Department of Health Sciences and Technology, ETH Zurich, Zurich, 8092, Switzerland.
Laboratory for Cellulose & Wood Materials, Empa-Swiss Federal Laboratories for Materials Science and Technology, Dübendorf, 8600, Switzerland.
Adv Mater. 2024 May;36(19):e2310642. doi: 10.1002/adma.202310642. Epub 2024 Jan 29.
Demand for gold recovery from e-waste grows steadily due to its pervasive use in the most diverse technical applications. Current methods of gold recovery are resource-intensive, necessitating the development of more efficient extraction materials. This study explores protein amyloid nanofibrils (AF) derived from whey, a dairy industry side-stream, as a novel adsorbent for gold recovery from e-waste. To do so, AF aerogels are prepared and assessed against gold adsorption capacity and selectivity over other metals present in waste electrical and electronic equipment (e-waste). The results demonstrate that AF aerogel has a remarkable gold adsorption capacity (166.7 mg g) and selectivity, making it efficient and an adsorbent for gold recovery. Moreover, AF aerogels are efficient templates to convert gold ions into single crystalline flakes due to Au growth along the (111) plane. When used as templates to recover gold from e-waste solutions obtained by dissolving computer motherboards in suitable solvents, the process yields high-purity gold nuggets, constituted by ≈90.8 wt% gold (21-22 carats), with trace amounts of other metals. Life cycle assessment and techno-economic analysis of the process finally consolidate the potential of protein nanofibril aerogels from food side-streams as an environmentally friendly and economically viable approach for gold recovery from e-waste.
由于金在最广泛的技术应用中无处不在,从电子废物中回收金的需求稳步增长。目前的金回收方法资源密集型,需要开发更有效的提取材料。本研究探索了乳清(乳制品工业的副产物)中蛋白质淀粉样纤维纳米原纤维(AF)作为一种从电子废物中回收金的新型吸附剂。为此,制备了 AF 气凝胶,并评估了其对金的吸附能力和对其他存在于废弃电子电气设备(电子废物)中的金属的选择性。结果表明,AF 气凝胶具有显著的金吸附能力(166.7mg g)和选择性,使其成为一种高效且可用于从电子废物中回收金的吸附剂。此外,由于 Au 沿(111)面生长,AF 气凝胶是将金离子转化为单晶薄片的有效模板。当用作从溶解在合适溶剂中的计算机主板中获得的电子废物溶液中回收金的模板时,该过程可得到高纯度的金块,由约 90.8wt%的金(21-22 克拉)组成,痕量其他金属。该过程的生命周期评估和技术经济分析最终巩固了从食品副产物中提取的蛋白质纳米纤维气凝胶作为一种从电子废物中回收金的环保且经济可行方法的潜力。