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The development of a rotating electrochemical quartz crystal microbalance for the study of leaching and deposition of metals

机译:用于金属浸出和沉积研究的旋转电化学石英晶体微量天平的研制

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摘要

Despite the widespread use of the electrochemical quartz crystal microbalance (EQCM), there is still no commercially available instrument of the rotating type. The first reported rotating EQCM (REQCM) was built in the authors' laboratory in 1994 and, in 1997, a second generation instrument was designed to overcome problems with stability and sensitivity. This paper describes the design and construction of a rotating EQCM, detailing how these problems can be minimized. The advantages of this equipment are its high sensitivity (<10 ng), the ability to study reactions over relatively short time intervals and the possibility of studying electrochemical reactions which occur simultaneously with the evolution of gas. In this paper, the benefits of the REQCM are illustrated using two simple examples: the deposition of copper from cyanide solutions; and the leaching of copper in cyanide solutions. For deposition reactions, the REQCM effectively extends the electrochemical window, allowing the reaction to be studied simultaneously with evolution of hydrogen. Use of the REQCM is the only technique capable of achieving this. For leaching, use of the REQCM is the quickest, simplest and most accurate method of measuring reaction kinetics and determining whether a reaction is chemically or diffusion controlled.
机译:尽管电化学石英晶体微量天平(EQCM)被广泛使用,但仍没有可商购的旋转型仪器。报告的第一个旋转EQCM(REQCM)于1994年在作者的实验室中制造,1997年,设计了第二代仪器来克服稳定性和灵敏度问题。本文介绍了旋转EQCM的设计和构造,详细介绍了如何将这些问题最小化。该设备的优点是灵敏度高(<10 ng),能够在相对较短的时间间隔内研究反应以及研究与气体逸出同时发生的电化学反应的可能性。在本文中,通过两个简单的例子说明了REQCM的好处:从氰化物溶液中沉积铜;从氰化物溶液中沉积铜。以及氰化物溶液中铜的浸出。对于沉积反应,REQCM有效地扩展了电化学窗口,使该反应可与氢的释放同时进行研究。使用REQCM是唯一能够实现此目的的技术。对于浸出,使用REQCM是测量反应动力学和确定反应是化学控制还是扩散控制的最快,最简单和最准确的方法。

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