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基于 CaO-SiO-AlO 体系的危险废物焚烧飞灰和危险废物污泥共熔。

Co-vitrification of hazardous waste incineration fly ash and hazardous waste sludge based on CaO-SiO-AlO system.

机构信息

School of Environmental Science and Engineering, Zhejiang Provincial Key Laboratory of Solid Waste Treatment and Recycling, Zhejiang Engineering Research Center of Non-ferrous Metal Waste Recycling, Instrumental Analysis Center of Zhejiang Gongshang University, Zhejiang Gongshang University, Hangzhou, Zhejiang, 310012, China.

Hangzhou Guiyuan Environmental Technology Co. Ltd., Hangzhou, Zhejiang, 310012, China.

出版信息

J Environ Manage. 2023 Jul 15;338:117776. doi: 10.1016/j.jenvman.2023.117776. Epub 2023 Mar 23.

Abstract

Based on the CaO-SiO-AlO system, the feasibility of co-vitrification of hazardous waste incineration fly ash (FA) and hazardous waste sludge (HWS) was verified. In the CaO-SiO-AlO ternary system diagram, the melting point of the system gradually decreases with an appropriate increase in SiO content when the CaO/AlO ratio is determined to be approximately 1. The TG-DSC results revealed that the liquid phase generation temperature in the FA and HWS mixture system was significantly lower than those of FA and HWS individually owing to the different CaO, SiO, and AlO contents; this is consistent with the results of the theoretical melting characteristics analysis, which show that the melting characteristic temperatures can be reduced by controlling the CaO-SiO-AlO ratio in the system. The co-vitrification experimental results confirmed that a vitreous content above 92%, a loss ratio on acid dissolution less than 1.74%, and leaching toxicity of heavy metals lower than 0.15 mg/L could be obtained by adjusting the CaO, SiO, and AlO contents in the FA and HWS system to 20 wt%-32.5 wt%, 35 wt%-61 wt% and 14 wt%-32.5 wt%, respectively, and under a melting temperature of 1350 °C.

摘要

基于 CaO-SiO-AlO 体系,验证了危险废物焚烧飞灰(FA)和危险废物污泥(HWS)共熔的可行性。在 CaO-SiO-AlO 三元体系图中,当确定 CaO/AlO 比约为 1 时,SiO 含量适当增加,体系的熔点逐渐降低。TG-DSC 结果表明,由于 FA 和 HWS 混合物系统中不同的 CaO、SiO 和 AlO 含量,其液相生成温度明显低于 FA 和 HWS 各自的液相生成温度;这与理论熔融特性分析的结果一致,表明通过控制体系中的 CaO-SiO-AlO 比,可以降低熔融特性温度。共熔实验结果证实,通过调整 FA 和 HWS 系统中的 CaO、SiO 和 AlO 含量分别为 20 wt%-32.5 wt%、35 wt%-61 wt%和 14 wt%-32.5 wt%,在熔融温度为 1350°C 时,可获得玻璃含量高于 92%、酸溶解损失率低于 1.74%且重金属浸出毒性低于 0.15 mg/L 的共熔物。

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