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1.
We report analyses of noble gases and Nd–Sr isotopes in mineral separates and whole rocks of late Pleistocene (< 0.2 Ma) monzonites from Ulleungdo, South Korea, a volcanic island within the back arc basin of the Japan island arc. A Rb–Sr mineral isochron age for the monzonites is 0.12 ± 0.01 Ma. K–Ar biotite ages from the same samples gave relatively concordant ages of 0.19 ± 0.01and 0.22 ± 0.01 Ma. 40Ar/39Ar yields a similar age of 0.29 ± 0.09 Ma. Geochemical characteristics of the felsic plutonic rocks, which are silica oversaturated alkali felsic rocks (av., 12.5 wt% in K2O + Na2O), are similar to those of 30 alkali volcanics from Ulleungdo in terms of concentrations of major, trace and REE elements. The initial Nd–Sr isotopic ratios of the monzonites (87Sr/86Sr = 0.70454–0.71264, 143Nd/144Nd = 0.512528–0.512577) are comparable with those of the alkali volcanics (87Sr/86Sr = 0.70466–0.70892, 143Nd/144Nd = 0.512521–0.512615) erupted in Stage 3 of Ulleungdo volcanism (0.24–0.47 Ma). The high initial 87Sr/86Sr values of the monzonites imply that seawater and crustally contaminated pre-existing trachytes may have been melted or assimilated during differentiation of the alkali basaltic magma.A mantle helium component (3He/4He ratio of up to 6.5 RA) associated with excess argon was found in the monzonites. Feldspar and biotite have preferentially lost helium during slow cooling at depth and/or during their transportation to the surface in a hot host magma. The source magma noble gas isotopic features are well preserved in fluid inclusions in hornblende, and indicate that the magma may be directly derived from subcontinental lithospheric mantle metasomatized by an ancient subduction process, or may have formed as a mixture of MORB-like mantle and crustal components. The radiometric ages, geochemical and Nd–Sr isotopic signatures of the Ulleungdo monzonites as well as the presence of mantle-derived helium and argon, suggests that these felsic plutonic rocks evolved from alkali basaltic magma that formed by partial melting of subcontinental lithospheric mantle beneath the back arc basin located along the active continental margin of the southeastern part of the Eurasian plate.  相似文献   
2.
雅鲁藏布江蛇绿岩的氦、氩同位素组成分别是:蛇绿岩中变质橄榄岩的^3He/^4He比值为1.104-3.384Ra,平均为2.383Ra;玄武岩的He同位素组成比较均一,^3He/^4He平均值为5.359 Ra;辉绿岩的^3He/^4He比值变化较大,为1—5Ra。由于各岩石样品有不同程度的蚀变,造成放射性成因He的加入,因此大多数样品He同位素组成比低于亏损地幔大洋中脊玄武岩的值(MORB≈8Ra),不能真实反映源区特征。而采自吉定的辉绿岩样品^3He/^4He比值平均高达31.57Ra,与夏威夷发现的热点地幔源区的样品比值接近;分步加热法进一步测试,其高比值的He是在低温区段释放的。这种高^3He/^4He比值He的捕获,表明雅鲁藏布江蛇绿岩形成时存在地幔柱型富集地幔岩浆作用。  相似文献   
3.
冀北地区金矿床He、Ar、Pb同位素组成及其成矿物质来源   总被引:13,自引:0,他引:13  
成矿物质来源一直是成矿理论研究和找矿实践的焦点问题。选择了冀北地区3个幔枝构造金矿集中区11个金矿床黄铁矿及部分围岩进行了He、Ar同位素测定。研究表明,冀北地区主要金矿的3He/4He的值域为(0.93~7.30)×10-6,平均3.55×10-6;R/Ra=0.66~4.93,平均2.53;40Ar/36Ar=426~2073,40Ar平均为8.20×10-7cm3/g,4He/40Ar平均为2.17。矿区外围片麻岩和花岗岩的3He/4He值仅为(0.001~0.55)×10-6,反映来源上有明显差别。3He和4He在He同位素浓度图上落于地幔区附近。64个Pb同位素数据表现为矿质以幔源为主,确有部分壳源物质加入。研究认为,本区成矿物质应源于地球深部,随地幔柱多级演化,深部成矿流体由地球深部迁移到浅部,期间不可避免地存在壳幔流体的混合作用,故其值域往往界于地幔和地壳之间。  相似文献   
4.
辽宁宽甸新生代火山岩和地幔包体He-Ar同位素组成   总被引:8,自引:1,他引:8  
宽甸新生代碱性玄武岩、地幔包体及辉石巨晶的稀有气体同位素组成和流体含量分析表明,不同岩性稀有气体含量的差异反映了岩浆作用过程中轻、重稀有气体的分馏特性,较轻的稀有气体(He、Ne)比较重的稀有气体(Kr、Xe)具有更高的活动性和不相容性;该地区上地幔源区具有典型的MORB型源区特征,以辉石巨晶为代表;地幔包体的3^He/^4He值较低,可能与地幔上隆过程中富集地幔流体的交代作用或地幔塑性变形作用丢失了部分原始He有关;大陆碱性玄武岩具有与大洋玄武岩截然不同的He同位素组成,反映了大陆区地幔岩浆上升过程中受到了陆壳物质混染。地幔源区^40Ar/^36Ar值为350左右,二辉橄榄岩和碱性火山岩的^40Ar/^36Ar值比大气略高,可能有大气组分的混入。部分样品中有^21Ne、^22Ne、^129Xe、^134Xe和^136Xe相对于大气的过剩现象。  相似文献   
5.
The Bulong gold deposit, located in the southwest Tianshan in China, occurs in the Upper Devonian finegrained clastic rocks. The gold orebodies are controlled by an gently inclined interlayer fractured zone. They are hosted only in quartz-barite veins though there are barite veins and quartz veins in the ore district. The δ34S values of pyrite in the ores range from 14.6‰ to 19.2‰ and those of barite from 35.0‰ to 39.6‰, indicating that the sulfur was derived from the strata. 3He/4He ratios of fluid inclusions in pyrite are 0.24-0.82 R/Ra, approximating to that of the crust. The 40Ar/39Ar ratios range from 338 to 471, slightly higher than that of the atmosphere. 40Ar /4He ratios of ore fluids range from 0.015 to 0.412 with a mean of 0.153. Helium and argon isotope compositions of fluid inclusions show that the ore fluids of the Bulong gold deposit were mainly derived from the crust.  相似文献   
6.
中国东北地区新生代火山岩的年代学研究   总被引:36,自引:19,他引:36  
用常规K-Ar、~(40)Ar-~(39)Ar、~(14)C等方法系统测定了东北地区新生代火山岩的年龄,获得近百个有效年龄数据。其精度和准确度都很高,与地质背景相当吻合。对于玄武岩中超镁铁质岩色体也进行了年龄测定尝试、发现包体中含继承氩,并可能存在~(36)Ar过剩。在阶段加热过程中,样品中氩的释放有两个高峰,一个在低温阶段(450—620℃),另一个在高温阶段(>1000℃),约50%的放射成因~(40)Ar在低温阶段释放。  相似文献   
7.
康定杂岩黑云母、角闪石^39Ar-^40Ar年龄及其意义   总被引:1,自引:0,他引:1  
通过对康定杂岩黑云母、角闪石 Ar-Ar 年龄研究,得出康定杂岩黑云母、角闪石中 Ar 同位素组成明显存在地质离散,有过剩氩;Ar-Ar 年龄并不反映矿物形成后的变质冷却历史。坪的产生可能是由过剩~(40)Ar 存在于非晶粒边缘的缺陷之中,使其与放射性成因~(40)Ar 具有相似活化能,从而使不同种 Ar 组分等比例释气所致。经计算,样品中过剩氩约占氩总量的16%左右。  相似文献   
8.
新疆萨瓦亚尔顿金矿位于西南天山西端,受NNE向脆韧性剪切带控制。对绢云母化蚀变岩进行了^40Ar/^39Ar法年龄测定,表明金主成矿时代为三叠纪。根据黄铁矿流体包裹体氦、氩同位素、石英流体包裹体的碳、氧同位素组成,讨论了萨瓦亚尔顿金矿成矿流体的来源。结果表明石英流体包裹体中δ^18OSMOW变化于14.5100-24.2‰,CO2的δ^CPDB变化范围较大,为-8.69‰~+4.98‰,暗示成矿流体中的碳来源于地幔和海相碳酸盐岩。黄铁矿流体包裹体的^3He/^4He变化较大,为0.04~1.11R/Ra,^40Ar/^36Ar变化较小,介于301~348。综合分析认为萨瓦亚尔顿金矿的成矿流体为地幔流体和地壳流体混合的产物,以地壳流体为主。  相似文献   
9.
主要论述以上古生界为烃源岩的典型煤型气藏的地球化学特征、形成时的构造环境与气藏类型及找气前景。华北聚煤区为最有利地区,并总结出煤型气藏形成的2种构造环境和4种成藏类型:裂谷活动构造环境中的古潜山自生自储型(苏桥型)、古生新储型(文留型)和克拉通稳定构造环境中的复合型(鄂尔多斯型)及自生自储型。前述4种气藏类型应为今后该区煤型气勘探的主要类型。此外,还对上述两种构造环境中的煤层气问题进行了扼要讨论。  相似文献   
10.
White mica (phengite and paragonite) K–Ar ages of eclogite-facies Sanbagawa metamorphic rocks (15 eclogitic rocks and eight associated pelitic schists) from four different localities yielded ages of 84–89 Ma (Seba, central Shikoku), 78–80 Ma (Nishi-Iratsu, central Shikoku), 123 and 136 Ma (Gongen, central Shikoku), and 82–88 Ma (Kotsu/Bizan, eastern Shikoku). With the exception of a quartz-rich kyanite-bearing eclogite from Gongen, white mica ages overlap with the previously known range of phengite K–Ar ages of pelitic schists of the Sanbagawa metamorphic belt and can be distinguished from those of the Shimanto metamorphic belt. The similarity of K–Ar ages between the eclogites and surrounding pelitic schists supports a geological setting wherein the eclogites experienced intense ductile deformation with pelitic schists during exhumation. In contrast, phengite extracted from the Gongen eclogite, which is less overprinted by a ductile shear deformation during exhumation, yielded significantly older ages. Given that the Gongen eclogite is enclosed by the Higashi-Akaishi meta-peridotite body, these K–Ar ages are attributed to excess 40Ar gained during an interaction between the eclogite and host meta-peridotite with mantle-derived noble gas (very high 40Ar/36Ar ratio) at eclogite-facies depth. Fluid exchange between deep-subducted sediments and mantle material might have enhanced the gain of mantle-derived extreme 40Ar in the meta-sediment. Although dynamic recrystallization of white mica can reset the Ar isotope system, limited-argon-depletion due to lesser degrees of ductile shear deformation of the Gongen eclogite might have prevented complete release of the trapped excess argon from phengites. This observation supports a model of deformation-controlled K–Ar closure temperature.  相似文献   
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