[1] Sun S Q.A reappraisal of dolomite abundance and occurrence in the Phanerozoic[J].Journal of Sedimentary Research,1994,64(2):396-404. [2] Warren J.Dolomite:occurrence,evolution and economically important associations[J].Earth-Science Reviews,2000,52(s 1-3):1-81. [3] 方少仙,侯方浩,董兆雄.上震旦统灯影组中非叠层石生态系兰细菌白云岩[J].沉积学报,2003,21(1):96-105. Fang Shaoxian,Hou Fanhao,Dong Zhaoxiong.Non-stromatoltite ecologic system cyanobacteria dolostone in Dengying Formation of Upper-Sinian[J].Acta Sedimentologica Sinica,2003,21(1):96-105. [4] 赫云兰,刘波,秦善.白云石化机理与白云岩成因问题研究[J].北京大学学报:自然科学版,2010,46(6):1010-1020. He Yunlan,Liu Bo,Qin Shan.Study on the dolomitization and dolostone genesis[J].Acta Scientiarum Naturalium Universitatis Pekinensis,2010,46(6):1010-1020. [5] HSV K J,Siegenthaler C.Preliminary experiments on hydrodynamic movement induced by evaporation and their bearing on the dolomite problem[J].Sedimentology,1969,12(1-2):11-25. [6] Badiozomani K.The dorag dolomitization model-application to the middle Ordovician of Wisconsin[J].Journal of Sedimentray Petrology,1973,43(4):965-984. [7] Adams J E,Rhodes M L.Dolomitization byseepage refluxion[J].AAPG Bulletin,1960,44(12):1912-1920. [8] 朱东亚,金之钧,孙冬胜,等.南方震旦系灯影组热液白云岩化及其对储层形成的影响研究-以黔中隆起为例[J].地质科学,2014,49(1):161-175. Zhu Dongya,Jin Zhijun,Sun Dongsheng,et al.Hydrothermally dolomitized reservoir bed in Sinian Dengying formation,northern China:An example from Central Guizhou Uplift[J].Chinese Journal of Geology,2014,49(1):161-175. [9] Davies G R,Smith L B.Structurally controlled hydrothermal dolomite reservoir facies:An overview[J].AAPG Bulletin,2006,90(11):1641-1690. [10] 李波,颜佳新,刘喜停,等.白云岩有机成因模式:机制、进展与意义[J].古地理学报,2010,12(6):699-710. Li Bo,Yan Jiaxin,Liu Xiting,et al.The organogenic dolomite model:mechanism,progress and significance[J].Journal of Palaeogeography,2010,12(6):699-710. [11] Luczaj J.Evidence against the Dorag (mixing-zone) model for dolomitization along the Wisconsin Archa case for hydrothermal diagenesis[J].AAPG Bulletin,2006,90(11):1719-1738. [12] Melim L A,Swart P K,Eberli G P.Mixing-zone diagenesis in the subsurface of Florida and the Bahamas[J].Journal of Sedimentary Research,2004,74(6):904-913. [13] Smith L B.Origin and reservoir characteristics of Upper Ordovician Trenton black river hydrothermal dolomite reservoirs in New York[J].AAPG Bulletin,2006,90(11):1691-1718. [14] Lonnee J,Machel H G.Pervasive dolomitization with subsequent hydrothermal alteration in the Clarke lake gas field,Middle Devonian Slave Point Formation,British Columbia,Canada[J].AAPG Bulletin,2006,90(11):1739-1761. [15] 韩晓涛,鲍征宇,谢淑云.四川盆地西南中二叠统白云岩的地球化学特征及其成因[J].地球科学-中国地质大学学报,2016,01(41):167-176. Han Xiaotao Bao Zhengyu Xie shuyun.Origin and geochemical cha-racteristics of dolomites in the Middle Permian formation SW Sichuan Basin,China[J].Earth Science,2016,41(1):167-176. [16] 由雪莲,孙枢,朱井泉,等.微生物白云岩模式研究进展[J].地学前缘,2011,18(4):52-64. You Xuelian,Sun Shu,Zhu,Jingquan,et al.Progress in the study of microbial dolomite model[J].Earth Science Frontiers (China University of Geosciences(Beijing); Peking University),2011,18(4):52-64. [17] 朱东亚,张殿伟,张荣强,等.深层白云岩储层油充注对孔隙保存作用研究[J].地质学报,2015,89(4):794-804. Zhu Dongya,Zhang Dianwei,Zhong Rongqiang,et at,.Role of oil charge in preservation of deep dolomite reservoir space[J].Acta Geoologica Sinica,2015,89(4):794-804. [18] 张学丰,刘波,蔡忠贤,等.白云岩化作用与碳酸盐岩储层物性[J].地质科技情报,2010,29(3):79-85. Zhang Xuefeng,Liu Bo,Cai Zhongxian,et al.Dolomitization and carbonate reservoir formation[J].Geological Science and Technology Information,2010,29(3):79-85. [19] 王国芝,刘树根,李娜,等.四川盆地北缘灯影组深埋白云岩优质储层形成与保存机制[J].岩石学报,2014(03):667-678. Wang Guozhi,Liu Shugen,Li Na,et al.Formation and preservation mechanism of high quality reservoir in deep burial dolomite in the Dengying Formation on the Northern margin of the Sichuan Basin[J].Acta Petrologica Sinica,2014,30(3):667-678. [20] 施泽进,王勇,田亚铭,等.四川盆地东南部震旦系灯影组藻云岩胶结作用及其成岩流体分析[J].中国科学:地球科学,2013,43(2):317-328. Shi Zejin,Wang Yong,Tian Yaming,et al.Cementation and diagenetic fluid of algal dolomites in the Sinian Dengying Formation in Southeastern Sichuan Basin[J].Science China:Earth Science,2013,43(2):317-328. [21] 斯春松,郝毅,周进高,等.四川盆地灯影组储层特征及主控因素[J].成都理工大学学报(自然科学版),2014,41(3):266-273. Si Chunsong,Hao Yi,Zhou Jingao,et al.Characteistics and controlling factors of reservoir in Sinian Dengying Formation,Sichuan Basin,China[J].Journal of ChengDu University of Technology(Science & Technology Edition),2014,41(3):266-273. [22] 方旸,谢淑云,何治亮,等.基于岩石薄片的鲕粒碳酸盐岩地球化学溶蚀[J].地球科学-中国地质大学学报,2016,41(5):779-791. Fang Yang,Xie Shuyun,He Zhiliang,et al.Thin section-based geochemical dissolution of ooid carbonates[J].Earth Science,2016,41(5):779-791. [23] 王兴志,方少仙,黄继祥,等.四川盆地西南部震旦系白云岩成岩过程中的孔隙演化[J].沉积学报,2000,4(18):549-553. Wang Xingzhi,Fang Shaoxian,Huang Jixiang,et al.Evolution of porosity in the process of Sinian dolostone diagenesis in Southwest Sichuan[J].Acta Sedimentologica Sinica,2000,4(18):549-553. [24] 李宗银,姜华,汪泽成,等.构造运动对四川盆地震旦系油气成藏的控制作用[J].天然气工业,2014,34(3):23-30. Li Zongyin,Jiang Hua,Wang Zecheng,et al.Control of tectonic movement on hydrocarbon accumulation in the Sinian strata,Sichuan Basin[J].Natural Gas Industry,2014,34(3):23-30. [25] 姚根顺,郝毅,周进高,等.四川盆地震旦系灯影组储层储集空间的形成与演化[J].天然气工业,2014,34(3):31-37. YaoGenshun,Hao Yi,Zhou Jingao,et al.Formation and evolution of reservoir spaces in the Sinian Dengying Formation of the Sichuan Basin[J].Natural Gas Industry,2014,34(3):31-37. [26] 王士峰,向芳.资阳地区震旦系灯影组白云岩成因研究[J].岩相古地理,1999,19(3):21-29. Wang Shifeng,Xiang Fang.The origin of the dolostones from the Sinian Dengying Formation in the Dengying Formation in the Ziyang district,Sichuan[J].Sedimentary Facies and Palaeogeography,1999,19(3):21-29. [27] 张杰,Jones Brian,张建勇.不同埋藏深度交代白云石晶体结构及其对白云岩储层研究的意义[J].中国石油勘探,2014,19(3):21-28. Zhang Jie,Jones B,Zhang Jianyong.Crystal structure of replacement dolomite with different buried depths and its significance to study of dolomite reservoir[J].China Petroleum Exploration,2014,19(3):21-28. [28] 宋光永,刘树根,黄文明,等.川东南丁山-林滩场构造灯影组热液白云岩特征[J].成都理工大学学报(自然科学版),2009(6):706-715. Song Guangyong,Liu Shugen,Huang Wenming,et al.Characteristics of hydrothermal dolomite of Upper Sinian Dengying Formation in the Dingshan-Lintanchang structural zone,Sichuan Basin,China[J].Journal of ChengDu University of Technology(Science & Technology Edition),2009(6):706-715. [29] 李英强,何登发,文竹.四川盆地及邻区晚震旦世古地理与构造-沉积环境演化[J].古地理学报,2013,15(2):231-245. Li Yingqiang,He Dengfa,Wen Zhu.Palaeogeography and tectonic-depositional environment evolution of the late Sinian in Sichuan Basin and adjacent areas[J].Journal of Palaeogeography,2013,15(2):231-245. [30] 邹才能,杜金虎,徐春春,等.四川盆地震旦系-寒武系特大型气田形成分布、资源潜力及勘探发现[J].石油勘探与开发,2014,41(3):278-293. Zou Caineng,Du Jinhu Xu Chunchun,et al.Formation,distribution,resource potential and discovery of the Sinian Cambrian giant gas field,Sichuan Basin,SW China[J].Petroleum Exploration and Development,2014,41(3):278-293. [31] 周吉羚,李国蓉,高鱼伟,等.川南地区震旦系灯影组白云岩地球化学特征及形成机制[J].东北石油大学学报,2015,39(3):67-75. Zhou Jiling,Li GouRong,Gao Yuwei,et al.Geochemical characteristics and formation mechanism of the dolomite of Upper Sinian Deng-ying Formation in Southern Sichua[J].Journal of Northeast Petroleum University,2015,39(3):67-75. [32] Keith M L,Weber J N.Carbon and oxygen isotopic composition of selected limestones and fossils[J].Geochimica Et Cosmochimica Acta,1964,28(10-11):1787-1816. [33] Liu Y,Zong K,Kelemen P B,et al.Geochemistry and magmatic history of eclogites and ultramafic rocks from the Chinese continental scientific drill hole:subduction and ultrahigh-pressure metamorphism of lower crustal cumulates[J].Chemical Geology,2008,247(s1-2):133-153. [34] 贺训云,寿建峰,沈安江,等.白云岩地球化学特征及成因-以鄂尔多斯盆地靖西马五段中组合为例[J].石油勘探与开发,2014,41(3):375-384. He Xunyun,Shou Jianfeng,Sheng Anjiang,et al.Geochemical cha-racteristics and origin of dolomite:A case study from the middle assemblage of Majiagou Formation Member 5 of the west of Jingbian Gas field,Ordos Basin,North China[J].Petroleum Exploration and Development,2014,41(3):375-384. [35] 陈梅,王龙樟,张雄,等.C、O同位素在川东北碳酸盐岩储层研究中的应用[J].沉积学报,2011,29(2):217-225. Chen Mei,Wang Longzhang,Zhang Xiong,et al.Application of carbon and oxygen isotope to carbonate reservoirs in Northeast Sichuan Basin[J].Acta Sedimentologica Sinica,2011,29(2):217-225. [36] 陈荣坤.稳定氧碳同位素在碳酸盐岩成岩环境研究中的应用[J].沉积学报,1994,12(4):11-21. Chen Rongkun.Application of stable oxygen and carbon isotope in the research of carbonate diagenetic environment[J].Acta Sedimentologica Sinica,1994,12(4):11-21. [37] 黄志诚,陈智娜,刘燕,等.中国南方灯影峡期海洋碳酸盐岩原始δ13C和δ18O组成及海水温度[J].古地理学报,1999,1(3):1-7. Huang Zhicheng,Chen Zhina,Liu Yan,et al.Primary δ13C and δ18O values in marine carbonates and the sea water temperature of Dengyingxia age in South China[J].Joural of Palaeogeography,1999,1(3):1-7. [38] 胡忠贵,郑荣才,周刚,等.川东邻水-渝北地区石炭系古岩溶储层稀土元素地球化学特征[J].岩石矿物学杂志,2009,28(1):37-44. Hu Zhonggui,Zheng Rongcai,Zhou Gang,et al.REE geochemical characteristics of paleokarst reservoirs in Huanglong Formation of Linshui(Easternsichuan)-northern Chongqing area[J].Cta Petrologica Et Mineralogica,2009,28(1):37-44. [39] 钱一雄,蔡习尧,刘忠宝,等.塔里木盆地卡塔克南缘中2井良里塔格组碳酸盐岩沉积地球化学特征[J].现代地质,2009,23(4):631-637. Qian Yixiong,Cai Xiyao,Liu Zhongbao,et al.Characteristic of sedimentary geochemistry of carbonate rock in Lianglitaga formation of the Upper Ordovician,Southern margin of Katake Uplift,Tarim Basin[J].Geoscience,2009,23(4):631-637. [40] 高长林,叶德燎,方成名.下扬子早古生代碳酸盐岩的稀土元素特征及其意义[J].油气藏评价与开发,2011,1(1):1-6. Gao Changlin,Ye Deliao,Fang Chengming.Characteristics and significance of carbonate rocks REE during early Palaeozoic in lower Yangtze region[J].Reservoir Evaluation and Development,2011,1(1):1-6. [41] 胡忠贵,郑荣才,胡九珍,等.川东-渝北地区黄龙组白云岩储层稀土元素地球化学特征[J].地质学报,2009,83(6):782-790. Hu Zhonggui,Zheng Rongcai,Hu Jiuzhen,et al.Geochemical characteristics of rare earth elements of Huanglong Formation dolomites reservoirs in Eastern Sichuan-Northern Chongqing area[J].Acta Geologica Sinica,2009,83(6):782-790. [42] 胡文瑄,陈琪,王小林,等.白云岩储层形成演化过程中不同流体作用的稀土元素判别模式[J].石油与天然气地质,2011,31(6):810-818. HuWenxuan,ChenQi,Wang Xiaolin,et al.REE models for the discrimination of fluids in the formation and evolution of dolomite reservoirs[J].Oil & Gas Geology,2011,31(6):810-818. [43] Miura N,Asahara Y,Kawabe I.Rare earth element and Sr isotopic study of the middle permian limestone-dolostone sequence in Kuzuu area,central Japan:Seawater tetrad sffect and Sr isotopic signatures of seamount-type carbonate rocks[J].Journal of Earth & Planetary Science Nagoya University,2004,51:11-35. [44] Wang L,Hu W,Wang X,et al.Seawater normalized REE patterns of dolomites in Geshan and Panlongdong sections,China:Implications for tracing dolomitization and diagenetic fluids[J].Marine and Petroleum Geology,2014,56:63-73. [45] Nothdurft L D,Webb G E,Kamber B S.Rare earth element geoche-mistry of late Devonian reefal carbonates,Canning Basin,western Australia:confirmation of a seawater REE proxy in ancient limestones[J].Geochimica et Cosmochimica Acta,2004,68(2):263-283. [46] Kamber B S,Webb G E.The geochemistry of late Archaean microbial carbonate:implications for ocean chemistry and continental erosion history[J].Geochimica et Cosmochimica Acta,2001,65(15):2509-2525. [47] Tanaka K,Miura N,Asahara Y,et al.Rare earth element and stron-tium isotopic study of seamount-type limestones in Mesozoic accretionary complex of southern Chichibu Terrane,central Japan:Implication for incorporation process of seawater REE into limestones[J].Geochemical Journal,2003,37(2):163-180. [48] Leybourne M I,Johannesson K H.Rare earth elements (REE) and yttrium in stream waters,stream sediments,and Fe-Mn oxyhydroxides:fractionation,speciation,and controls over REE+ Y patterns in the surface environment[J].Geochimica et Cosmochimica Acta,2008,72(24):5962-5983. [49] Kawabe I,Toriumi T,Ohta A,et al.Monoisotopic REE abundances in seawater and the origin of seawater tetrad effect[J].Geochemical Journal,1998,32(4):213-229. [50] Qing H,Mountjoy E W.Rare earth element geochemistry of dolomites in the Middle Devonian Presqu'ile barrier,Western Canada Sedimentary Basin:implications for fluid-rock ratios during dolomitization[J].Sedimentology,1994,41(4):787-804. [51] Webb G E,Kamber B S.Rare earth elements in Holocene reefal microbialites:a new shallow seawater proxy[J].Geochimica et Cosmochimica Acta,2000,64(9):1557-1565. [52] SverjenskyD A.Europium redox equilibria in aqueous solution[J].Earth and Planetary Science Letters,1984,67(1):70-78. [53] Bau M.Rare-earth element mobility during hydrothermal and metamorphic fluid-rock interaction and the significance of the oxidation state of europium[J].Chemical Geology,1991,93(3):219-230. [54] 丁振举,刘丛强,姚书振,等.海底热液沉积物稀土元素组成及其意义[J].地质科技情报,2000,19(1):27-30. Ding Zhenju,Liu Congqiang,Yao Shuzhen,et al.REE composition and implication of hydrothermal sedimentation of sea-floor[J].Geological Science and Technology Information,2000,19(1):27-30. [55] 王旭,沈建伟,陈代钊,等.塔里木盆地柯坪-巴楚地区早古生代白云岩类型及微量元素地球化学特征[J].矿物岩石,2011,31(2):23-32. Wang Xu,Shen Jianwei,Chen Daizhao,et al.Dolomite types and trace element geochemistry of the early Paleozoic strata in the Keping-Bachu area,Tarim Basin[J].Mineral Petrol,2011,31(2):23-32. [56] Taylor S R,McLennan S M,Armstrong R L,et al.The composition and evolution of the continental crust:rare earth element evidence from sedimentary rocks and discussion[J].Philosophical Transactions of the Royal Society of London A:Mathematical,Physical and Engineering Sciences,1981,301(4):381-399. [57] Jones B,Manning D A.Comparison of geochemical indices used for the interpretation of palaeoredox conditions in ancient mudstones[J].Chemical Geology,1994,111(1):111-129. [58] Derry L A,Keto L S,Jacobsen S B,et al.Sr isotopic variations in Upper Proterozoic carbonates from Svalbard and East Greenland[J].Geochimica et Cosmochimica Acta,1989,53(9):2331-2339. [59] 张学丰,胡文瑄,张军涛,等.塔里木盆地下奥陶统白云岩化流体来源的地球化学分析[J].地学前缘,2008,15(2):80-89. Zhang Xuefeng,Hu Wenxuan,Zhang Juntao,et al.Geochemical analyses on dolomitizing fluids of Lower Ordovician carbonate reservoir in Tarim basin[J].Earth Science Frontiers(China University of Geosciences,Beijing; Peking University),2008,15(2):80-89. [60] 倪善芹,侯泉林,王安建,等.碳酸盐岩中锶元素地球化学特征及其指示意义-以北京下古生界碳酸盐岩为例[J].地质学报,2011,84(10):1510-1516. Ni Shanqin,Hou Quanlin,Wang Anjian,et al.Geochemical Characteristics of Carbonate Rocks and Its Geological Implications-Taking the Lower Palaeozoic Carbonate Rock of Beijing Area as an Example[J].Acta Geologica Sinica,2011,84(10):1510-1516. |