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发射光谱法快速测定银锡铜铅锌钼铍 总被引:4,自引:9,他引:4
使用两台摄谱仪同时接收光谱,以K2S2O7、NaF、Al2O3为缓冲剂,Ge、Sb为内标,测定化探样品中7项元素,检出限(μg/g)分别是:Ag0.02,Sn0.5,Cu 1,Pb 2,Zn 10,Mo 0.2,Be 0.5;精密度(RSD,n=20)在2.9%~16.8%。采用国家一级标准物质验证方法可靠性,测定结果与标准值一致。 相似文献
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泡沫塑料分离富集原子吸收法测定氰化液中金和银 总被引:1,自引:0,他引:1
研究了装有聚醚型泡沫塑料和三苯基膦负载聚醚型泡沫塑料的吸附柱对Au,Ag的分离富集的条件,并应用于氰化液、解吸液和电解液中Au和Ag测定中的预富集,Au和Ag的回收率均>98%。对含Au量为0.91μg/ml,含Ag量0.36μg/ml的试样,经过10次测定,其相对标准偏差分别为1.22%和2.31%。 相似文献
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用加压氰化浸出法提取金和银的工艺试验 总被引:3,自引:0,他引:3
针对常规氰化浸出提取Au、Ag工艺中浸出时间长,药品消耗大,金、银回收率低等现状,在保持原有选矿工艺流程不变的基础上,在氰化浸出环节上采用自行设计的高压浸出装置,对矿石进行加压氰化浸出提取Au、Ag工艺试验。通过改变浸出过程的压力,增加浸出溶液的O2含量,浸出时间由原来的一个流程24h缩短到45min;Au、Ag浸出率指标达到93.2%和73.0%,分别提高了19.6%和12.0%。 相似文献
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电感耦合等离子体质谱法直接同时测定地球化学样品中镓铟铊 总被引:6,自引:7,他引:6
报道了用HF—HNO3—HClO4分解样品,以^103Rh为内标元素,采用电感耦合等离子体质谱法直接同时测定地球化学样品中痕量镓、铟、铊的方法。方法检出限(6s)Ga、In、Tl分别为0.059、0.002、0.004μg/g,方法精密度(RSD,n=12)为2.6%—5.3%。用国家一级标准物质进行验证,测定结果与标准值吻合。 相似文献
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容量法测定方铅矿中高含量银 总被引:1,自引:0,他引:1
报道了采用HNO3-H2SO4-HF溶样,KI容量法测定硅、铅含量较高样品中高含量银的方法。试验了滴定反应的酸度条件。在1.6mol/L HNO3介质中,银与碘化钾反应,生成碘化银沉淀。银的标准加入回收率为97.8%-100.4%。精密度试验,相对标准偏差为0.92%(n=11)。该法可溶解含硅银矿及角银矿中的银。方法已被用于测定矿石中高含量银。 相似文献
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发射光谱法测定勘查地球化学样品中银硼锡钼铅 总被引:21,自引:13,他引:21
以K2S2O7、NaF、Al2O3和炭粉为缓冲剂,Ge为内标,电弧发射光谱法测定勘查地球化学样品中Ag、B、Sn、Mo、Pb。方法检出限为Ag0.013μg/g、B0.83μg/g、Sn0.23μg/g、Mo0.073μg/g、Pb0.37μg/g。方法精密度(RSD,n=12)为Ag4.2%~11.3%、B3.2%~6.5%、Sn2.6%~7.1%、Mo2.9%~6.3%、Pb1.57%~5.18%。测定了国家一级地球化学标准物质,结果与标准值相符。 相似文献
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在硫酸溶液中,以Ag2SO4为摧化剂,加入过量K2Cr2O7标准溶液氧化土壤中的有机碳,然后用FeSO4标准溶液滴定剩余的K2Cr2O7标准溶液,返滴定法测定有机碳含量。实验测得S为0.0186(n=15),RSD%为3.60(X^-=0.518%);到定土境和水系沉积物等国家标准物质中有机碳的含量,相对误差小于11.5%。 相似文献
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原子荧光光谱法测定地质样品中的痕量锗 总被引:7,自引:1,他引:7
分析了溶矿过程中HNO3、H2SO4、HClO4、H3PO4等对Ge的影响,采用AgNO3滤气装置消除气相干扰,测定了地质样品中的痕量锗,方法检出限为0.06μg/g,用土壤国家一级标准物质GBW 07401~GBW 07408验证方法,结果与标准值相符,其相对标准偏差(RSD,n=12)为3.66%~6.11%。 相似文献
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黄原酯棉(CCX)是金的良好的吸附体,本文将吸附了金的CCX用灰化法解脱。操作简单快速、成本低,灰化时无臭味、残渣少。浸取液用三正辛胺-TBP(1:3)混合萃取-金试剂液珠比色法测定Au,其液珠凝聚好,灵敏度高,选择性和稳定性都比单用TBP有所提高。方法的测定范围0.0005-xx g/t、配备金的野外快速分析箱,可作现场分析。 相似文献
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Gilles Serge Odin 《Comptes Rendus Geoscience》2002,334(6):409-414
Lithostratigraphy, physicochemical stratigraphy, biostratigraphy, and geochronology of the 77–70 Ma old series bracketing the Campanian–Maastrichtian boundary have been investigated by 70 experts. For the first time, direct relationships between macro- and microfossils have been established, as well as direct and indirect relationships between chemo-physical and biostratigraphical tools. A combination of criteria for selecting the boundary level, duration estimates, uncertainties on durations and on the location of biohorizons have been considered; new chronostratigraphic units are proposed. The geological site at Tercis is accepted by the Commission on Stratigraphy as the international reference for the stratigraphy of the studied interval. To cite this article: G.S. Odin, C. R. Geoscience 334 (2002) 409–414. 相似文献
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Muriel Rocher Stéphane Baize Stéphane Jaillet Edward Marc Cushing Yannick Lozach Francis Lemeille 《Comptes Rendus Geoscience》2003,335(8):701-708
Calcite samples were extracted both from the rock matrix and the superficial coating of a karstified fault plane of an underground quarry, located in the eastern border of the Paris basin. The karstification is dated as Quaternary. Analysis of mechanical calcite twinning reveals that only the calcite matrix has also undergone a compression trending WNW that can be attributed to the Mio-Pliocene alpine collision. Both coating and matrix have undergone a strike-slip regime with σ1 roughly trending north–south, that could correspond to the regional present-day state of stress, a strike-slip compression rather trending NNW, modified by local phenomena. To cite this article: M. Rocher et al., C. R. Geoscience 335 (2003). 相似文献
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正20141520 Bo Ying(Key Laboratory of Metallogeny and Mineral Assessment,MLR,Beijing 100037,China);Liu Chenglin Saline Spring Hydrochemical Characteristics and Indicators for Potassium Exploration in Southwestern and Northern Tarim Basin,Xinjiang(Acta Geoscientica Sinica,ISSN1006-3021,CN11-3474/P,34(5),2013,p.594-602,5 illus.,3 tables,28 refs.) 相似文献
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正20141243Chen Ge(Hangzhou Research Institute of Petroleum Geology,PetroChina,Hangzhou 310023,China);Si Chunsong Study on Sedimentary Numerical Simulation Method of Fan Delta Sand Body(Journal of Geology, 相似文献
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正20142599Chen Sanming(Guangxi Key Laboratory of Concealed Deposits Exploration,Guilin University of Technology,Guilin541004,China);He Yuzhou Block Model and Reserves Estimation of Panzhihua Iron Deposit Based on 3D Geological Modeling(Journal of Guilin University of Technology,ISSN1674-9057,CN45-1375/N,33(4),2013,p.610-615,9illus.,1table,15refs.) 相似文献
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正20140594 Bai Daoyuan(Hunan Institute of Geology Survey,Changsha 410016,China);Zhong Xiang Faults in the Jingzhou Basin and Their Tectonic Settings(Geotectonica et Metallogenia,ISSN1001-1552,CN44-1595/P,37(2),2013,p.173-183,6illus.,59refs.)Key words:basin evolution,tectonic setting,South China In the Upper Paleozoic and Jurassic se- 相似文献
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正20141912Cao Hui(State Key Laboratory for Continental Tectonics and Dynamics,Institute of Geology,Chinese Academy of Geological Sciences,Beijing 100037,China)Gravitational Collapse and Folding during Orogenesis:A Comparative Study of FIA Trends and Fold Axial Plane Traces(Geology in China,ISSN1000-3657,CN11-1167/P,40(6),2013,p.1818-1828,9illus.,35refs.,with 相似文献
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正20141609 Chen Guiying(College of Earth Sciences,Guilin University of Technology,Guilin 541004,China);Han Nairen New Materials of Stylophora from the Upper Cambrian of the Jingxi Area,Guangxi,South China(Acta Palaeontologica Sinica,ISSN0001-6616,CN32-1188Q,52(3),2013,p.288-293,2 illus.,12 refs.)Key words:Stylophora,Guangxi 相似文献
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正20140634 Cao Lingmin(Key Laboratory of Marine Geology and Environment,Institute of Oceanology,Chinese Academy of Sciences,Qingdao 266071,China);Xu Yi Finite Difference Tomography of the Crustal Velocity Structure in Tengchong,Yunnan Province(Chinese Journal of Geophysics,ISSN0001-5733,CN11-2074/P,56(4),2013,p.1159-1167,6illus.,35refs.,with English abstract) 相似文献