Seif Rania, Salem Fatma Zakaria, Allam Nageh K
Energy Materials Laboratory, School of Sciences and Engineering, The American University in Cairo, New Cairo, 11835 Egypt.
Environ Dev Sustain. 2023 Jan 18:1-36. doi: 10.1007/s10668-023-02925-7.
Waste from electrical and electronic equipment exponentially increased due to the innovation and the ever-increasing demand for electronic products in our life. The quantities of electronic waste (e-waste) produced are expected to reach 44.4 million metric tons over the next five years. Consequently, the global market for electronics recycling is expected to reach $65.8 billion by 2026. However, electronic waste management in developing countries is not appropriately handled, as only 17.4% has been collected and recycled. The inadequate electronic waste treatment causes significant environmental and health issues and a systematic depletion of natural resources in secondary material recycling and extracting valuable materials. Electronic waste contains numerous valuable materials that can be recovered and reused to create renewable energy technologies to overcome the shortage of raw materials and the adverse effects of using non-renewable energy resources. Several approaches were devoted to mitigate the impact of climate change. The cooperate social responsibilities supported integrating informal collection and recycling agencies into a well-structured management program. Moreover, the emission reductions resulting from recycling and proper management systems significantly impact climate change solutions. This emission reduction will create a channel in carbon market mechanisms by trading the CO emission reductions. This review provides an up-to-date overview and discussion of the different categories of electronic waste, the recycling methods, and the use of high recycled value-added (HAV) materials from various e-waste components in green renewable energy technologies.
由于创新以及我们生活中对电子产品的需求不断增加,电气和电子设备产生的废物呈指数级增长。预计未来五年产生的电子废物(电子垃圾)数量将达到4440万吨。因此,到2026年,全球电子回收市场预计将达到658亿美元。然而,发展中国家的电子废物管理没有得到妥善处理,因为只有17.4%的电子废物被收集和回收。电子废物处理不当会导致严重的环境和健康问题,以及在二次材料回收和提取有价值材料过程中自然资源的系统性消耗。电子废物含有许多有价值的材料,可以回收再利用,以创造可再生能源技术,从而克服原材料短缺问题以及使用不可再生能源资源带来的不利影响。人们采取了几种方法来减轻气候变化的影响。企业社会责任支持将非正式收集和回收机构纳入一个结构良好的管理计划。此外,回收和适当管理系统带来的减排对气候变化解决方案有重大影响。这种减排将通过交易二氧化碳减排量在碳市场机制中创造一个渠道。本综述提供了关于电子废物的不同类别、回收方法以及绿色可再生能源技术中各种电子废物组件的高回收附加值(HAV)材料的使用的最新概述和讨论。