首页> 外文会议>Sohn International Symposium on Advanced Processing of Metals and Materials vol.3; 20060827-31; San Diego,CA(US) >ELECTROCHEMICAL REMOVAL OF Sn(IV) ION FROM AQUEOUS HYDROCHLORIC SOLUTION CONTAINING In(III)
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ELECTROCHEMICAL REMOVAL OF Sn(IV) ION FROM AQUEOUS HYDROCHLORIC SOLUTION CONTAINING In(III)

机译:从含In(III)的盐酸溶液中电化学去除Sn(IV)离子

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摘要

We are studying the hydrometallurgical recycling process of indium from an Indium-Tin-Oxide(ITO) target. For this process, it is necessary to remove Sn(IV) ions from the aqueous hydrochloric acid solutions containing In(III). In this study, the removal of Sn(IV) ions by a potentiostatic electrolysis method was examined. The polarization measurements and potentiostatic electrolyses were carried out under a nitrogen atmosphere. In the Sn(IV) solution, current begins to rise at the cathode potential of -0.26 V vs. SHE, and increases with a reduction in the cathode potential. In the In(III) solution, current begins to rise at a cathode potential of -0.43 V vs. SHE. Metallic tin was electrodeposited without indium electrodeposition at the cathode potentials of -0.30 and -0.40V vs. SHE. More than 98% of the Sn(IV) was removed at the cathode potential of -0.40 V after the electrolysis for 3hrs. Both tin and indium were electrodeposited at the cathode potential of -0.50V vs. SHE.
机译:我们正在研究铟锡氧化物(ITO)靶材的湿法冶金铟回收工艺。对于该方法,必须从含有In(III)的盐酸水溶液中除去Sn(IV)离子。在这项研究中,研究了通过恒电位电解法去除Sn(IV)离子的方法。极化测量和恒电位电解在氮气气氛下进行。在Sn(IV)溶液中,电流在-0.26 V vs. SHE的阴极电势下开始上升,并随着阴极电势的降低而增加。在In(III)溶液中,相对于SHE,阴极电位为-0.43 V时电流开始升高。在相对于SHE的阴极电势为-0.30和-0.40V的情况下,在不进行铟电沉积的情况下电沉积金属锡。电解3小时后,在-0.40 V的阴极电位下去除了98%以上的Sn(IV)。锡和铟都在相对于SHE的-0.50V阴极电势下电沉积。

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