation. Overall,The whole sequence in the composite order phaseⅠcoal deposits in the southern center of Liupanshui area, and deposited in the composite sequenceⅡstage moved to the Sands, Renhuai,Ⅲsequence deposited in the composite stage, the clockwise rotation of the land makes the polymer Central place of coal to move back south.
     (4) Changes in the environment coal and coal center migration dynamic mechanism that is largely the study area and land occur in the Late Permian clockwise rotation of the related,Deposition in the rotation cycle of coal under the action of the migration of the center counter clockwise. Episodic coal accumulation can be well explained with a rotating cycle of deposition
引文
Aitken, J. F. & Flint, S. S. 1995. The application of high resolution sequence stratigraphy to fluvial systems: a case study from the Upper Carboniferous Breathitt Group, eastern Kentucky, USA. Sedimentology, 42, 3-30.
    Aitken, J. F. 1994. Coal in a sequence stratigraphic framework. Geoscientist, 4(5), 9-12.
    Bohacs, K. & Suter, J. 1997. Sequence stratigraphic distribution of coaly rocks: Fundamental controls and paralic examples. American Association of Petroleum Geologists Bulletin, 81, 1612-1639.
    Cecil, B., 1990, Paleoclimate controls on stratigraphic repetition of chemical and siliciclastic rocks, Geology, 18(8)533-536.
    Cross, T A.. 1994. High—resolution stratigraphic correlation from the perspective of base—level cycles and sediment accommodation.In: Proccedings of Northwestern European Sequence Stratigraphy Congress, 105~123
    Davies, R., Diessel, C., Howell, J., Flint, S., Boyd, R., 2005, Vertical and lateral variation in the petrography of the Upper Cretaceous Sunnyside coal of eastern Utah, USA - Implications for the recognition of high-resolution accommodation changes in paralic coal seams. International Journal of Coal Geology, 61(1-2): 13-33
    Diessel, C. F. K. 1992. Coal-bearing depositional systems. New York, Springer-verlag. 721pp.
    Diessel, C.F.K., Boyd, R., Wadsdworth, J., Leckie, D. & Chalmers, G. 2000. On balanced and unbalanced accommodation/peat accumulation ratios in the Cretaceous coals from Gates
    Formation, Western Canada, and their sequence-stratigraphic significance. International Journal of Coal Geology, 43, 143– 186.
    Flint, S. S., Aitken, J. F., & Hampson, G. 1995. Application of sequence stratigraphy to coal-bearing coastal plain successions: implications for the UK coal measures. In: Whateley, M. K. G. & Spears, D. A. (eds) European Coal Geology. Geological Society London, Special Publication, 82, 1-16.
    Gibling, M. R. and Bird, D. G., 1994, Late carboniferous cyclothems and alluvial paleovalleys in Sydney basin, Nova Scotia. Geological Society of America Bulletin, Vol.106, p.105-117.
    Gibling, M.R., Saunders, K.I., Tibert, N.E. & White, J.A. 2004. Sequence sets, high-accommodation events and the coal window in the Carboniferous Sydney Coalfield, Atlantic Canada. In: Sequence Stratigraphy, Paleoclimate, and Tectonics of Coal-bearing Strata, Pashin, J.C. & Gastaldo, R.A., eds., AAPG Studies in Geology 51, p. 169-197.
    Hamilton, D. S. & Tadros, N. Z. 1994. Utility of coal seams as genetic stratigraphic sequence boundaries in nonmarine basins: an example from the Gunnedah basin, Australia. American Association of Petroleum Geologists Bulletin, 78, 267-286.
    Heckel. P. H., 1995, Glacial-eustatic base-level—climatic model for late Middle to Late Pennsylvanian coal-bed fromation in the Appalachian basin. Journal of Sedimentary Research. Vol.B65, No.3, p.348-356.
    Holz, M., Kalkreuth, W. & Banerjee, I. 2002, Sequence stratigraphy of paralic coal-bearing strata: an overview. International Journal of Coal Geology, 48, 147– 179.
    Horne, J. C., Ferm, J. C., Caruccio, F. T. & Baganz, B. P., 1978, Depositional models in coal exploration and mine planning in Appalachian region. Bulletin of the American Association of Petroleum Geologists, 62, p.2379-2411.
    Krumbein ,M. A and pekar, S.F , Oligocene eustasy from two—dimensional sequence stratigraphic backstripping. Geological Society of America Bulletin,Vol. 113, pp 291~304.
    Izart, A., Sachsenhofer, R.F.; Privalov, V.A.; Elie, M.; Panova, E.A.; Antsiferov, V.A.; Alsaab, D.; Rainer, T.; Sotirov, A.; Zdravkov, A.; Zhykalyak, M.V., 2006, Stratigraphic distribution of macerals and biomarkers in the Donets Basin: Implications for paleoecology, paleoclimatology and eustacy. International Journal of Coal Geology, 66(1-2): 69-107.
    Large, D.J., Jones, T.F., Briggs J., Macquaker, J.H.S. and Spiro, B.F. 2004 Orbital tuning and correlation of 1.7 my of continuous carbon storage in an early Miocene peatland. Geology,. 32(10), 873-876.
    Large, D.J., Jones, T.F.; Somerfield, C.; Gorringe, M.C.; Spiro, B.; Macquaker, J.H.S.; Atkin, B.P., 2003, High-resolution terrestrial record of orbital climate forcing in coal. Geology, 31(4): 303-306.
    Marshall, T. R. and HECKEL, P. H., 2006, Sequence stratigraphy and cyclothem correlation of lower Cherokee Group (Middle Pennsylvanian), Oklahoma to Iowa. Geological Society of America Abstracts with Programs, Vol. 38, No. 1, p. 4.
    McCabe, P. J. 1984, Depositional models of coal and coal-bearing strata. In: Rahamani, R. A. & Flores, R. M. (eds) Sedimentology of coal and coal-bearing sequences. International Association of Sedimentologists, Special Publication, 7, 13-42.
    McElwain, J.C., Wade-Murphy, J., Hesselbo, S.P., 2005, Changes in carbon dioxide during an oceanic anoxic event linked to intrusion into Gondwana coals. Nature, 435(7041): 479-82.
    Mitchum, R. M. and Van Wagoner, J. C., 1991, High-frequency sequences and their stacking patterns: sequence stratigraphic evidence of high-frequency eustatic cycles. Sediemntary Geology. Vol.70, 131-160.
    Petersen, H. I., Rosenberg, P. & Andsbjerg, J. 1996. Organic Geochemistry in Relation to the Depositional Environments of Middle Jurassic Coal Seams, Danish Central Graben, and Implications for Hydrocarbon Generative Potential. American Association of Petroleum Geologists Bulletin Bulletin, 80(1): 47-62.
    Plint, A. G., and D. Nummedal, 2000, The falling stage systems tract: Recognition and importance in sequence stratigraphic analysis, in D. R. Hunt, and R. L. Gawthorpe, eds.,Sedimentary responses to forced regression: Geological Society(London) Special Publication 172, p. 1–17.
    Ryer, T. A. 1984. Transgressive-regressive cycles and the occurrence of coal in some Upper Cretaceous strata of Utah, U. S. A.In: Rahmani, R. A. & Flores, R. M. (eds) Sedimentology of coal and coal-bearing sequences. International Association of Sedimentologists, Special Publication, 7, Blackwell Scientific Publications, Oxford, 217-227.
    Shao Longyi, Tim Jones, Rod Gayer, Dai Shifeng, Li Shengsheng, Jiang Yaofa, Zhang Pengfei, 2003, Petrology and geochemistry of the high-sulphur coals from the Upper Permian carbonate coal measures in the Heshan Coalfield, southern China. International Journal of Coal Geology, V55p.1-26.
    Shao Longyi, Zhang Pengfei, R. A. Gayer, Chen Jialiang, Dai Shifeng, 2003, Coal in a carbonate sequence stratigraphic framework: the Late Permian Heshan Formation in central Guangxi, southern China. Journal of Geological Society, London, V160, 285-298.
    Sloss ,L L. 948 Sequence in the cratonic interior of North Ameri—ca. Geol .Soc .Am .Bull ,93~114.
    Surlyk, F., Arndorff, L., and Hamann, N. E. et al., 1995, High-resolution sequence stratigraphy of a Hettangian-Sinemurian paralic succession, Boreholm, Denmark. Sedimentology, Vol.42, p.323-354.
    Turner, B. R. and Richardson, D., 2004, Geological controls on the sulphur content of coal seams in the Northumberland Coalfield, Northeast England. International Journal of Coal Geology, 60(2-4): 169-196.
    Vail ,P R, Mitchum,R M,and Thompson SⅢ. 1977.Global cycles of relative changes of sea level. AAPG Memoir 26,83~97.
    Van Wagoner,JC,et al. 1990. Siliciclastic sequence stratigraphy in well logs,cores and out crops. AAPG Methods in Exploration Series 7.
    Wagoner, J. C., R. M. Mitchum, K. M. Campion & V. D. Rahamanian 1990. Siliciclastic sequence stratigraphy in well logs, cores and outcrops: concepts for high-resolution correlation of time and facies. AAPG Methods in Exploration Series, No.7: 55p.
    Wadsworth, J., Boyd, R., Diessel, C., Leckie, D., 2003, Stratigraphic style of coal and non-marine strata in a high accommodation setting: Falher Member and Gates Formation (Lower Cretaceous), western Canada. Bulletin of Canadian Petroleum Geology, 51(3): 275-303.
    Wright, V. P., 1986, Paleosols: their Recognition and Interpretation. Blackwell Scientific, Oxford, 315pp.
    Ying Z, BESSE J.NewMesozoic apparentpolarwander path for South China: tectonic implications[ J]. J Geo-physRes, 2001, 106: 8 493-8 520.
    Zhao X X, COE R S. Paleomagnetic constraints on thecollision and rotation of north and south China[ J]. Na-ture, 1987, 327: 141-144.
    蔡宝森,刘章现.平顶山市煤炭资源开发利用现状与发展对策现究.中国资源综合利用. 2001,(12):33~35.
    曹代勇,赵峰华.重视我国优质煤炭资源特性的研究.中国矿业,2003,12(10): 21~23.
    曹代勇.加强煤炭资源地质科学研究确保国家能源安全.中国矿业,2004,13(11): 5~7.
    曾荣树等.贵州六盘水地区水城矿区晚二叠世煤的煤质特征及其控制因素.岩石学报, 1998,14 (4):549~558.
    陈代钊.河流沉积占优势地层中高频层序地层,大地构造与成矿学—以贵州盘县西部龙
    潭组为例.1997,32(4):432~443.
    陈儒庆等.广西东罗晚二叠世煤的地球化学及化学结构特征.大地构造与成矿学, 1995,19(2):145~154.
    陈世悦,刘焕杰.华北石炭二叠纪层序地层学研究的特点[J].岩相古理,1994,14(5):11~20.
    陈世悦.华北石炭—二叠纪层序地层格架及其特征[J].沉积学报,1999,17(1):131~138.
    代世峰等.低温热液流体对煤中伴生元素的再分配及赋存状态的影响——一贵州织金上二叠统煤系为例.地质学报,2002,(4):231~245.
    代世峰等.华北与黔西地区晚古生代地层中铂族元素赋存状态及来源.地质论评, 2003,49(7):439~444.
    邓宏文,王洪亮,李熙哲.层序地层地层基准面的识别、对比技术及应用[J].石油与天然气地质,1996,17(3):177-184.
    邓宏文,王洪亮,李小孟.高分辨率层序地层对比在河流相中的应用[J].石油与天然气地质,1997,18(2),90-114.
    邓宏文,王红亮,祝永军.高分辨率层序地层学——原理及应用[M].地质出版社,
    丁振华,郑宝山,庄敏等.贵州燃煤型砷中毒地区煤的微量元素的赋存状态.矿物学报, 2005 ,25(4):357~362.
    丁振华等.黔西南高砷煤中砷赋存状态的XAFS和铁的MO ssbauer谱研究. 高校地质学报,2003,9(2):273~278.
    董理.煤的工业分析重要性浅议.山西焦煤科技,2005(5):22~25.
    范立民.论陕北煤炭资源适度开发问题.中国煤田地质,2004,16(2):1~3.
    范立民等.可持续发展与陕北煤炭资源开发.陕西煤炭,2003(3):10~13.
    范维唐.煤炭在能源中处于什么地位.中国煤炭,2001,27(8):5~8.
    顾家裕,范土芝.层序地层学回顾与展望[J]海相油气地质, 2001,6(4):15-25.
    贵州煤田地质局.贵州晚二叠世含煤地层沉积环境与聚煤规律.都匀:贵州煤田地质局地测大队,1994.
    郝黎明.2000.克拉通盆地含煤岩系高分辨率层序地层学研究—以贵州西部上二叠统为例,中国矿业大学(北京)博士学位论文,119页(导师:任德贻和邵龙义).
    胡社荣等.煤相研究方法综述.地质科技情报,1998,17(1):62~66.
    胡社荣等.煤相研究方法综述.地质科技情报,1998,17(1):62~66.
    黄文辉,杨起,汤达祯等.1999b.华北晚古生代煤中稀土元素地球化学特征.地质学报, 73(4): 360~369.
    黄文辉,杨起,汤达祯等.1999c.陶枣煤田晚古生代煤中硫及伴生有害元素分布特征.地学前缘, 6(增刊): 45~52.
    黄文辉,杨起,汤达祯等.2000a.枣庄煤田太原组煤中微量元素地球化学特征.现代地质,14(1):61~67.
    黄文辉,杨起,汤达祯等.2000b.潘集煤矿二叠纪主采煤层中微量元素亲和性研究.地学前缘, 7(增刊): 263~270.
    黄文辉,杨起.燃煤过程中有害元素转化机理研究进展.地质科技情报,1999. 18(1): 71~74.
    黄文辉.2000.煤中有害物质的赋存特征及其对环境的影响研究进展,地学前缘,第七卷第三期.
    黄文辉等.1999.华北晚古生代煤的稀土元素地球化学特征,地质学报,第73卷第四期.
    黄昔容等.灵武煤田延安组煤的煤岩煤质特征及地质解释.中国煤田地质,1999,11(2): 15~18.
    晋其勇.六盘水煤炭资源比较优势分析.六盘水师范高等专科学校学报,2005,17 (1):236~239.
    雷家锦等.不同沉积环境成因煤显微组分的有机硫分布.煤田地质与勘探,1995,23(5): 14~19.
    雷家锦等.贵定超高有机硫煤硫的聚集模式.科学通报,1994,39(15):1405~1408.
    雷家锦等.贵定超高有机硫煤中的细菌体及其意义.岩石学报,1995,11(4):456~461.
    李宝芳,温显端,李贵东.1999,华北石炭、二叠系高分辨层序地层分析.地学前缘,6 (增刊),81-94.
    李大华等.贵州晴隆矿区K6煤层的矿物学特征与地质成因.煤炭学报,2005,30(1):49~52.
    李思田、李祯、林畅松等.1993,含煤盆地层序地层分析的几个问题.煤田地质与勘探, 21(4)∶1-8.
    李思田等, 1992,鄂尔多斯盆地东北部层序地层学及沉积体系分析.地质出版社.
    李文汉.层序地层学基础和关键定义[J].岩相古地理,1989,44(6):26~32.
    李文华.中国煤质研究的展望.煤,2001,10(4):7~9
    李文华.中国主要矿区煤的显微组分分布特征.煤炭科学技术,2000,28(9) 31~4
    李文华.中国主要矿区煤的显微组分分布特征.煤炭科学技术,2000,28(9) 31~4.
    李小明,曹代勇,张守仁等.不同变质类型煤的XRD结构演化特征.煤田地质与勘探, 2003,31(3)5~7.
    李小彦等.一种值得关注的高效洁净煤资源—云南昭通小法路矿无烟煤性能研究.中国煤田地质,2003,15(1):13~14.
    李增学、单松炜. 2000,陆表海盆地含煤地层的高分辨率层序地层研究.煤田地质与勘探,2000年4期,13-16.
    李增学、魏久传、王明镇.1996,华北南部晚古生代陆表海盆地层序地层格架与海平面变化,岩相古地理, 16 (5 ):1-11.
    刘宝珺、许效松等.1993,中国南方古大陆沉积地壳演化与成矿,科学出版社,236.
    刘宝王君.中国南方岩相古地理图集[M].北京:科学出版社,1994.
    刘国根等.煤的红外光谱研究.中南工业大学学报,1999,30(4):371~373
    刘焕杰等.我国含煤沉积学若干问题及展望.沉积学报,2003,21 (1):129~132.
    刘志逊,陈和替,黄文辉.我国煤炭资源状况及勘查策略.煤炭技术, 2005,24(10):1-2.
    卢衍豪,等.中国寒武纪岩相古地理轮廓勘探[J].地质学报,1965,45(4):349—357.
    毛节华.关于煤炭资源分类分级问题中国煤田地质,1996,8(3):2~8.
    彭格林等.华北地台西缘晚石炭世-早二叠世早期海水进退及其与聚煤作用的关系.古地理学报,1999,1(2):18~27.
    饶竹等.中高含硫量煤中硫的形态分析.岩矿测试,2001,20 (3): 183~186
    邵龙义,鲁静,汪浩等.中国含煤岩系层序地层学研究进展[J]沉积学报,2009,27(5):904-914.
    邵龙义,鲁静,汪浩等.近海型含煤岩系沉积学及层序地层学研究进展[J]古地理学报, 2008,10(16):561—570.
    邵龙义,张鹏飞,何志平等.中国煤和含煤岩系沉积学研究进展和展望.《第三届全国沉积
    邵龙义、张鹏飞、窦建伟、宋丽君.1999,含煤岩系层序地层分析的新认识—兼论河北晚古生代层序地层格架,《中国矿业大学学报》28卷1期.
    邵龙义、张鹏飞.1998,含煤岩系层序地层模式《.长春科技大学学报》,1998(专辑),67-72.
    宋建军.河南省石炭—二叠系层序地层及聚煤作用研究:[博士学位论文],北京:中国矿业大学(北京),2009.
    孙文娟等.红外光谱分析淮南煤灰中矿物组成.应用化工,2005,34(10):644~646
    孙雨.河流三角洲体系高分辨率层序地层及岩性类油藏成藏规律研究——以两井东—木头南地区扶余油层为例:[博士学位论文].黑龙江:东北石油大学,2010.
    孙致学,凌庆珍,邓虎成,等.高分辨率层序地层学在油田深度开发中的应用[J].石油学报,2008,29(2):239-245.
    唐兴文.毕节地区煤炭资源潜力综合分析.贵州地质,2003,20(2):88~91.
    唐跃刚等.四川晚二叠世煤中硫与成煤环境的关系,沉积学报,1996,14(4):161~157.
    田景春,陈洪德,覃建雄等.层序—岩相古地理图及其编制.地球科学与环境学报, 2004,26(1):6—12.
    田山岗.煤炭工业的可持续发展与不可持续发展.中国煤田地质,2003,15(5):1~5.
    田山岗.煤炭工业可持续发展下的不可持续增长.煤炭经济研究,2003(8):6~12.
    王二七,尹纪云.川西南新生代构造作用以及四川原型盆地的破坏.西北大学学报(自然科学版),2009年6月,第39卷第3期,
    王鸿祯.中国古地理图集[M].北京:地图出版社,1905.
    王小川等.黔西川南滇东晚二叠世含煤地层沉积环境与聚煤规律.重庆:重庆大学出版社,1996.
    温建宝.煤岩分析在大武口选煤厂配煤中的作用.选煤技术,2003,(3):28.
    吴浩若、邝国敦、王忠诚.1997,广西晚古生代构造沉积背景的初步研究,地质科学, 32卷1期,11-18.
    武法东、陈钟惠、张守良等. 1994,华北晚古生代含煤盆地层序地层初探,中国煤田地质, 6卷, 1期, 11-18.
    谢晓东.,煤田地质研究的新进展和四川煤田地质工作的展.四川地质学报,2004,24(2): 82~85.
    徐安娜,郑红菊,董月霞,等.南堡凹陷东营组层序地层格架及沉积相预测.《石油学大会论文摘要汇编》,2004-09-01.
    袁月琴等.贵州省六枝新华煤矿区上二叠统含煤岩系及煤质特征,贵州地质.2007,24(2): 110~113.
    张鹏飞.含煤岩系沉积学研究的几点思考.沉积学报,2003,21 (1): 125~128
    张韬等,中国主要聚煤期沉积环境与聚煤规律.北京:地质出版社,1995
    张学敏.盘江矿区煤炭资源及其利用途径.煤炭科学技术2005,33(8):66~68.
    张学敏.盘江矿区煤炭资源及其利用途径.煤炭科学技术,2005,33(8):66~68.
    张学敏等.中国西南区和盘江炼焦煤资源与生产.洁净煤技术,2003,9(1):51~54.
    赵谋.古叙矿区优质无烟煤综合利用研究.煤质技术,2006,(3):28~30
    赵阳,陈建庚.贵州纳雍县煤炭资源及其开发.贵州地质,2001,18(4):271~275.
    赵阳,陈建庚.贵州纳雍县煤炭资源及其开发.贵州地质,2001,18(4):271~275.
    赵震海,况顺达.关于贵州煤炭资源开发的思考.中国矿业,2006,15(3):23~25.
    郑荣才,文华国,梁西文.鄂尔多斯盆地上古生界高分辨率层序地层分析[J].矿物岩石2002,22(4):66-74.
    周义平.中国西南龙潭早期碱性火山灰蚀变的TONSTEINS.煤田地质与勘探,1999,27 (4):5~9.
    周义平等.滇东黔西晚二叠世煤系中火山灰蚀变粘土岩的元素地球化学特征.沉积学报, 1994,12(4):123~132.

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