Transport and transformation of mercury during wet flue gas cleaning process of nonferrous metal smelting

被引:0
作者
Zhilou Liu
Dongli Wang
Bing Peng
Liyuan Chai
Hui Liu
Shu Yang
Bentao Yang
Kaisong Xiang
Cao Liu
机构
[1] Central South University,School of Metallurgy and Environment
[2] JiangXi University of Science and Engineering,School of Metallurgy and Chemical Engineering
[3] Chinese National Engineering Research Center for Control and Treatment of Heavy Metal Pollution,undefined
来源
Environmental Science and Pollution Research | 2017年 / 24卷
关键词
Mercury; Transformation; Distribution; Cleaning process; Nonferrous metal smelting flue gas;
D O I
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中图分类号
学科分类号
摘要
Reducing mercury emission is hot topic for international society. The first step for controlling mercury in fuel gas is to investigate mercury distribution and during the flue gas treatment process. The mercury transport and transformation in wet flue gas cleaning process of nonferrous smelting industry was studied in the paper with critical important parameters, such as the solution temperature, Hg0 concentration, SO2 concentration, and Hg2+ concentration at the laboratory scale. The mass ratio of the mercury distribution in the solution, flue gas, sludge, and acid fog from the simulated flue gas containing Hg2+ and Hg0 was 49.12~65.54, 18.34~35.42, 11.89~14.47, and 1.74~3.54%, respectively. The primary mercury species in the flue gas and acid fog were gaseous Hg0 and dissolved Hg2+. The mercury species in the cleaning solution were dissolved Hg2+ and colloidal mercury, which accounted for 56.56 and 7.34% of the total mercury, respectively. Various mercury compounds, including Hg2Cl2, HgS, HgCl2, HgSO4, and HgO, existed in the sludge. These results for mercury distribution and speciation are highly useful in understanding mercury transport and transformation during the wet flue gas cleaning process. This research is conducive for controlling mercury emissions from nonferrous smelting flue gas and by-products.
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页码:22494 / 22502
页数:8
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