Selective recovery of critical metals from environmental and anthropogenic waste by biologically mediated fractionation
Selective recovery of critical metals from environmental and anthropogenic waste by biologically mediated fractionation
批准号:
2615188
负责人:
金额:
$0.0万
依托单位:
依托单位国家:
英国
项目类别:
Studentship
财政年份:
2021
资助国家:
英国
项目状态:
未结题
起止时间:
2021 至 --
中文摘要
关键金属(CMs),如锌、铜、铅、钴以及稀土元素(REEs),随着依赖这些金属的设备的消费持续增长,全球对这些金属的需求正在增加。然而,这类金属的长期供应和可用性受到压力,再循环率极低,这意味着需要更可持续的CM回收方法。使用吸附材料,如反应性磁性纳米颗粒,为从各种来源(如灰烬材料、矿山尾矿或废水)中提取CMs提供了一种很有前途的解决方案。磁性纳米颗粒,如磁铁矿,是天然存在的,可以通过生物源方法生产,这是低成本和可持续的替代苛刻的化学提取方法。该项目将研究如何利用生物磁性矿物选择性地提取不同来源的不同金属和CMs,即分馏酸。该候选人将与布里斯托尔大学、埃克塞特大学和工业CASE合作伙伴(Indivus)合作,为复杂问题开发创新解决方案,并探索环境现场金属污染的更广泛问题。
英文摘要
Critical metals (CMs) such as zinc, copper, lead, cobalt, as well as rare earth elements (REEs) are under increasing global demand as the consumption of devices dependent upon such metals continues to grow. However, the long-term supply and availability of such metals are under strain, with extremely low rates of recycling meaning that more sustainable methods for CM recovery are required. The use of sorbent materials such as reactive, magnetic nanoparticles offers a promising solution for the extraction of CMs from a range of sources such as in ash material, from mine tailings, or wastewater. Magnetic nanoparticles, such as magnetite, are naturally occurring and can be produced via biogenic approaches which are low cost and sustainable alternatives to harsher chemical extraction methods. This project will investigate how biogenic magnetic minerals can be used to selectively extract, i.e. fractionate, different metals and CMs from different sources. The candidate will collaborate with the University of Bristol, The University of Exeter, and an industrial CASE partner (Indivus) to develop innovative solutions to a complex problem, as well as exploring the wider issue of metal contamination in environmental field sites.
期刊论文(0)
专著(0)
科研奖励(0)
会议论文
海外基金