文章摘要
姜文婷,李欢,李小罗.甘肃狼娃山铁矿床火山岩地球化学特征及其对铁成矿的制约[J].矿产勘查,2024,15(4):550-566
甘肃狼娃山铁矿床火山岩地球化学特征及其对铁成矿的制约
Geochemical characteristics of volcanic rocks and their constraints on Fe mineralization in the Langwashan Fe deposit, Gansu Province
投稿时间:2023-07-03  修订日期:2023-08-29
DOI:10.20008/j.kckc.202404006
中文关键词: 主微量元素  火山岩  找矿勘查  狼娃山铁矿床  北山成矿带
英文关键词: major and trace elements  volcanic rocks  prospecting and exploration  Langwashan Fe deposit  Beishan ore belt
基金项目:本文受湖南省科技创新计划(2021RC4055)资助。
作者单位邮编
姜文婷 有色金属成矿预测与地质环境监测教育部重点实验室3
中南大学地球科学与信息物理学院湖南 长沙 410083 
410083
李欢* 有色金属成矿预测与地质环境监测教育部重点实验室3
中南大学地球科学与信息物理学院湖南 长沙 410083 
410083
李小罗 长沙有色冶金设计研究院有限公司湖南 长沙 410019 410019
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中文摘要:
      狼娃山铁矿床位于中亚造山带西南缘的北山多金属成矿带中,为甘蒙北山地区主要的铁矿床之一。为探寻狼娃山铁矿床中火山岩对铁成矿的影响,本文通过系统的野外地质调查、全岩及单矿物主微量元素分析等方法,阐明了狼娃山矿床下石炭统火山岩的构造背景、成矿物质来源及火山活动对铁成矿的影响。研究结果表明,该矿床火山岩形成于晚古生代活动大陆边缘局部伸展作用环境;矿床下石炭统白山组火山岩与火山口相火山岩具有极为相似的岩相学特征,铁矿的产出受控于喷发—喷溢相岩层;火山岩具有高的SiO2、Na2O、K2O、CaO/(Na2O+K2O)、A/CNK(0.85~1.89)值和低的P2O5、TiO2含量,指示了矿体形成主要与喷发过程的岩浆分异作用有关。综合研究认为,狼娃山铁矿床的形成与下石炭统白山组中酸性火山岩具有密切成因联系,未来找矿方向应主要关注于熔结凝灰岩及部分凝灰岩岩层。
英文摘要:
      The Langwashan Fe deposit is located in the Beishan polymetallic metallogenic belt of the southwestern Central Asia Orogen. It is one of the main Fe deposits in the Beishan area of Gansu and Inner Mongolia. In order to explore the influence of volcanic rocks on Fe mineralization in the Langwashan Fe deposit, in this paper, through systematic field geological survey, whole rock and single mineral major and trace element analysis, the metallogenic tectonic background, ore-forming material source, and volcanic activity of the Lower Carboniferous volcanic rocks in the Langwashan deposit are clarified,and the influence of magmatism on Fe mineralization is also constrained. The results show that the volcanic rock of this deposit was mainly formed in the local extensional environment of an active continental margin in late Paleozoic. The volcanic rocks of Lower Carboniferous Baishan formation and volcanic rocks of volcanic crater facies have very similar petrographic characteristics, and the occurrence of Fe ore was controlled by eruptive effusive facies rocks. Volcanic rocks have high SiO2, Na2O, K2O, CaO/(Na2O+K2O), A/CNK (0.85-1.89), whereas low P2O5 and TiO2 contents, indicating that the formation of ore bodies was mainly related to the differentiation of magmatic eruption process. The comprehensive study shows that the formation of the Langwashan Fe deposit was closely related to Lower Carboniferous Baishan intermediate-acidic volcanic rocks, and the future prospecting direction should mainly focus on ignimbrite and some tuff rocks.
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