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硫化矿物和溶解氧对氰化物溶液中金和银溶解速度的影响
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作者 g.q.liu 张登福 《新疆有色金属》 1997年第1期59-65,共7页
为更好地理解硫化矿物对空气饱和及富氧溶液中金和银溶解动力学的影响,用金和银的旋转盘法进行了广泛的研究.特别着重于金的共生矿物对空气饱和和富氧的氰化物溶液中金和银溶解的影响.研究结果表明,在各种硫化矿物存在时,金和银的浸出... 为更好地理解硫化矿物对空气饱和及富氧溶液中金和银溶解动力学的影响,用金和银的旋转盘法进行了广泛的研究.特别着重于金的共生矿物对空气饱和和富氧的氰化物溶液中金和银溶解的影响.研究结果表明,在各种硫化矿物存在时,金和银的浸出行为与溶液中硫化物的溶解性和氧的浓度密切相关.因为硫化物的分解程度随氧的浓度而变化,氰化期间金和银的溶解速度提高或降低取决于被溶解成分的类型和数量.所以,在富氧的氰化物溶液中,某些硫化矿物(诸如镍黄铁矿、黄铜矿、磁黄铁矿、闪锌矿、辉钼矿、砷黄铁矿和黄铁矿)的存在提高了金的溶解速度;而在同样条件下,其它矿物(如方铅矿、辉锑矿和辉铜矿)的存在,则产生相反的作用.采用富氧的氰化物溶液浸出时,银的溶解也得到了显著的改善,但是,有硫化矿物共生时,银的溶解速度还是比没有硫化矿物时低得多. 展开更多
关键词 氰化物 炼金 炼银 硫化物 氰化动力学 浸出
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Dominant effect of residual secondary phase of powders on Jc and microstructure of Bi-2212 superconducting wires 被引量:1
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作者 L.H.Jin g.q.liu +6 位作者 J.Q.Feng X.Y.Xu G.F.Jiao S.N.Zhang Q.B.Hao P.X.Zhang C.S.Li 《Superconductivity》 2023年第4期1-8,共8页
Bi_(2)Sr_(2)CaCu_(2)O_(8+δ)(Bi‐2212)superconducting round wires exhibited great potential for use in high‐field applications.The purity of the precursor powders is critical for the transport current of the wires.Ho... Bi_(2)Sr_(2)CaCu_(2)O_(8+δ)(Bi‐2212)superconducting round wires exhibited great potential for use in high‐field applications.The purity of the precursor powders is critical for the transport current of the wires.However,the role of the residual secondary phase in the precursor powders is not fully understood.Here,the origin of the secondary phase was investigated in precursor powders that were prepared using ultrasonic spray pyrolysis(USP)and calcination processing.The microstructure and phase evolution of the precursor powders during the crystallization process were analyzed.Moreover,the effects that the residual secondary phase has on melting behavior,morphology properties,and the supercurrent flow of Bi‐2212 multi‐filamentary wires are systematically discussed.The residual secondary phase in the filament caused further crystallization,and this led to the formation of more and larger Bi‐2201 grains at the onset of the melting process.The poor microstructure and low critical current of the final Bi‐2212 wires can be attributed to the presence of the residual copper‐rich phase.Bi‐2212 wires that were prepared with fully crystallized powders had a high critical current density(J_(c))of 6773 A/mm^(2) at 4.2 K,self‐field.It was revealed that control of the secondary phases in precursor powders is greatly significant for achieving superior values of J_(c). 展开更多
关键词 SUPERCONDUCTOR Bi‐2212 wire Residual secondary phase POWDER
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