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Texture and Geochemistry of Multi-stage Hydrothermal Scheelite in the Mamupu Cu-Au-Mo(-W)Deposit,Eastern Tibet:Implications for Tungsten Mineralization in the Yulong Belt
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作者 ZHANG Xiaoxu TANG Juxing +7 位作者 LIN Bin WANG Qin HE Liang YAN Gang SHAO Rui WU Qiang DU Qiu ZHAXI Pingcuo 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2024年第3期701-716,共16页
Multistage tungsten mineralization was recently discovered in the Mamupu copper-polymetallic deposit in the southern Yulong porphyry copper belt(YPCB),Tibet.This study reports the results of cathodoluminescence,trace ... Multistage tungsten mineralization was recently discovered in the Mamupu copper-polymetallic deposit in the southern Yulong porphyry copper belt(YPCB),Tibet.This study reports the results of cathodoluminescence,trace element and Sr isotope analyses of Mamupu scheelite samples,undertaken in order to better constrain the mechanism of W mineralization and the sources of the ore-forming fluids.Three different types of scheelite are identified in the Mamupu deposit:scheelite A(Sch A)mainly occurs in breccias during the prograde stage,scheelite B(Sch B)forms in the chlorite-epidote alteration zone in the retrograde stage,while scheelite C(Sch C)occurs in distal quartz sulfide veins.The extremely high Mo content and negative Eu anomaly in Sch A represent high oxygen fugacity in the prograde stage.Compared with ore-related porphyries,Sch A has a similar REE pattern,but with higher ΣREE,more depleted HREE and slightly lower(^(87)Sr/^(86)Sr)i ratios.These features suggest that Sch A is genetically related to ore-related porphyries,but extensive interaction with carbonate surrounding rocks affects the final REE and Sr isotopic composition.Sch B shows dark(Sch B-I)and light(Sch B-II)domains under CL imaging.From Sch B-I to Sch B-II,LREEs are gradually depleted,with MREEs being gradually enriched.Sch C has the highest LREE/HREE ratio,which indicates that it inherited the geochemical characteristics of fluids after the precipitation of HREE-rich minerals,such as diopside and garnet,in the early prograde stage.The Mo content in Sch B and Sch C gradually decreased,indicating that the oxygen fugacity of the fluids changed from oxidative in the early stages to reductive in the later,the turbulent Eu anomaly in Sch B and Sch C indicating that the Eu anomaly in the Mamupu scheelite is not solely controlled by oxygen fugacity.The extensive interaction of magmatic-hydrothermal fluids and carbonate provides the necessary Ca^(2+)for the precipitation of scheelite in the Mamupu deposit. 展开更多
关键词 SCHEELITE GEOCHEMISTRY Mamupu cu deposit Yulong porphyry copper belt eastern Tibet
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Trace element compositions of pyrite and stibnite:implications for the genesis of antimony mineralization in the Yangla Cu skarn deposit,Northwestern Yunnan,China
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作者 Ping Pan Xinfu Wang +2 位作者 Bo Li Guo Tang Zuopeng Xiang 《Acta Geochimica》 EI CAS CSCD 2024年第3期535-554,共20页
The Yangla Cu skarn deposit is located in the central part of the Jinshajiang Suture Zone,southwest China,with a total reserve of 150 Mt Cu@1.03%.The newly discovered antimony orebodies at the depth of Yangla are stri... The Yangla Cu skarn deposit is located in the central part of the Jinshajiang Suture Zone,southwest China,with a total reserve of 150 Mt Cu@1.03%.The newly discovered antimony orebodies at the depth of Yangla are strictly controlled by the stratum,structure,and lithology,which are lenticular and vein-like within the marble fracture zone,which can provide a window into multistage miner-alization and ore genesis at Yangla.Mineralization can be divided into three types,Cu–Pb–Zn(skarn)pyrite,galena,and sphalerite,Cu(porphyry)chalcopyrite and pyrite,and Sb(hydrothermal)stibnite and pyrite.The mineral assem-blages were stibnite+pyrite+calcite+quartz±minor scheelite in antimony ores.This study presents quantitative measurements of the trace element compositions of pyrite and stibnite from the Yangla antimony ores.Analysis of pyrite with electron probe microanalysis(EPMA)showed enrichment in Co,Ni,Sb,As,and Mo,and deficit in its S and Fe contents when compared to the stoichiometric con-centrations of S and Fe in pyrite.The Sb-related pyrite may belong to sedimentary-reworked genesis and may be modi-fied by hydrothermalfluids,thereby presenting a certain dif-ference(i.e.,crystal morphology,texture,and chemical com-position)compared to the skarn and porphyry Cu-related pyrite in the Yangla Cu skarn deposit.Analysis of stibnite with EPMA and inductively coupled plasma-mass spectrom-etry showed enrichment in As,Pb,Sn,Pb,Cu,and Zn,and presented much higher Sb contents and slightly lower S con-tents when compared to the stoichiometric concentrations of Sb and S in stibnite.Statistical analysis of the stibnite trace elements showed correlations for the elemental pairs Cu–Pb,As–Sb,and Sn–Pb,and the coupled substitution equations Sb^(3+)↔Cu^(+)+Pb^(2+),Sb^(3+)↔As^(3+),and Sn^(2+)↔Pb^(2+)may be the major factors governed the incorporating Cu,Pb,As and Sn within the stibnite.Moreover,this study preliminary shows that the antimony mineralization may belong to a car-bonate replacement hydrothermal genesis at Yangla. 展开更多
关键词 Trace elements PYRITE STIBNITE Substitution mechanisms Antimony mineralization Yangla cu skarn deposit
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Magmatic-hydrothermal Evolution and Mineralization Mechanisms of the Wangjiazhuang Cu(-Mo)Deposit in the Zouping Volcanic Basin,Shandong Province,China:Constraints from Fluid Inclusions
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作者 SHU Lei YANG Renchao +5 位作者 SHEN Kun YANG Deping MAO Guangzhou LI Min LIU Pengrui MA Xiaodong 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2024年第3期679-700,共22页
The Wangjiazhuang Cu(-Mo)deposit,located within the Zouping volcanic basin in western Shandong Province,China,is unique in this area for having an economic value.In order to expound the metallogenetic characteristics ... The Wangjiazhuang Cu(-Mo)deposit,located within the Zouping volcanic basin in western Shandong Province,China,is unique in this area for having an economic value.In order to expound the metallogenetic characteristics of this porphyry-like hydrothermal deposit,a detailed fluid inclusion study has been conducted,employing the techniques of representative sampling,fluid inclusion petrography,microthermometry,Raman spectroscopy,LA-ICP-MS analysis of single fluid inclusions,as well as cathode fluorescence spectrometer analysis of host mineral quartz.The deposit contains mainly two types of orebodies,i.e.veinlet-dissemination-stockwork orebodies in the K-Si alteration zone and pegmatiticquartz sulfide veins above them.In addition,minor breccia ore occurs locally.Four types of fluid inclusions in the deposit and altered quartz monzonite are identified:L-type one-or two-phase aqueous inclusions,V-type vapor-rich inclusions with V/L ratios greater than 50%-90%,D-type multiphase fluid inclusions containing daughter minerals or solids and S-type silicate-bearing fluid inclusions containing mainly muscovite and biotite.Ore petrography and fluid inclusion study has revealed a three-stage mineralization process,driven by magmatic-hydrothermal fluid activity,as follows.Initially,a hydrothermal fluid,separated from the parent magma,infiltrated into the quartz monzonite,resulting in its extensive K-Si alteration,as indicated by silicate-bearing fluid inclusions trapped in altered quartz monzonite.This is followed by the early mineralization,the formation of quartz veinlets and dissemination-stockwork ores.During the main mineralization stage,due to the participation and mixing of meteoric groundwater with magmatic-sourced hydrothermal fluid,the cooling and phase separation caused deposition of metals from the hydrothermal fluids.As a result,the pegmatitic-quartz sulfide-vein ores formed.In the late mineralization stage,decreasing fluid salinity led to the formation of L-type aqueous inclusions and chalcopyrite-sulfosalt ore.Coexistence of V-type and D-type inclusions and their similar homogenization temperatures with different homogenization modes suggest that phase separation or boiling of the ore-forming fluids took place during the early and the main mineralization stages.The formation P-T conditions of S-type inclusions and the early and the main mineralization stages were estimated as ca.156-182 MPa and 450-650℃,350-450℃,18-35 MPa and 280-380℃,8-15 MPa,respectively,based on the microthermometric data of the fluid inclusions formed at the individual stages. 展开更多
关键词 fluid inclusions fluid immiscibility mineralization mechanisms Wangjiazhuang cu(-mo)deposit
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粉末锻造Al_(2)O_(3)颗粒增强Fe–Ni–Mo–C–Cu复合材料的组织与性能
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作者 张旭 史思阳 +5 位作者 张腾雨 田谨 吴亚科 王邃 赵振智 江峰 《粉末冶金技术》 CAS CSCD 北大核心 2024年第3期275-282,共8页
通过粉末锻造技术制备了不同含量微米级Al_(2)O_(3)颗粒强化的Fe–Ni–Mo–C–Cu(Q61)复合材料,并对调质态和淬火态复合材料的组织和性能进行了研究。结果表明:当Al_(2)O_(3)质量分数为0.15%时,增强颗粒在基体内分布均匀;相较于同种状... 通过粉末锻造技术制备了不同含量微米级Al_(2)O_(3)颗粒强化的Fe–Ni–Mo–C–Cu(Q61)复合材料,并对调质态和淬火态复合材料的组织和性能进行了研究。结果表明:当Al_(2)O_(3)质量分数为0.15%时,增强颗粒在基体内分布均匀;相较于同种状态下不添加增强颗粒的单一Q61,调质态复合材料的硬度从HRC 38增至HRC 39.8,屈服强度从1106 MPa增至1121 MPa,延伸率从12%降至6.5%;淬火态复合材料的硬度从HRC 61.5增至HRC 63.2,磨损率从5.27×10^(-6)mm^(3)·m^(-1)·N^(-1)降至3.08×10^(-6)mm^(3)·m^(-1)·N^(-1),低于对比试验用的典型齿轮材料40Cr的磨损率(3.34×10^(-6)mm^(3)·m^(-1)·N^(-1))。当Al_(2)O_(3)质量分数大于0.15%时,Al_(2)O_(3)颗粒逐渐偏聚,虽然调质态下复合材料屈服强度仍继续小幅增加,但塑性严重退化,且淬火态复合材料磨损率增加,耐磨性变差。综合来看,添加0.15%Al_(2)O_(3)颗粒强化Q61复合材料在调质态下具有较高的综合力学性能,而在淬火态下表现出良好的抗摩擦磨损能力。 展开更多
关键词 粉末锻造 Fe–Ni–mo–C–cu复合材料 微观组织 力学性能 摩擦 磨损
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强流脉冲电子束作用下Cu表面合金化Mo研究
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作者 叶莉莎 田娜娜 +3 位作者 张从林 关锦彤 万浩 关庆丰 《真空科学与技术学报》 CAS CSCD 北大核心 2024年第3期258-265,共8页
钼(Mo)与铜(Cu)之间属于二元互不固溶体系,然而结合了Mo的高温硬度和强度以及Cu的导电导热等优异性能的Cu-Mo复合材料却在电触头、散热元件等领域有着重要的应用。存在的问题是Cu-Mo之间的固溶度极低,难以实现合金化,从而极大地限制了Cu... 钼(Mo)与铜(Cu)之间属于二元互不固溶体系,然而结合了Mo的高温硬度和强度以及Cu的导电导热等优异性能的Cu-Mo复合材料却在电触头、散热元件等领域有着重要的应用。存在的问题是Cu-Mo之间的固溶度极低,难以实现合金化,从而极大地限制了Cu-Mo复合材料优异性能的发挥。该研究尝试采用强流脉冲电子束(HCPEB)技术实现Cu-Mo互不固溶体系的合金化,从而达到改善材料表面力学性能的目的。利用HCPEB辐照预制Mo涂层粉的Cu基体进行辐照,研究不同脉冲次数对样品固溶度、相结构和表面硬度的影响。结果表明,HCPEB辐照可以有效提高Cu-Mo互不固溶体系的固溶度,15次辐照后,Mo在Cu基体中的固溶度达到最高;随辐照次数增加,Cu(Mo)固溶体受热脱溶影响导致合金层中的固溶度反而有所降低。微观结构图像显示,15次HCPEB辐照后样品表层中可观察到大量的球形以及摩尔形态的Mo颗粒;当辐照次数增加到35次后,Mo颗粒大多倾向于分布在晶体缺陷处,且脱溶析出的Mo颗粒与基体存在一定的取向关系。性能测试结果表明,HCPEB合金化处理后Cu(Mo)合金化表层的硬度与辐照次数呈统一变化趋势,即随辐照次数增加显著提升,固溶强化、位错强化和弥散强化机制的共同作用是合金化表层性能改善的原因之所在。 展开更多
关键词 强流脉冲电子束 cu-mo 固溶度 微观组织 表面显微硬度
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Three-dimensional Modeling of Ore-forming Elements and Mineralization Prognosis for the Yechangping Mo Deposit,Henan Province,China
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作者 DING Gaoming JI Genyuan +5 位作者 YAN Guolong XU Yongzhong WANG Kunming XIAO Chun WANG Quanle GUO Dongbao 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2024年第3期736-752,共17页
Three-dimensional geochemical modeling of ore-forming elements is crucial for predicting deep mineralization.This approach provides key information for the quantitative prediction of deep mineral localization,three-di... Three-dimensional geochemical modeling of ore-forming elements is crucial for predicting deep mineralization.This approach provides key information for the quantitative prediction of deep mineral localization,three-dimensional fine interpolation,analysis of spatial distribution patterns,and extraction of quantitative mineral-seeking markers.The Yechangping molybdenum(Mo)deposit is a significant and extensive porphyry-skarn deposit in the East Qinling-Dabie Mo polymetallic metallogenic belt at the southern margin of the North China Block.Abundant borehole data on oreforming elements underpin deep geochemical predictions.The methodology includes the following steps:(1)Threedimensional geological modeling of the deposit was established.(2)Correlation,cluster,and factor analyses post delineation of mineralization stages and determination of mineral generation sequence to identify(Cu,Pb,Zn,Ag)and(Mo,W,mfe)assemblages.(3)A three-dimensional geochemical block model was constructed for Mo,W,mfe,Cu,Zn,Pb,and Ag using the ordinary kriging method,and the variational function was developed.(4)Spatial distribution and enrichment characteristics analysis of ore-forming elements are performed to extract geological information,employing the variogram and w(Cu+Pb+Zn+Ag)/w(Mo+W)as predictive indicators.(5)Identifying the western,northwestern,and southwestern areas of the mine with limited mineralization potential,contrasted by the northeastern and southeastern areas favorable for mineral exploration. 展开更多
关键词 3D geochemical model ore-forming elements GEOSTATISTICS deep mineralization prediction Yechangping mo deposit
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Genesis and metallogenic characteristic of Dongnan Cu–Mo deposit associated granitoids:LA-ICP-MS zircon U–Pb dating and isotope constraint from Zijinshan ore field in southeastern China 被引量:1
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作者 Qifeng Xie Mingguo Zhai +3 位作者 Yuanfeng Cai Yunpeng Dong Hong Zhang Aifang Xiao 《Acta Geochimica》 EI CAS CSCD 2023年第2期332-345,共14页
The Dongnan Cu–Mo deposit,located in the southeast of the Zijinshan ore field(the largest porphyry–epithermal system in Southeast China),represents the complex magmatic and metallogenesis events in the region.The pe... The Dongnan Cu–Mo deposit,located in the southeast of the Zijinshan ore field(the largest porphyry–epithermal system in Southeast China),represents the complex magmatic and metallogenesis events in the region.The petrogenesis and metallogenesis of granitoids from the deposit are not determined,especially the interactions between ore-bearing(granodiorite porphyry)and barren samples(granodiorite and diorite).In the paper,the whole rock geochemical features shared a similar affinity to the middle-lower content and revealed that they derived from partial melting of the Cathaysian basement with the contribution of mantle materials,even represented that they generated in the plate subduction;LA-ICP-MS zircon U–Pb ages show that these granodiorites,granodioritic porphyry and diorite,were generated during 114–103 Ma.The ore-bearing samples mostly presented ε_(Hf)(t)of negative values(peak value is-4 to-3)with old two-stage Hf model ages(t_(DM)^(2))(peak value is 1.10–1.15 Ga),while the barren sample showed slightly negative ε_(Hf)(t)(peak value is-1 to 0)values with young t_(DM)^(2)(peak value is 1.00–1.05 Ga).The value of zircon Ce^(4+)/Ce^(3+)ratio mostly higher than 450 was first verified for the ore-bearing samples in the Dongnan Cu–Mo deposit,and the values of ore-bearing were found to be higher than those from the barren,which suggests that the ore-bearing formed in more oxidized parental magma with higher oxygen fugacity.Based on the geochemical characteristic of the element and isotope,we concluded that the Early Cretaceous multiphases magmatic activities,low melting temperature and low pressure of pluton,and high oxygen fugacity of zircon,were the favorable conditions for metallogenesis of Dongnan Cu–Mo deposit. 展开更多
关键词 Magmatism METALLOGENESIS Dongnan cumo deposit Zijinshan ore field
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Fabrication of Graphene/Cu Composite by Chemical Vapor Deposition and Effects of Graphene Layers on Resultant Electrical Conductivity
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作者 Xinyue Liu Yaling Huang +2 位作者 Yuyao Li Jie Liu Quanfang Chen 《Journal of Harbin Institute of Technology(New Series)》 CAS 2024年第1期16-25,共10页
Graphene(Gr)has unique properties including high electrical conductivity;Thus,graphene/copper(Gr/Cu)composites have attracted increasing attention to replace traditional Cu for electrical applications. However,the pro... Graphene(Gr)has unique properties including high electrical conductivity;Thus,graphene/copper(Gr/Cu)composites have attracted increasing attention to replace traditional Cu for electrical applications. However,the problem of how to control graphene to form desired Gr/Cu composite is not well solved. This paper aims at exploring the best parameters for preparing graphene with different layers on Cu foil by chemical vapor deposition(CVD)method and studying the effects of different layers graphene on Gr/Cu composite’s electrical conductivity. Graphene grown on single-sided and double-sided copper was prepared for Gr/Cu and Gr/Cu/Gr composites. The resultant electrical conductivity of Gr/Cu composites increased with decreasing graphene layers and increasing graphene volume fraction. The Gr/Cu/Gr composite with monolayer graphene owns volume fraction of less than 0.002%,producing the best electrical conductivity up to59.8 ×10^(6)S/m,equivalent to 104.5% IACS and 105.3% pure Cu foil. 展开更多
关键词 chemical vapor deposition(CVD) Gr/cu Gr/cu/Gr graphene layers graphene volume fraction electrical conductivity
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Mo-Cu复合材料的电化学分离及钼酸钠制备
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作者 王涵睿 廖磊 +2 位作者 张伟哲 史智峰 郑学军 《中国钼业》 2024年第4期43-47,共5页
针对钼铜复合材料中钼铜的分离回收,提出了一种电化学溶解分离的方法,并制备得到高纯度的二水合钼酸钠。系统研究了工艺参数对整个钼铜复合材料电溶解过程的影响和二水合钼酸钠的制备与纯化。研究结果表明:阴极电流密度450 A/m^(2)、极... 针对钼铜复合材料中钼铜的分离回收,提出了一种电化学溶解分离的方法,并制备得到高纯度的二水合钼酸钠。系统研究了工艺参数对整个钼铜复合材料电溶解过程的影响和二水合钼酸钠的制备与纯化。研究结果表明:阴极电流密度450 A/m^(2)、极间距2 cm、NaOH初始浓度60 g/L时钼电溶解效果最好,7 d溶解率约90%。超声对钼电溶解无明显促进作用,但是能加速阳极原料中铜粉的脱落。电解母液通过蒸发结晶,并对晶体采用无水乙醇洗涤和重结晶的纯化工艺,可最终获得纯度达98.8%的二水合钼酸钠结晶,每公斤原料生产二水合钼酸钠约1.6 kg,满足工业标准。对比直接售卖钼铜复合废料,电化学回收废料毛利润约增加12.3万元/t。 展开更多
关键词 钼铜分离 电化学 二水合钼酸钠 超声 结晶
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Cu-Mo/C催化油酸甲酯选择性加氢脱氧制备生物柴油 被引量:2
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作者 于聪 于世涛 李露 《生物质化学工程》 CAS 2023年第2期48-54,共7页
使用四水合钼酸铵和三水合硝酸铜制备了Cu-Mo/C,并将其用作油酸甲酯选择性加氢脱氧反应的催化剂。利用X射线衍射(XRD)、X射线光电子能谱(XPS)和电子顺磁共振波谱(EPR)对催化剂进行表征,并探讨了Cu-Mo/C催化油酸甲酯制备生物柴油的较佳... 使用四水合钼酸铵和三水合硝酸铜制备了Cu-Mo/C,并将其用作油酸甲酯选择性加氢脱氧反应的催化剂。利用X射线衍射(XRD)、X射线光电子能谱(XPS)和电子顺磁共振波谱(EPR)对催化剂进行表征,并探讨了Cu-Mo/C催化油酸甲酯制备生物柴油的较佳工艺和Cu-Mo/C的催化性能。研究结果显示:Cu的加入促进了Mo/C催化剂的形成,催化剂中的Mo_(2) C组分和MoO_(2)组分共同作用,MoO_(2)组分中的氧空位可以优先吸附底物中的C=O键,随后Mo_(2) C组分对其进行加氢脱氧,避免了C=C键发生加氢反应,实现了高催化活性和不饱和烃选择性加氢脱氧的优异性能。在反应温度280℃,氢气压力2.5 MPa,反应时间3 h的条件下油酸甲酯转化率达到98.8%,不饱和烃选择性为40.2%。Cu-Mo_(10)/C催化活性与贵金属Pd和商业催化剂Mo/C相当,但不饱和烃选择性更高,且具有良好的稳定性。 展开更多
关键词 cu-mo/C 选择性加氢脱氧 氧空位 不饱和烃
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电沉积制备Cu-Ni-Mo三元电极及其析氢性能
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作者 杜金晶 刘心海 +5 位作者 王斌 刘卓祺 赵丹丹 李倩 张轩 朱军 《表面技术》 EI CAS CSCD 北大核心 2023年第8期380-386,423,共8页
目的制备一种在碱性溶液中具有高效、低成本等优点的铜基析氢阴极材料。方法在35℃下采用直流电沉积法,在泡沫镍(NF)表面分别沉积Cu-Ni、Cu-Ni-Mo镀层,制备Cu-Ni/NF、Cu-Ni-Mo/NF析氢电极。利用X射线衍射分析仪(XRD)、扫描电镜(SEM)和... 目的制备一种在碱性溶液中具有高效、低成本等优点的铜基析氢阴极材料。方法在35℃下采用直流电沉积法,在泡沫镍(NF)表面分别沉积Cu-Ni、Cu-Ni-Mo镀层,制备Cu-Ni/NF、Cu-Ni-Mo/NF析氢电极。利用X射线衍射分析仪(XRD)、扫描电镜(SEM)和能谱仪(EDS)表征电极的表面形貌、结构元素含量及物相。通过电化学阻抗技术(EIS)、线性扫描伏安法(LSV)、循环伏安法(CV)测定电极的析氢性能和催化活性。结果经Mo掺杂后,Mo在Cu-Ni-Mo三元合金中以置换型固溶体的形式存在,与二元镀层相比,增大了镀层的晶格常数。Cu-Ni-Mo/NF三元电极在电流密度10 mV/cm^(2)下,过电位仅为116 mV,塔费尔斜率为104 mV/dec,电荷转移电阻为15.34Ω,电化学活性比表面积(ECSA)为22.33,相较于Cu-Ni/NF二元电极,分别降低了68 mV、27 mV/dec、15.48Ω,ECSA值提高了7.95,且循环稳定性较好。结论引入第3种元素Mo,改变了Cu-Ni二元电极的镀层形貌,使晶粒细化,表现为微粒紧密堆积而成的球胞状结构,从而提升了电极材料的比表面积,为析氢反应提供了更多的活性位点,有助于提高析氢反应效率。由于三金属间的协同作用,与Cu-Ni二元电极相比,Cu-Ni-Mo三元电极显示出更优异的析氢催化性能。 展开更多
关键词 电沉积 HER cu-Ni-mo镀层 电催化 泡沫镍
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秘鲁Morococha斑岩-矽卡岩-浅成低温热液型矿床成矿地质特征与区域找矿方向
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作者 郭维民 姚春彦 +3 位作者 曾敏 杨宪涛 王天刚 刘君安 《地质通报》 CAS CSCD 北大核心 2024年第7期1158-1172,共15页
秘鲁中部Morococha地区位于中安第斯秘鲁中新世成矿带,是全球最具代表性的世界级斑岩-矽卡岩型和浅成低温热液型成矿系统之一。系统总结了该区斑岩型、矽卡岩型、浅成低温热液型等多种铜钼铅锌银多金属矿化成矿作用特征和最新的研究进展... 秘鲁中部Morococha地区位于中安第斯秘鲁中新世成矿带,是全球最具代表性的世界级斑岩-矽卡岩型和浅成低温热液型成矿系统之一。系统总结了该区斑岩型、矽卡岩型、浅成低温热液型等多种铜钼铅锌银多金属矿化成矿作用特征和最新的研究进展,结合区域岩浆-热液成矿作用过程,提出了下一步找矿方向。Morococha矿区位于秘鲁中部Yali穹隆北段,由中心部位的Toromocho斑岩型铜钼矿床及外围铅锌银金多金属矿脉组成。区内主要构造为北西向Morococha背斜,地层主要为二叠纪—三叠纪Mitu群火山碎屑岩、侏罗纪Pucara群碳酸盐岩、早白垩世Goyllarisquizga群海相碎屑岩和碳酸盐岩。矿区中新世岩浆活动主要为中中新世不含矿的闪长质侵入岩(14.3~14.1 Ma)和晚中新世与成矿有关的花岗闪长岩和长石斑岩岩株(9.4~7.7 Ma)。Morococha岩浆-热液系统(8.5~7.2 Ma)是其形成超大型斑岩型铜矿成矿的原因之一,铅锌银多金属矿化主要发生在斑岩型矿化之后约0.5 Ma,受区域构造控制。矿床在空间上显示出明显的金属分带特征,中心斑岩区域为富铜矿石,而远离斑岩区出现更多的富铅锌银矿石。秘鲁中部中新世成矿带分布着众多具有重要经济价值的脉状热液型铅锌银多金属矿床,总结近年来综合地质调查和研究成果,表明这些多金属矿床都属于斑岩-矽卡岩成矿系统的一部分,因此斑岩-矽卡岩型铜矿床及浅成低温热液型贵金属矿床是秘鲁中部重要的找矿方向。 展开更多
关键词 斑岩型铜钼矿床 铅锌银多金属矿床 成矿作用 秘鲁
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铜表面激光熔覆制备Ni-Cu-Mo覆层的显微组织及其摩擦磨损性能 被引量:4
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作者 李艳苗 肖来荣 +8 位作者 翟鹏远 樊朋煜 张立群 刘雷 张永统 高大伟 赵小军 刘赛男 蔡圳阳 《中国有色金属学报》 EI CAS CSCD 北大核心 2023年第5期1502-1513,共12页
为提高铜材料的耐磨性能,在铜基体上激光熔覆了纯Ni、Ni-20Cu、Ni-20Cu-10Mo及Ni-20Cu-15Mo(摩尔分数,%)四种覆层,分析了Ni-20Cu-10Mo覆层的显微组织,并研究了铜基体及覆层的摩擦磨损行为,考察了Ni、Cu、Mo元素含量对激光熔覆制备覆层... 为提高铜材料的耐磨性能,在铜基体上激光熔覆了纯Ni、Ni-20Cu、Ni-20Cu-10Mo及Ni-20Cu-15Mo(摩尔分数,%)四种覆层,分析了Ni-20Cu-10Mo覆层的显微组织,并研究了铜基体及覆层的摩擦磨损行为,考察了Ni、Cu、Mo元素含量对激光熔覆制备覆层的组织及其耐磨性能的影响。结果表明:覆层均以Ni基固溶体为主要物相,呈平面晶-胞状树枝晶-等轴晶的非平衡凝固形态;纯Ni、Ni-20Cu、Ni-20Cu-10Mo及Ni-20Cu-15Mo覆层的显微硬度分别为137.0HV、141.4HV、151.3HV、143.7HV,平均摩擦因数分别为0.64、0.54、0.16、0.42;相对于铜基体而言,四种覆层的显微硬度分别提升了22.65%、26.59%、35.45%和28.65%,平均摩擦因数分别提升了29.67%、40.66%、82.42%、53.85%;其中,Ni-20Cu-10Mo覆层的平均摩擦因数最低(0.16),是铜基体的17.58%,使铜基体的摩擦磨损机制由黏着磨损机制向磨粒磨损机制转变。 展开更多
关键词 激光熔覆 Ni-cu-mo覆层 显微组织 耐磨性 铜基体
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富碱斑岩成因与Cu—Mo—Au矿床成矿作用——以金沙江—红河富碱斑岩成矿带为例
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作者 杨航 王蝶 +2 位作者 吴鹏 王峰 陈福川 《地质论评》 CAS CSCD 北大核心 2023年第5期1669-1693,共25页
富碱斑岩因其产出构造环境独特、岩石类型特殊,并常与铜多金属矿床密切相关,而受到广泛关注。笔者等在回顾相关研究进展的基础上,通过岩石成因和构造环境、岩浆性质和岩浆源区等方面的综合研究,探讨了金沙江—红河富碱斑岩成矿带富碱岩... 富碱斑岩因其产出构造环境独特、岩石类型特殊,并常与铜多金属矿床密切相关,而受到广泛关注。笔者等在回顾相关研究进展的基础上,通过岩石成因和构造环境、岩浆性质和岩浆源区等方面的综合研究,探讨了金沙江—红河富碱斑岩成矿带富碱岩浆成矿作用及成岩成矿机制。系统的矿床地质、年代学、地球化学等研究表明:①金沙江—红河富碱斑岩成矿带内成岩成矿作用集中于43~32 Ma,成矿富碱斑岩系始新世—渐新世I型钾玄质花岗斑岩,是印—亚大陆后碰撞背景下大陆内部大型走滑和伸展等动力过程诱导的岩浆活动产物,金沙江和哀牢山—红河断裂的差异走滑运动可能控制了成矿带差异性成岩成矿事件;②成矿带北段以Cu—Mo为主的成矿富碱斑岩源自新元古代下地壳的部分熔融,且源区有富集地幔和亏损地幔物质的加入,而南段以Cu—Au或Cu(—Mo—Au)为主的成矿富碱斑岩源自具有不同程度富集地幔物质加入的新生下地壳的部分熔融;③带内以Cu为主的斑岩—矽卡岩型矿床中成矿富碱斑岩的氧逸度(ΔFMQ)与矿床规模具有正相关性。除受氧逸度控制外,源区高K2O含量有利于斑岩—矽卡岩型Au矿床的形成。该研究对金沙江—红河富碱斑岩成矿带乃至同类矿床研究和找矿勘查具有理论和实际意义。 展开更多
关键词 富碱斑岩 岩石成因 cumo—Au矿床 岩浆性质 岩浆源区 金沙江—红河成矿带
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右江盆地大际山U-(Mo)矿床围岩蚀变特征及微量元素迁移规律——对区域内U、Au成生关系的指示
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作者 田建吉 刘畅 +1 位作者 吴玉 李秋实 《世界核地质科学》 CAS 2024年第3期434-449,共16页
位于扬子地块西南缘的右江盆地,是全球第二大的卡林型Au矿(共伴生有Sb、Hg、Tl异常/矿化)矿集区,有着滇黔桂“金三角”的美誉。值得注意的是,该区除发育Au(-Sb-Hg-Tl)矿床外,还产有大量赋矿岩性和控矿构造相似的U矿床(点),成矿特色鲜明... 位于扬子地块西南缘的右江盆地,是全球第二大的卡林型Au矿(共伴生有Sb、Hg、Tl异常/矿化)矿集区,有着滇黔桂“金三角”的美誉。值得注意的是,该区除发育Au(-Sb-Hg-Tl)矿床外,还产有大量赋矿岩性和控矿构造相似的U矿床(点),成矿特色鲜明。前人对该区Au矿开展了大量研究,而U矿研究较少,对U、Au的成生关系尚不清楚。基于此,文章选取右江盆地内典型的U矿床——大际山U-(Mo)矿床为研究对象,通过开展岩矿相学研究和地球化学分析,厘定了矿化的围岩蚀变为硫化、沥青质化、磷铝锶石化、硅化和伊利石化,揭示了矿化过程中Re、Tl、Mo、U、Cd、Ni、Co、As、Sb、MREE的相对富集。蚀变矿物组合及元素迁移规律约束大际山U-(Mo)矿床中成矿物质可能来源于牛蹄塘组,成矿流体应为还原性有机流体与地表-近地表酸性、氧化性流体的混合,矿质沉淀发生在低温、酸性、还原环境中。综合分析认为,右江盆地内U、Au分布特征及矿床成因具有明显差异,二者应是不同成矿事件的产物。 展开更多
关键词 围岩蚀变特征 元素迁移规律 大际山U-(mo)矿床 U、Au成生关系 右江盆地
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机械合金化与热等静压制备Cu-Cr-Mo合金
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作者 王思伦 崔子振 +2 位作者 刘全义 谢飞 林岩松 《粉末冶金技术》 CAS CSCD 北大核心 2023年第5期475-480,共6页
通过机械混合和机械合金化工艺制备Cu-9.3Cr-9.3Mo(质量分数)粉末,并利用热等静压压制Cu-Cr-Mo合金。采用X射线衍射和激光粒度分析等方法表征了粉末物相、组织分布和粒度;通过对相对密度、硬度、电导率等性能检测和微观组织观察分析了... 通过机械混合和机械合金化工艺制备Cu-9.3Cr-9.3Mo(质量分数)粉末,并利用热等静压压制Cu-Cr-Mo合金。采用X射线衍射和激光粒度分析等方法表征了粉末物相、组织分布和粒度;通过对相对密度、硬度、电导率等性能检测和微观组织观察分析了合金性能。结果表明,机械合金化过程可诱导Cu-Cr-Mo过饱和固溶体形成,合金的晶格畸变程度提高,晶粒尺寸和粉末颗粒尺寸减小,制备的合金块材硬度高,相对密度和电导率理想,综合性能优异。 展开更多
关键词 cu-Cr-mo合金 机械混合 机械合金化 过饱和固溶体 热等静压
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Re-Os geochronology of Cu and W-Mo deposits in the Balkhash metallogenic belt,Kazakhstan and its geological significance 被引量:11
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作者 Xuanhua Chen Wenjun Qu +6 位作者 Shuqin Han Seitmuratova Eleonora Nong Yang Zhengle Chen Fagang Zeng Andao Du Zhihong Wang 《Geoscience Frontiers》 SCIE CAS 2010年第1期115-124,共10页
The Central Asian metallogenic domain (CAMD) is a multi-core metallogenic system controlled by boundary strike-slip fault systems. The Balkhash metallogenic belt in Kazakhstan, in which occur many large and super-la... The Central Asian metallogenic domain (CAMD) is a multi-core metallogenic system controlled by boundary strike-slip fault systems. The Balkhash metallogenic belt in Kazakhstan, in which occur many large and super-large porphyritic Cu--Mo deposits and some quartz vein- and greisen-type W-Mo deposits, is a well-known porphyritic Cu--Mo metallogenic belt in the CAMD. In this paper 11 molybdenite samples from the western segment of the Balkhash metallogenic belt are selected for Re--Os compositional analyses and Re--Os isotopic dating. Molybdenites from the Borly porphyry Cu deposit and the three quartz vein-greisen W--Mo deposits--East Kounrad, Akshatau and Zhanet--all have relatively high Re contents (2712--2772 μg/g for Borly and 2.267--31.50 μg/g for the other three W-Mo deposits), and lower common Os contents (0.670-2.696 ng/g for Borly and 0.0051--0.056 ng/g for the other three). The molybdenites from the Borly porphyry Cu--Mo deposit and the East Kounrad, Zhanet, and Akshatau quartz vein- and greisen-type W-Mo deposits give average model Re--Os ages of 315.9 Ma, 298.0 Ma, 295.0 Ma, and 289.3 Ma respectively. Meanwhile, molybde- nites from the East Kounrad, Zhanet, and Akshatan W-Mo deposits give a Re--Os isochron age of 297.9 Ma, with an MSWD value of 0.97. Re--Os dating of the molybdenites indicates that Cu-W-Mo metallogenesis in the western Balkhash metallogeuic belt occurred during Late Carboniferous to Early Permian (315.9--289.3 Ma), while the porphyry Cu--Mo deposits formed at ~316 Ma, and the quartz vein-greisen W--Mo deposits formed at ~298 Ma. The Re--Os model and isochron ages thus suggest that Late Carboniferous porphyry granitoid and pegmatite magmatism took place during the late Hercy- nian movement. Compared to the Junggar-East Tianshan porphyry Cu metallogenic belt in northwestern China, the formation of the Cu-Mo metallogenesis in the Balkhash rnetallogenic belt occurred between that of the Tuwu-Yandong in East Tianshan and the Baogutu porphyry Cu deposits in West Junggar. Collectively, the large-scale Late Carboniferous porphyry Cu-Mo metallogenesis in the Central Asian metallogenic domain is related to Hercynian tectono-magmatic activities. 展开更多
关键词 Re-Os geochronology Metallogenic age Porphyry cu-mo deposit Greisen W--mo deposits Balkhash metallogenicbelt Kazakhstan
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Geology,Geochemistry and Zircon U-Pb Geochronology of Porphyries in the Dabate Mo-Cu Deposit,Western Tianshan,China:Petrogenesis and Tectonic Implications 被引量:8
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作者 DUAN Shigang ZHANG Zuoheng +1 位作者 WANG Dachuan LI Fengming 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第2期530-544,共15页
The Dabate Mo-Cu deposit is a medium-sized porphyry-type deposit in the Sailimu Lake region, western Tianshan, China. We present the geology, geochemistry and zircon U-Pb geochronology of granite porphyries from the D... The Dabate Mo-Cu deposit is a medium-sized porphyry-type deposit in the Sailimu Lake region, western Tianshan, China. We present the geology, geochemistry and zircon U-Pb geochronology of granite porphyries from the Dabate district with the intent to constrain their tectonic setting and petrogenesis. Porphyries in the Dabate district include granite porphyry I(gray white color with large phenocrysts), granite porphyry II(pink color with small phenocrysts) and quartz porphyry. Granite porphyry II is the Cu and Mo ore-bearing granitoid in the Dabate deposit. LA-ICPMS zircon U-Pb analyses indicate that granite porphyry II was emplaced at 284.2±1.8 Ma. Granite porphyry I and II have similar geochemical features and are both highly fractionated granites:(1) They have high SiO2 content(70.93–80.18 wt% and 72.14–72.64 wt%, respectively), total alkali(7.58–8.95 wt% and 9.35–9.68 wt%, respectively), mafic index(0.95–0.98 and 0.93–0.94, respectively) and felsic index(0.79–0.94 and 0.89–0.91, respectively);(2) They are characterized by pronounced negative Eu anomaly, "seagullstyle" chondrite-normalized REE patterns and "tetrad effect" of REE;(3) They are rich in Rb, K, Th, Ta, Zr, Hf, Y and REE, but depleted in Sr, P, Ti and Nb. The magma of granite porphyries in Dabate can be interpreted to have been generated by partial melting of the upper crust due to mantle-derived magma underplating in a post-collisional extensional setting. 展开更多
关键词 porphyry cu-mo deposit post-collisional extension zircon U-Pb age PETROGENESIS Dabate TIANSHAN Proto-Tethys
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Origin of the Newly Discovered Zhunuo Porphyry Cu-Mo-Au Deposit in the Western Part of the Gangdese Porphyry Copper Belt in the Southern Tibetan Plateau,SW China 被引量:19
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作者 HUANG Yong LI Guangming +4 位作者 DING Jun DAI Jie YAN Guoqiang DONG Suiliang HUANG Hanxiao 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2017年第1期109-134,共26页
The newly discovered Zhunuo porphyry Cu-Mo-Au deposit is located in the western part of the Gangdese porphyry copper belt in southern Tibet, SW China. The granitoid plutons in the Zhunuo region are composed of quartz ... The newly discovered Zhunuo porphyry Cu-Mo-Au deposit is located in the western part of the Gangdese porphyry copper belt in southern Tibet, SW China. The granitoid plutons in the Zhunuo region are composed of quartz diorite porphyry, diorite porphyry, granodiorite porphyry, biotite monzogranite and quartz porphyry. The quartz diorite porphyry yielded zircon U-Pb ages of 51.9±0.7 Ma(Eocene) using LA-ICP-MS, whereas the diorite porphyry, granodiorite porphyry, biotite monzogranite and quartz porphyry yielded ages ranging from 16.2±0.2 to 14.0±0.2 Ma(Miocene). CuMo-Au mineralization is mainly hosted in the Miocene granodiorite porphyry. Samples from all granitoid plutons have geochemical compositions consistent with high-K calc-alkaline series magmatism. The samples display highly fractionated light rare-earth element(REE) distributions and heavy REE distributions with weakly negative Eu anomalies on chondrite-normalized REE patterns. The trace element distributions exhibit positive anomalies for large-ion lithophile elements(Rb, K, U, Th and Pb) and negative anomalies for high-field-strength elements(Nb and Ti) relative to primitive mantlenormalized values. The Eocene quartz diorite porphyry yielded εNd(t) values ranging from-3.6 to-5.2,(-(87)Sr/-(86)Sr)i values in the range 0.7046–0.7063 and initial radiogenic Pb isotopic compositions with ranges of 18.599–18.657 -(206)Pb/-(204)Pb, 15.642–15.673 -(207)Pb/-(204)Pb and 38.956–39.199 -(208)Pb/-(204)Pb. In contrast, the Miocene granitoid plutons yielded ε(Nd)(t) values ranging from-6.1 to-7.3 and(87Sr/86Sr)i values in the range 0.7071–0.7078 with similar Pb isotopic compositions to the Eocene quart diorite. The Sr-Nd-Pb isotopic compositions of the rocks are consistent with formation from magma containing a component of remelted ancient crust. Zircon grains from the Eocene quartz diorite have ε(Hf)(t) values ranging from-5.2 to +0.9 and two-stage Hf model ages ranging from 1.07 to 1.46 Ga, while zircon grains from the Miocene granitoid plutons have ε(Hf)(t) values from-9.9 to +4.2 and two-stage Hf model ages ranging from 1.05–1.73 Ga, indicating that the ancient crustal component likely derives from Paleo- to Mesoproterozoic basement. This source is distinct from that of most porphyry Cu-Mo-Au deposits in the eastern part of the Gangdese porphyry copper belt, which likely originated from juvenile crust. We therefore consider melting of ancient crustal basement to have contributed significantly to the formation Miocene porphyry Cu-Mo-Au deposits in the western part of the Gangdese porphyry copper belt. 展开更多
关键词 Zircon U-Pb dating Sr-Nd-Pb-Hf isotope Zhunuo porphyry cu-mo-Au deposit Gangdese porphyry copper belt
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3D geological modeling for mineral resource assessment of the Tongshan Cu deposit,Heilongjiang Province,China 被引量:28
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作者 Gongwen Wang Lei Huang 《Geoscience Frontiers》 SCIE CAS 2012年第4期483-491,共9页
Three-dimensional geological modeling (3DGM) assists geologists to quantitatively study in three-dimensional (3D) space structures that define temporal and spatial relationships between geological objects. The 3D ... Three-dimensional geological modeling (3DGM) assists geologists to quantitatively study in three-dimensional (3D) space structures that define temporal and spatial relationships between geological objects. The 3D property model can also be used to infer or deduce causes of geological objects. 3DGM technology provides technical support for extraction of diverse geoscience information, 3D modeling, and quantitative calculation of mineral resources. Based on metallogenic concepts and an ore deposit model, 3DGM technology is applied to analyze geological characteristics of the Tongshan Cu deposit in order to define a metallogenic model and develop a virtual borehole technology; a BP neural network and a 3D interpolation technique were combined to integrate multiple geoscience information in a 3D environment. The results indicate: (1) on basis of the concept of magmatic-hydrothermal Cu polymetallic mineraliza- tion and a porphyry Cu deposit model, a spatial relational database of multiple geoscience information for mineralization in the study area (geology, geophysics, geochemistry, borehole, and cross-section data) was established, and 3D metallogenic geological objects including mineralization stratum, granodiorite, alteration rock, and magnetic anomaly were constructed; (2) on basis of the 3D ore deposit model, 23,800 effective surveys from 94 boreholes and 21 sections were applied to establish 3D orebody models with a kriging interpolation method; (3) combined 23,800 surveys involving 21 sections, using VC++ and OpenGL platform, virtual borehole and virtual section with BP network, and an improved inverse distance interpolation (IDW) method were used to predict and delineate mineralization potential targets (Cu-grade of cell not less than 0.1%); (4) comparison of 3D ore bodies, metallogenic geological objects of mineralization, and potential targets of mineralization models in the study area, delineated the 3D spatial and temporal relationship and causal processes among the ore bodies, alteration rock, metallo- genic stratum, intrusive rock, and the Tongshan Fault. This study provides important technical support and a scientific basis for assessment of the Tongshan Cu deposit and surrounding exploration and mineral resources. 展开更多
关键词 Three-dimensional geological modeling (3DGM) Virtual borehole Virtual section BP network INTERPOLATION Tongshan cu deposit
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