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1.
评价高放射性废物深地质处置库安全性能的一个重要方面是研究处置库的远场地球化学环境 ;矿物和岩石同位素地球化学研究可以较客观地重现矿物、岩石形成时的古环境及其演化历史。对中国第一个高放射性废物处置库预选场深部花岗岩不同深度裂隙充填矿物 (方解石、石英 )的 C、O同位素 ,Rb- Sr同位素及铀系核素的研究表明预选场深部花岗岩可分为四种不同的地球化学环境 :1浅部 (0~ 15 0 m ) ,其填隙矿物的δ1 8O(SMOW) =12 .1‰~ 13.0‰ ,δ1 3C(PDB) =- 9.5‰~ - 10 .1‰ ,δ87Sr=- 3.2 4‰~ - 1.0 9‰ ,填隙矿物形成于低温流体环境 ,为大气降水补给。 2中—上部 (15 0~ 35 0 m) ,δ1 8O(SMOW) =13.3‰~ 18.0‰ ,δ87Sr≈ 0 ,δ1 3C(PDB) =- 11.2‰~- 10 .5‰ ,填隙矿物形成时其流体来源较复杂 ,为大气降水和盆地卤水的混合流体 ,且处于弱还原环境 ;铀系核素活度数据也显示此区段地下水环境相对稳定 ,未受到现代大气降水或地下水的影响。 3中—下部花岗岩 (35 0~5 5 0 m) ,填隙矿物形成时的环境由两种不同性质的地下水控制 ,但深部地球化学环境相对稳定。 4深部 (>5 5 0 m) ,岩性相对稳定 ,地下水—花岗岩的反应处于稳定的长期平衡状态。这种地球化学环境对于高放射性废物的永久处置是有利的。  相似文献   

2.
填隙矿物的流体包裹体研究与矿物的同位素地球化学研究可较好地揭示高放废物深地质处置库预选场址的深部热环境及古地下水热历史。中国高放废物深地质处置库第一个预选场深部花岗岩内填隙矿物的同位素、矿物学以及流体包裹体研究结果显示,甘肃北山地区花岗岩深部至少存在两种环境:浅部花岗岩(0~150m)填隙方解石的δ^18O=-18.2‰~-15.8‰(PDB),δ^13C=-9.5‰~-8.4‰(PDB),包裹体的均一温度(th)为140~160℃,包裹体的冰点温度为-2.5~-1.5℃,地下水可能以大气降水成因为主,且可能混合了盆地卤水并与花岗岩反应,形成温度、盐度(2%~5%,NaCleq)均较低的地下水;在350~550m区段内(深部花岗岩),其δ^18O值为-32.6‰~-17.6‰(PDB),δ^13C值为-10.5‰~-6.2‰(PDB),流体包裹体的均一温度较其上部的稍高,为160~190℃,而其冰点温度则较低,为-4~-3.2℃(盐度5%~8%,NaCleq),地下水类型为大气降水与盆地古卤水的混合,以大气降水为主。石英的氧同位素组成和计算的古地下水氧同位素组成则进一步表明,花岗岩深部(350~550m)也存在两种温度环境:较低温度(140~160℃)、较高盐度(5.5%~8%,NaCleq)的地下水;较高温度(220~240℃)、较低盐度(3%~5.5%,NaCleq)的地下水,其地下水类型为大气降水和与花岗岩平衡的卤水。  相似文献   

3.
湖南香花岭锡多金属矿床C、O、Sr同位素地球化学   总被引:7,自引:0,他引:7  
袁顺达 《地质学报》2008,82(11):1522-1530
对湖南香花岭锡多金属矿床成矿早、晚两期方解石进行了系统的C、O、Sr同位素研究。结果表明,成矿早期方解石具有相对较低的δ13CPDB(-5.4‰ ~ -1.4‰)、δ18OSMOW(+6.1‰ ~ +13.9‰)和较高的87Sr/86Sr值(0.7101 ~ 0.7230);而成矿晚期方解石则具有相对较高的δ13CPDB(+0.2‰ ~ +0.6‰)、δ18OSMOW(+19.4‰ ~ +21.5‰)和较低的87Sr/86Sr值(0.7101)。成矿早期方解石为岩浆热液与海相碳酸盐岩相互作用的产物,成矿流体中的碳源于岩浆碳和海相碳酸盐岩;模拟计算结果显示,成矿早期方解石为成矿溶液发生0.05-0.1摩尔分数的 CO2去气作用的产物。而成矿晚期方解石主要为矿区碳酸盐岩围岩低温淋滤的产物,流体中的碳主要源于矿区碳酸盐岩围岩。成矿流体中Sr源于矿区花岗岩和碳酸盐岩,从成矿早期到晚期,岩浆来源的Sr逐渐减少,而碳酸盐岩围岩提供的Sr比例不断增大。  相似文献   

4.
高放废物地质处置是将高放废物与人类环境安全隔离的有效途径。高放废物处置库的围岩通常为低渗透的岩体,其安全性在很大程度上取决于围岩对核废物的屏障功能和作为核素迁移载体的裂隙水运动特征。因此,开展处置库场址水文地质评价工作尤为重要。新疆雅满苏和天湖预选地段是我国高放废物处置库预选地段之一。花岗岩是选定的围岩。在过去的3年里,为了认识该地段地下水的形成机制和更新能力,提供该区处置库场址筛选和评价的依据,在该区开展了区域水文地质调查和地下水样品采集。根据调查结果和样品测试数据,本文主要讨论了该地段地下水同位素特征及其水文地质意义,结果表明,地下水δ~2H值主要分布在10.6‰至-82.5‰之间,平均值-46.1‰;δ~(18)O值主要分布在10.2‰至-9.8‰‰之间,平均值-2.06‰;地下水氚含量在1TU~46.1TU之间。地下水δ~2H和δ~(18)O散点图显示,二者主要落在大气降水线的附近和下方,表明区内地下水主要源自当地现代降水的补给,并经受了强烈的蒸发作用,且深部地下水交替能力明显弱于浅部地下水。这一认识为该区处置库选址和场址评价提供了重要水文地质依据。  相似文献   

5.
新疆萨喀尔得铜矿属中低温热液型,该矿石英和方解石样品中δ13CPDB值为-17.3‰~-0.7‰,δ18OSMOW为16.2‰~22.4‰,δ18OH2O水值为6.9‰~12.5‰,δD变化于-73.8‰~-52.4‰之间。研究表明,成矿流体主要来源于深部发生循环加热的建造水,并混合变质水和岩浆水;成矿早期流体中的C主要来源于地层水或大气降水,晚期有深部岩浆水的加入。δ34S值变化范围为0.2‰~6.1‰,表明流体中的S主要来自岩浆或上地幔。  相似文献   

6.
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   

7.
湖北徐家山锑矿床方解石C、O、Sr同位素地球化学   总被引:4,自引:0,他引:4  
湖北通山的徐家山锑矿床产在上震旦统陡山沱组和灯影组的海相碳酸盐岩中.对该矿床中成矿前和成矿期方解石进行了较系统的C、O、Sr同位素地球化学研究,结果表明,成矿前方解石具相对较高的δ13CPDB(-0.7‰~ 2.0‰)、δ18OSMOW( 18.6‰~ 19.6‰)和Sr含量(2645-8174 μg/g,平均5656μg/g),及较低的87Sr/86Sr比值(0.7096~0.7097);而成矿期方解石具相对较低的δ13CPDB(-3.9‰~-2.1‰)、δ18OSMOW( 11.5‰~ 15.3‰)、Sr含量(785~2563μg/g,平均1571μg/g),和较高的87Sr/86Sr比值(O.7109~0.7154,平均0.7141).分析认为,成矿前方解石的C、O和绝大部分Sr来源于赋矿围岩--震旦系海相碳酸盐岩;而成矿流体为富H2CO3的溶液,它来自或流经富放射成因87Sr的下伏基底碎屑岩--中元古界冷家溪群浅变质岩;该流体与围岩发生水.岩反应导致成矿期方解石和辉锑矿的沉淀.  相似文献   

8.
富有机质页岩中方解石脉体普遍发育,其形成过程和机制对成烃储层和成藏具有重要指示意义。本文以四川盆地南部龙马溪组为例,采用显微岩相学、阴极发光、原位微区电子探针、同位素地球化学及流体包裹体相结合的方法,分析其中的方解石脉成因,并结合地质背景探讨了成岩流体动态演化模式及其勘探意义。结果表明,研究区龙马溪组页岩发育三期方解石脉,第一期(Cal-1)近围岩或独立生长,形成于同生—准同生成岩阶段,是微生物还原作用的产物,具有富Fe、Mg、Al元素、贫Mn元素的特征,其δ~(13)C_(V-PDB)=0.06‰~4.53‰,δ~(18)O_(V-PDB)=-13.21‰~-10.79‰,n(~(87)Sr)/n(~(86)Sr)=0.719366~0.719689;第二期(Cal-2)形成于早成岩阶段,是有机质脱羧作用的产物,以相对富Fe、Mg、Mn、Al元素为特征,其δ~(13)C_(V-PDB)=-6.93‰~-0.08‰,δ~(18)O_(V-PDB)=-13.28‰~-10.05‰,n(~(87)Sr)/n(~(86)Sr)=0.719378~0.720688;第三期(Cal-3)远离围岩,形成于晚成岩阶段,是甲烷热氧化作用的产物,具有富Fe、Mg、Mn元素,不含Al元素的特征,其δ~(13)C_(V-PDB)=-19.00‰~-12.64‰,δ~(18)O_(V-PDB)=-9.08‰~-6.65‰,n(~(87)Sr)/n(~(86)Sr)=0.719855~0.721342。通过对方解石脉成因及流体来源刻画,结合龙马溪组页岩热演化史,三期方解石脉的成岩演化对页岩的储集空间具有改善作用,有利于页岩气的勘探开发。  相似文献   

9.
通过各类薄片显微镜下鉴定与定量统计,阴极发光、扫描电镜、电子探针、碳、氧及锶同位素、流体包裹体均一温度测试等分析,开展了白云凹陷深水区珠江组和珠海组砂岩储层中碳酸盐胶结物的类型与期次、地球化学特征、成因机制研究。结果显示,存在三期碳酸盐胶结作用,早期主要为方解石,以高Ca、低Fe、低Mg为特征。但珠江组早期碳酸盐胶结物的同位素组成(δ~(13)C_(PDB):-2.43‰~0.29‰,δ~(18)OPDB:-9.79‰~-3.08‰,87 Sr/86Sr:0.7084~0.7109)与珠海组(δ~(13)C_(PDB):-9.37‰~-8.13‰,δ~(18)OPDB:-7.11‰~-7.09‰,87Sr/86Sr:0.7138~0.7142)有一定差异,前者是在浅埋藏阶段从碳酸盐过饱和碱性海水介质中沉淀出的产物;后者与碳酸盐过饱和的碱性淡水有关。中期主要为铁方解石,以高Ca、较高Fe、低Mg、碳和锶同位素组成变化范围较大(δ~(13)C_(PDB):-20.88‰~-5.29‰,δ~(18)OPDB:-11.1‰~-8.99‰,87Sr/86Sr:0.7093~0.7151)为特征,其部分碳源与有机酸脱羧作用产生的CO_2有关,另一部分碳源(δ~(13)C_(PDB):-5.38‰~-5.29‰)可能与深部物质有关。形成碳酸盐胶结物所需的Ca2+、Mg2+、Fe2+等离子来源于砂岩中长石等碎屑的溶蚀、黏土矿物的转化以及深部热液流体。晚期主要为铁白云石(δ~(13)C_(PDB):-2.83‰~-1.83‰,δ~(18)OPDB:-9.45‰~-5.77‰,87Sr/86Sr:0.7101~0.7162),以高Fe、高Mg、较低Ca、碳同位素组成与同期海水基本一致为特征,87Sr/86Sr值低于正常成岩演化形成的碳酸盐,该期碳酸盐胶结物的形成与砂岩中生物碎屑以及先期碳酸盐胶结物的溶蚀再沉淀有关,部分可能受到深部热液流体的影响。  相似文献   

10.
黔西南泥堡—包谷地卡林型金矿田以泥堡特大型金矿床为主体,兼具一系列小型金矿床和新发现金矿点。本文在矿田内系统采集了与成矿密切相关的石英、方解石、萤石和辉锑矿样品,分析微量元素和稳定同位素地球化学特征,探讨成矿流体性质及来源。分析结果显示,石英、方解石和萤石整体上富集As、Sb、Li、Sr、W等元素,其中As、Sb成矿元素继承了成矿流体的特征;Sb成矿元素与Bi、W、Mo、Co、Ni等亲岩浆元素相关性较好,显示成矿与岩浆活动有关。方解石、萤石显示MREE富集,方解石具有显著的Eu正异常,反映了成矿流体在矿物沉淀时的稀土配分特征,并且处于相对酸性和还原的状态。石英δDV-SMOW、δ18OV-SMOW和δ13CV-PDB分别为-76‰~-55.7‰(均值-64.9‰)、16.5‰~24.5‰(均值21.1‰)、-14.3‰~-7.0‰(均值-10.9‰),辉锑矿δ34SV-CDT值为-0.4‰、-0.6‰和1.9‰,方解石δ13CV-PDB和δ18OV-SMOW分别为-6.5‰~-2.5‰(均值-4.5‰)、16.2‰~22.4‰(均值18.7‰)。综合研究区内分析和收集的C、H、O和S同位素结果,表明成矿流体可能主要来源于岩浆流体,并有部分地层水加入。结合区域地球物理和年代学资料,认为黔西南卡林型金矿成矿可能与深部岩浆活动有关,而与区域上出露的基性—超基性岩浆岩没有直接的成因联系。  相似文献   

11.
通过成矿期方解石的C、O、Sr和含硫矿物的S、Pb同位素,成矿期方解石Sm-Nd测年研究,探讨白秧坪矿集区东矿带矿床成因。测试结果表明,白秧坪矿集区东矿带方解石δ13CPDB值变化范围-4.0‰~2.3‰,平均值-0.2‰,δ18OPDB值范围-27.2‰~20.4‰,平均值-14.1‰,δ18OSMOW值范围2.9‰~24.4‰,平均值16.4‰;方解石Sr同位素值变化范围0.707669~0.710115,平均值0.709320;硫化物δ34SV-CDT值分布范围-20.2‰~1.3‰,平均值约-8.8‰,天青石δ34SV-CDT值分布范围为17.1‰~19.4‰,平均值约18.0‰;Pb同位素测试结果中,206Pb/204Pb的变化范围为18.553~18.857,207Pb/204Pb变化范围为15.501~15.826,208Pb/204Pb变化范围为38.54~39.456;成矿阶段方解石Sm-Nd等时线年龄为29.5±1.7 Ma。对测试结果的研究表明,白秧坪矿集区东矿带碳质的来源较为均一,矿石中热液方解石碳质源自地层中碳酸盐岩溶解,成矿流体来自地层水和大气降水,属于盆地卤水流体系统;成矿物质硫来自海水硫酸盐的还原作用,成矿早期以有机质还原硫为主,成矿后期以生物还原硫为主;金属成矿物质来自沉积地层和盆地基底;测定白秧坪矿集区东矿带铅锌成矿年龄为29.5±1.7 Ma,与地质年龄限定的较为吻合。   相似文献   

12.
以高放废物地质处置北山预选区新场岩体三个深钻孔的定压力压水试验为例,分别从压水阶段数据求解、压力恢复阶段数据求解和特殊试验段参数求解3个方面,对稳定流公式法和非稳定流参数拟合法进行了对比,得到了如下结论:非稳定流参数拟合法较稳定流公式法适用的渗流类型更多,使用数据量更大,结果更为可靠;在压水阶段和压力恢复阶段数据完整时,优先选择压力恢复阶段非稳定流参数拟合结果作为试验段的渗透系数.依据上述筛选原则,得到了新场岩体BS17~BS19三个深钻孔渗透系数的概率分布图,可初步判断新场岩体为低渗透性岩体,适宜于高放废物地质处置.  相似文献   

13.
核废物处置场岩体断裂的遥感分析   总被引:1,自引:0,他引:1  
本文利用TM和SIR-A遥感图像对甘肃北山区4个预选的核废物处置场址的岩体断裂进行了解释和编图。并运用线性构造统计分析方法,对岩体断裂发育程度进行了统计分析。  相似文献   

14.
Geological and hydrological characteristics, joint geometric features, rock physical and mechanical properties and rock mass quality are studied in the Beishan area, preselected for China’s high-level radioactive waste (HLW) disposal engineering. A comprehensive survey method is developed to study joint geometric features in the outcrop and samples from borehole BS06 into the Xinchang rock mass were tested. The optimal joint sets are determined by rose diagrams and equal-area lower hemisphere plots of joint poles. Results show that: 1) the distribution of joint occurrence obeys a normal distribution, while the distribution of joint spacing obeys a negative exponential distribution; 2) concentric circular and tangent circular sampling windows are applied to study the trace length and the trace midpoint density. Results indicate that tangent circular sampling window is more stable and reasonable; 3) Beishan granite shows high density, low porosity and high strength based on many laboratory tests and the physical properties and mechanical properties are closely related; and 4) a synthesis index, Joint Structure Rating (JSR), is applied to evaluate the quality of rock mass. Through the research results of rock mass characteristics, the Xinchang rock mass in the Beishan preselected area has the favorable conditions for China’s HLW disposal repository site.  相似文献   

15.
颜佳新  伍明 《古地理学报》2004,6(2):191-195
菊花状天青石是华南地区栖霞组内一种特殊的矿物集合体,形成于早期成岩作用阶段。在研究其成因过程中,系统分析了湖北黄石和湖南浏阳栖霞组内菊花状天青石的Sr同位素组成以及湖南浏阳、湖北黄石、江西永丰和广西来宾四处天青石假象、天青石围岩(泥晶灰岩)和围岩中方解石脉的Sr同位素组成。Sr同位素分析结果表明,天青石中的87Sr/ 86Sr最高值为0.707525,最低值为0.706981,平均值为0.707215。与天青石相比,天青石假象、天青石围岩和方解石脉的87Sr/ 86Sr值整体相对富含87Sr。由于天青石假象和方解石脉明显为晚期成岩作用成因,它们相对富含87Sr的锶同位素特征应是晚期成岩作用叠加的结果,与其类似的泥晶灰岩的87Sr/ 86Sr值也可能同样受到了晚期成岩作用的影响。栖霞组菊花状天青石比同组泥晶灰岩更好地记录了栖霞期海水的Sr同位素组成。  相似文献   

16.
高放废物处置库甘肃北山预选区同位素水文学研究及设想   总被引:1,自引:0,他引:1  
肖丰  郭永海  王志明 《铀矿地质》2012,28(2):114-119,83
甘肃省北山地区是我国高放废物处置库场址重要预选区之一,花岗岩是处置库候选围岩。10余年来,在北山地区开展了水文地质和同位素水文学调查、研究工作,为场址评价提供了重要的水文地质依据。今后,在深入开展预选区水文地质研究工作中,应进一步开展同位素水文学研究,示踪地下水的补给来源,揭示水循环过程,测定地下水滞留时间和流速等,以获得高放废物处置场址特性评价所需的水文地质参数资料。  相似文献   

17.
MUCHEZ  NIELSEN  SINTUBIN  & LAGROU 《Sedimentology》1998,45(5):845-854
Two calcite cements, filling karst cavities and replacing Lower Carboniferous limestones at the Variscan Front Thrust, were precipitated after mid-Jurassic Cimmerian uplift and subsequent erosion but before late Cretaceous strike-slip movement. The first calcite (stage A) is nonferroan and crystals are coated by hematite and/or goethite. These minerals also occur as inclusions along growth zones. The calcite lattice contains < 0·07 mol.% Fe, but Mn concentrations can be as high as 0·72 mol.% in bright yellow luminescent zones. Primary, originally one-phase, all-liquid, aqueous inclusions have a final melting temperature between ?0·2° and +0·2 °C, indicating a meteoric origin of the ambient water. The δ13C and δ18O values of the calcites are between ?7·3‰ and ?6·3‰, ?7·8‰ and ?5·5‰ on the Vienna PeeDee Belemnite (VPDB) scale, respectively. The second calcite (stage B) consists of ferroan (0·13–0·84 mol.% Fe) blocky crystals with Mn concentrations between 0·34 and 0·87 mol.%. Primary, single-phase aqueous fluid inclusions indicate precipitation from a meteoric fluid below 50 °C . The δ13C values of stage B calcites vary between ?7·3‰ and ?2·1‰ VPDB and the δ18O values between ?7·9‰ and ?7·2‰ VPDB. A precipitation temperature below 50 °C for the stage A calcites and the presence of iron oxide/hydroxide inclusions in the crystals indicate near-surface precipitation conditions. Within this setting, the geochemistry of the nonferroan stage A calcites reflects precipitation under oxic to suboxic conditions. The ferroan stage B calcites precipitated in a reducing environment. The evolution from the stage A to stage B calcites and the associated geochemical changes are interpreted to be related to the change from semiarid to humid conditions in western Europe during late Jurassic–Cretaceous times. A change in humidity can explain the evolution of groundwater from oxic/suboxic to reducing conditions during calcite precipitation. The typically higher δ13C values of the stage B compared to the stage A calcites can be explained by a smaller contribution of carbon derived from soil-zone processes than from carbonate dissolution in the groundwater under humid conditions. The small shift to lower δ18O between stage A and B calcites may be caused by a higher precipitation temperature or a decrease in the δ18O value of the meteoric water. This decrease could have been caused by a change in the source of the air masses or by an increase in the amount of rainfall during the early mid-Cretaceous. Although the latter interpretation is preferred, it cannot be proven.  相似文献   

18.
《International Geology Review》2012,54(16):1975-1991
Late Palaeozoic granites are widely distributed in the southeastern Beishan area, which is located in the central part of the southern Central Asian Orogenic Belt (CAOB). U–Pb zircon dates of five late Palaeozoic granitic plutons from the southeastern Beishan area yield Permian ages: 285 ± 2 Ma (Shuwojing and Western Shuwojing plutons), 269 ± 3 Ma (Jianquanzi and Jiuquandihongshan plutons), and 260 ± 1 Ma (Jiujing pluton). The early Permian Shuwojing pluton, an unfractionated calc-alkaline biotite monzogranite with slightly positive εNd(t) (+0.7 and +0.6) and low initial 87Sr/86Sr (0.70722 and 0.70712), and the early Permian Western Shuwojing pluton, a high-K calc-alkaline biotite granite with slightly negative εNd(t) (?0.2 and ?0.1) and low initial 87Sr/86Sr (0.70390 and 0.70919), are likely derived from a mixture of depleted (juvenile) mantle and upper continental crustal (or sedimentary) material. The mid-Permian Jianquanzi and Jiuquandihongshan monzogranites have highly fractionated potassium-rich calc-alkaline characteristics with negative εNd(t) (?4.3) and very high initial 87Sr/86Sr (0.71949), reflecting a continental crustal component. The compositionally diverse Jiujing pluton and the granodiorite and high-Sr monzogranite phases display adakite-like compositions with relatively low εNd(t) (?0.1 and ?2.2) and high initial 87Sr/86Sr (0.70822 and 0.70913). The Jiujing low-Sr monzogranite has higher initial 87Sr/86Sr (0.73464) and lower εNd(t) (?2.8), indicating a significant continental crustal component in its genesis. This work, combined with the regional geology and previous studies, suggest that the early to middle Permian southern Beishan plutons formed in a post-collisional environment, probably an intracontinental rift environment linked to asthenospheric upwelling in response to the break-off of a subducted slab. In the late Permian, the southern Beishan area was in a compressive tectonic regime and thickening of the continental crust resulted in the formation of the Jiujing adakite-like granite.  相似文献   

19.
在准噶尔盆地当前油气勘探的重点目标区西北缘和腹部地区,油气主要源于深部石炭系—二叠系。通过对其中的典型水岩反应产物,即裂隙方解石脉进行碳、氧、锶同位素组成分析,尝试讨论了油源流体运移的基本特征。实验结果表明,25件方解石脉样品的δ13CPDB位于-21.5‰~ 5.2‰之间,δ18OPDB(δ18OSMOW)在-8.1‰~-22.3‰(22.6‰~ 6.9‰)之间;20个87Sr/86Sr比值分布在0.703 896~0.706 423之间。据此,结合样品地质产状和区域地质背景,提出本区含油气流体在运移过程中伴随着深部热流体的影响,它们在流经石炭—二叠系时,对火山岩层的溶蚀使得流体岩石相互作用产物,即方解石脉的同位素组成反映出火山岩地层的地球化学标记。该认识表明,在今后的区域储层成岩演化和油气运移研究工作中,应充分考虑这类深部热流体作用的影响。  相似文献   

20.
Zoned calcites were found in the phragmacone chambers of three Sonniniid ammonites from marine Middle Jurassic sandstones (Isle of Skye, U.K.). Each ammonite has a unique sequence of up to nine zones of calcite which fill or partially fill the chambers. Zones are defined by changes in the density of minute opaque inclusions and variation in trace-element composition. Proximal (early) calcites have undulose extinction and some exhibit the specific fabrics of fascicular-optic and radiaxial fibrous calcites. Microdolomite inclusions are found in one specimen. Early calcites, interpreted as replacements after a single isopachous fringe of acicular carbonate (probably high magnesium calcite), are succeeded by blocky ferroan calcite cement. In one specimen there are two distinct generations of calcite, in the others there is a continuous mosaic incorporating both early calcites and late cement. Isotopic composition of the early calcite zones demonstrates the initial importance of organic derived carbon (δ13C =— 26‰, δ18O ‰ O). Further cementation and mineralogical stabilization took place at increased temperatures and probably after modification of the pore water isotopic composition (calcites with δ13C =— O‰, δ18O~— 10‰). The distinctive fabrics and zonal patterns probably developed during the replacement of the precursor cement and are not primary growth features. Reversals in isotopic and trace element trends are believed to be related to the rate of neomorphic crystal growth and hence to the degree of exchange with external pore waters. Further increase in temperature, probably during Tertiary igneous activity, gave rise to the extremely light δ18O values of the late cements in the ammonite which had previously had least contact with external waters (cements with δ13C ~ O, δ18O ~— 20‰).  相似文献   

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