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Helium and Argon Isotopic Composition of Cenozoic Alkali Basalts and Mantle-Derived Xenoliths from Kuandian, Liaoning Province, China
作者姓名:吴茂炳  王先彬  叶先仁  刘春燕
作者单位:[1]InstituteofPetroleumExplorationandDevelopment,SINOPEC,Beijing100083,China [2]LanzhouInstituteofGeology,ChineseAcademyofSciences,Lanzhou730000,China
摘    要:The noble gas isotopic composition and content data of 2 alkali basalts, 3 Iherzolite xenoliths and one clinopyroxene megacryst from the Kuandian region have confirmed the occurrence of a fractionation of noble gases during magmatism. Light noble gases such as He and Ne are high in mobility and appear to be incompatible as compared with heavy ones ( such as Kr and Xe). Therefore, light noble gases are abundant in volcanics, especially in the volcanics with bubbles; lherzolite xenoliths have relatively high heavy noble gases. The clinopyroxene megacryst has the lowest abundance of noble gases, probably due to its high P-T origin. Noble gas isotopic composition of the clinopyroxene megacryst reveals that the mantle source beneath the Kuandian area has an MORB-like reservoir with^3 He/^4He ratio of—10 Ra(Ra: atmospheric^3 He/^4He ratio) and^40 Ar/^36 Ar ratio of 345.6. The Iherzolite xenoliths possess moderate^3 He/^4He ratios of 2.59 -4.53 Ra, reflecting the loss of primary helium during rock deformation or metasomatism caused by enriched mantle fluids during the up-lifting. The alkali volcanics have very low^3 He/^4 He ratios(0.47—0.61 Ra),indicating a contribution of radiogenic^4 He, probably having resulted from crust contamination. Most of the samples have excess^21 Ne and^22 Ne as compared with atmospheric neon, but Kr and Xe isotopic compositions are indistinguishable from atmospheric values within uncertainties with only individual samples having excess^129Xe,^134Xeand^136 Xe.

关 键 词:    同位素  新生代  玄武岩  辽宁
收稿时间:2 September 2009

Helium and argon isotopic composition of cenozoic alkali basalts and Mantle-Derived xenoliths from Kuandian,liaoning province,China
Wu?Maobing,Wang?Xianbin,Ye?Xianren,Liu?Chunyan.Helium and Argon Isotopic Composition of Cenozoic Alkali Basalts and Mantle-Derived Xenoliths from Kuandian, Liaoning Province, China[J].Chinese Journal of Geochemistry,2004,23(2):141-147.
Authors:Wu Maobing  Wang Xianbin  Ye Xianren  Liu Chunyan
Institution:(1) Institute of Petroleum Exploration and Development, SINOPEC, 100083 Beijing, China;(2) Lanzhou Institute of Geology, Chinese Academy of Sciences, 730000 Lanzhou, China
Abstract:The noble gas isotopic composition and content data of 2 alkali basalts, 3 lherzolite xenoliths and one clinopyroxene megacryst from the Kuandian region have confirmed the occurrence of a fractionation of noble gases during magmatism. Light noble gases such as He and Ne are high in mobility and appear to be incompatible as compared with heavy ones (such as Kr and Xe). Therefore, light noble gases are abundant in volcanics, especially in the volcanics with bubbles; lherzolite xenoliths have relatively high heavy noble gases. The clinopyroxene megacryst has the lowest abundance of noble gases, probably due to its high P-T origin. Noble gas isotopic composition of the clinopyroxene megacryst reveals that the mantle source beneath the Kuandian area has an MORB-like reservoir with 3He / 4He ratio of ~10 Ra (Ra: atmospheric 3He / 4He ratio) and 40 Ar/ 36 Ar ratio of 345.6 . The lherzolite xenoliths possess moderate 3He / 4He ratios of 2.59 - 4.53 Ra, reflecting the loss of primary helium during rock deformation or metasomatism caused by enriched mantle fluids during the up-lifting. The alkali volcanics have very low 3He / 4He ratios ( 0.47 - 0.61 Ra), indicating a contribution of radiogenic 4He , probably having resulted from crust contamination. Most of the samples have excess 21 Ne and 22 Ne as compared with atmospheric neon, but Kr and Xe isotopic compositions are indistinguishable from atmospheric values within uncertainties with only individual samples having excess 129 Xe , 134 Xe and 136 Xe .
Keywords:helium isotope  argon isotope  mantle-derived xenolith  alkali basalt  noble gas  Liaoning Province
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