期刊文献+

冲绳海槽Jade热液区块状硫化物中流体包裹体的氦、氖、氩同位素组成 被引量:6

He, Ne and Ar isotope compositions of fluid inclusions in massive sulfides from the Jade hydrothermal field, Okinawa Trough
在线阅读 下载PDF
导出
摘要 对冲绳海槽Jade热液区块状硫化物中流体包裹体的氦、氖和氩同位素组成进行了测定,流体包裹体的~3He/~4He比值为(6.2~10.1)Ra,均值为7.8Ra,与大洋中脊玄武岩一致[~3He/~4He≈(6~11)Ra],^(20)Ne/^(22)Ne比值为10.7~11.3,明显高于大气值(9.8),而^(40)Ar/^(36)Ar比值的变化范围在287~334之间,接近大气值(295.5),这些结果表明,块状硫化物中热液流体捕获的稀有气体是地幔和海水源组分混合的产物,且流体包裹体中的氦主要来自地幔,氖和氩主要来自海水。 Helium, neon and argon isotope compositions of fluid inclusions have been measured in massive sulfide samples from the Jade hydrothermal field at the central Okinawa Trough. Fluid-inclusion 3He/4He ratios are between 6.2 and 10.1 times the air value (Ra), and with a mean of 7.8 Ra, which are consistent with the mid-ocean ridge basalt values [3He/4He≈(6 - 11 )Ra]. Values for 20Ne/22Ne are from 10.7 to 11.3, which are significantly higher than the atmospheric ratio (9.8). And fluid-inclusion 40Ar/36Ar ratios range from 287 to 334, which are close to the atmosperic values (295.5). These results indicate that the noble gases of trapped hydrothermal fluids in massive sulfides are a mixture of mantle-and seawater-derived components, and the helium of fluid inclusions is major from mantle, the Ne and Ar isotope compositions are major from seawater.
出处 《海洋学报》 CAS CSCD 北大核心 2003年第4期36-42,共7页
基金 国家重点基础研究发展规划项目课题资助项目(G2000046701) 国家自然科学基金(40176020)
关键词 Jade热液区 块状硫化物 流体包裹体 同位素 海洋地球化学 He-Ne-Ar isotopes seafloor massive sulfides Jade hydrothermal field
  • 相关文献

参考文献28

  • 1侯增谦,李延河,艾永德,唐绍华,张绮玲.冲绳海槽活动热水成矿系统的氦同位素组成:幔源氦证据[J].中国科学(D辑),1999,29(2):155-162. 被引量:28
  • 2曾志刚,蒋富清,翟世奎,秦蕴珊,侯增谦.冲绳海槽中部Jade热液活动区中海底热液沉积物的硫同位素组成及其地质意义[J].海洋学报,2000,22(4):74-82. 被引量:14
  • 3曾志刚,蒋富清,秦蕴珊,翟世奎,侯增谦.冲绳海槽中部Jade热液活动区中块状硫化物的稀土元素地球化学特征[J].地质学报,2001,75(2):244-249. 被引量:21
  • 4CLARKE W P, BEG M A, CRAIG H. Excess ^3He in the sea: evidence for terrestrial primordial helium[J]. Earth and Planetary Science Letters, 1969, 6 : 213--220.
  • 5JENKINS W J, EDMOND J M, CORLISS J B. Excess ^3He and ^4He in the Galapagos submarine hydrothermal waters[J ].Nature, 1978, 272: 156--158.
  • 6LUPTON J E, KLINKHAMMER G P, NORMARK W R, et al. Helium-3 and manganese at the 21^*N East Pacific Rise hydrothermal site[J]. Earth and Planetary Science Letters, 1980, 50: 115--127.
  • 7CRAIG H, HORIBE Y, FARLEY K A, et al. Hydrothermal vents in the Mariana Trough: results of the first ALVIN dives[J]. EOS, 1987, 68:1 531.
  • 8BUTTERFIELD D A, MASSOTH G J, MCDUFF R E, et al. Geochemistry of fluids from Axial Seamount hydrothermal emissions study vent field, Juan de Fuca Ridge: subseafloor boiling and subsequent fluid-rock interaction[J]. Journal of Geophysical Research, 1990, 95:12 895--12 921.
  • 9BAKER E T, LUPTON J E. Changes in submarine hydrothermal ^3He/heat ratios as an indicator of magmatic/tectonic activity[J]. Nature, 1990, 346: 556--558.
  • 10JEAN-BAPTISTE P, FOUQUET Y. Abundance and isotopic composition of helium in hydrothermal sulfides from the East Pacific Rise at 13^*N[J]. Geochimica et Cosmochimica Acta, 1996, 60: 87--93.

二级参考文献26

共引文献67

同被引文献123

引证文献6

二级引证文献36

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部