共 37 条
- [1] WANG Shuxiao, ZHANG Lei, Environmental impact of anthropogenic atmospheric mercury emission in China and its control countermeasures[J], Environmental Protection, 41, 9, pp. 31-34, (2013)
- [2] LI Xin, WANG Mingyong, GONG Xuzhong, Simultaneous and efficient leaching of mercury and antimony from mercury tailings, Nonferrous Metals Science and Engineering, 11, 4, pp. 9-13, (2020)
- [3] FENG Xinbin, SHI Jianbo, LI Ping, Et al., Progress of mercury pollution research and implementation of minamata convention in China[J], Bulletin of Chinese Academy of Sciences, 35, 11, pp. 1344-1350, (2020)
- [4] GUO Xueyi, TIAN Qinghua, LIU Yong, Et al., Progress in research and application of non-ferrous metal resources recycling, The Chinese Journal of Nonferrous Metals, 29, 9, pp. 1859-1901, (2019)
- [5] ZHANG Zhiheng, CHEN Zhikang, TU Yuxin, Et al., Selective capture of elemental mercury by sulfur-rich CuS<sub>x</sub> in copper smelting flue gas, The Chinese Journal of Nonferrous Metals, 33, 8, pp. 2691-2706, (2023)
- [6] LI Ziliang, XU Zhifeng, ZHANG Xi, Et al., Research status of elemental mercury removal from flue gas in non-ferrous metals production, Nonferrous Metals Science and Engineering, 11, 2, pp. 20-26, (2020)
- [7] MA Yongpeng, DU Jingjing, ZHANG Xinming, Et al., Research progress on mercury emission control technology from nonferrous metal smelting flue gas, Guangzhou Chemical Industry, 44, 16, pp. 9-12, (2016)
- [8] RUAN Zesheng, WANG Qitao, HAN Xianxiang, Et al., Removal of gaseous mercury by ZnS adsorbent prepared from zinc smelter byproducts[J], Chinese Journal of Engineering, 46, 1, pp. 33-43, (2024)
- [9] YANG Shu, LIU Zhilou, YAN Xu, Et al., Catalytic oxidation of elemental mercury in coal-combustion flue gas over the CuAlO<sub>2</sub> catalyst, Energy & Fuels, 33, 11, pp. 11380-11388, (2019)
- [10] ZHANG Shibo, ZHAO Yongchun, DIAZ-SOMOANO M, Et al., Synergistic mercury removal over the CeMnO<sub>3</sub> perovskite structure oxide as a selective catalytic reduction catalyst from coal combustion flue gas, Energy & Fuels, 32, 11, pp. 11785-11795, (2018)