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煤基半焦对重金属土壤中铬和镉的原位钝化及作用机制分析
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作者 陈东享 朱佳媚 +1 位作者 刘冰倩 岳晓明 《煤炭转化》 CAS CSCD 北大核心 2024年第1期60-70,共11页
工业化和城市化的快速发展对土壤造成严重的重金属污染,其中由于铬、镉的毒性强,对环境的危害极大。以资源丰富的石河子煤和乌鲁木齐煤为原料经热解制得半焦,将其作为铬和镉污染土壤的钝化材料,以实现重金属污染土壤的修复和改良。利用... 工业化和城市化的快速发展对土壤造成严重的重金属污染,其中由于铬、镉的毒性强,对环境的危害极大。以资源丰富的石河子煤和乌鲁木齐煤为原料经热解制得半焦,将其作为铬和镉污染土壤的钝化材料,以实现重金属污染土壤的修复和改良。利用热重分析得到两种煤样热解的特征温度;采用N_(2)等温吸附法对半焦的孔隙结构进行了表征。通过重金属浸提实验,研究了半焦钝化剂作用时间和添加量对单一污染土壤及复合污染土壤中重金属有效态含量的影响。结果表明:乌鲁木齐煤基半焦具有较适宜重金属钝化的表面特征,孔径主要集中在1.8 nm~4.0 nm,单位面积酸性官能团和碱性官能团数量较多,分别为0.0026 mmol/m^(2)和0.0164 mmol/m^(2);在其添加量为5%,粒径为300μm~500μm,与土壤作用时间为90 d的条件下,铬和镉的有效态含量分别下降了78%和21%。相比于单一污染土壤,竞争作用使得复合污染土壤中铬和镉的钝化效果略有下降。此外,土壤中添加半焦后,土壤的pH值保持在稳定的弱碱性范围内,其有机质含量和阳离子交换量均有提高,改善了土壤的理化性质,可增强土壤肥力。 展开更多
关键词 土壤修复 煤基半焦 重金属有效态
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Characterization of semi-coke generated by coal-based direct reduction process of siderite
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作者 朱德庆 罗艳红 +1 位作者 潘建 周仙霖 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第8期2914-2921,共8页
Solid wastes derived from metallurgical industries pose a significant threat to environment. The utilization and disposal of these solid wastes are the major concern in the world. Semi-coke generated in coal-based dir... Solid wastes derived from metallurgical industries pose a significant threat to environment. The utilization and disposal of these solid wastes are the major concern in the world. Semi-coke generated in coal-based direct reduction process of iron ore is a by-product and its suitable utilization is not available so far. In order to handle it properly, the characteristics of this by-product were comprehensively investigated. A series of analysis methods were used to demonstrate its mineral compositions, petrography and physico-chemical properties. The results reveal that the semi-coke has poor washability. The fixed carbon content of semi-coke reaches 76.11% and the gross calorific value is 28.10 MJ/kg, both of which are similar to those of traditional sinter coke breeze. Also, semi-coke ash possesses lower content of SiO2, Al2O3, S and higher content of CaO and MgO, which could improve the strength of sinter ore when partially substituting for coke breeze in sintering. Semi-coke features well-development porous structure and higher reaction activity, which predicts that the sintering speed could be elevated to some extent when employing it as a partial replacement of coke breeze, so the studies further suggest that the potential adverse effect of the high reactivity on sintering process could be weakened by adequately coarsening the semi-coke's particle size. 展开更多
关键词 SEMI-COKE coal-based direct reduction non-magnetic product sinter fuel
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