排序方式: 共有49条查询结果,搜索用时 78 毫秒
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向阳坪矿床作为苗儿山矿田近年来新发现的花岗岩型铀矿床,发育大量原生沥青铀矿脉。为了进一步厘清铀矿床铀成矿年龄体系,采用LA-ICP-MS测试技术,对钻孔中揭露的脉状沥青铀矿开展了微区原位U-Pb同位素定年及稀土元素特征研究。LA-ICP-MS分析结果显示,向阳坪地区存在2期铀矿化,U-Pb年龄为51.59 Ma和41.10 Ma,前者为向阳坪矿床主成矿年龄,后者为后期流体活动导致沥青铀矿蚀变的热事件时间,分别与沙子江矿床主成矿期65~50 Ma、45~40 Ma相吻合。沥青铀矿稀土元素特征表明,稀土元素总量相对较高,具有明显的负Eu异常,其配分模式呈海鸥型,与低-高品位铀矿石的稀土元素配分模式相似,而与新鲜花岗岩、蚀变花岗碎裂岩的"右倾型"相区别。沥青铀矿稀土元素与铀元素的迁移具有同步性,为低温下晶出沉淀的产物。 相似文献
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地质部门实行经济责任制还处于摸索阶段,现在各地比较普遍采用的经济责任制形式是局对队实行设计预算包干和队内实行定、包、奖,有些地区的地勘单位在四探工程中试行超定额计件工资制,也有少数区调队试行图幅包干,在一部分对外广开门路的基层单位还试行定额利润上缴,自计盈亏,超额利润留成,凡此等等,都不同程度地调动了职工的生产积极 相似文献
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春季西南黄海与绿潮相关的物理环境特征 总被引:1,自引:1,他引:0
Massive green tides caused by Ulva prolifera in the Yellow Sea have occurred every summer since 2007 and have caused huge economic losses for local governments. The Subei(North Jiangsu Province, China) Shoal, with its large-scale Porphyra aquaculture, has been regarded as the most important source of U. prolifera for green tides.To reveal the physical mechanisms of floating and drifting algae in this area, the characteristics of the current, the temperature, the salinity and suspended particulate matter(SPM) in the southwestern Yellow Sea, especially in the Subei Shoal, were studied. The topography of the radial sand ridges in the Subei Shoal constrains the features of the currents and causes net longitudinal and latitudinal movements. The longitudinal net movement is a dominant dynamic factor that can bring U. prolifera into offshore waters. The amount of gas that is produced by algae during photosynthesis determines whether U. prolifera can float well on the sea surface after it is disposed into the water from Porphyra aquacultural apparatus. The Subei Shoal is characterized by a high turbidity, which can result in significant light attenuation and affect the photosynthesis together with the buoyancy of a U.prolifera in the water. According to satellite remote sensing data from 2012, the three-month-averaged surface SPM(April, May and June) in the Subei Shoal was 140 mg/dm3, and the north of the Subei Shoal(the north of34.5°N), it was 11 mg/dm3. According to the monthly averaged surface SPM in April, the transparency in the Subei Shoal was only 0.1 m, but it often exceeded 2.0 m outside of the Subei Shoal. The results explain why the floating ability of U. prolifera increases significantly once the green algae drifted outside the Subei Shoal. 相似文献
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向阳坪铀矿床是桂北苗儿山地区最具代表性的花岗岩型铀矿床,对该矿床矿石矿物REE开展了微区原位研究并结合前人研究成果进行了综合分析,表明铀黑∑REE介于689.12×10~(-6)~869.31×10~(-6)之间,LREE相对富集,HREE相对亏损具强Eu负异常及Ce正异常,TE_(1,3)值介于1.26~1.33之间,具典型M型四分组效应;沥青铀矿∑REE介于569.73×10~(-6)~3 373.83×10~(-6)之间表现出两种特征:①LREE富集,HREE亏损,轻重稀土元素分馏程度较大具强Eu负异常和弱Ce正异常,配分曲线呈右倾型;②轻重稀土元素分馏程度较小,Eu负异常明显弱Ce负异常,配分曲线呈海鸥型。围岩稀土元素配分模式相似,Y/Ho值范围狭窄,指示具有相同物源;矿石矿物稀土元素与围岩存在较大差异,亲缘性不明显。成矿作用伴随围岩发生蚀变及围岩高铀背景;成矿流体具多阶段、富U-Y-REE特征,铀主要来自深部热液,围岩贡献不显著;矿床定位受构造-岩体联合控制,矿体规模、形态受构造规模、产状控制。 相似文献
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向阳坪铀矿床是近年在苗儿山地区发现的重要矿床,绿泥石化是向阳坪铀矿床重要的蚀变类型和找矿标志。本文对向阳坪矿床发现的铀-绿泥石型矿石的蚀变矿物学特征进行了系统地观察,结合电子探针原位微区分析,查明了绿泥石相关矿物的共生组合关系,获得了其化学定量分析结果,划分了绿泥石的种类及其形成条件,在此基础上探讨了绿泥石性质及其对铀成矿的启示。结果显示,向阳坪铀矿床绿泥石可分为黑云母蚀变型、裂隙充填型、铀矿物相关型和黏土矿物吸附铁镁质转变型4种。铁硅协变图解表明向阳坪矿床主体为铁镁绿泥石,部分为蠕绿泥石,含少量的密绿泥石。据经验公式计算所得绿泥石形成温度变化范围为190~265℃,平均239℃,属中低温热液蚀变,其形成机制包括溶蚀-结晶和溶蚀-迁移-结晶2种。绿泥石化为铀成矿过程提供了所需的环境,促进了铀的活化、迁移并最终沉淀成矿。 相似文献
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随着近年来取得重要找矿突破的普朗斑岩型铜矿的规模化开采,进一步摸清首采区外围资源潜力任务紧迫。遥感技术尤其是国产卫星资源一号02D星等高光谱卫星成功发射,为我国高海拔艰苦地区快速精准识别与矿化相关的蚀变矿物提供了可能。针对以往对植被覆盖区高光谱矿物识别有效性方法探索不足,本文选取普朗铜矿区为研究,采用资源一号02D高光谱遥感数据,使用比值植被指数划分植被覆盖区及非植被覆盖区。基于实测波谱,分层次构建了植被覆盖区及非植被覆盖区与普朗铜矿矿化密切相关的绢云母、绿泥石、绿帘石蚀变特征矿物波谱曲线,并采用匹配滤波方法开展了蚀变矿物填图示范应用。野外验证表明:该方法可有效探测普朗斑岩型铜矿外围尤其是首采区东侧植被覆盖区绢云母等蚀变特征矿物分布信息,结果显示普朗首采区东侧具有较大找矿潜力。 相似文献