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WU Meiren, CHEN Qi, WANG Xianguang, CHEN Guohua, WAN Haozhang, YAN Jiayong, OUYANG Yongpeng. Geochemistry and petrogenesis of the Zaolin basanite in the northeastern Jiangxi Province[J]. GEOLOGY IN CHINA, 2019, 46(4): 850-860. DOI: 10.12029/gc20190415
Citation: WU Meiren, CHEN Qi, WANG Xianguang, CHEN Guohua, WAN Haozhang, YAN Jiayong, OUYANG Yongpeng. Geochemistry and petrogenesis of the Zaolin basanite in the northeastern Jiangxi Province[J]. GEOLOGY IN CHINA, 2019, 46(4): 850-860. DOI: 10.12029/gc20190415

Geochemistry and petrogenesis of the Zaolin basanite in the northeastern Jiangxi Province

Funds: 

China Geological Survey Program 121201103000150017

China Geological Survey Program 12120113065300

China Geological Survey Program DD20160346

China Geological Survey Program DD20160082

China Geological Survey Program DD20190012

Jiangxi Provincial Geological Exploration Fund Management Center [2015]00-13

Welfare Research Program of Ministry of Land and Resources 201411035

Jiangxi Geological and Mineral Exploration and Development Bureau Foundation JGMEDB[2017]78

More Information
  • Author Bio:

    WU Meiren, male, born in 1966, senior engineer, mainly engages in geological prospecting and research; E-mail:1067992037@qq.com

  • Corresponding author:

    OUYANG Yongpeng, male, born in 1988, master, engineer, mainly engages in geological exploration; E-mail:yongpeng0524@163.com

  • Received Date: January 09, 2019
  • Revised Date: June 24, 2019
  • Available Online: September 25, 2023
  • Two Cenozoic basanite dykes were newly discovered in the Zhuxi ore-concentration area, northeastern Jiangxi Province, eastern China. They have high SiO2 (41.08%-42.94%), Na2O+K2O (4.95%-6.30%), TiO2 (2.19%-2.43%) contents, and high Mg# (0.61 -0.65). Geochemistry characteristics of these basanite dykes show they are enriched in Nb, Ta, Th, Zr, Ni, Cr, Sc, while depleted in Ba, Ti, K, and P. Their ∑REE values are from 299.16×10-6 to 375.00×10-6% with LREE/HREE ratios of 5.45-6.71 and δEu values of 0.88 to 0.94. According to the geochemical discrimination diagrams and the ratios of incompatible elements, we suggest that the basanite dykes were derived from partial melting of garnet forsterite (0.2%-0.5%) and herzolite (0.5%-1%), which may be caused by upwelling of carbonate melt in the asthenosphere mantle in response of the subduction of the Paleo-Pacific Ocean.

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