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1.
河南省桐柏县银洞坡金矿床同位素地球化学   总被引:11,自引:10,他引:11  
银洞坡金矿床位于河南肖桐柏地区围山城金银多金属矿带内,矿体定位受新元古界歪头山组地层控制。各成矿阶段热液石英中流体的δ~(18)O_w值为0.0‰~10.8‰,晚期碳酸盐中流体的δ~(18)O_W 值为-5.3‰~-9.7‰,流体的δD值为-65‰~-84‰,显示早阶段成矿流体以来自赋矿地层的变质水为主,晚阶段大气降水不断混入。包裹体的δ~(13)C_(CO)_2值介于-3.7‰~ 6.7‰,指示流体的碳主体来自碳酸盐储库。硫化物的δ~(34)S 值介于 1.3‰~ 3.1‰,具塔式分布特征,硫主要源自围岩歪头山组。~(206)Pb/~(204)Pb=16.540~17.216,~(207)Ph/~(204)Pb=15.056~15.612,~(208)Pb/~(204)Pb=37.336~38.861,显示较明显的铀铅亏损特征,矿石铅ω值介于39.50~48.62,显示铅源的物质成熟度高,为赋矿地层歪头山组,矿石铅同位素与歪头山组地层的一致性及其与南、北秦岭其它构造岩石单元的差异表明,银洞坡金矿的成矿物质主要来自歪头山组地层。无论在成矿流体和物质来源方面,还是在矿床地质特征方面,银洞坡金矿都应属于典型的层控造山型金矿,并形成于扬子与华北大陆板块的碰撞体制。  相似文献   

2.
新疆喀喇昆仑多宝山铅锌矿床赋存于上白垩统铁隆滩组灰岩段中,明显受构造控制,矿体形态呈不规则囊状、脉状、透镜状等。成矿阶段可分为3期:早期硫化物成矿阶段(方铅矿、闪锌矿、方解石)、中期交代成矿阶段(菱锌矿、铁氧化物、白铅矿、石膏)与晚期氧化阶段(水锌矿)。硫化物阶段方铅矿的δ34S为-14‰~-0.6‰,表明S可能来源于海相硫酸盐岩的还原。Pb同位素组成集中,具有地壳来源特征,二叠系—白垩系可能提供了金属成矿物质。方解石的δ~(18)C_(PDB)为3.5‰~5.7‰,δ~(18) O_(SMOW)为22.1‰~27.1‰,来源于碳酸盐岩地层的溶解作用。交代成矿阶段菱锌矿的δ~(18)C_(PDB)为2.9‰~3.8‰,δ~(18) O_(SMOW)为16.9‰~20.3‰;白铅矿的δ~(18) C_(PDB)为2.7‰~4.4‰,δ~(18) O_(SMOW)为15.8‰~20.3‰,C、O同位素漂移可能是与大气降水的混入有关。硫化物成矿阶段方解石流体包裹体的3 He/4 He值为0.72~0.93R/Ra,~(40)Ar/~(36) Ar值为302.1~350.7,方铅矿流体包裹体的3 He/4 He值为1.17R/Ra,~(40)Ar/~(36) Ar值为298.1,交代成矿阶段菱锌矿流体包裹体的3 He/4 He值为0.22~0.46R/Ra,~(40)Ar/~(36) Ar值为292.6~295.8,白铅矿流体包裹体的3 He/4 He值为0.40~0.59R/Ra,~(40)Ar/~(36) Ar值为292.9~295.4,两个阶段成矿流体均为地壳流体与大气降水混合流体。综上所述,多宝山铅锌矿床是盆地边缘褶皱逆冲+构造流体+次生交代成矿系统的产物,硫化物成矿阶段为构造热液成因,交代成矿阶段为直接交代成因,后期发生叠加氧化作用。  相似文献   

3.
黑龙江争光金矿地质地球化学研究   总被引:10,自引:0,他引:10  
通过氢、氧、铅同位素和流体包裹体测试,结合争光金矿床的地质、微量元素、稀土元素地球化学特征研究,表明争光金矿为岩浆低温热液矿床.成矿物质主要来源于地层,矿化类型为蚀变岩型和石英脉型.成矿流体为岩浆水、变质水和大气降水的混合液.δD值为-63‰~-85‰,δ18O水值为-0.2‰~-7.0‰,主成矿阶段温度为133~276℃.  相似文献   

4.
辽宁小佟家堡子金矿床成矿流体特征及来源讨论   总被引:1,自引:0,他引:1  
小佟家堡子金矿床地处辽宁青城子矿田东南部,为一大型蚀变岩型矿床。矿床产于辽河群大石桥组三段白云石大理岩中,矿体呈层状、似层状产出。矿床由热液叠加改造作用形成,历经石英-黄铁矿、石英-碳酸盐两个阶段。流体包裹体研究表明,该矿床成矿流体属中低温、低盐Na Cl-H2O型体系热液。碳氢氧同位素地球化学的研究表明,石英-黄铁矿阶段成矿流体氧同位素δ18O组成在15.2‰~18.4‰,碳同位素δ13CV-PDB组成在-7.4‰~-13.2‰,氢同位素δD组成为-89.3‰~-92.2‰,反应该阶段成矿流体主要来自岩浆水并伴有少量的大气降水。石英-碳酸盐阶段成矿流体氧同位素δ18O组成在17‰~17.8‰,碳同位素δ13CV-PDB组成在-12.3‰~-13.5‰,氢同位素组成δD为-87.7‰~-90.4‰,表明该阶段成矿流体主要来自大气降水。  相似文献   

5.
吉林南岔金矿床地处辽吉裂谷系老岭隆起带西南端,为20世纪80年代发现的一中型构造蚀变岩型矿床,区内金矿化带(体)产于中元古界老岭群珍珠门组白云质大理岩与花山组片岩接触过渡部位,其热液成矿作用经历了:Ⅰ黄铁矿-石英阶段;Ⅱ黄铁矿-黄铜矿-石英阶段;Ⅲ少硫化物-碳酸盐-石英阶段。流体包裹体研究表明,各阶段矿石中主要发育气液两相包裹体。Ⅰ阶段包裹体均一温度180~260℃,盐度为4.78%~9.47%Nacl;Ⅲ阶段包裹体均一温度为164~188℃,盐度为2.76%~4.94%Nacl,表明成矿流体为中低温、低盐度NaCl-H2O体系热液。氢-氧同位素研究结果表明,Ⅰ阶段包裹体水δ~(18) O_(H2O-SMOW)値为3.3‰~5.3‰,δDV-SMOW值变化范围为-90.5‰~-92.6‰;Ⅲ阶段包裹体水δ~(18) O_(H2O-SMOW)値为-6.5‰~-8.2‰,δDV-SMOW值为-105.4‰~-117.7‰,反映Ⅰ阶段成矿流体主要来源于岩浆热液,Ⅲ阶段成矿流体多来源于大气降水。岩浆来源流体温度降低及与大气降水混合可能是金沉淀成矿的主要机制。  相似文献   

6.
构家河金矿床位于南秦岭武当山西缘,产于绢云绿泥石英片岩和变石英砂岩之中,受韧性滑脱剪切构造带控制。矿化类型主要有破碎带蚀变岩型和石英脉型,其中前者形成了破碎带蚀变岩型主矿体,呈似层状或透镜状分布于近南北向断裂中,次矿体分布在北西和北东向次级断裂中,为石英脉型矿体。成矿作用包括3个阶段:石英-硫化物阶段、石英-硫化物-金银矿化阶段和石英-碳酸盐阶段。对主矿体石英-硫化物-金银矿化阶段和石英-碳酸盐阶段的流体包裹体进行了显微观察和测温,同时对不同阶段的石英和方解石、白云石等进行了D、O、C同位素测试。结果显示,包裹体以原生气液两相包裹体为主,且主要为富液相包裹体;石英-硫化物-金银矿化阶段包裹体均一温度集中于180~270℃,峰值为220℃,盐度和密度分别为1.40%~14.46%和0.60~0.97g/cm~3;石英-碳酸盐阶段均一温度峰值为170℃,盐度和密度分别为1.34%~7.31%和0.86~0.96g/cm~3;石英-硫化物-金银矿化阶段和石英-碳酸盐阶段石英的δD_(v-SMOW)值分别为-93.3%~70.9‰和-91.6%‰~-67.2‰,δ~(18)O_(v-SMOW)值为12.9‰~14.5‰和11.9‰~13.8‰;方解石和白云石的δ~(13)C_(V.PDB)值为-12.4‰~-12.0‰,δ~(18)O_(v-PDB)值为-18.4‰~-18.1‰。成矿流体特征显示该矿床初始成矿流体为中温、低盐度的变质热液,再结合区域成矿地质与成矿构造背景,认为构家河金矿为造山型金矿床。  相似文献   

7.
牟乳成矿带是胶东半岛金矿集区三大金成矿带之一,但带内金矿床的成矿流体来源仍存在着较大分歧。范家庄金矿床是近年在该成矿带内新发现的金矿床,其成矿流体的研究较为薄弱。鉴于此,本文从流体包裹体和H-O同位素研究入手,结合矿床地质特征,对范家庄金矿床的成矿流体和矿床成因进行探讨。金矿体主要产于侏罗纪弱片麻状黑云母二长花岗岩内,呈脉状、透镜状,受断裂构造控制明显。该矿床热液成矿期可分为3个成矿阶段:石英-粗粒黄铁矿阶段(成矿早阶段)、石英-金-多金属硫化物阶段(主成矿阶段)、石英-碳酸盐阶段(成矿晚阶段)。流体包裹体岩相学特征显示,矿床中的原生包裹体以气液两相包裹体和纯液相水溶液包裹体为主,另有少量含CO2三相包裹体。显微测温结果显示,成矿早阶段和主成矿阶段的均一温度分别为167.2~297.5℃和168.4~253.6℃,盐度(w(NaCl))分别为3.55%~22.65%和2.58%~12.05%,密度分别为0.77~1.06 g/cm3和0.84~1.02 g/cm3,具有中低温、中低盐度、低密度的特征,与中温热液成矿系统流体特征相一致。对成矿压力和深度的估算表明,主成矿阶段的成矿压力为45.8~68.7 MPa (平均为52.8 MPa),成矿深度为5.38~6.71 km (平均为5.93 km),显示出中浅成成矿的特点。成矿流体H-O同位素示踪显示,成矿早阶段流体的δDH2O-SMOW值介于-96.9‰~-89.0‰之间,δ18OH2O-SMOW值介于-4.3‰~4.5‰之间;主成矿阶段的δDH2O-SMOW值介于-90.7‰~-85.3‰之间,δ18OH2O-SMOW值介于-5.4‰~-0.2‰之间。由此认为,范家庄金矿床的成矿流体来源于岩浆水与大气降水的混合,且随着成矿流体的演化,大气降水的混入比例增加。综合矿床地质特征和成矿流体研究,认为范家庄金矿床应属中温热液脉型金矿床。  相似文献   

8.
争光浅成低温热液型金矿床位于大兴安岭成矿带北段,是多宝山矿集区内的一个重要矿床。文章通过流体包裹体和C_H_O_He_Ar同位素的系统研究,对该矿床成矿流体和矿床成因进行了深入探讨。矿床成矿作用可划分为4个主要阶段:石英_黄铁矿阶段(成矿前阶段)、石英_多金属硫化物阶段(主成矿阶段)、方解石_(石英)_多金属硫化物阶段(主成矿阶段)和方解石阶段(成矿后阶段)。流体包裹体研究表明,争光金矿床主要发育富液相流体包裹体。石英_黄铁矿阶段、方解石_(石英)_多金属硫化物阶段和方解石阶段流体包裹体的均一温度分别介于116~243℃(集中于150~170℃)、129~294℃(集中于140~160℃)和130~155℃(集中于130~150℃);w(NaCleq)分别介于0.9%~10.1%、1.2%~13.8%和2.7%~8.7%。成矿流体具有低温、低盐度、相对还原的特征,属H_2O_Na Cl体系。石英_黄铁矿阶段成矿流体的δD和δ18O分别为-127‰~-110‰和-5.9‰~0.6‰,蚀变围岩的δD值和δ18O值分别为-118‰~-108‰和6.3‰~7.9‰。方解石_(石英)_多金属硫化物阶段和方解石阶段方解石的δ~(13)C分别为-5.3‰~-2.0‰和-2.9‰~-2.2‰,δ18O分别为7.7‰~9.3‰和9.9‰~13.5‰。黄铁矿流体包裹体的~3He/~4He、~(40)Ar/~(36)Ar和~(40)Ar*/4He比值分别为1.75~3.06 Ra、683~1295和0.30~0.63。综合流体包裹体特征和稳定同位素组成,认为成矿早阶段成矿流体为大气降水与围岩发生水_岩反应后的演化水。随着成矿作用的进行,成矿流体变为大气降水与岩浆水的混合水,但仍以大气降水为主导。成矿流体与贫H_2S的流体混合和硫化物沉淀的共同作用可能是该矿床金沉淀的主要机制。  相似文献   

9.
马头山铜金矿床位于康定一锦屏山矿集区,处于锦屏山断裂与康定一水城断裂的交汇部位,是川西南地区新发现的中型铜金矿床。矿体呈现为硫化物石英脉状,赋存于泥盆系泥质粉砂质板岩、碳酸盐化泥晶灰岩和二叠系变质玄武岩中,受断裂构造控制,矿石中硫化物矿物多见黄铁矿、斑铜矿、黄铜矿、方铅矿等。矿石中石英原生流体包裹体观测和激光拉曼光谱分析显示,马头山铜金成矿流体为H_2O-CO_2-NaCl体系,均一温度108.1~439.1℃,盐度3.55%~22.78%NaCleq,密度0.51~1.12 g/cm~3,主成矿阶段流体包裹体具有中低温、中低盐度、低密度、富含CO_2的特征。矿石中硫化物矿物δ~(34)SV-CDT=-4.6‰~8.4‰,具有岩浆来源硫的特征,石英脉中原生流体包裹体的δD=-78.8‰~-48.7‰,δ~(18)O_(H_2O)=-2.1‰~9.3‰,白云石的δ~(13)C_(V-PDB)=-5.3‰~1.7‰,δ~(18)O_(V-SMOW)=19.4‰~25.9‰,表明成矿流体主要为岩浆水,并有地层流体和大气水加入。综合矿床地质特征、流体包裹体特征和S、C、O、H同位素证据,认为马头山铜金矿床为中低温-岩浆热液型铜金矿床。  相似文献   

10.
湘西花垣地区铅锌矿床是铅锌矿资源储量超过千万吨的世界级超大型矿床之一。对该矿床主矿化期的方解石和闪锌矿进行了系统的C、H、O同位素研究。分析结果显示,花垣地区铅锌矿床主成矿期方解石样品的δ~(13)C_(PDB)值范围为-2.71‰~1.21‰,δ~(18)OSMOW值范围为16.09‰~22.48‰,团结、李梅、土地坪、蜂塘和大石沟各铅锌矿床中主成矿期方解石的13C、18O同位素依次表现出逐渐降低的特征,在δ~(18)O_(SMOW)-δ~(13)C_(PDB)图上主要介于原生碳酸盐岩与海相碳酸盐岩之间,该地区铅锌矿床成矿流体中的碳主要来源于海相碳酸盐岩的溶解作用。花垣矿区围岩的δ~(13)C_(PDB)值范围为0.15‰~1.17‰,δ~(18)O_(SMOW)值范围为19.79‰~23.89‰,指示沉积成因海相碳酸盐岩的特征。方解石和闪锌矿样品中流体的δD_(SMOW)变化于-91.1‰~-15‰之间,δ18Ofluid变化范围为-4.1‰~9.25‰,在矿区范围内流体的迁移方向是由北向南,δ~(18)O_(fluid)-δD_(SMOW)图显示,矿床成矿流体的主要来源是建造水和大气降水。成矿流体与围岩间的水-岩反应是导致湘西花垣地区铅锌矿床中方解石和闪锌矿矿物发生沉淀的主要机制。  相似文献   

11.
摩擦桩基桩土间极限摩阻力取值问题探讨   总被引:1,自引:0,他引:1  
陈银生 《世界地质》1999,18(1):54-59
通过对广珠东线高速公路横沥大桥的试桩及土体的工程地质条件分析,总结出影响摩擦桩基桩土间极限摩阻力取值的一般问题以及解决问题的方法和措施。  相似文献   

12.
从榴辉岩与围岩的关系论苏鲁榴辉岩的形成与折返   总被引:4,自引:1,他引:4       下载免费PDF全文
位于华北和扬子两板块碰撞带中的苏鲁榴辉岩形成的温压条件不但是超高压,而且是高温。榴辉岩的PTt轨迹表明其为陆-陆磁撞俯冲带的产物。榴辉岩的区域性围岩花岗质片麻岩为新元古代同碰撞期花岗岩,榴辉岩及其他直接围岩皆呈包体存在于其中,并见新元古代花岗岩呈脉状侵入榴辉岩包体中。区域性围岩新元古代花岗岩的锆石中发现有柯石英、绿辉石等包裹体,表明新元古代花岗岩的组成物质也经受过超高压变质作用,且榴辉岩与围岩新元古代花岗岩的锆石U-Pb体系同位素年龄基本相同。但新元古代花岗岩所记录的变质作用和变形作用期次(或阶段)却少于榴辉岩。椐上述可得如下推断:超高压榴辉岩与新元古代花岗岩岩浆是同时在碰撞带底部(俯冲板块前部)形成的;榴辉岩的第一折返阶段是由新元古代花岗岩岩浆携带上升的,其第二折返阶段是和新元古代花岗岩一起由逆冲及区域性隆起而上升,遭受剥蚀。  相似文献   

13.
某高速公路下伏煤矿采空区稳定性分析   总被引:10,自引:0,他引:10  
在论述某高速公路下伏砦脖煤矿采空区地质、采矿和工程地质特征的基础上, 进行了稳定性数值模拟分析, 定性与定量地分析与评价了该煤矿采空区的地表变形特征及稳定性。研究结果表明: 该煤矿采空区的变形尚未完成, 对拟建的高速公路将产生很大的危害, 必须采取相应的工程治理措施。   相似文献   

14.
In order to characterise the influence of the heavyrains on the observed landslides during the 1996–1997hydrological cycle, rainfall records for the last 100years are analysed from 104 stations in easternAndalusia. Regarding the amounts of rain recordedbetween October 1996 and March 1997 in the 104stations studied, 31 presented new all-time records;15 presented values that were 80–100% of thepre-1995 record; 49 stations, 80–50%; and 9stations, < 50%. A map has been devised of thesusceptibility of the materials through which thesouth-eastern Andalusian road network crosses,together with an inventory of the damage caused byinstability phenomena on banks and cuttings of theroad network during the winter of 1996–1997. Therelationships between the rainfall during the studyperiod, the damage caused to the road network and thesusceptibility of the materials affected are analysed.The results indicate that there is a clearcorrespondence between the rainfall recorded and thesusceptibility of the materials with the inventorieddamage. It is concluded that the widespread seriousdamage caused in early 1997 to the roads andsurrounding areas in the Alpujarra region and thecoast of the Province of Granada was mainly caused bythe extraordinarily heavy rains. However, considerablyless damage was observed where the susceptibility ofthe terrain is low, thus highlighting the extremeusefulness of terrain-susceptibility maps for riskprevention and territorial planning.  相似文献   

15.
混凝剂处理钻井废泥浆液的研究   总被引:4,自引:0,他引:4  
通过烧杯搅拌实验对混凝剂处理钻井废泥浆液进行研究,从混凝剂适应p H值范围、混凝效果、沉降速度三方面研究比较,找出一种较为理想的混凝剂,并分析了影响混凝剂性能的主要因素,确定了混凝剂的最佳投放剂量。   相似文献   

16.
正Artemia cysts are an extremely important component of aquaculture diets.It is well established that the cultivation of fish and shellfish derive substantial health and growth advantages when Artemia are included in the diets of the  相似文献   

17.
黄河源区水环境变化及黄河出现冬季断流的原因   总被引:12,自引:0,他引:12  
自1954年有水文观测资料以来,黄河曾在青海省玛多县黄河沿水文站发生过3次断流。本文在分析黄河源区水环境特征及其影响因素的基础上指出,鄂陵湖、扎陵湖的环湖融区调节能力低,当遇到连续干旱、冬季其调节水量不足以维系黄河径流时便会发生断流,这是断流的主因。湖水位降低、开采沙金、过度放牧等自然和人为因素也会对黄河发生断流产生影响。鄂陵湖口附近黄河上修建的水电站开始蓄水,提高了两湖及环湖融区的调节能力,今后黄河冬季出现断流的可能性将大为降低。  相似文献   

18.
利用天山南坡科其喀尔冰川3号观测站2009年全年的气象观测资料,分析研究了科其喀尔冰川表碛区的小气候特征. 结果表明:总辐射和净辐射夏秋季较高、冬春季较低;反射辐射和地表反照率反之. 与其他地区不同,该区主要受积雪物理性质和下垫面状况的影响,冬春季地表反照率日变化表现为由大到小的变化过程,夏秋季表现为倒U型. 温度年变化表现为夏秋季高、冬春季低,最高月均值出现在8月,为9.4℃,最低月均值出现在1月,为-9.6℃. 受山谷风和冰川风的影响,全年的风向以西北风和西北偏西风为主,风向的日变化以11:00为界发生转向. 受降水和冰川消融等的影响,比湿夏秋季月均值较大,冬春季月均值较小.  相似文献   

19.
International unity is becoming ever stronger in this country owing to an increasing similarity in the development of the cultural environment. This comprises the provision of all the country's republics with a sufficient number of schools, theatres, and other institutions and cultural information media in accordance with the needs of the population. An important part is played by the rise in ‘the general educational level, as well as the level of professional qualifications and skills. Among all the Soviet nations and nationalities, this rise being more rapid among formerly backward peoples. Prominent among the factors of internationalization is the progressive development of the nationalities’ cultural resources, while professional culture is being increasingly brought within the reach of the masses.The implementation of the nationalities policy promotes the all-round development of all Soviet nations and nationalities, their drawing together, the upsurge of the individual capabilities of every Soviet citizen.  相似文献   

20.
Climate: Is the past the key to the future?   总被引:2,自引:0,他引:2  
 The climate of the Holocene is not well suited to be the baseline for the climate of the planet. It is an interglacial, a state typical of only 10% of the past few million years. It is a time of relative sea-level stability after a rapid 130-m rise from the lowstand during the last glacial maximum. Physical geologic processes are operating at unusual rates and much of the geochemical system is not in a steady state. During most of the Phanerozoic there have been no continental ice sheets on the earth, and the planet’s meridional temperature gradient has been much less than it is presently. Major factors influencing climate are insolation, greenhouse gases, paleogeography, and vegetation; the first two are discussed in this paper. Changes in the earth’s orbital parameters affect the amount of radiation received from the sun at different latitudes over the course of the year. During the last climate cycle, the waxing and waning of the northern hemisphere continental ice sheets closely followed the changes in summer insolation at the latitude of the northern hemisphere polar circle. The overall intensity of insolation in the northern hemisphere is governed by the precession of the earth’s axis of rotation, and the precession and ellipticity of the earth’s orbit. At the polar circle a meridional minimum of summer insolation becomes alternately more and less pronounced as the obliquity of the earth’s axis of rotation changes. Feedback processes amplify the insolation signal. Greenhouse gases (H2O, CO2, CH4, CFCs) modulate the insolation-driven climate. The atmospheric content of CO2 during the last glacial maximum was approximately 30% less than during the present interglacial. A variety of possible causes for this change have been postulated. The present burning of fossil fuels, deforestation, and cement manufacture since the beginning of the industrial revolution have added CO2 to the atmosphere when its content due to glacial-interglacial variation was already at a maximum. Anthropogenic activity has increased the CO2 content of the atmosphere to 130% of its previous Holocene level, probably higher than at any time during the past few million years. During the Late Cretaceous the atmospheric CO2 content was probably about four times that of the present, the level to which it may rise at the end of the next century. The results of a Campanian (80 Ma) climate simulation suggest that the positive feedback between CO2 and another important greenhouse gas, H2O, raised the earth’s temperature to a level where latent heat transport became much more significant than it is presently, and operated efficiently at all latitudes. Atmospheric high- and low-pressure systems were as much the result of variations in the vapor content of the air as of temperature differences. In our present state of knowledge, future climate change is unpredictable because by adding CO2 to the atmosphere we are forcing the climate toward a “greenhouse” mode when it is accustomed to moving between the glacial–interglacial “icehouse” states that reflect the waxing and waning of ice sheets. At the same time we are replacing freely transpiring C3 plants with water-conserving C4 plants, producing a global vegetation complex that has no past analog. The past climates of the earth cannot be used as a direct guide to what may occur in the future. To understand what may happen in the future we must learn about the first principles of physics and chemistry related to the earth’s system. The fundamental mechanisms of the climate system are best explored in simulations of the earth’s ancient extreme climates. Received: 7 November 1996/Accepted: 23 January 1997  相似文献   

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