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首页> 外文期刊>Separation and Purification Technology >The recovery of copper and tin from waste tin stripping solution Part II: Kinetic analysis of synthetic and real process waste
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The recovery of copper and tin from waste tin stripping solution Part II: Kinetic analysis of synthetic and real process waste

机译:从废锡汽提溶液中回收铜和锡第二部分:合成废料和实际处理废料的动力学分析

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摘要

Tin stripping is a key process step in printed circuit board fabrication. At the end of a tin stripping process, in general, metal concentration in the waste is 2-40 g/1 Cu and 150 g/l SnO2 [D. McKeeson, Print Circuit Fabr. 22 (7) (1999) 34-37] in addition to nitric acid, ferric ions and other complexants. In a previous work we had carried out a thermodynamic analysis to determine if copper can be recovered from a tin stripping process. In this paper we present a kinetic analysis to determine the current efficiency for copper electrodeposition from a tin strip waste solution. We have performed electrochemical stripping analysis from simulated and real waste tin strip solutions. Copper is electrodeposited from solutions containing only copper and nitric acid, copper and nitric acid with ferric and tin ions, or waste from tin-strip processes. Our results showed that copper can be recovered at reasonably high current efficiency from solutions containing nitrate ions. The presence of ferric ions, however, reduces current efficiency significantly. It was shown that the tin stripping solution is a mixed potential system. In order to develop a high efficiency electrochemical copper recovery system, the crucial criteria are to maintain a low concentration of ferric ions in solution and to suppress the generation of ferric ions by electro-oxidation.
机译:剥锡是印刷电路板制造中的关键工艺步骤。通常,在脱锡过程结束时,废物中的金属浓度为2-40 g / 1 Cu和150 g / l SnO2 [D。 McKeeson,《印刷电路法》。 22(7)(1999)34-37]中除硝酸,铁离子等络合剂。在先前的工作中,我们进行了热力学分析,以确定是否可以从锡剥离过程中回收铜。在本文中,我们提出了动力学分析,以确定从锡条废液中电镀铜的电流效率。我们已经从模拟和真实的废锡剥离溶液中进行了电化学剥离分析。从仅包含铜和硝酸,铜和硝酸以及三价铁和锡离子的溶液或锡条工艺产生的废料中电镀铜。我们的结果表明,可以从含硝酸根离子的溶液中以相当高的电流效率回收铜。但是,铁离子的存在会大大降低电流效率。结果表明,脱锡溶液是一种混合电位系统。为了开发高效的电化学铜回收系统,关键的标准是保持溶液中三价铁离子的浓度低并抑制通过电氧化产生三价铁离子。

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