Zhan Xinyuan, Wang Li'ao, Gong Jian, Deng Rui, Wu Meng
School of Resources and Environmental Engineering, Hefei University of Technology, Hefei, Anhui, 230009, PR China; East China Engineering Science and Technology Co., LTD, Hefei, Anhui, 230009, PR China.
College of Resource and Environmental Science, Chongqing University, Chongqing, 40044, PR China.
Chemosphere. 2022 Nov;307(Pt 2):135793. doi: 10.1016/j.chemosphere.2022.135793. Epub 2022 Jul 21.
Municipal solid waste incineration (MSWI) fly ash and electrolytic manganese residue (EMR) were classified as hazardous waste, must be harmlessly processed prior to subsequent treatment or disposal. The competition between massive free manganese ions of raw EMR and other heavy metals was found, thus raw EMR was pretreated by calcining to eliminate competition of manganese with other heavy metals for stabilizer complexation. MSWI fly ash was successfully solidified with 6% NaHPO, 6% HNCSNH and 20% sintered EMR (800 °C). The addition of sintered EMR enhanced solidification/stabilization of heavy metals in fly ash and the resulting product had a higher compressive strength for further reutilization like trench backfilling, structural fill and void filling. The stabilization/solidification mechanism of heavy metals was attributed to the combined interaction of heavy metal precipitation in stabilizers and ion exchange or physical encapsulation in silicate compounds like calcium silicate, which is a feasible and valuable approach to co-disposal of MSWI fly ash and EMR.
城市固体废弃物焚烧(MSWI)飞灰和电解锰渣(EMR)被归类为危险废物,在后续处理或处置之前必须进行无害化处理。研究发现,原生EMR中大量游离锰离子与其他重金属之间存在竞争,因此通过煅烧对原生EMR进行预处理,以消除锰与其他重金属对稳定剂络合的竞争。采用6%的NaHPO、6%的HNCSNH和20%的烧结EMR(800℃)成功地固化了MSWI飞灰。烧结EMR的加入增强了飞灰中重金属的固化/稳定化效果,所得产品具有更高的抗压强度,可进一步用于诸如沟槽回填、结构填充和空隙填充等再利用。重金属的稳定化/固化机制归因于稳定剂中重金属沉淀以及离子交换或在硅酸钙等硅酸盐化合物中的物理包裹的综合作用,这是一种对MSWI飞灰和EMR进行协同处置的可行且有价值的方法。