首页> 外文期刊>Journal of Hazardous Materials >Structural modification of nano bentonite by aluminum, iron pillarization and 3D growth of silica mesoporous framework for arsenic removal from gold mine wastewater
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Structural modification of nano bentonite by aluminum, iron pillarization and 3D growth of silica mesoporous framework for arsenic removal from gold mine wastewater

机译:铝对纳米膨润土的结构改性,铁柱化和二氧化硅介孔骨架的3D生长以去除金矿废水中的砷

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The elevated contamination of arsenic species emitted from gold mine activities causes serious environmental problems. The modification of natural bentonite clay to obtain the adsorbent with high porosity, large surface area, and high adsorption capacity creates a new group of porous and heterostructure materials for immobilization of arsenic species from gold mine wastewater under alkaline condition, owing to the gold cyanidation process. There is a limited approach in alkaline mine wastewater, because of the negative surface charge of most adsorbents. In this research, the adsorbability of arsenic under synthetic and real alkaline wastewater was investigated for the first time. The Visual MINTEQ geochemical modeling software was applied to simulate the arsenic species under different pH, temperature and co-existing ions in mine wastewater obtained from dewatering unit in Zarshuran gold mine. Optimized parameters and better adsorbent were initially determined from synthetic alkaline wastewater, then the efficiency of the adsorption process in real alkaline mine wastewater was measured. In real wastewater treatment, the obtained adsorption efficiency higher than 70% with high reusability in the alkaline condition is an appropriated for only one step process. The major mechanism for adsorption was chemical with complexation in rapid and slow diffusion into the active sites.
机译:金矿活动中排放的砷物种污染加剧,造成了严重的环境问题。改性天然膨润土以获得高孔隙率,大表面积和高吸附能力的吸附剂,由于金的氰化过程,产生了一组新的多孔和异质结构材料,用于在碱性条件下固定金矿废水中的砷。 。由于大多数吸附剂的表面带负电荷,因此碱性矿山废水的处理方法有限。在这项研究中,首次研究了砷在合成废水和实际碱性废水中的吸附能力。应用Visual MINTEQ地球化学建模软件模拟了Zarshuran金矿脱水装置获得的矿山废水中不同pH,温度和共存离子下的砷形态。首先从合成碱性废水中确定了最佳参数和更好的吸附剂,然后测量了在实际碱性矿山废水中的吸附过程的效率。在实际废水处理中,在碱性条件下获得的高于70%的吸附效率和高可重复使用性仅适用于一步法。吸附的主要机理是化学物质,在快速和缓慢扩散到活性部位时会发生络合。

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