吉林大学学报(地球科学版) ›› 2023, Vol. 53 ›› Issue (3): 904-919.doi: 10.13278/j.cnki.jjuese.20210320

• 地质与资源 • 上一篇    下一篇

 长白山天池火山区黑石沟玄武岩墙成因及其构造意义

闫东晗1,2,李萌萌1,徐智涛1,孙立影2,马飞2,韩迪2   

  1. 1.中国地震局火山研究所,长春130117
    2.吉林省地震局,长春130117
  • 收稿日期:2021-10-12 出版日期:2023-05-26 发布日期:2023-05-26
  • 通讯作者: 徐智涛(1987—),男,工程师,主要从事陆相火山岩-次火山岩与浅成热液型铅锌多金属矿床成因方面的研究,E-mail:xuzhjtao@163.com
  • 作者简介:闫东晗(1994—),男,研究实习员,主要从事构造地质方面的研究,E-mail:yandonghan@yeah.net
  • 基金资助:
    中国工程院院地合作项目(JL2021-03-1);吉林长白山火山国家野外科学观测研究站基金(NORSCBS22-05);吉林省地震局青年科技发展基金(JZQ-202309)

 Genesis and Its Tectonic Significance of Heishigou Basaltic Lava Dyke in Tianchi Volcanic Area, Changbai Mountain

Yan Donghan1,2, Li Mengmeng1, Xu Zhitao1, Sun Liying2, Ma Fei2, Han Di2   

  1. 1. Institute of Volcanology, China Earthquake Administration, Changchun 130117, China
    2. Jilin Earthquake Agency, Changchun 130117, China
  • Received:2021-10-12 Online:2023-05-26 Published:2023-05-26
  • Supported by:
    Supported by the Academy-Locality Cooperation Project of Chinese Academy of Engineering (JL20121-03-1),the National Observation and Research Station Fundation of Jilin Changbaishan Volcano (NORSCBS22-05) and the Youth Science and Technology Development Fundation of Jilin Earthquake Agency (JZQ-202309)

摘要: 为了进一步了解天池火山黑石沟地区与中晚更新世火山活动有关的玄武岩墙的成因及构造背景,在遥感解译和野外地质调查基础上,开展了岩体的元素地球化学、全岩Sr-Nd同位素和年代学分析。结果表明:1)玄武岩墙主量元素具有偏高的MgO、CaO质量分数和低的Na2O质量分数,属于钾质、准铝质、亚碱性玄武岩系列。其显著富集Li、Cs、Be、Rb、Ba、Sr等大离子亲石元素(LILE),弱富集Nb、Ta、Zr、Hf、U、Th等高场强元素(HFSE),对应高场强元素Zr/Hf、Nb/Ta和Th/U值分别为40.92~45.10、15.77~16.34和3.49~3.76。2)全岩中的(87Sr/86Sr)i与(143Nd/144Nd)i值范围分别为0.704 570~0.704 690和0.512 552~0.512 571,对应的εNd(t)值范围在0.87~1.45之间。岩墙中K-Ar成岩年龄(0.35~0.34 Ma)及火山区岩浆-构造演化现有认识综合表明,该期次玄武质岩浆作用在晚更新世千叶阶段,成岩母岩浆具有富集Ⅰ型地幔源特征,岩浆上升过程中有少量下地壳组分加入,整体显示出洋岛玄武岩(OIB)特点。鉴于火山区玄武岩墙的形成及同期次火山活动发生在0.35~0.34 Ma的挤压构造环境中,推测其可能与太平洋板块俯冲到欧亚东北部陆块之后的回撤或下沉有关。

关键词: 元素地球化学, Sr-Nd同位素, 玄武岩墙, 构造意义, 天池火山区, 长白山

Abstract: In order to further understand the origin and tectonic setting of basaltic dyke related to Middle and Late Pleistocene volcanic activities in the Heishigou area of Tianchi volcano, based on remote sensing interpretation and field geological investigation, the  geochemistry, whole rock Sr-Nd isotope and geochronology analysis of the basaltic dykes were carried out. The results show that: 1) The major elements of the dykes have relatively high MgO, CaO, K2O and relatively low Na2O, belonging to the series of potassium, metaaluminous and subalkaline basalts. They are enriched in LILEs, such as Li, Cs, Be, Rb, Ba and Sr, and weakly enriched in HFSEs, such as Nb, Ta, Zr, Hf, U and Th, and the corresponding ratios of Zr/Hf, Nb/Ta and Th/U are 40.92-45.10, 15.77-16.34 and 3.49-3.76, respectively. 2) The values of (87Sr/86Sr)i and (143Nd/144Nd)i in the whole rocks range from 0.704 570 to 0.704 690 and 0.512 552 to 0.512 571, respectively, the εNd (t) values range from 0.87 to 1.45. The K-Ar isotopic ages of (0.35-0.34 Ma) obtained by previous research in dykes and tectonic-magmatic evolution together suggest that the basaltic magmatism occurred in the Chibanian stage of Late Pleistocene, and the diagenetic parent magma has the characteristics of enriched Ⅰ-type mantle source, with a small amount of lower crust components were added during the ascent of the magma, showing the characteristic of ocean island basalt (OIB). The formation of the basalt dykes and the contemporaneous volcanic activities occurred in a compressional tectonic environment at 0.35-0.34 Ma, which may be related to the rollback or subsidence of the Pacific plate after it was subducted into the northeastern Eurasia continent.

Key words: element geochemistry, Sr-Nd isotope, basaltic dyke, tectonic significance, Tianchi volcanic area, Changbai Mountain ,  

中图分类号: 

  • P59
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