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硫固定法处理重金属废渣制作硫磺建材的研究 被引量:2
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作者 杨少辉 闵小波 +2 位作者 柴立元 梁彦杰 蒋万顺 《中南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2011年第11期3262-3269,共8页
以某冶炼厂污酸处理后形成的硫化渣和石膏渣为原料,在分析浸出毒性和抗压性能的基础上,探讨硫固定的工艺条件。研究结果表明:硫化渣的浸出毒性比石膏渣的浸出毒性强,其中Zn和Cd的浸出质量浓度分别为1 547.0 mg/L和104.4 mg/L;增加硫磺... 以某冶炼厂污酸处理后形成的硫化渣和石膏渣为原料,在分析浸出毒性和抗压性能的基础上,探讨硫固定的工艺条件。研究结果表明:硫化渣的浸出毒性比石膏渣的浸出毒性强,其中Zn和Cd的浸出质量浓度分别为1 547.0 mg/L和104.4 mg/L;增加硫磺用量和添加石膏渣有利于降低其浸出质量浓度;利用1 mol/L硫化钠溶液进行预处理,固化体中的Zn和Cd浸出质量浓度分别为1.74 mg/L和0.87 mg/L,低于危险废物浸出毒性鉴别标准(GB 5085.3—2007);当硫化渣粒径小于150μm,石膏渣用量为20%,骨料用量为15%时,固化体的抗压强度达到最大值47.5 MPa,根据混凝土强度检验评定标准(GBJ 107—87),达到C47混凝土强度等级。 展开更多
关键词 硫固定法 重金属废渣 浸出毒性 抗压强度
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SO_2/Hg removal from flue gas by dry FGD 被引量:5
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作者 Wang Fan Wang Hongmei +4 位作者 Zhang Fan Zhu Jinwei Tian Gang Liu Yu Mao Jixian 《International Journal of Mining Science and Technology》 2012年第1期107-110,共4页
To study the mechanism of SO2 and Hg removal from flue gas, an experimental packed bed reactor was designed to simulate the dry FGD, where a mixture of lime and fly ash in ratio 1:3 w/w was used as the S02 and Hg sor... To study the mechanism of SO2 and Hg removal from flue gas, an experimental packed bed reactor was designed to simulate the dry FGD, where a mixture of lime and fly ash in ratio 1:3 w/w was used as the S02 and Hg sorbent, and steam at temperature of 100 ℃ was applied for activation of the sorbent, while the activation time set to 20 rain. The experimental factors including the SO2/Hg sorbent characteristics, 50% breakthrough time for SO2/Hg removal, sorbent packed bed depth and reaction temperature were investigated. The experimental results show that after steam activation, the BET specific surface area and specific pore volume increased from 37.8 to 45.5 m^2/g and from 0.42 to 0.51 cm^3/g, respectively. With activation of the sorbent by steam, the 50% breakthrough times of SO2 and Hg removal increased from 34 to 42 rain and from 23 to 45 rain, respectively. When the packed bed depth was increased from 5 to 25 ram. the 50% breakthrough times for Hg and S02 removal increased from 12 to 52 rain and from 6 to 47 rain, respectively. With the increase of the reaction temperature, the 50% breakthrough of SO2/Hg removal decreased accordingly. Steam activation can efficiently improve SO2/Hg removal simultaneously. 展开更多
关键词 SO2 removal Hg removal Dry FGD Sorbent activation
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