松辽盆地北部早白垩世火山事件与地球动力学
详细信息    本馆镜像全文|  推荐本文 |  |   获取CNKI官网全文
摘要
晚中生代东北亚地区发生了广泛的构造—岩浆事件,中国东北至蒙古东部发育了规模宏大的火山岩带和众多的断陷盆地群。火山岩是大地构造演化过程中岩浆作用的直接产物,是探讨地质事件和地球动力学演化的重要线索。本文利用松辽盆地北部近年来钻井获得的火山岩岩芯和露头资料,详细研究了早白垩世火山岩的发育特征及其地球动力学机理,取得如下认识:
     (1)松辽盆地北部早白垩世发育有一套以酸性流纹岩为主的中—酸性火山岩组合,火山活动具有多期性,早期主要以少量的中基性喷发开始,后期则大规模酸性火山喷发结束。露头区剖面揭示早白垩世火山岩主要有早、晚两期,早期是以流纹岩为主,晚期则以中基性的玄武质粗安岩为主,分别对应营城组一段和三段。
     (2)锆石SHRIMP年代学研究表明盆地北部早白垩世火山岩主体形成于108Ma~116Ma之间,且主要集中在111Ma~113Ma。断陷区兴城气田与升平气田早白垩世火山岩是同期火山喷发作用的产物,都属营城组三段范畴,时代上介于早白垩世晚期的Aptian期与Albian期界线附近。火山岩的年龄指示营城组顶界时代已经进入Albian期,因此认为营城组地层发育于早白垩世的Hauterivian期到Albian期。多组继承性岩浆锆石年龄的获得,指示东北地区古生代至中生代期间发生过多次构造热事件。
     (3)地球化学研究表明断陷区和露头区早白垩世火山岩基本上都属于高钾钙碱系列,准铝质的正常岩系或亚碱系列。火山岩稀土总量较高,轻稀土富集明显。酸性流纹岩类表现轻稀土分馏明显,而重稀土分馏不明显,富集Rb、Th、Zr等元素,强烈亏损Sr、Ba、P、Ti、Eu等元素,中基性安山岩类表现为轻重稀土分馏相当,除Sr显示亏损外其他元素亏损不明显,中酸性英安岩类特征介于两者之间;酸性火山岩类Eu和Ba的亏损表明的岩浆经历了强烈的斜长石的分异作用,P和Ti元素的亏损则与磷灰石和钛铁矿等分异作用有关。上述特征体现了早白垩世中—酸性火山岩的结晶分异演化过程。
     (4)Sr—Nd同位素分析表明松辽盆地北部早白垩世火山岩具有明显的低Sr高Nd特征。升平和兴城气田中—酸性火山岩由同源岩浆结晶分异演化而来,是同期火山喷发的产物。露头区与断陷区早白垩世火山岩源区性质相似,正的ε_(Nd)值和低的锶同位素初始比值指示它们来源于亏损型地幔源区,同时岩浆演化过程又受到地壳物质不同程度的混染。钕模式年龄指示其源区地壳形成于新元古代。
     (5)东北亚地区晚中生代火山作用具有时空分带性和迁移性,晚侏罗世主要与鄂霍次克洋的关闭有关,而早白垩世和晚白垩世分别受控于古太平洋板块的俯冲拆沉和后撤作用。松辽盆地北部早白垩世火山岩具有A型流纹岩特征,形成于造山期后板内伸展构造背景,是东北亚地区岩石圈减薄作用的直接产物。大兴安岭及其以西岩石圈主要表现为伸展减薄,减薄幅度小,而以东的松辽盆地经历了岩石圈的伸展减薄和热—化学侵蚀减薄,减薄幅度显著。岩石圈减薄的不均一性是导致大兴安岭两侧盆地演化差异性的根本原因。
Late Mesozoic tectonic-magmatism event is widespread throughout northeastern Asia, which is characterized with large-scale volcanic belts and many faulted-depressions from NE China to mid-eastern Mongolia. As the direct product of magmatism during the process of tectonic evolution, volcanic rocks are the important clue in discussing the geological events and geodynamic evolution. This dissertation is focused on the study about the characteristics and geodynamic mechanism of the volcanic rocks from the northern Songliao Basin and its basin-margin outcrop. The main conclusions are as follows:
     (1) A suite of volcanic intermediate rocks to acidites, mainly acidic eruptive rocks, was widely distributed in the northern Songliao Basin during the early Cretaceous. The volcanic activities began with a small amount of intermediate rocks and finished with massive acidites. Outcrop section study shows that the early Cretaceous volcanism erupted in two stages, which are corresponding with 1~(st) member and 3~(rd) member of Yingcheng Formation respectively. The first stage is characterized with rhyolites and the second with Basaltic trachyandesites.
     (2) Geochronological study through zircon SHRIMP of the volcanic rocks displays that the main volcanic eruption occured between 108 Ma~116 Ma in the northern Songliao Basin, and mainly concentrated between 111 Ma~113 Ma.The volcanic rocks in both Shengping gas-field and Xingcheng gas-field formed synchronously, which sustained from the Aptian to the early Albian in the early Cretaceous. The volcanic strata in those two fields are thought to be divided into 3~(rd) member of Yingcheng Formation. Based on former studies and the SHRIMP-age of the volcanic rocks, the geological time of Yingcheng Formation is considered from Hauterivian to Albian in the the early Cretaceous. Several inheritable magmatic zircons appearing different ages implied that NE China experienced multiple tectonic-thermal events in Mesozoic.
     (3) Geochemical study shows that the early Cretacesous volcanic rocks belonged to subalkaline and para-pelite, as high∑REE and richer in LREE than HREE. The rhyolites are rich in such elements as Rb, Th, Zr, etc., and have obvious negative anomalies of Sr, Ba, P, Ti, Eu, etc., while the andesites have a notable loss of those elements, and the characteristics of dacites are between them. The loss of Eu, Ba, P and Ti in rhyolites indicates that the melts like intermediate intermediate rocks experienced a plagioclase-apatite-tutabuiferite predominant fractionation. All the above geochemical results imply that an evolved affinity existed between the intermediate and acidic rocks.
     (4) Sr and Nd isotopic analysis exhibits that the early Cretaceous rocks in the Songliao Basin have the low content of Sr and high content of Nd data. The positiveε_(Nd) and low value of the initial ~(87)Sr/~(86)Sr ratio indicate they were derived from a similar mantle source and contaminated by the crust in different level during the period of ascending and evolving. The model ages of Nd suggest that the source crust of the volcanic rock was formed in Neo-Proterozoic Era.
     (5) Late Mesozoic volcanism shows a characteristic of belt-spreading and migrating with the temporal and spatial variation in the northeastern Asia. It is suggested that the late Jurassic volcanism might have a relationship with the closure of the Okhotsk Ocean and the Cretaceous volcanic activities was quite possible to be controlled by the delamination and roll-back of the paleo-Pacific subduction. The early Cretaceous volcanic rocks characterized with A-type rhyolites and developed under a post-orogenic and within-plate tectonic environment. Those are attributed to lithospheric thinning during the late Mesozoic. The lithosphere of the Daxing'an ranges and its westward part are believed to have mainly experienced an extensional lithospheric thinning and subsequently their thickness reduced just a little in scale. However, the part to east of the Daxing'an Ranges, especially under the Songliao Basin, is thought to have undergone both extensional and thermal-chemical erosion lithospheric thinning, and its thickness decreased dramatically. Inhomogeneous lithospheric thinning may be the vital reason for the different evolution of basins which locate in the two sides of Daxing'an Ranges.
引文
① 大庆大庆油田勘探开发研究院.松辽盆地北部徐家围子断陷天然气勘探形势图,2005
    ① 李纯泉.松辽盆地北部徐家围子断陷区深层天然气成藏研究.浙江大学博士后科研工作报告,2005
    ① 李纯泉.松辽盆地北部徐家围子断陷区深层天然气成藏研究.浙江大学博士后科研工作报告,2005
    ① 吉林省地质局区域地质调查大队.1980.中华人民共和国矿产图——舒兰县幅.
    曹熹,党增欣,张兴洲,等.佳木斯复合地体[M].长春:吉林科学技术出版社,2002
    陈建文.一个大型弧后裂谷盆地的沉积充填模式——以松辽盆地为例[J].石油实验地质,2000,22(2):50—54
    大庆油田石油地质志编写组.中国石油地质志(卷二)大庆、吉林油田(上册)大庆油田[M].北京:石油工业出版社,1993
    冯翠菊,王敬岩,冯庆付.利用测井资料识别火成岩岩性的方法[J].大庆石油学院学报,2004,28(4):9—11
    高明修.中国东部中新生代盆地与北美西部盆岭省对比研究[C].见朱夏主编.中国中新生代盆地构造和演化.北京:科学出版社,1983
    高瑞琪,萧德铭.松辽及外围盆地油气勘探新进展[J].北京:石油工业出版社,1995
    高山,金振民.拆沉作用(delamination)及其壳幔动力学意义[J].地质科技情报,1997,16(1):1—9
    葛文春,林强,孙德有,等.大兴安岭中生代两类流纹岩成因的地球化学研究[J].地球科学——中国地质大学学报,2000,25(2):172—178
    葛文春,吴福元,周长勇,等.大兴安岭中部乌兰浩特地区中生代花岗岩的锆石U—Pb年龄及地质意义[J].岩石学报,2005,21(3):749—769
    郭军,陈守田,王维林,等.松辽盆地徐家围子断陷火山岩岩石化学特征及其构造环境[J].长春科技大学学报,2000,30(3):243—245
    洪大卫,王式洸,韩宝福,等.碱性花岗岩的构造分类及其鉴别标志[J].中国科学(B辑),1995,25(4):418—426
    蒋国源,权恒.大兴安岭根河、海拉尔盆地中生代火山岩[J].中国地质科学院沈阳地质矿产研究所所刊,1988,(3):23—1001
    金振民,高山.底侵作用(underplating)及其壳幔演化动力学意义[J].地质科技情报,1996,15(2):1—12
    李昌年.火成岩微量元素岩石学[M].武汉:中国地质大学出版社,1992
    李昌志,陆远发,黄圭成.放射性同位素地质学方法与进展[M].武汉:中国地质大学出版社,2004
    李彦民,李艳丽,赵徵林,等.深层火山岩储集层定量预测方法研究[J].石油地球物理勘探,2002,37(2):175—179
    林强,葛文春,孙德有,等.中国东北地区中生代火山岩的大地构造意义[J].地 质科学,1998,33(2):129—139
    林强,葛文春,孙德有,等.大兴安岭中生代两类流纹岩与玄武岩的成因联系[J].长春科技大学学报,2000,30(4):322—329
    林强,葛文春,吴福元,等.大兴安岭中生代花岗岩类的地球化学[J].岩石学报,2004,20(3):403—412
    刘德来,陈发景,杨丰平.中国东北地区中生代火山岩与板块构造环境[J].大庆石油学院学报,1994,18(2):1—8
    刘德来,马莉.松辽盆地裂谷期前火山岩与裂谷盆地关系及动力学过程[J].地质论评,1998,14(2):130—135
    刘嘉麒.论中国东北大陆裂谷系的形成与演化[J].地质科学,1989,(3):209—216
    刘万洙,王璞珺,门广田,等.松辽盆地北部深层火山岩储层特征[J].石油与天然气地质,2003,24(1):28—31
    路凤香,郑建平,李伍平,等.中国东部显生宙地幔演化的主要样式:“蘑菇云” 模型[J].地学前缘,2000,7(1):97—117
    路凤香,朱勤文,李思田.松辽盆地周边中生代火山作用及其地球动力学背景[C].见李思田等主编.中国东部及邻区中、新生代盆地演化地球动力学背景.武汉:中国地质大学出版社,1997.169—185
    路远发.GeoKit:一个用VBA构建的地球化学工具软件包[J].地球化学,2004,33(2):459—464
    罗照华,魏阳,辛后田,等.太行山中生代板内造山作用于华北大陆岩石圈巨大减薄[J].地学前缘,2006,13(6):52—63
    蒙启安.松辽盆地徐家围子地区晚中生代火山岩岩相及储层意义[D]:[博士学位论文].杭州:浙江大学,2006
    苗来成,范蔚茗,张福勤,等.小兴安岭西部新开岭—科洛杂岩锆石SHRIMP年代学研究及其意义[J].科学通报,2003,48(22):2315—2323
    内蒙古自治区地质矿产局.内蒙古自治区区域地质志[M].北京:地质出版社,1991
    彭艳东,张立东,陈文,等.辽西义县火山岩~(40)Ar—~(39)Ar、K—Ar法年龄测定[J].地球化学,2003,32(5):427—436
    綦敦科,吴海波,陈立英.徐家围子火山岩气减储层测井响应特征[J].测井技术,2002,26(1):52—54
    任建业,李思田,焦贵浩.二连断陷盆地群伸展构造系统及其发育的深部背景[J].地球科学—中国地质大学学报,1998,23(6):567—572
    邵济安.中朝板块北缘中段地壳演化[M].北京:北京大学出版社,1991
    邵济安,刘福田,陈辉.西北太平洋地震层析剖面及地球动力学启示[J].自然科学进展,2000,10(8):757—760
    邵济安,刘福田,陈辉,等.大兴安岭—燕山晚中生代岩浆活动与俯冲作用的关系[J].地质学报,2001,75(1):56—63
    邵济安,张履桥,牟保磊.大兴安岭中生代伸展造山过程中的岩浆作用[J].地学前缘,1999,6(4):339—345
    邵济安,张履桥,肖庆辉,等.中生代大兴安岭的隆起——一种可能的陆内造山机制[J].岩石学报,2005,21(3):789—794
    水谷伸治郎,邵济安,张庆龙.那丹哈达地体与东亚大陆边缘中生代构造的关系[J].地质学报,1989,63(3):204—215
    宋彪,张玉海,刘敦一.微量原位分析仪器SHRIMP的产生与锆石同位素地质年代学[J].质谱学报,2002b,23(1):58—62
    宋彪,张玉海,万渝生.锆石SHRIMP样品靶制作、年龄测定及有关现象讨论[J].地质论评,2002a,48(增刊):26—30
    王德滋,周新民.火山岩岩石学[M].北京:科学出版社,1982
    王璞珺,迟元林,刘万洙,等.松辽盆地火山岩相:类型、特征和储层意义[J].吉林大学学报(地球科学版),2003a,33(4):449—456
    王璞珺,陈树民,刘万洙,等.松辽盆地火山岩相与火山岩储层的关系[J].石油与天然气地质,2003b,24(1):18—23
    王清海,徐文良.松辽盆地形成与演化的深部作用过程——中生代火山岩探针[J].吉林大学学报(地球科学版),2003,33(1):37—42
    王涛.中国东部裂谷盆地油气藏地质[M].北京:石油工业出版社,1997
    王玉净,樊智勇.内蒙古西拉木伦河北部蛇绿岩带中二叠纪放射虫硅虫的发现及其地质意义[J].古生物学报,1997,36(1):58—69
    汪筱林,刘立,刘招君.满洲里——绥芬河地学断面域中新生代盆地基底结构及构造演化[C].见M—SGT地质课题组编.中国满洲里—绥芬河地学断面域内岩石圈结构及其演化的地质研究.北京:地震出版社,1994
    吴福元,曹林.东北亚地区的若干重要基础地质问题[J].世界地质,1999,18(2):1—12
    吴福元,葛文春,孙德有,等.中国东部岩石圈减薄研究中的几个问题[J].地学前缘,2003,10(3):51—60
    吴福元,孙德有,李惠民,等.松辽盆地的基底岩石德锆石U—Pb年龄[J].科学通报,2000,45(6):656—660
    吴福元,叶茂,张世红.中国满洲里—绥芬河地学端面域的地球动力学模型[J].地球科学——中国地质大学学报,1995,20(5):535—539
    吴利仁,齐进英,王听渡,等.中国东部中生代火山岩[J].地质学报,1982,56(3):223—234
    吴元保,郑永飞.锆石成因矿物学研究及其对U—Pb年龄解释的制约[J].科学通报,2004,49(16):1589—1604
    肖龙,王方正,王华,等.地幔柱构造对松辽盆地及渤海湾盆地形成的制约[J].地球科学——中国地质大学学报,2004,29(3):283—292
    徐义刚.岩石圈的热—机械侵蚀和化学侵蚀与岩石圈减薄[J].矿物岩石地球化学通报,1999,18(1):1—5
    徐义刚.华北岩石圈减薄的时空不均一特征[J].高校地质学报,2004,10(3):324—331
    徐义刚.太行山重力梯度带的形成与华北岩石圈减薄的时空差异性有关[J].地球科学——中国地址大学学报,2006,31(1):14—21
    许文良,孙德有,周燕.满洲里——绥芬河地学断面岩浆作用和地壳结构[M].北京:地质出版社,1994
    许文良,王冬艳,王嗣敏.中国东部中新生代火山作用的pTtc模型与岩石圈演化[J].长春科技大学学报,2000,30(4):329—335
    许文良,郑常青,王冬艳.辽西中生代粗面玄武岩中地幔和下地壳捕虏体的发现及其地质意义[J].地质论评,1999,45(增刊):444—449
    许敏,薛福林,王东坡.岩石圈流变性与沉积盆地——以辽西—辽北—松辽盆地区为例[J].长春科技大学学报,1998,28(4):406—410
    闫全人,高山林,王宗起,等.松辽盆地火山岩的同位素年代、地球化学特征及意义[J].地球化学,2002,31(2):169—179
    杨宝俊,张梅生,王璞珺,等.中国油气区地质地质——地球物理解析[M].北京:科学出版社,2003
    杨辉,张研,邹才能,等.松辽盆地北部徐家围子断陷火山岩分布及天然气富集规律[J].地球物理学报,2006,49(4):1136—1143
    叶慧文,张兴洲,周裕文.从蓝片岩及蛇绿岩的特点看满洲里—绥芬河断面岩石圈结构与演化[C].见:中国满洲里——绥芬河地学断面域内岩石圈结构及其演化的地质研究.北京:地震出版社,1994
    殷进垠,刘和甫,迟海江.松辽盆地徐家围子断陷构造演化[J].石油学报,2002,23(2):26—29
    张功成,徐宏,王同和,等.中国含油气盆地构造[M].北京:石油工业出版 社,1999
    张宏,柳小明,陈文,等.辽西北票—义县地区义县组顶部层位的年龄及其意义[J].中国地质,2005,2(4):596—603
    张炯飞,权恒,武广,等.东北地区中生代火山岩形成的构造环境[J].贵金属地质,2000,9(1):34—38
    张兴洲,Sklyarov E V.中国东北及邻区蓝片岩的构造意义[C].见:长春地质学院地质研究所文集.北京:地震出版社,1992
    张兴洲,杨宝俊,吴福元,等.中国兴蒙——吉黑地区岩石圈结构基本特征[J].中国地质,2006,33(4):816—823
    张贻侠,孙运生,张兴洲,等.中国满洲里——绥芬河地学断面[M].北京:地质出版社,1998
    张岳桥,赵越,董树文,等.中国东部及邻区早白垩世裂陷盆地构造演化阶段[J].地学前缘,2004,11(3):123—124
    赵国龙,杨桂林,傅嘉友,等.大兴安岭中南部中生代火山岩[M].北京:北京科学技术出版社,1989
    赵海玲,邓晋福,陈发景,等.松辽盆地东南缘中生代火山岩及其盆地形成的构造背景[J].地球科学——中国地质大学学报,1996,21(4):421—427
    赵海玲,邓晋福,陈发景,等.中国东北地区中生代火山岩岩石学特征与盆地形成[J].现代地质,1998,12(1):56—62
    赵越.燕山地区造山作用与构造演化[J].地质论评,1990,38(1):1-12
    郑建平.中国东部中新生代地幔置换作用与岩石圈减薄[M].武汉:中国地质大学出版社,1999
    朱光,牛漫兰,刘国生,等.郯庐断裂带早白垩世走滑运动中的构造、岩浆、沉积事件[J].地质学报,2002,76(3):325—334
    朱光,王道轩,刘国生,等.郯庐断裂带的演化及其对西太平洋板块运动的响应[J].地质科学,2004,39(1):36—49
    朱勤文,路凤香,谢意红,等大陆边缘扩张型活动带火山岩组合——松辽盆地周边中生代火山岩研究[J].岩石学报,1997,13(4):551—562
    Batchelor R A and Bowden P. Petrogenetic interpretation of granitoid rock series using multicationic parameters[J]. Chemical Geology, 1985, 48: 43—55
    Bird P. Initiation of intracontinental subduction in the Himalaya[J]. Journal of Geophysical Research, 1978, 83(B10): 4975—4987
    Boynton W V. Cosmochemistry of the rare earth elements: meteorite studies[C]. In: Henderson P ed. Rare Eareth Element Geochemistry, Developments in Geochemistry. 1984. 2: 63-114
    Cherniak D J, Watson E B. Pb diffusion in zircon[J]. Chemical Geology, 2000, 172: 5-24
    Compston W, Williams I S, Kirschvink J L, et al. Zircon U-Pb ages for the early Cambrian time-scale[J]. Journal Society of London, 1992, 149: 171 — 184
    Cumming G. L, Rechards J R. Ore lead isotope ratios in a continuously changing earth [J]. Earth and Planetary Science Letters, 1975, 28: 155 — 171
    Engebretson D C, Cox A, Gordon R G. Relative motion between oceanic and continental plates in the Pacific basin[J]. Geological Society of American Special Paper, 1985, 206: 1-59
    Fan W M, Guo F, Wang Y J , et al. Late Mesozoic calc —alkaline volcanism of post — orogenic extension in the northern Da Hinggan Mountains, northeastern China[J]. Journal of Volcanology and Geothermal Research, 2003, 121: 115 -135
    Faure M, Natal'in M. The geodynamic evolution of the eastern Eastern Eurasian margin in Mesozoic times[J] . Tectonophysics, 1992, 208: 397 — 411
    Froude D O, Ireland T R, Kinny P D , etal. Ion microprobe identification of 4,100 -4,200 Myr—old terrestrial zircons[J]. Nature, 1983, 304: 616-618
    Fukao Y, Maruyama S. Geological implication of the whole mantle P —wave tomography[J]. Journal of Geological Society of Japan, 1994, 100(1): 4 — 23
    Gradstein F M, Ogg J G, Smith A G, et al. A new geologic time scale, with special reference to Precambrian and Neogene[J]. Episodes, 2004, 27(2): 83 — 100
    Jahn B M, Wu F Y, Capdevila R, et al. Highly evolved juvenile granites with tetrad REE Patterns: the Woduhe and Baerzhe granites from the Great Xing'an Mountains in NE China[J]. Lithos, 2001, 59: 171-198
    Lee J, Williams I, Ellis D. Pb, U and Th diffusion in nature zircon[J]. Nature, 1997, 390(13): 159-162
    Liu W, Siebel W, Li X, et al. Petrogenesis of the Linxi granitoid, northern inner Mogolia of China: constraints on basaltic underplating[J]. Chemical Geology, 2005, 219: 5-35
    Ludwig K R. Using Isoplot/EX Version 2: a geolocronolgical Toolkit for Microsoft Excel. Berkeley Geochron. Center Spec Publ, 1999: 1—47
    Ludwig K R. Squid 1.02: A user manual. Berkeley Geochron. Center Spec Publ, 2001, 2: 1-19
    Maruyama S, Isozaki Y, Kimura G, et al. Paleogeographic maps of the Japanese Islands: plate tectonic systhesis from 750 Ma to the present[J]. Island Arc, 1997, 6: 121-142
    Meng Q R. What drove late Mesozoic extension of the northernChina—Mongolia tract? [J]. Tectonophysics, 2003, 369:155-174
    Middlemost E A K. Naming matierials in the magma/igneous rock system[J]. Earth Science Review, 1994, 37: 215-224
    Pearce J A, Harris N B W and Tindle A G. Trace element discrimination diagrams for the tectonic interpretation of granitic rocks[J]. Journal of Petrology, 1984, 25: 956-983
    Ratschbacher L, Hacker B R, Webb L E, et al. Exhumation of the ultrahigh—pressure continental crust in east centual China: Cretaceous and Cenozoic unroofing and the Tan—Lu fault[J]. Journal Geophysics Reviews, 2000, 105: 13303 — 13338
    Ren J Y, Tamaki K, Li S T, et al. Late Mesozoic and Cenozoic rifting and its dynamic setting in Eastern China and adjacent areas[J]. Tectonophysics, 2002, 344: 175 -205
    Scotese C R, Gahagan L M, Larson R L, et al. Plate tectonic reconstructions of the Cretaceous and Cenozoic ocean basins[J]. Tectonophysics, 1988, 155: 27 — 48
    Song T G. Inversion styles in the Songliao basin (northeast China) and estimation of the degree of inversion[J]. Tectonophysics, 1997, 283: 173 — 188
    Takahshi M. Space—time distribution of late Mesozoic to early Cenozoic magmatism in East Asia and its tectonic implication[C]. In: Takamashi, M. (Ed.). Accrtion Tectonics in the Circum—Pacific Regions. Terra Publ., Tokyo. 1983: 69—88
    Wang F, Zhou X H, Zhang L C, et al. Late Mesozoic volcanism in the Great Xing'an Range (NE China): Timing and implication for the dynamic setting of NE Asia[J]. Earth and Planetary Science Letters, 2006, 251: 179—198
    Wang P J, Liu W Z, Wang S X, et al. ~(40)Ar/~(39)Ar and K- Ar dating on the volcanic rocks in the Songliao basin, NE China: constraints on stratigraphy and basin dynamics[J]. International Journal of Earth Sciences, 2002, 91: 331—340
    Williams I S. U-Th-Pb geochronology by ion microprobe[C]. In: Mickibben M A, Shanks III W C, Ridlley W I. Applications of Micro Analytical Techniques to Understanding Mineralizing Processes. Reviews Econonmic Geology, 1998 7: 1-5
    Wu F Y, Lin J Q, Wilde Simon A, et al. Nature and significance of the early Cretaceous giant igneous event in eastern China[J]. Earth and Planetary Science Letters, 2005, 233: 103—119
    Wu F Y, Sun D Y, Li H M, et al. A—type granites in Northeastern China: age and geochemical constraints on their pentrogenesis. Chemical Geology, 2002, 187: 143—173
    Wu F Y, Walker R J, Ren W X, et al. Osmium isotopic constraints on the age of lithospheric mantle beneath northeastern China [J]. Chemical Geology, 2003, 197: 107—129
    Xu Y G. Thermotectonic destruction of the Archean lithospheric keel beneath eastern China: evidence, timing, and mechanism[J]. Phys. Chem. Earth A, 2001, 26: 747—757
    Zhu B Q, Zhang J L, Tu X L, et al. Pb, Sr, and Nd isotopic features in organic matter from China and their implications for petroleum generation and migration[J]. Geochimica et Cosmochimica Acta, 2001, 65(15): 2555—2570
    Zorin Y A. Geodynamics of the western part of the Mongolia-Okhotsk collisional belt, Trans-Baikal region (Russia) and Mongolia[J]. Tectonophysics, 1999, 306: 33—56

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700