Technology critical metal recycling using ultrasonics and catalytic etchants
Technology critical metal recycling using ultrasonics and catalytic etchants
批准号:
EP/W018632/1
负责人:
Andrew Abbott
金额:
$123.61万
依托单位:
依托单位国家:
英国
项目类别:
Research Grant
财政年份:
2022
资助国家:
英国
项目状态:
未结题
起止时间:
2022 至 --
中文摘要
技术关键金属(tcm)是专业金属的一个重要的独特子集,通常是“关键”金属,每种金属都有自己的特定属性。它们是整个工业,特别是清洁能源和数字技术中大多数主要应用的基本推动者,它们对世界脱碳至关重要。对中草药的需求正在增长,新兴技术需要更广泛的材料和循环经济方法,以实现能源转型和净零目标。英国目前100%依赖中药进口,因此回收这些金属并发展循环经济至关重要。不幸的是,这些金属分布广泛,目前的非选择性湿法冶金技术难以保持其价值。这项研究计划的愿景集中在使用有针对性的催化腐蚀剂,这种腐蚀剂可以控制复杂结构中药材的氧化还原状态。该项目将以分层结构为目标,如光伏和热电器件,尽管它同样可以应用于各种其他结构,如印刷电路板和复合材料,特别是那些对航空航天或风能可再生能源等行业具有重要价值的结构。该项目的新颖之处在于将催化蚀刻剂与超声波技术相结合,实现了几乎瞬时的分离,并实现了选择性的、快速的生产工艺。该项目旨在开发一系列可持续的、廉价的催化剂,这些催化剂可以模拟在生物和地质环境中所做的工作,最好是利用空气再生。实际的回收解决方案需要快速和有效,而对金属来说,做到这一点的秘诀是增加质量运输和改变形态。该项目解决了前者使用聚焦超声和后者使用新的环境温度离子流体。
英文摘要
Technology critical metals (TCMs) are an essential distinct subset of specialist, often 'critical' metals, and each has its own specific properties. They are fundamental enablers of most major applications throughout industry and especially in clean energy and digital technologies, and they are essential for the world to decarbonise. The demand for TCMs is growing, and a wider range of materials and a circular economy approach are needed for the emerging technologies that will enable the energy transition and net zero aims. The UK is currently 100% import-reliant on TCMs and so it is essential to recycle these metals and develop a circular economy. Unfortunately these metals are diffusely distributed and maintaining value is difficult with current non-selective hydrometallurgical techniques. The vision of this research proposal centres on the use of targeted, catalytic etchants which can control the redox state of TCMs from complex architectures. This project will target layered structures such as photovoltaic and thermoelectric devices although it could equally be applied to a variety of other structures such as printed circuit boards and composites, particularly those of significant value to industries such as aerospace or wind renewables. The novelty of this project lies in combining catalytic etchants with ultrasonic techniques to bring about almost instantaneous separation and enable selective, fast-throughput processes to be developed. This project aims to develop a range of sustainable, inexpensive catalysts which can preferably be regenerated using air emulating what is done in a biological and geological environment. Practical recycling solutions need to be rapid and efficient and the secret to doing this for metals is to increase mass transport and change speciation. This project addresses the former using focussed ultrasound and the latter using novel ambient temperature ionic fluids.
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DOI:
10.1039/d3ta05966a
发表时间:
2024
期刊:
Journal of Materials Chemistry A
影响因子:
11.9
作者:
[Bashayer Nafe N. Alsulami;T. David;A. Essien;S. Kazim;Shahzad Ahmad;T. J. Jacobsson;Andrew Feeney;J. Kettle]
通讯作者:
Bashayer Nafe N. Alsulami;T. David;A. Essien;S. Kazim;Shahzad Ahmad;T. J. Jacobsson;Andrew Feeney;J. Kettle
DOI:
10.1016/j.electacta.2023.143707
发表时间:
2023-12
期刊:
Electrochimica Acta
影响因子:
6.6
作者:
[Christopher E. Elgar;Sam Ravenhill;Philip Hunt;Ben Jacobson;Andrew Feeney;Paul Prentice;K. Ryder;Andrew P. Abbott]
通讯作者:
Christopher E. Elgar;Sam Ravenhill;Philip Hunt;Ben Jacobson;Andrew Feeney;Paul Prentice;K. Ryder;Andrew P. Abbott
Targeted recovery of metals from thermoelectric generators (TEGs) using chloride brines and ultrasound
使用氯化物盐水和超声波从热电发电机 (TEG) 中定向回收金属
DOI:
10.1039/d3su00087g
发表时间:
2023
期刊:
RSC Sustainability
影响因子:
--
作者:
[Zante G]
通讯作者:
Zante G
Concentrated Ionic Fluids: Is There a Difference Between Chloride-Based Brines and Deep Eutectic Solvents?
浓离子液体:氯化物盐水和低共熔溶剂之间有区别吗?
DOI:
10.1002/anie.202311140
发表时间:
2023
期刊:
Angewandte Chemie (International ed. in English)
影响因子:
--
作者:
[Zante G]
通讯作者:
Zante G
A toolbox for improved recycling of critical metals and materials in low-carbon technologies
用于改善低碳技术中关键金属和材料回收的工具箱
DOI:
10.1039/d3su00390f
发表时间:
2024
期刊:
RSC Sustainability
影响因子:
--
作者:
[Zante G]
通讯作者:
Zante G
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国内基金
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