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热处理后废弃紫外固化灯中废荧光粉汞含量与浸出特性的相关性

Correlation between mercury content and leaching characteristics in waste phosphor powder from spent UV curing lamp after thermal treatment.

作者信息

Back Seung-Ki, Joung Bup-Mook, Lee Eun-Song, Sung Jin-Ho, Mojammal A H M, Park Yong-Joon, Seo Yong-Chil

机构信息

Department of Environmental Engineering, Yonsei University, 1, Yeonsedae-gil, Wonju, Republic of Korea.

Eco Recycling R&D Center, 13, Dodam 3-ro, Seo-gu, Incheon, Republic of Korea.

出版信息

J Hazard Mater. 2020 Jan 15;382:121094. doi: 10.1016/j.jhazmat.2019.121094. Epub 2019 Aug 24.

Abstract

This study evaluated the correlation between the amount of mercury (Hg) compounds in waste phosphor powder from spent UV curing lamps and their leaching characteristics. The appropriate thermal treatment conditions and Hg content in the residue necessary to satisfy the leaching criteria for classification as non-hazardous waste were identified. The decomposition of Hg compounds by thermal treatment was also evaluated by comparing sequential extraction results based on thermal stability and leaching potential of Hg compounds. Before the thermal treatment, the Hg content in waste phosphor powder and concentration in the leaching extract were 108.7 mg-Hg/kg and 0.56 mg-Hg/L, respectively. Hg compounds with low thermal stability were removed rapidly during the initial stage of thermal treatment at temperatures between 400 °C and 600 °C. After thermal treatment, Hg in the form of an intermetallic compound, such as Sr-Hg, was expected to be remained mainly, and the Hg content was reduced to 13 mg-Hg/kg in the waste phosphor powder, at that point the residue satisfied the leaching standard limit (5 μg-Hg/L) for non-hazardous waste stipulated in the legislation of Republic of Korea.

摘要

本研究评估了废旧紫外线固化灯中废弃荧光粉中汞(Hg)化合物含量与其浸出特性之间的相关性。确定了满足作为非危险废物分类的浸出标准所需的适当热处理条件以及残渣中的汞含量。还通过比较基于汞化合物热稳定性和浸出潜力的连续萃取结果,评估了热处理对汞化合物的分解情况。热处理前,废弃荧光粉中的汞含量和浸出提取物中的浓度分别为108.7 mg-Hg/kg和0.56 mg-Hg/L。热稳定性低的汞化合物在400℃至600℃的热处理初始阶段迅速去除。热处理后,预计主要残留金属间化合物形式的汞,如Sr-Hg,废弃荧光粉中的汞含量降至13 mg-Hg/kg,此时残渣满足韩国立法规定的非危险废物浸出标准限值(5μg-Hg/L)。

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