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1)  skeletonization
浸析出(硅氧)骨架
2)  impregnated skeleton
浸渍骨架
3)  bioleaching
氧化浸出
1.
The leaching performance of the low grade molybdenite from Jinduicheng Mine is investigated by both bioleaching and chemical oxidation leaching process.
结果表明,酸性(硫酸)介质下的细菌氧化浸出和化学氧化浸出,钼易与一些金属离子(如Fe,Ca,Al)生成不溶性的化合物,钼浸出率很低。
4)  rich-oxygen leaching
富氧浸出
1.
In order to solve the problem that the leaching recovery of gold is always a bit low in the Geerke gold mineral processing plant, Maqu, Gansu province, CIL experiment and its optimization experiment, rich-oxygen leaching experiment were conducted on the site.
为解决甘肃玛曲格尔柯金矿选矿厂金浸出率指标一直偏低的问题,在生产现场完成了全泥炭浸正交试验、最优化条件试验和富氧浸出试验,确认了磨矿细度偏低是影响生产指标的主要原因。
2.
The test introuduced mechanism of rich-oxygen leaching and application in Sifang Gold Mine.
介绍了富氧浸出的作用机理及在四方金矿的应用情况。
3.
Combination with the process of lead zinc sulfide minerals\' rich-oxygen leaching,the values of G~0 and the reactions\'ψ-pH formulas of PbS-H_2O system and ZnS-H_2O system were obtained based on thermodynamic calculation respectively,and theψ-pH figures of PbS-H_2O system,ZnS-H_2O system,and PbS-ZnS-H_2O system were drawn when temperature was 160℃,oxygen partial pressure was 1.
结合铅锌硫化矿富氧浸出过程,进行热力学计算,分别得到了PbS-H_2O系、ZnS-H_2O系各物质的G~0值以及该体系下各反应对应的电位-pH表达式,并绘制出温度为160℃、氧分压为1。
5)  oxidation leaching
氧化浸出
1.
Study on coupling of oxidation leaching and separation of coordinated extraction for sphalerite;
闪锌矿氧化浸出与协同萃取分离耦合研究
2.
A mathematic model for oxidation leaching of sulphide ore was developed.
建立了常压预浸合金硫化镍矿的氧化浸出数学模型,并进行了验证试验。
3.
The oxidation leaching method to recover platinum in waste catalyst with hydrogen peroxide in hydrochloric acid media was studied.
采用盐酸介质中氯酸钠氧化浸出法对合成有机硅时产生的含铂废料进行分离,对浸出过程的浸出温度、浸出时间、浸出用氯酸钠浓度、液固比等因素进行了单因子实验和正交试验。
6)  Oxygen rich leaching
富氧浸出
1.
Countering this problem,the commercial scale trail of oxygen rich leaching of peroxyl was carried out.
针对这个问题,进行了过氧化氢富氧浸出工业试验。
2.
The oxygen rich leaching,that is to say,the leaching system is aerated with oxygen rich gas which is produeed by oxygen making method of variable pressure adsorption,is capable of reducing specific value of CN -/O 2 from over 23 to the approach to 6,thus enhancing gold dissolving rate.
氰化浸出理论研究表明[CN-]/[O2]=6时,金溶解速度最快,用变压吸附制氧法生产富氧气体充入浸出系统实施富氧浸出,可使该比值自23以上趋近于6,从而提高金的溶解速度。
补充资料:十八烷氧基封端二甲基(硅氧烷与聚硅氧烷)
CAS:68554-53-0
中文名称:十八烷氧基封端二甲基(硅氧烷与聚硅氧烷)
英文名称:Siloxanes and Silicones, di-Me, (octadecyloxy)-terminated
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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