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Environmentally Sustainable Solvent-based Process Chemistry for Metals in Printed Circuit Boards

机译:环境可持续的印刷电路板中基于溶剂的金属工艺化学

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摘要

This chapter describes the development of several new processes relating to the fabrication, characterisation and recycling of printed circuit board (PCB) metal assemblies in alternative, sustainable solvent technologies based on an emergent class of liquids know as deep eu-tectic solvents (DES). It has been demonstrated that in many cases, the use of DES technologies can be disruptive to current process thinking and in principle can deliver benefits including increased efficiency, lower costs and better process control. These technologies offer the opportunity to incorporate new ideas into PCB fabrication and assembly that facilitate downstream, end-of-life recovery and separation consistent with a circular economy model. Current PCB manufacturing is carried out using many complex metal deposition processes involving aqueous solutions of toxic metal salts, strong inorganic acids, precious and expensive noble metals, and requires careful process control and monitoring. As a result, these processes are often costly to operate and inefficient. DES-based technologies can: (1) improve the economic and efficient use of essential metals; (2) reduce or eliminate use of precious and expensive metals; (3) reduce the use of complex and difficult to maintain process chemistry; (4) reduce reliance on toxic and noxious materials; and (5) improve recovery, recycling and reuse of PCB metals.
机译:本章介绍了几种新工艺的开发,这些工艺与印刷电路板(PCB)金属组件的制造,表征和循环利用可替代的,可持续的溶剂技术有关,这些技术基于新兴的一类称为深共晶溶剂(DES)的液体。已经证明,在许多情况下,使用DES技术可能会破坏当前的流程思想,并且原则上可以带来好处,包括提高效率,降低成本和更好地进行流程控制。这些技术提供了将新思想纳入PCB制造和装配的机会,这些新思想有助于下游,报废回收和与循环经济模型一致的分离。当前的PCB制造使用许多复杂的金属沉积工艺进行,包括有毒金属盐,强无机酸,贵重且昂贵的贵金属的水溶液,并且需要仔细的过程控制和监视。结果,这些过程通常操作成本高且效率低下。基于DES的技术可以:(1)改善经济和有效使用必需金属; (2)减少或消除贵重金属的使用; (3)减少使用复杂而难以维持的工艺化学; (4)减少对有毒有害物质的依赖; (5)改善PCB金属的回收,再循环和再利用。

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  • 来源
    《Issues in environmental science and technology》 |2020年第49期|278-312|共35页
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  • 作者单位

    University of Leicester Materials Centre Department of Chemistry University Road Leicester LE1 7RH UK;

    University of Northampton Institute for Creative Leather Technologies University Drive Northampton NN1 5PH UK;

    Nottingham Trent University Department of Chemistry and Forensics Clifton Campus Nottingham NG11 8NS UK;

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  • 入库时间 2022-08-18 05:20:23

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