School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing, 100083, China.
State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing, 100083, China; School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing, 100083, China.
J Environ Manage. 2024 Jan 1;349:119535. doi: 10.1016/j.jenvman.2023.119535. Epub 2023 Nov 17.
Electroplating sludge (ES) has become an obstacle to the sustainable development of the electroplating industry. Electroplating sludge has a large storage capacity, with a high concentration of soluble pollutants (heavy metals), which has great potential to harm the local ecosystems and human health. Although much research has been done in this area, there seems to be no mature and stable solution. Therefore, the latest technologies for the reduction, pretreatment and reuse of electroplating sludge are emphatically introduced based on the analysis of the characteristics of electroplating sludge and its impact on the ecological environment. The factors hindering the treatment and disposal of electroplating sludge are pointed out, and reasonable and feasible suggestions to solve this problem are proposed. The solidification and removal mechanism of heavy metals in electroplating sludge is emphatically analyzed. The physicochemical and separation processes of heavy metals, as well as thermal treatment technique are discussed. Finally, it is proposed to establish a database of the physicochemical properties and elemental content of electroplating sludge to achieve its systematic treatment and digestion. We hope that this paper can help solve the problem of electroplating sludge and promote the sustainable development of the electroplating industry.
电镀污泥(ES)已成为电镀行业可持续发展的障碍。电镀污泥具有较大的储存容量,且可溶性污染物(重金属)浓度较高,对当地生态系统和人类健康具有潜在的巨大危害。尽管在这一领域已经开展了大量研究,但似乎仍然没有成熟稳定的解决方案。因此,在分析电镀污泥特性及其对生态环境影响的基础上,着重介绍了电镀污泥减量化、预处理和再利用的最新技术。指出了阻碍电镀污泥处理和处置的因素,并提出了合理可行的解决方案。着重分析了电镀污泥中重金属的固化去除机理。讨论了重金属的物理化学和分离过程以及热处置技术。最后,提出建立电镀污泥理化性质和元素含量数据库,实现系统处理和消化。希望本文能够有助于解决电镀污泥问题,促进电镀行业的可持续发展。