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11.
Ion adsorption rare earth element (REE) deposits in southern China are the exclusive source of heavy REEs (HREEs) in the world, and this HREE‐enriched character of the deposits is inherited from the REE compositions of the underlying granitic rocks. Such HREE‐enriched rocks form from heavy fractionation of reduced granitic magmas. We explore why reduced granitic magmas are enriched in HREEs during the fractionation, based on the REE geochemistry of granitic rocks and abundance of REEs in their constituent minerals in the southwestern Japan arc of Cretaceous to Paleogene age. The compilation of the whole rock geochemistry and REE compositions of the granitic rocks of the Sanin (oxidized), Sanyo (reduced) and Ryoke (reduced) belts in the southwestern Japan arc indicates that: (i) light REEs (LREEs) decease with fractionation of the granitoids in the Sanin belt but this trend is not clear in the granitoids in the Sanyo belt and LREEs rather increase in the Ryoke granitoids; (ii) Eu decreases with fractionation in all the belts; and (iii) HREEs slightly, but steadily decrease in the Sanin belt but enrich significantly in the Sanyo and Ryoke belts with fractionation. Analytical results of REE concentrations by scanning electron microscope with energy dispersive X‐ray spectroscope and laser ablation‐inductively coupled plasma mass spectrometer in the constituent minerals in a granodiorite sample from the Sanin belt show a moderate concentration of REEs in hornblende (577 ppm) in addition to high concentrations in allanite (~20 %), britholite (~30 %), primary titanite (8922 ppm), apatite (4062 ppm), and zircon (1693 ppm). Because primary titanite and allanite are commonly present in the oxidized granitoids but not in the reduced ones, the REE depletion in the fractionated, oxidized granites is attributed to the crystallization of these minerals. In contrast, scarcity of these minerals in the reduced granitoids enriches REEs, in particular HREEs in the fractionated magmas, which finally precipitate REEs in the granites and pegmatites. Both positive, but different correlation ratios between the Nb and Dy concentrations in the granitoids of the Sanin and Sanyo‐Ryoke belts suggest that columbite–pyrochlore‐group and fergusonite‐group minerals are the major HREE host in the oxidized and reduced granites, respectively.  相似文献   
12.
Supracrustal rocks around the North Pole Dome area, Western Australia, provide valuable information regarding early records of the evolution of crustal processes, surface environments, and biosphere. Owing to the occurrence of the oldest known microfossils, the successions at the North Pole Dome area have attracted interest from many researchers. The Paleoarchean successions (Warrawoona Group) mainly comprise mafic‐ultramafic greenstones with intercalated cherts and felsic lavas. Age constraints on the sediments have been mainly based on zircon U–Pb geochronology. However, many zircon grains have suffered from metamictization and contain anomalously high contents of common Pb, which makes interpretation of the U–Pb data complicated. In order to provide more convincing chronological constraints, an U–Pb Concordia age is widely accepted as the best estimate. Most zircons separated from two adamellites also suffered from severe metamictization. In our analyses, less metamictized domains were selected using a pre‐ablation technique in conjunction with elemental mapping, and then their U–Pb isotopic compositions were determined with a laser ablation inductively coupled plasma mass spectrometry. Most analyzed domains contained certain amounts of common Pb (204Pb/206Pb > 0.000 1), whereas three and five U–Pb data points with less common Pb (204Pb/206Pb < 0.000 1) were obtained. These U–Pb datasets yielded U–Pb Concordia ages of ca 3 445 Ma and 3 454 Ma, respectively. These ages represent the timing of the adamellite intrusion, and constrain the minimum depositional age of the Warrawoona Group. In addition, a single xenocrystic zircon grain showed a 207Pb/206Pb age of ca 3 545 Ma, supporting the idea that the sialic basement of the Pilbara Craton existed prior to 3 500 Ma. The in situ U–Pb zircon dating combined with the pre‐ablation technique has the potentials to identify non‐metamictized parts and to yield precise and accurate geochronological data even from partially metamictized zircons.  相似文献   
13.
锆石变生程度与放射性元素含量间的定量研究   总被引:1,自引:0,他引:1  
为获得锆石变生程度与放射性元素质量分数之间的相互关系,对来自山东蒙阴金伯利岩中的锆石进行了阴极发光、激光拉曼光谱、离子探针测试和研究.研究表明,锆石样品的年龄近于一致;按照拉曼光谱特征峰1000cm-1左右的强度/半高宽比值和放射元素质量分数(wB)可以将锆石分为全晶质锆石、弱变生锆石、变生锆石、强变生锆石4类.放射元素总质量分数(wB)与拉曼光谱特征峰1000cm-1左右的强度/半高宽比值(H/W,设为r)之间符合经验关系方程:(1/r)1/2=1.3×10-2·(wB/10-6)1/2—0.11,可以借助锆石在1000cm-1左右的拉曼光谱特征峰值强度/半高宽比值并采用这一经验关系方程来大致计算出拉曼测试位置的放射性元素的质量分数.  相似文献   
14.
高放废物的安全处置是核工业发展的关键性问题之一。榍石(CaTiSiO_5)因其优良的化学稳定性和核素包容能力,被用作放射性核素固化的备选材料。在长期的地质处置过程中,榍石固化体中的放射性核素发生衰变,导致其晶格损伤,其中又以α衰变最为显著。为评估榍石固化体在放射性核素衰变过程中的物理化学性质变化和长期稳定性,研究榍石的辐照损伤机理尤为重要。本文综述了榍石的晶体结构中放射性核素的可能存在位置、高温高压和辐照损伤引起榍石的结构相变、榍石的红外和拉曼光谱、核素固化体榍石的合成方法、固化体辐照损伤效应和机理、非晶态榍石的高温再结晶、氢在辐照损伤固化体榍石中的行为以及水或者溶液与固化体的反应等,并针对辐照损伤榍石在原子尺度上非晶态的结构问题、存在长期争论的辐照损伤非晶态和快速冷却熔融相的"玻璃态"之间的结构异同、榍石中锕系核素的氧化态、高温退火无法使辐照损伤榍石晶体结构完全恢复、低温水热反应能否使辐照损伤榍石再结晶等基础科学上的争议等进行了讨论和评述。  相似文献   
15.
我国稀土铌钽矿物学研究回顾与展望   总被引:3,自引:0,他引:3  
作为高新技术原料用的稀土铌钽是国家发展的支柱之一, 稀土铌钽矿物学研究在与国家的技术进步同步前进。 通过研究,已经获得了我国产出的全部百余种稀土铌钽矿物的化学组成、物理性质、稀土配 分、结晶参数、共生组合和产状成因的全面系统的鉴定描述成果;发现了多种稀土铌钽新物,并提出许多新规律和新理论,建立了易解石和褐钇铌矿两个新的矿物族;确定了稀土铌钽铁锰钨的复杂氧化物的晶体结构关系;确立变生矿物学为矿物学研究的一个特殊分支,探讨了稀土次生富集的离子型稀土矿成矿机理。  相似文献   
16.
17.
大别造山带早白垩世白鸭山A型花岗岩体中广泛分布着暗色微粒包体。对该包体及其寄主岩进行岩相学、矿物学和地球化学研究发现:镁铁质微粒包体(MME)与其寄主岩具有相同的矿物组合,相似的主量元素、微量元素和稀土元素特征,指示MME与寄主岩具有明显的亲缘关系;包体中岩浆成因褐帘石的发现,否定了富云包体的残余体成因,包体中含有碱性长石捕虏晶及大量针状磷灰石,指示岩浆混合作用的影响。结合共分母和不共分母图解判别,揭示MME与寄主岩明显具有岩浆混合作用特征,FeO*-MgO判别图解也指示包体为岩浆混合成因。Nd,Sr同位素组成指示MME的主体成分来源于富集岩石圈地幔,寄主岩体的物质来源为北大别杂岩。综合研究表明,大别地区在早白垩世存在一次壳幔混合作用,可能与岩石圈的伸展减薄有关,岩石圈的伸展导致富集地幔上涌,底侵并诱发古老下地壳熔融,同时发生岩浆混合作用。  相似文献   
18.
ZEH  A. 《Journal of Petrology》2004,45(10):2101-2132
Crystal size distributions (CSD) and shapes of accessory apatite,titanite and allanite are investigated in three texturally distinctgarnet zones (Z1–Z3) and in the matrix (Z4) of a garnet–epidote–biotitegneiss from the Moine Supergroup. Additionally, textural relationshipsand interactions between the accessory minerals and surroundingrock-forming minerals are considered, results of numerical CSDmodelling are presented, and geochronological and geologicalconsequences of the inferred CSD evolutions are discussed. Texturesand CSDs indicate that the accessory minerals were in, or near,a stage of nucleation and initial growth immediately prior togarnet Z1 overgrowth, and formed within less than 20 000 years,either by a size-independent or size-dependent growth mechanism.Subsequently, the CSDs were modified by different growth mechanisms,as supported by several parameters including CSDs, grain numbers,grain sizes, specific volumes and others. The apatite CSD evolutionfrom Z1 to Z4 is consistent with open-system LPE (Law of ProportionateEffects) growth accompanied and followed by supply controlledrandom ripening, whereas transformation of the original titaniteCSD is more consistent with Ostwald ripening, temporarily accompaniedby positive or negative McCabe growth. The allanite CSDs alsopoint to Ostwald ripening between Z3 and Z4. The textural observationsindicate that the growth evolution of the accessory phases wasinfluenced by mineral reactions with surrounding rock-formingminerals, as well as by deformation and matrix coarsening, ina manner similar to that found in more simple ceramic systems.The observed textures require a successive temperature risethroughout the tectono-metamorphic evolution of the investigatedrock, in agreement with existing PT data. Fast nucleationand initial growth of the accessory minerals during Z1 was perhapsinitiated by contact metamorphism, whereas subsequent growthand annealing (Z2–Z4) result from regional metamorphicevents. KEY WORDS: apatite; titanite; allanite; CSD; Moine Supergroup; textures; kinetics  相似文献   
19.
变生易解石的特性   总被引:2,自引:0,他引:2  
研究了易解石族4个变生矿物样品的物理化学性质,并得出以下五点特性:1.差热曲线特征:没变生的易解石在700-800℃无放热峰,而变生的就有,变生程度越深,放热峰幅度越大;2.易解石变生程度越深,矿物加热处理恢复晶态的温度越高,但不能超过1200℃;3.易解石含放射性元素钍和铀量越高,变生程度越深;4.易解石变生程度与钍和铀的种类有关;5.4个易解石样品的化学成分:ThO_2和TiO_2、ThO_2和Nb_2O_5、Ce_2O_3和Nd_2O_3、TiO_2和Nb_2O_5都呈线型关系。  相似文献   
20.
Abstract: Boundaries between the cpx Zn-Pb ores of the Kamioka ore deposit and host clinopyroxene granitoid in the Hida metamorphic belt were examined to decipher the incipient stage of ore formation process. The boundaries are characterized by the compositional zoning of relic clinopyroxene with outward increase of XMg from 0. 5 to 0. 75 in the host rocks, and by the incline of XMg towards the ores, passing through the boundaries, reaching up to 0. 95. In the ores, relic clinopyroxene is rimmed by hedenbergite. Both clinopyroxenes show compositional zoning with outward decrease and increase of XMg and MnO, down to 0. 02 and to 3. 2 wt%, respectively. The presence of high magnesian clinopyroxene can be explained if hydrothermal fluid flow had leached hedenbergite component of relic clinopyroxene. The incline of XMg of clinopyroxene toward the ores was attributed to the degree of dissolution of clinopyroxene, and thus the total amounts of fluid to have passed. The outward decrease of XMg of clinopyroxenes in the ores was due to crystal-fluid fractionation during precipitation. These mineralogical changes at the boundaries indicate the time-integrated phenomena of hydrothermal ore forming process. Firstly, leaching of ore components by infiltrating fluid proceeded in host rocks, and enhanced the formation of a fluid channel. The condition of fluid changes through the fluid channel in P-T space, and hence ore forming minerals precipitate at a remote place from the leaching one. This in turn caused the physicochemical change of fluid condition anyhow, and accelerated the precipitation of the minerals. This leaching-precipitation sequence appears a basic process of hydrothermal ore-forming system, and characterizes the incipient stage of ore formation process of the Kamioka Zn-Pb ore deposit. Compositional zoning of clinopyroxenes defines Z-shaped compositional trend in the Di–Hd–Jo diagram, each arm of which corresponds to the leaching and the precipitation stages, and the secondary dissolution of precipitated clinopyroxene.  相似文献   
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