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1.
A simple, rapid and precise method is described for determining trace elements by laser ablation (LA)-ICP-MS analysis in bulk geological materials that have been prepared as lithium borate glasses following standard procedures for XRF analysis. This approach reliably achieves complete sample digestion and provides for complementary XRF and LA-ICP-MS analysis of a full suite of major and trace elements from a single sample preparation. Highly precise analysis is enabled by rastering an ArF excimer laser (λ= 193nm) across fused samples to deliver a constant sample yield to the mass spectrometer without inter-element fractionation effects during each analysis. Capabilities of the method are demonstrated by determination of twenty five trace elements (Sc, Ti, V, Ga, Rb, Sr, Y, Zr, Nb, Cs, Ba, REE, Hf, Ta, Pb, Th and U) in a diverse range of geological reference materials that includes peridotites, basalts, granites, metamorphic rocks and sediments. More than 90% of determinations are indistinguishable from published reference values at the 95% confidence level. Systematic bias greater than 5% is observed for only a handful of elements (Zr, Nb and U) and may be attributed in part to inaccurate calibration values used for the NIST SRM 612 glass in the case of Zr and Nb. Detection limits for several elements, most notably La, are compromised at ultra-trace levels by impurities in the lithium borate flux but can be corrected for by subtracting appropriate procedural blanks. Reliable Pb analysis has proved problematic due to variable degrees of contamination introduced during sample polishing prior to analysis and from Pt-crucibles previously used to fuse Pb-rich samples. Scope exists for extending the method to include internal standard element/isotope spiking, particularly where integrated XRF analysis is not available to characterise major and trace elements in the fused lithium borate glasses prior to LA-ICP-MS analysis.  相似文献   
2.
辽东硼矿赋存于辽吉裂谷带的古元古代火山—沉积岩系之中,属沉积—变质型硼矿床,主矿区包括有后仙峪硼镁矿、翁泉沟硼铁矿和砖庙—杨木杆硼镁矿,一直以来是我国硼矿石的主产地。本次研究在后仙峪硼矿区采集了矿区外围的条痕状混合花岗岩(DSQ-08)和矿体上盘侵位于电英岩之中的含电气石混合花岗岩(HXY-19),挑选出其中的锆石单矿物进行LA-MC-ICP-MS测年。条痕状混合花岗岩中锆石的核部具有岩浆振荡环带,Th/U值为0.64~0.96,~(207)Pb/~(206)Pb年龄为2240±4Ma;含电气石混合花岗岩中锆石的内核和边部均具有极为清晰的岩浆振荡环带,Th/U值分别为0.12~1.05和0.41~1.08,~(207)Pb/~(206)Pb年龄分别记录了2157±6Ma和1932±26Ma两次锆石生长事件。含电气石的混合花岗岩的锆石边部形成于混合岩化过程之中,记录了辽河群下部岩石在1.9Ga左右发生的部分熔融作用事件,具有重要的地质意义。矿区外围的条痕状混合花岗岩和矿体周缘含电气石混合花岗岩的核部岩浆年龄较为接近,说明两种岩石可能均由古元古代的火山—沉积岩,在1.9Ga左右经部分熔融作用形成。因此,结合前人在后仙峪硼矿区内进行的硼同位素地球化学和岩相学方面的研究成果,我们认为后仙峪硼矿区混合花岗岩的锆石核部U-Pb年龄可基本确定辽吉裂谷早期的超基性火山岩和酸性火山岩的喷发、海相蒸发沉积事件均发生于2240~2157Ma左右,该时期的蒸发沉积作用初步形成硼酸盐矿;后期强烈的部分熔融和混合岩化作用发生在1932±26Ma,在超基性火山岩保护下,硼矿发生变质和小规模的迁移,形成了硼镁矿、硼镁铁矿及矿体周缘的电英岩和含电气石混合花岗岩。  相似文献   
3.
袁复礼石是一种Mg、Fe ̄(3+)、Al和Ti的硼酸盐新矿物,发现于辽宁省宽甸县砖庙硼矿区。该矿物黑色,近不透明,金刚光泽一半金属光泽。反射色亮灰,内反射深红褐色。非均质性弱,偏光色红褐。晶体呈细柱状,0.1×0.2×1mm。晶体化学式为:空间群:H=5-6,VHN_(50)=843kg/mm ̄2。{100}解理完全。红外光谱吸收谱带为:1387,1210,1024,951,733,600,510和408cm ̄(-1)。穆斯堡尔谱证明,以三价铁为主,二价铁较少。Fe ̄(3+)占据M(1)晶位,Fe ̄(2+)占据M(1)和M(2)晶位。袁复礼石为硼钛镁石的富Fe ̄(3+)类似物。  相似文献   
4.
作为研究四元体系Na2B4O7-Na2CO3-NaHCO3-NaBO2-H2O的开端,测定了三元体系Na2B4O7-NaHCO3-H2O和Na2CO3-NaBOH2-H2O在0℃、15℃-45℃时的溶解度,绘制了相应的组成-性质图。两个三元体系的溶度图在研究温度范围内均属于低共饱型,平衡固相为组分化合物或其水合物。  相似文献   
5.
辽宁宽甸地区砖庙硼矿区的硼矿体呈层状或透镜状赋存于古元古代辽河群里尔峪组火山—沉积建造下部的蛇纹石化大理岩之中。本研究对矿区内外的伟晶岩和变粒岩中的电气石进行了LA-MC-ICP-MS硼同位素微区原位测试,分析了矿床成因;同时对栾家沟矿段矿体上盘含电气石变粒岩和斜长角闪岩进行了SHRIMP锆石U-Pb定年,探讨了成矿时代。得到以下数据和认识:1矿区伟晶岩中电气石的δ11 B为10.9‰~12.7‰,变粒岩中电气石的δ11B为5.7‰~7.6‰,矿区外伟晶岩中电气石的δ11B为-9.9‰~-9.2‰,变粒岩中电气石的δ11 B为-8.3‰~-5.9‰。硼同位素组成往外降低的现象说明,围岩及侵位其中的伟晶岩的B同位素组成均受硼矿床影响,硼矿可能是海相蒸发沉积成因;2含电气石变粒岩核部岩浆锆石的207 Pb/206 Pb加权平均年龄为2174±10Ma,代表了辽吉裂谷早期的火山喷发时代,亦大致代表了初始的含硼蒸发岩的沉积时代上限,根据硼同位素研究结果,可将宽甸地区硼矿的初始沉积成矿时代限定在2.17Ga;3斜长角闪岩重结晶锆石207 Pb/206 Pb加权平均年龄为1869±28Ma,代表了吕梁运动所引起的区域构造热事件和混合岩化作用的时间。  相似文献   
6.
正1 Introduction A salt lake is a naturally occurring complex body of water and salt interaction.More than 700 salt lakes are widely distributed in the area of the Qinghai-Tibet Plateau.Most of the salt lakes are famous for their abundance of lithium,potassium,magnesium,and boron resources.It is  相似文献   
7.
Gaotaigou borate deposit in Ji'an area, southeastern Jilin, is located in the easten end of Liaoning-Jilin (Liaoji)Proterozoic paleo-rift, which is a medium-sized deposit and makes up 67% of the total borate reserves in Jilin Province.The original borate ore bodies were formed by sedimentary exhalative process in Paleoproterozoic, but were activated and enriched by later metamorphism. In late stage of metamorphism, hydrothermal fluid of metamorphic origin made wallrocks be altered and the borate ore bodies be reformed. Ore bodies are strictly controlled by strata and their lithologies. In addition, the shape and spatial distribution of ore bodies are also defined by the Gaotaigou syncline. Combined with the ore-controlling factors and mineralizing features, it has been proposed that Gaotaigou borate deposit is a metamorphosed and hydrothermally altered sedimentary exhalative deposit.  相似文献   
8.
9.
Gaotaigou borate deposit in Ji'an area, southeastern Jilin, is located in the easten end of Liaoning-Jilin (Liaoji) Proterozoic paleo-rift, which is a medium-sized deposit and makes up 67% of the total borate reserves in Jilin Province. The original borate ore bodies were formed by sedimentary exhalative process in Paleoproterozoic, but were activated and enriched by later metamorphism. In late stage of metamorphism, hydrothermal fluid of metamorphic origin made wallrocks be altered and the borate ore bodies be reformed. Ore bodies are strictly controlled by strata and their lithologies. In addition, the shape and spatial distribution of ore bodies are also defined by the Gaotaigou syncline. Combined with the ore-controlling factors and mineralizing features, it has been proposed that Gaotaigou borate deposit is a metamorphosed and hydrothermally altered sedimentary exhalative deposit.  相似文献   
10.
用电化学方法测量了Mg_2B_2O_5晶须增强AZ91D镁基复合材料在3.5%NaCl溶液中的开路电位、动电位极化曲线和交流阻抗,研究了晶须体积分数对镁合金基体耐腐蚀性能的影响,并利用SEM和XRD表征了腐蚀后复合材料表面的微观形貌和相组成。结果表明,随着Mg_2B_2O_5晶须体积分数的增加,AZ91D镁基复合材料的耐腐蚀性逐渐提高。当硼酸镁晶须的体积分数为35%时,材料的自腐蚀电位提高0.2V以上,自腐蚀流密度降低了1个数量级;SEM测试表明,复合材料表面生成了一层晶须增韧的腐蚀钝化膜,对基体起到保护作用。  相似文献   
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