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Geochemistry of Platinum Group Elements in Mafic-Ultramafic Rocks of Xinjie Intrusion
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作者 张成江 汪云亮 +2 位作者 李晓林 修淑芝 黄永建 《Chinese Journal Of Geochemistry》 EI CAS 1999年第3期242-249,共8页
The platinum group elements (PGE) in the mafic ultramafic suite in the Xinjie layered intrusion and associated basalts and syenites were analyzed using neutron activation techniques after fire assay preconcentration. ... The platinum group elements (PGE) in the mafic ultramafic suite in the Xinjie layered intrusion and associated basalts and syenites were analyzed using neutron activation techniques after fire assay preconcentration. On this basis, the geochemistry of the platinum group during the magmatic stage is discussed. With respect to PGE distribution, the Xinjie layered intrusion is similar to the Bushveld ferruginous ultramafic series and is distinct from komatiite and Alpine type peridotite. It is also similar to the Emeishan basalt in PGE characteristics, implying that the original magmas of them may be of the same type. 展开更多
关键词 地球化学 铂元素 地层 超基性铁镁质岩 四川
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Geochemical characteristics of mafic and ultramafic rocks from the Naga Hills Ophiolite, India:Implications for petrogenesis 被引量:7
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作者 Ajoy Dey M.Faruque Hussain Mrigendra N.Barman 《Geoscience Frontiers》 SCIE CAS CSCD 2018年第2期517-529,共13页
The Naga Hills Ophiolite(NHO) represents one of the fragments of Tethyan oceanic crust in the Himalayan Orogenic system which is exposed in the Phek and Kiphire districts of Nagaland, India. The NHO is composed of par... The Naga Hills Ophiolite(NHO) represents one of the fragments of Tethyan oceanic crust in the Himalayan Orogenic system which is exposed in the Phek and Kiphire districts of Nagaland, India. The NHO is composed of partially serpentinized dunite, peridotite, gabbro, basalt, minor plagiogranite,diorite dyke and marine sediments. The basalts are mainly composed of fine grained plagioclase feldspar, clinopyroxene and orthopyroxene and show quenching and variolitic textures. The gabbros are characterized by medium to coarse grained plagioclase, orthopyroxene and clinopyroxene with ophitic to sub-ophitic textures. The ultramafic cumulates are represented by olivine, Cpx and Opx.Geochemically, the basalts and gabbros are sub-alkaline to alkaline and show tholeiitic features.The basalts are characterized by 44.1-45.6 wt.% of SiO_2 with 28-38 of Mg#, and the gabbros by38.7-43.7 wt.% of SiO_2, and 26-79 of Mg#. The ultramafic rocks are characterized by 37.4-52.2 wt.% of SiO_2, and 80-88 of Mg#. In multi-element diagrams(spidergrams) both basalts and gabbros show fractionated trends with strong negative anomalies of Zr. Nb. Sr and a gentle negative anomaly of P.However, the rare earth element(REE) plots of the basalts and gabbros show two distinct patterns. The first pattern, represented by light REE(LREE) depletion, suggests N-MORB features and can be interpreted as a signature of Paleo-Tethyan oceanic crust. The second pattern, represented by LREE enrichment with negligible negative Eu anomaly, conforms to E-MORB, and may be related to an arc tectonic setting. In V vs. Ti/1000, Cr vs. Y and AFM diagrams, the basalts and gabbros plot within Island Arc Tholeiite(IAT) and MORB fields suggesting both ridge and arc related settings. The ultramafic rocks exhibit two distinct patterns both in spidergrams and in REE plots. In the spidergram, one group displays highly enriched pattern, whereas the other group shows near flat pattern compared to primordial mantle. In the REE plot, one group displays steeper slopes [(La/Yb)N = 4.340-4.341], whereas the other displays moderate to flat slopes [(La/Yb)N = 0.97-1.67] and negative Eu-anomalies. Our study suggests that the ultramafic rocks represent two possible mantle sources(fertile and refractory). 展开更多
关键词 Geochemistry MAFIC and ultramafic rocks Naga Hills OPHIOLITE Northeast INDIA Ridge to arc MAGMATISM
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Baddeleyite and zircon U-Pb ages of the ultramafic rocks in Chigu Tso area,Southeastern Tibet and their constraints on the timing of Comei Large Igneous Province 被引量:6
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作者 Ya-ying Wang Ling-sen Zeng +8 位作者 Ling-hao Zhao Li-e Gao Jia-hao Gao Zhao-ping Hu Hai-tao Wang Guang-xu Li Ying-long Di Yu Shen Qian Xu 《China Geology》 2020年第2期262-268,共7页
A suite of ultramafic and mafic rocks developed in the Chigu Tso area,eastern Tethyan Himalaya.Baddeleyite and zircon U-Pb ages acquired by SIMS and LA-ICP-MS from olivine pyroxenite rocks in the Chigu Tso area are 13... A suite of ultramafic and mafic rocks developed in the Chigu Tso area,eastern Tethyan Himalaya.Baddeleyite and zircon U-Pb ages acquired by SIMS and LA-ICP-MS from olivine pyroxenite rocks in the Chigu Tso area are 138.9±3.0 Ma and 139.0±1.9 Ma,respectively.These two Early Cretaceous ages are similar with the ages of the more abundant mafic rocks in the eastern Tethyan Himalaya,indicating that this suite of ultramafic and mafic rocks in the Chigu Tso area should be included in the outcrop area of the Comei Large Igneous Province(LIP).These ultramafic rocks provide significant evidence that the involvement of mantle plume/hot spot activities in the formation of the Comei LIP.Baddeleyite U-Pb dating by SIMS is one reliable and convenient method to constrain the formation time of ultramafic rocks.The dating results of baddeleyite and zircon from the olivine pyroxenite samples in this paper are consistent with each other within analytical uncertainties,suggesting that baddeleyite and zircon were both formed during the same magmatic process.The consistency of baddeleyite U-Pb ages in the Chigu Tso area with zircon U-Pb ages for a large number of Early Cretaceous mafic rocks in the eastern Tethyan Himalaya further support that zircon grains from such mafic rocks yielding Early Cretaceous ages are also magmatic in origin. 展开更多
关键词 U-Pb dating BADDELEYITE ZIRCON ultramafic rock Comei Large Igneous Province Kerguelen plume Tethyan Himalaya Geological survey engineering TIBET China
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The Evolution of Alpine Ultramafic Rocks and Partial Melting of the Upper Mantle 被引量:1
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作者 Bao Peisheng, Wang Xibin, Hao Ziguo and Peng Genyong Institute of Geology, Chinese Academy of Geological Sciences, Beijing Fei Zhenbi 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 1993年第1期43-61,122,共20页
Ultramafic rocks of Tibet and Xinjiang are the products of partial melting of the upper mantle. The evolution of their mineral composition is marked by two parallel evolutionary series: one is the progressive increase... Ultramafic rocks of Tibet and Xinjiang are the products of partial melting of the upper mantle. The evolution of their mineral composition is marked by two parallel evolutionary series: one is the progressive increase of the 100 Mg/(Mg+Fe^(2+) ratio of silicate minerals in order of lherzolite→harzburgite→dunite, i.e. the increase in magnesium; the other is the increase of the 100 Cr/(Cr+Al) ratio of accessory chrome spinel in the same order, i. e. the increase in Chromium. The above-mentioned evolutionary trends are contrary to that of magmatic differentiation. The evolution of fabrics of ultramafic rocks is characterized by progressive variation in order of protogranular texture→melted residual texture, symplectic texture and clastophyritic texture→equigranular mosaic texture and tabular mosaic texture. Experiments of partial melting of lherzolite have convincingly shown that the evolution of Alpine ultramafic rocks resulted from the partial melting of pyrolite. Various subtypes of them represent different degrees of partial melting. The vertical zoning marked by more basic rocks in the upper part and more acid rocks in the lower actually belongs to the fusion zoning of pyrolite. 展开更多
关键词 Alpine ultramafic rocks upper mantle partial melting
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Petrogenesis of the diamondiferous Pipe-8 ultramafic intrusion from the Wajrakarur kimberlite field of Southern India and its relation to the worldwide Mesoproterozoic(~1.1 Ga) magmatism of kimberlite and related rocks 被引量:1
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作者 Ashish Dongre K.S.Viljoen +2 位作者 G.Belyanin Petrus Le Roux M.Malandkar 《Geoscience Frontiers》 SCIE CAS CSCD 2020年第3期793-805,共13页
Detailed mineralogy,bulk rock major,trace and Sr-Nd isotope compositions,and ^(40)Ar/^(39)Ar dating of the Pipe-8 diamondiferous ultramafic intrusion in the Wajrakarur cluster of southern India,is reported.Based on th... Detailed mineralogy,bulk rock major,trace and Sr-Nd isotope compositions,and ^(40)Ar/^(39)Ar dating of the Pipe-8 diamondiferous ultramafic intrusion in the Wajrakarur cluster of southern India,is reported.Based on the presence of Ti-rich phlogopite,high Na/K content in amphibole,Al-and Ti-rich diopside,a titanomagnetite trend in spinel and the presence of Ti-rich schorlomite garnet and carbonates in the groundmass,the Pipe-8 intrusion is here more precisely classified as an ultramafic lamprophyre(i.e.,aillikite).An aillikite affinity of the Pipe-8 intrusion is further supported by the bulk rock major and trace element and Sr-Nd isotope geochemistry.Sr-Nd isotope data are consistent with a common,moderately depleted upper mantle source region for both the Pipe-8 aillikite as well as the Wajrakarur kimberlites of southern India.A phlogopite-rich groundmass ^(40)Ar/^(39)Ar plateau age of 1115.8±7.9 Ma(2σ) for the Pipe-8 intrusion falls within a restricted 100 Ma time bracket as defined by the 1053-1155 Ma emplacement ages of kimberlites and related rocks in India.The presence of ultramafic lamprophyres,carbonatites,kimberlites,and olivine lamproites in the Wajrakarur kimberlite field requires low degrees of partial melting of contrasting metasomatic assemblages in a heterogeneous sub-continental lithospheric mantle.The widespread association of kimberlite and other mantle-derived magmatism during the Mesoproterozoic(ca.1.1 Ga) have been interpreted as being part of a single large igneous province comprising of the Kalahari,Australian,West Laurentian and Indian blocks of the Rodinia supercontinent that were in existence during its assembly.In India only kimberlite/lamproite/ultramafic lamprophyre magmatism occurred at this time without the associated large igneous provinces as seen in other parts of Rodinia.This may be because of the separated paleo-latitudinal position of India from Australia during the assembly of Rodinia.It is speculated that the presence of a large plume at or close to 1.1 Ga within the Rodinian supercontinent,with the Indian block located on its periphery,could be the reason for incipient melting of lithospheric mantle and the consequent emplacement of only kimberlites and other ultramafic,volatile rich rocks in India due to comparatively low thermal effects from the distant plume. 展开更多
关键词 KIMBERLITE and RELATED rockS ultramafic lamprophyre LAMPROITES Wajrakarur KIMBERLITE FIELD Mantle plume Rodinia supercontinent
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The Gaojiacun Mafic-Ultramafic Complex(Sichuan,SW China):Neoproterozoic Magmatic Activity at the Western Margin of the Yangtze Craton 被引量:3
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作者 Marian MUNTEANU YAO Yong +3 位作者 Allan H. WILSON Gordon CHUNNETT LUO Yaonan ZHAO Qixue 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2006年第5期705-723,共19页
The Neoproterozoic Gaojiacun intrusive complex (GIC) is composed of one big intrusion (ca. 9 × 7.5 km) and numerous satellite intrusions, emplaced in the low-grade schists of the Neoproterozoic Yanbian Group.... The Neoproterozoic Gaojiacun intrusive complex (GIC) is composed of one big intrusion (ca. 9 × 7.5 km) and numerous satellite intrusions, emplaced in the low-grade schists of the Neoproterozoic Yanbian Group. The main intrusion is concentrically zoned, with peridotite bodies + leucogabbroids in its core (inner zone) and the sequence: olivine hornblende gabbronorite - porphyric pyroxene hornblende gabbronorite (transitional zone) - pyroxene hornblende gabbronorite + hornblende gabbro + diorite (outer zone), towards the margins. The satellite intrusions are composed either of a single rock type (peridotite, gabbro, diorite or granite) or of different rock types (peridotite + diorite + granite). Upper crustal contamination is evidenced by the occurrence of numerous metamorphic enclaves, migmatites and mixed rocks in the outer zone of the main intrusion and in the satellite intrusions. Hornblende (often oikocrystic) is present in all mafic and ultramafic rocks. Cu-Ni (-PGE) deposits occur in several satellite intrusions, hosted in peridotite. The geochemical and mineralogical features of GIC support the presence of a subduction zone at the western edge of the Yangtze Craton. A feederrelated genesis of the satellite intrusions is inferred. 展开更多
关键词 China NEOPROTEROZOIC ultramafic-mafic rocks CUMULATE Cu-Ni deposits
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Efficiency of a re-usable Carius tube for determination of platinum group elements in ultramafic rocks 被引量:2
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作者 LIU Yingying QI Liang +2 位作者 ZHAO Zheng HUANG Xiaowen WANG Yichang 《Chinese Journal Of Geochemistry》 EI CAS CSCD 2014年第1期45-52,共8页
Digestion with aqua regia in Carius tube is commonly employed for determination of PGEs in geological samples. However, silicates cannot be completely dissolved by aqua regia and PGEs might partially remain in silicat... Digestion with aqua regia in Carius tube is commonly employed for determination of PGEs in geological samples. However, silicates cannot be completely dissolved by aqua regia and PGEs might partially remain in silicate residue. In this study, an ultramafic reference material was used to investigate the efficiencies of a new re-usable Carius tube after digestion at 220 and 240℃, and an autoclave-lined Carius tube at 260 and 280℃. The results show that about 10% of PGEs retained in the silicate residues at 220 and 5% still r℃ emains even digestion temperature increases to 280℃. These results agree with previous works that increasing the digestion pressure and temperature can achieve more effective dissolution. Thus, a modified digestion procedure for determination of PGEs in ultramafic rocks by the re-usable Carius tube was proposed in this study. 展开更多
关键词 可重复使用 铂族元素 卡洛斯 超基性岩 测定 消化过程 超镁铁质岩石 温度升高
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KT Boundary Chromites Determined to be Terrestrial:Cr Isotopic Evidence for Excavation and Ejection of Mafic/Ultramafic Rocks by the KT Boundary Impact 被引量:1
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作者 Peter OLDS Mathew E.SANBORN +1 位作者 Tim TEAGUE YIN Qingzhu 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第S1期26-27,共2页
Evidence for a mantle and/or basaltic component in KT boundary distal ejecta is apparently inconsistent with ejection from Chicxulub Crater since it is located on;5km thick continental crust(De Paolo et al.,1983;Mont... Evidence for a mantle and/or basaltic component in KT boundary distal ejecta is apparently inconsistent with ejection from Chicxulub Crater since it is located on;5km thick continental crust(De Paolo et al.,1983;Montanari et al.,1983;Hildebrand and Boynton,1988,1990).Evidence for mafic/ultramafic target rocks was reinforced by discovery of chromites,some with shock planar deformation features(PDF),in impact layer samples from sites in southern Colorado and eastern Wyoming(Bohor et al.,1990).However,until now it was unclear whether the chromites originated with an impactor or with terrestrial target rocks.To this end,high-precision 54Cr/52Cr isotope ratios were measured on KT boundary chromites along with known terrestrial chromites.We find a terrestrial 54Cr/52Cr ratio in KT boundary chromites from impact layer samples collected at the above sites over the last several years(Fig.1).Ejected terrestrial chromites suggest the impact sampled terrestrial mafic and/or ultramafic target rocks not known to exist in the Chicxulub target area. 展开更多
关键词 KT Boundary Chromites Determined to be Terrestrial Cr Isotopic Evidence for Excavation and Ejection of Mafic/ultramafic rocks by the KT Boundary Impact
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Geochemical and Petrological Studies on the Early Carboniferous Sidingheishan Mafic-Ultramafic Iintrusion in the Southern Margin of the Central Asian Orogenic Belt,NW China 被引量:3
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作者 SUN Tao QIAN Zhuangzhi +5 位作者 THAKURTA Joyashish YANG Shenghong XU Gang DUAN Jun GAO Bo WANG Jing 《Acta Geologica Sinica(English Edition)》 CAS CSCD 2018年第3期952-971,共20页
The Sidingheishan mafic-ultramafic intrusion is located in the eastern part of the Northern Tianshan Mountain, along the southern margin of the Central Asian Orogenic Belt in northern Xinjiang autonomous region of Chi... The Sidingheishan mafic-ultramafic intrusion is located in the eastern part of the Northern Tianshan Mountain, along the southern margin of the Central Asian Orogenic Belt in northern Xinjiang autonomous region of China. The Sidingheishan intrusion is mainly composed of wehrlite, olivine websterite, olivine gabbro, gabbro and hornblende gabbro. At least two pulses of magma were involved in the formation of the intrusion. The first pulse of magma produced an olivine-free unit and the second pulse produced an olivine-bearing unit. The magmas intruded the Devonian granites and granodiorites.An age of 351.4±5.8 Ma(Early Carboniferous) for the Sidingheishan intrusion has been determined by U-Pb SHRIMP analysis of zircon grains separated from the olivine gabbro unit. A U-Pb age of 359.2±6.4 Ma from the gabbro unit has been obtained by LA-ICP-MS. Olivine of the Sidingheishan intrusion reaches 82.52 mole% Fo and 1414 ppm Ni. On the basis of olivine-liquid equilibria, it has been calculated that the MgO and FeO included in the parental magma of a wehrlite sample were approximately10.43 wt% and 13.14 wt%, respectively. The Sidingheishan intrusive rocks are characterized by moderate enrichments in Th and Sm, slight enrichments in light REE, and depletions in Nb, Ta, Zr and Hf. The εNd(t) values in the rock units vary from +6.70 to +9.64, and initial87Sr/86Sr ratios range between 0.7035 and0.7042. Initial206Pb/204Pb,207Pb/204Pb and208Pb/204Pb values fall in the ranges of 17.23-17.91,15.45-15.54 and 37.54-38.09 respectively. These characteristics are collectively similar to the Heishan intrusion and the Early Carboniferous subduction related volcanic rocks in the Santanghu Basin, North Tianshan and Beishan area. The low(La/Gd)PMvalues between 0.26 and 1.77 indicate that the magma of the Sidingheishan intrusion was most likely derived from a depleted spinel-peridotite mantle.(Th/Nb)PMratios from 0.59 to 20.25 indicate contamination of the parental magma in the upper crust.Crystallization modeling methods suggest that the parental magma of the Sidingheishan intrusion was generated by flush melting of the asthenosphere and subsequently there was about 10 vol%contamination from a granitic melt. This was followed by about 5 vol% assimilation of upper crustal rocks. Thus, the high-Mg basaltic parental magma of Sidingheishan intrusion is interpreted to have formed from partial melting of the asthenosphere during the break-off of a subducted slab. 展开更多
关键词 break-off of subducted slab zircon U-Pb dating whole-rock Sr-Nd-Pb isotopes mafic-ultramafic intrusion southern margin of Central Asian Orogenic Belt China
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MINERALOGY AND GEOCHEMISTRY OF ULTRAMAFIC ROCKS FROM THE INDUS SUTURE OPHIOLITE IN SWAT, NW PAKISTAN
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作者 Mohammad Arif 1, Charlie J. Moon 2(1 Department of Geology, University of Peshawar, Peshawar, Pakistan 2 Department of Geology, University of Leiscester, Leicester LE1 7RH, UK) 《地学前缘》 EI CAS CSCD 2000年第S1期113-114,共2页
Genetically diverse lithologies, which include blueschist, greenschist, ultramafic, mafic plutonic, e.g. gabbros, and volcanic, e.g. pillowed basalts, and metasedimentary rocks, occur as a wedge\|shaped zone in the ar... Genetically diverse lithologies, which include blueschist, greenschist, ultramafic, mafic plutonic, e.g. gabbros, and volcanic, e.g. pillowed basalts, and metasedimentary rocks, occur as a wedge\|shaped zone in the area to the north of the Mingora town in Swat, NW Pakistan. This zone of fault\|bounded rock bodies and blocks is distinguished into three principal groups, each of which is itself a composite of lithologies, or a melange—the blueschist melange, greenschist melange and ophiolitic melange. All these lie along the Main Mantle Thrust (MMT)—the westward extension of the Indus\|Tsangbo suture zone and the locus of collision between the Indo\|Pakistan plate and the Kohistan island arc—and, are therefore, collectively termed as the Main Mantle Thrust Melange Group (MMTMG).The ultramafic rocks, locally containing chromite pods and constituting a part of the ophiolitic member of the MMTMG, occur as small to large lenticular bodies, distributed along the marginal part of the Indo\|Pakistan plate. They are invariably serpentinized to varying degrees and, therefore, consist of abundant, fine grained serpentine which is mostly accompanied by subordinate amounts of completely bastitised, medium to coarse grained orthopyroxene, trace to accessory amounts of commonly altered (zoned with ferritchromite and/or magnetite) chrome spinel, variable proportions of olivine, and accessory amounts of diopside. In other words, the ultramafic rocks are mostly harzburgitic in mineralogy and, therefore, the ophiolite as a whole can be classified as the harzburgite sub\|type..Detailed field and mineralogical studies show that the present petrographic ch aracteristics and mineral\|chemical composition of these dominantly harburgitic rocks are the result of a number of phenomena involving partial melting, serpentinization, metamorphism and talc\|carbonate alteration. 展开更多
关键词 ultramafic rock OPHIOLITE MINERALOGY GEOCHEMISTRY Swat NW Pakistan
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Economical Potential of An Ultramafic Rock at The Kval ya Island, North Norway
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作者 Anna Pryadunenko Kre Kullerud 《矿物学报》 CAS CSCD 北大核心 2013年第S1期7-7,共1页
A low-grade metamorphic ultramafic rock at the Kval ya Island, North Norway, shows Ni content up to 5 600 ppm, and an average content of 2 500 ppm Ni. Olivine is absent from the rock, and Ni is principally bonded in p... A low-grade metamorphic ultramafic rock at the Kval ya Island, North Norway, shows Ni content up to 5 600 ppm, and an average content of 2 500 ppm Ni. Olivine is absent from the rock, and Ni is principally bonded in pentlandite, violarite and millerite. The rock might be considered as a low-grade ore, with 0.2wt%– 0.56wt% Ni. Other metals that might be of economic interest to extract from the rock include Co (from pentlandite and violarite), and Cr and Fe (from magnetite). 展开更多
关键词 ultramafic rock Ni-sulfides SERPENTINE CO2-sequestration
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Genesis and Tectonic Implications of the Kabr El-Bonaya Ultramafic Rocks,Sinai Peninsula,Egypt:Constraints from Mineralogical and Geochemical Characteristics
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作者 Moustafa Mohammed MOGAHED 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2021年第2期393-418,共26页
The Kabr El-Bonaya mafic–ultramafic intrusion is exposed along the southeastern border of the Sinai Peninsula and the northernmost segment of the Arabian-Nubian Shield(ANS).It occurs as an elliptical intrusive body t... The Kabr El-Bonaya mafic–ultramafic intrusion is exposed along the southeastern border of the Sinai Peninsula and the northernmost segment of the Arabian-Nubian Shield(ANS).It occurs as an elliptical intrusive body that is located along the major NE–SW trending fracture zones that prevail in the Kid metamorphic complex.The ultramafic rocks in the complex comprise ultramafic cumulates of peridotites(dunite,harzburgite and wehrlite)and pyroxenite.These rocks are generally unmetamorphosed and have intrusive contacts with the country rock.Mineral chemistry and whole-rock chemical compositions of these ultramafic rocks are mostly consistent with those of residual mantle peridotites from refractory suprasubduction tectonic settings.Based on the variations of the major elements,the studied ultramafic rocks are consistent with those of a supra-subduction zone mantle,as it seems to have melted at 1–2 GPa and 1300–1450℃.Linear variations of Al2O3,Ca O,V and Ni with Mg O,coupled with incompatible and rare-earth-element depletion and mineral compositions,suggest prior events of partial melting in both wehrlites and harzburgites.The LREE enrichment in the harzburgite,as well as the development of Cr-rich spinel,is consistent with a history of melt–peridotite interaction.The calculated(Sm/Yb)N variations for the studied peridotites indicate a general increase in the addition of fluids with an increasing degree of melting from the wehrlite(~13–15 wt%of fluid)in the source,after initial spinel peridotite melting to the harzburgite(~20–25 wt%of fluid)in the same source,which is contrary to normal abyssal peridotites.The estimated equilibration temperature ranges from 1214 to 1321℃for the studied wehrlites and from 1297 to 1374℃for harzburgites.The Mg-rich nature of the analysed olivines from the studied ultramafic rocks(Fo=81.41 to 91.77)reflect their primary composition and are similar to olivines in Alaskan-type ultramafic rocks.The Fo content of the analyzed olivines decrease slightly from the dunite to the harzburgite to the wehrlite and to pyroxenite,reflecting a fractional crystallization trend.The high Cr#and very low TiO_(2)contents(0.03–0.12 wt%)of the Cr-spinels from the studied peridotites are mostly consistent with modern highly refractory fore-arc peridotites,indicating that these peridotites developed in a supra-subduction zone environment. 展开更多
关键词 cumulate ultramafic rocks Alaskan-type rocks partial melting hydrous melting conditions supra-subduction zone Kabr El-Bonaya South Sinai Arabian-Nubian Shield
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Olivine and Cr-spinel as indicators of the petrogenesis and partial melting conditions of the high-MgO ultramafic volcanic rocks from NW Ad Dhala Province—Yemen
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作者 Mukhtar A.Nasher Murad Ali 《Acta Geochimica》 EI CAS CSCD 2021年第4期532-556,共25页
The high-MgO ultramafic volcanic rocks in the NW Ad Dhala province are classified as meimechite according to the IUGS classification scheme.This province represents the southeastern outcrops of the Yemen Volcanic Grou... The high-MgO ultramafic volcanic rocks in the NW Ad Dhala province are classified as meimechite according to the IUGS classification scheme.This province represents the southeastern outcrops of the Yemen Volcanic Group(YVG),which constitutes part of the AfroArabian continental large igneous province(LIP) and located within the boundary of the Afar mantle plume.In this study,we present the chemical compositions of olivine and Cr-spinel in meimechite rocks from Bagah Village in NW Ad Dhala province,aiming to characterize the genesis and partial melting conditions and to estimate the crystallization temperatures of these high-MgO rocks.Olivine crystals are characterized by high forsterite,ranges from Mg-rich core(up to Fo_(89.69)) to relatively Fe-rich rim(down to Fo_(78.57)),high CaO,MgO and MnO whereas Cr-spinel crystals have high TiO_(2) and Cr# values ranging from 0.49 to 0.63 which indicate that they are crystallized from primary magma and are typical of volcanic olivine and Crspinel that formed in intraplate tectonic setting.Olivine and Cr-spinel compositional data and primary melt composition(MgO ~ 23 wt.%) are compatible with the derivation of studied meimechite rocks from peridotite mantle source by small degrees of partial melting under conditions of high temperature and pressure at great depths,mostly within the garnet stability field.Also,these data provide a compelling indicator for the important role of upwelling Afar mantle plume in the genesis of these high-MgO ultramafic volcanic rocks.Finally,based on the different olivine-liquid equilibrium methods and Al-in-olivine thermometer approach the estimated crystallization temperature ranges from 1450 to 1490℃,and mantle potential temperature(Tp) ranges from 1617 to 1677℃,at high pressure(3-4.8 GPa).These high temperatures substantiate the existence of the Afar thermal mantle plume and its important role in the genesis of the studied meimechite rocks. 展开更多
关键词 OLIVINE CR-SPINEL High-MgO ultramafic volcanic rocks meimechite Afro-arabian LIP Yemen
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The Fate of Chromium in Weathered Ultramafic Rocks and Their Derivitative Soils in Cuba: Clues from Spectroscopic Studies
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作者 Andrea L.FOSTER 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第S1期12-,共1页
In its cationic,trivalent form,Chromium(Cr)it is a micronutrient,and exhibits low environmental mobility.In hexavalent form,however,it is a human carcinogen and also highly mobile.Climate is a key environmental factor... In its cationic,trivalent form,Chromium(Cr)it is a micronutrient,and exhibits low environmental mobility.In hexavalent form,however,it is a human carcinogen and also highly mobile.Climate is a key environmental factor controlling weathering rates and stability of primary and secondary Cr-bearing minerals.Knowledge of Cr oxidation state and mineral residence is therefore essential to estimating the risk posed by Cr in serpentinites,chromite mine wastes,and soils developed on these parent materials.X-ray absorption spectroscopy(XAS)is currently the best available technique for determination of the relative abundance of Cr(III)and Cr(VI)in situ(that is,without digestion of solid phases).A brief review of relevant XAS studies of is presented below,focusing on studies in tropical climates1,as they will be most relevant to eastern Cuba’s extensively serpentinized ophiolite belt.Cr(III)-bearing spinels are usually the dominant and most refractory Cr host in ultramafic rocks.Previous XAS studies2 indicate that in tropical climates,Cr-spinels weather rapidly to form Cr(III)-bearing secondary Fe(III)(hydr)oxides(goethite,hematite).Manganese(Mn)is also enriched in ultramafic rocks2;as Mn(IV),it can also co-precipitate with Fe(III)(hydr)oxides,or form its own secondary(hydr)oxides.A previous study found up to 20%Cr(VI)in in a tropical,serpentine soil that contained substantial Mn,and a strong correlation between the*amounts of Cr(VI)and Mn(IV)in the soil profile2.Theresults of several XAS studies suggest that a close association of Mn(IV)and Cr(III)in secondary Fe(hydr)oxides is necessary for oxidation of Cr(III)to Cr(VI)via electron transfer reactions with Mn(IV);however,additional XAS studies have shown that organic matter3and Cr-bearing aluminosilicates4 may also be important sources of Cr(III)to the environment under specific conditions.The stability and fate of Cr has not been studied in detail for these two host phase types,to the best of our knowledge.Access to XAS facilities to perform Cr geochemical experiments is limited and will only become more so in the future.We are working to develop and apply(micro)Raman spectroscopy to evaluate Cr oxidation state and mineral residence(in crystalline and amorphous materials).In addition to standard Raman scattering,we are employing resonance Raman(785 nm laser)to enhance signal from Cr(VI)-bearing phases and laser-stimulated photoluminescence to identify Cr(III)associated with Al-rich alteration products 展开更多
关键词 Cr Clues from Spectroscopic Studies The Fate of Chromium in Weathered ultramafic rocks and Their Derivitative Soils in Cuba
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Petrochemistry and Mineral Chemistry Studies on Metamorphic Ultramafic Rocks in Yanghou Area, Northern Fujian, China
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作者 任胜利 周新华 +3 位作者 周新华 李健亮 李健亮 孙敏 《Chinese Journal Of Geochemistry》 EI CAS 1999年第1期30-38,共9页
Petrochemical studies indicate that the Yanghou metamorphic ultramafic rocks are composed of metamorphosed harzburgite and ultramafic cumulate. Trace element geochemistry and mineral chemistry of the metamorphic harzb... Petrochemical studies indicate that the Yanghou metamorphic ultramafic rocks are composed of metamorphosed harzburgite and ultramafic cumulate. Trace element geochemistry and mineral chemistry of the metamorphic harzburgite indicate that they are relicts of depleted mantle. Systematic petrochemical, mineral chemical and geochronological studies led to such a conclusion that the Yanghou metamorphic ultramafic rocks may be the components of Late Sinian Early Paleozoic ophiolites in South China. 展开更多
关键词 矿物化学 年化学 变质超基性岩 岩石化学 福建 示踪元素 地球化学
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Minerogenic Model of Chrysotile Deposits in Ultramafic Rocks
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作者 Wan Pu Sichuan Institute of Building Materials, Mianyang City, Sichuan Liu Linqun 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 1990年第1期31-39,共9页
Most chrysotile deposits occur in ultramafic rocks of the ophiolite suite. The chrysotile deposits dis-cussed in the present paper were formed through metasomatism and infilling-crystallization in a continentalserpent... Most chrysotile deposits occur in ultramafic rocks of the ophiolite suite. The chrysotile deposits dis-cussed in the present paper were formed through metasomatism and infilling-crystallization in a continentalserpentinization environment after plate convergence, where ultramafic rocks were replaced byhydrothermal solutions consisting mainly of deep-circulating heated water derived from atmospheric precip-itation. The critical state for the formation of asbestos in ultramafic rock bodies might be reached bysuperposition of multiple stages of serpentinization. Favourable fracture systems and relatively stable geo-logical environment are important conditions for forming chrysotile deposits. Three subtypes of chrysotiledeposits could be formed in different tectonic settings and under different minerogenic geochemical condi-tions. 展开更多
关键词 Minerogenic Model of Chrysotile Deposits in ultramafic rocks
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Geochemical characteristics of the platinum-group elements in the Abulangdang ultramafic intrusion,Sichuan Province,China
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作者 MA Yansheng TAO Yan +2 位作者 ZHONG Hong ZHU Feilin ZHOU Jiaxi 《Chinese Journal Of Geochemistry》 EI CAS 2009年第3期320-327,共8页
The contents of the platinum-group elements (PGEs: Os, Ir, Ru, Rh, Pt, Pd) in the Abulangdang ultramafic intrusion have been determined using ICP-MS after nickel sulfide fire assay preconcentration. Different samples ... The contents of the platinum-group elements (PGEs: Os, Ir, Ru, Rh, Pt, Pd) in the Abulangdang ultramafic intrusion have been determined using ICP-MS after nickel sulfide fire assay preconcentration. Different samples show significant differences in absolute PGE abundance. They display a pronounced negative incline in mantle-normalized patterns which are characterized by strong enrichment in IPGEs (Os, Ir, Ru) and depleting to slight enrichment in PPGEs (Rh, Pt, Pd). The characteristics of PGE distribution in the Abulangdang rocks are due to the combined action of sulfide and non-sulfide (spinel/chromite or alloy or micro-granular aggregation of metals). In comparison with the mafic-ultramafic rocks which host Ni-Cu-PGE deposits in the Emeishan Large Igneous Province (ELIP), it is assumed that the Abulangdang ultramafic intrusion may be the product of early-stage magma activity in the ELIP. 展开更多
关键词 铂族元素矿床 地球化学特征 入侵 四川省 峨眉山大火成岩省 中国 金富集 元素丰度
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甘肃北山铭杨镁铁-超镁铁岩体锆石U-Pb年龄、地球化学特征及其地质意义 被引量:1
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作者 谢燮 杨建国 +1 位作者 张东阳 程功德 《西北地质》 CSCD 北大核心 2024年第1期179-195,共17页
铭杨岩体位于甘肃北山南带古堡泉-红柳园断裂北侧,侵位于敦煌岩群,为甘肃北山地区新近发现的一处铜镍矿化镁铁-超镁铁岩体,主要由辉橄岩、二辉橄榄岩、橄榄辉长岩、辉长岩等组成。全岩成分以低碱、低钛为特征,轻稀土略富集,具有明显的... 铭杨岩体位于甘肃北山南带古堡泉-红柳园断裂北侧,侵位于敦煌岩群,为甘肃北山地区新近发现的一处铜镍矿化镁铁-超镁铁岩体,主要由辉橄岩、二辉橄榄岩、橄榄辉长岩、辉长岩等组成。全岩成分以低碱、低钛为特征,轻稀土略富集,具有明显的正Eu异常;富集大离子亲石元素(LILE)Rb、Ba、Sr和K,相对亏损高场强元素(HFSE)Th、U、Nb、Ta、Zr和Hf。岩浆演化过程中发生了橄榄石、斜长石和辉石的分离结晶作用,经历了一定程度的地壳混染,地、物、化、遥综合信息显示具有较好的铜镍成矿潜力。通过LA-ICP-MS锆石U-Pb测年,首次获得铭杨岩体中橄榄辉长岩和辉长岩结晶年龄分别为(452.9±2.4)Ma和(457.7±2.1)Ma,岩体可能为早古生代陆缘裂谷环境下的产物。北山地区早古生代含铜镍岩体的发现对区域构造演化认识具有重要意义。 展开更多
关键词 锆石U-PB年龄 地球化学特征 镁铁-超镁铁岩体 铭杨
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吉中-延边成矿带镍矿成矿规律与找矿方向
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作者 陈聪 吴涛涛 +7 位作者 李爱 张健 卞雄飞 李晓海 孙求实 苏飞 杨佳林 郇恒飞 《地质与资源》 CAS 2024年第4期519-536,605,共19页
吉中-延边成矿带是我国12个重要成镍带之一,蕴含镍矿床(点)13处,镍资源储量超过28万吨,是我国重要的镍矿资源基地.成矿带多期次构造岩浆活动强烈,尤其在印支期造山后伸展背景下形成了一系列镁铁-超镁铁质岩群及与之相关的铜镍硫化物矿床... 吉中-延边成矿带是我国12个重要成镍带之一,蕴含镍矿床(点)13处,镍资源储量超过28万吨,是我国重要的镍矿资源基地.成矿带多期次构造岩浆活动强烈,尤其在印支期造山后伸展背景下形成了一系列镁铁-超镁铁质岩群及与之相关的铜镍硫化物矿床.本次研究在红旗岭、长仁两处典型镍矿床基础上,梳理成矿带内镍矿地质与成矿特征,总结镍矿时空分布规律,提取区域镍矿找矿标志.综合区域地质特征与重力、航磁等异常特征,分析了吉中-延边成矿带铜镍硫化物矿床的找矿潜力,探讨了镍矿找矿方向,为下一步吉中-延边成矿带镍矿找矿行动部署提供科学依据. 展开更多
关键词 镍矿 镁铁-超镁铁质岩 成矿规律 找矿方向 吉中-延边成矿带
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镁铁-超镁铁岩的全岩和单矿物钴镍分布特征及其成矿指示
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作者 崔梦萌 苏本勋 +1 位作者 王静 袁庆晗 《岩石学报》 SCIE EI CAS CSCD 北大核心 2024年第8期2489-2502,共14页
本文对不同成因类型的镁铁-超镁铁岩石中全岩及主要造岩矿物中Co、Ni元素分布特征进行了总结,并探讨了不同类型地幔源区及其矿物元素含量差异对Co-Ni成矿的控制作用。结果表明,科马提岩的全岩Co(15×10^(-6)~250×10^(-6))、Ni(... 本文对不同成因类型的镁铁-超镁铁岩石中全岩及主要造岩矿物中Co、Ni元素分布特征进行了总结,并探讨了不同类型地幔源区及其矿物元素含量差异对Co-Ni成矿的控制作用。结果表明,科马提岩的全岩Co(15×10^(-6)~250×10^(-6))、Ni(28×10^(-6)~5045×10^(-6))含量均高于苦橄岩(Co=11×10^(-6)~177×10^(-6)、Ni=29.9×10^(-6)~2069×10^(-6))和玄武岩(Co=1.1×10^(-6)~300×10^(-6)、Ni=0.5×10^(-6)~2837×10^(-6)),表明地幔高程度部分熔融形成的熔体更加富集Co和Ni。地幔橄榄岩捕掳体的全岩Co(21×10^(-6)~220×10^(-6))和Ni(2.1×10^(-6)~4060×10^(-6))含量均显著高于辉石岩捕掳体(Co=7×10^(-6)~131×10^(-6)、Ni=4.58×10^(-6)~2311×10^(-6)),表明部分熔融过程中橄榄岩地幔源区相较于辉石岩地幔源区更容易形成富Co、Ni的玄武质岩浆。矿物学特征方面,地幔捕掳体中橄榄石的Co、Ni含量分别为41×10^(-6)~437×10^(-6)和148×10^(-6)~8970×10^(-6),尖晶石的Co、Ni含量分别为141×10^(-6)~745×10^(-6)和282×10^(-6)~9587×10^(-6),均高于共生的斜方辉石(Co=10×10^(-6)~364×10^(-6)、Ni=5.02×10^(-6)~4439×10^(-6))、单斜辉石(Co=4.09×10^(-6)~385×10^(-6)、Ni=11.1×10^(-6)~5931×10^(-6))和石榴子石(Co=0.47×10^(-6)~205×10^(-6)、Ni=0.09×10^(-6)~644×10^(-6))。同时,橄榄石和尖晶石的Co含量与其Ni/Co比值呈较好的负相关关系,而斜方辉石和单斜辉石的Co含量与其Ni/Co比值无明显相关性。这些特征表明部分熔融过程中尖晶石相地幔比石榴石相地幔更容易形成富Co、Ni的熔体。侵入岩中主要造岩矿物具有与地幔捕掳体中各矿物相一致的Co、Ni含量变化特征。这表明地幔部分熔融或岩浆结晶分异过程中,橄榄石和尖晶石是控制岩浆中Co、Ni含量的主要矿物相,并且可能造成岩浆中Co-Ni解耦,而斜方辉石和单斜辉石的熔融或结晶过程中Co-Ni倾向于共生。此外,蛇绿岩作为风化壳型镍矿床的成矿母岩,其橄榄岩和铬铁岩中尖晶石和橄榄石具有较高的Co和Ni元素含量,橄榄石的Ni(1280×10^(-6)~5789×10^(-6))含量明显高于尖晶石(229×10^(-6)~2616×10^(-6)),而其Co(41.2×10^(-6)~193×10^(-6))含量则明显低于尖晶石(176×10^(-6)~781×10^(-6)),表明风化过程中富集橄榄石的岩石更容易形成富Ni的风化壳型矿床,而富集尖晶石的岩石更容易贡献于风化壳型镍矿床中的Co矿化。 展开更多
关键词 镁铁-超镁铁岩 钴镍矿床 造岩矿物 钴-镍元素
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