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作 者:尹明[1,2] 郭敏[2] 张海东[1] 刘建朝[1] 王得权[1] 陆春云[1]
机构地区:[1]长安大学地球科学与资源学院,陕西西安710054 [2]河南省国土资源研究院,河南郑州450002
出 处:《西北地质》2014年第4期198-208,共11页Northwestern Geology
基 金:中国地质调查局"太行山地区中生代岩浆活动与成矿作用研究"(1212011121076)
摘 要:西石门铁矿床是华北地区最为典型的矽卡岩型铁矿床之一,最新获得金云母40 Ar-39 Ar成矿年龄为(133.1±1.3)Ma、(137.1±1.5)Ma,略老于其成矿母岩(武安杂岩体)形成的年龄(126~136 Ma),这是矛盾的。笔者对角闪正长岩和矽卡岩脉中的锆石进行了LA-ICP-MS U-Pb同位素年代学分析。结果表明,角闪正长岩中锆石呈浅黄色-无色、透明、棱角状、不规则状,振荡环带结构不发育,部分锆石中含棱角状继承锆石内核,206 Pb-238 U年龄加权平均值为(135.6±1.5)Ma,代表了武安杂岩体的结晶年龄。矽卡岩脉中锆石呈棕色,含有少量细小的包裹体,呈透明-半透明,相对于岩浆锆石具有低的Th、U、REE含量及Th/U值(Th=(222.37~1541.11)×10^-6,U=(218.44~989.17)×10^-6,Th/U=0.90~1.56),并具有强烈的Ce正异常(δCe=4.46~196.22)和Eu负异常(δEu=0.59~0.80),206Pb-238 U年龄介于124.9~133.0Ma,加权平均值为(129.4±2.6)Ma,代表了热液锆石的形成年龄,说明129 Ma是该西石门地区主要成矿期。Xishimen iron deposit is one of the typical skarn iron deposits in northern China. The new 40Ar/39Ar mineralization ages of phlogopite in Xishimen iron deposit are 133. lil. 3 Ma and 137.1±1.5 Ma, slightly older than the ages (126-136 Ma) of mineralization parent rocks (Wu' an complex), which is unreasonable. This paper deals with the analyses of geochronology of the metallogenic event on the basis of LA-ICP-MS zircons U-Pb dating for hornblende syenite and skarn dikes developed in this area. The zircons of hornblende syenite are light yellow-colorless, transparent, angular and irregular with weak oscillatory zonings, and a few zircons have irregular inherited zircon core. LA-ICP-MS U-Pb analyses of these zircons yields a weighted mean 206pb/238 U concordia age of 135.6±1.5 Ma, which represents the crystallization age of the Wu' an com- plex. Zircons of skarn dikes are brown, transparent to translucent. In contrast to magmatic zir- cons, hydrothermal zircons have low Th, U, total REE contents (Th=222.37×10^-6-1 541.11×10^-6, U=218. 44×10^10-6 --989.17X10-6) and Th/U value (Th/U=0. 90-1. 56). They display a strong positive Ce anomaly (δCe=4. 46-196. 22) and negative Eu anomaly (δEu=0. 59--0. 80). Zircons from skarn dikes yielded 206 pb/238 U ages ranging from 124. 9 Ma to 133.0 Ma with a weighted mean age of 129.4±2.6 Ma, which is interpreted as the age of crystallization of hydro- thermal zircons, showing that 129 Ma is the chief metallogenie period in Xishimen area.
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