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Sustainable Green Processes Enabled by Pulse Electrolytic Principles

机译:脉冲电解原理启用可持续的绿色进程

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Electrochemical and solid state science, engineering, and technology have an important role to play in society's sustainable future. Early discussions of the potential environmental contributions by academic, government, and industrial electrochemists were presented in Electrochemistry of Cleaner Environments (1972), Electrochemistry for a Cleaner Environment (1992), and Environmental Aspects of Electrochemical Technology (2000). Some important electrochemical technologies include batteries and fuel cells for mobile (electric vehicle) power and stationary energy storage (wind, solar), conversion and capture of greenhouse (carbon dioxide) gases, contaminate destruction (PFAS), and electrochemical recycling of electronics in support of a circular economy among others. Additionally, many have noted that electrochemical processes are inherently environmentally friendly as "electrons are green." While we agree with this notion, we also note that many electrochemical processes based on direct current (DC) electrolysis, such as electrodeposition (plating) and surface finishing (electropolishing and electrochemical machining), use environmental and worker "unfriendly" electrolytes. By altering the electrochemical paradigm from one based on DC electrolysis to one based on pulse/pulse reverse current (P/PRC) electrolytic principles, simpler electrolytes with favorable manufacturing/worker and environmental impacts may be accrued. After a brief introduction to the author's perspective, we present examples of sustainable technologies enabled by P/PRC electrolysis: 1) green electrodeposition of chromium for functional applications, 2) worker friendly electropolishing of niobium for particle accelerator applications, and 3) zero-discharge electrochemical machining of cannon barrels.
机译:电化学和固态科学,工程和技术在社会可持续未来发挥着重要作用。早期讨论学术,政府和工业电化学家的潜在环境贡献,介绍了清洁环境(1972)的电化学,用于清洁环境(1992)的电化学,以及电化学技术的环境方面(2000)。一些重要的电化学技术包括用于移动(电动车)的电池和燃料电池(电动车)电力和静止能量存储(风,太阳能),转换和捕获温室(二氧化碳)气体,污染破坏(PFAS),以及电子产品的电化学回收循环经济等。此外,许多人已经注意到电化学过程本质上是环保的,因为“电子是绿色”。虽然我们同意这一概念,但我们还指出,许多基于直流电(DC)电解的电化学过程,例如电沉积(电镀)和表面精加工(电解力化和电化学加工),使用环境和工人“不友好”的电解质。通过基于脉冲/脉冲反向电流(P / PRC)电解质原理将电化学范例从一个基于DC电解到一个,可以累积具有良好制造/工人和环境影响的更简单的电解质。在简要介绍作者的观点后,我们提出了通过P / PRC电解的可持续技术的示例:1)铬为功能应用的绿色电沉积,2)工人友好的铌电热挖掘机粒子加速器应用,3)零放电炮弹电化学加工。

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