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首页> 外文期刊>Journal of Chemical Engineering and Materials Science >Chemical reactivity between CaCO3 and Ca(OH)2 in acid mine drainage (AMD) with mixing and shaking techniques during the destabilization-hydrolysis of the AMD
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Chemical reactivity between CaCO3 and Ca(OH)2 in acid mine drainage (AMD) with mixing and shaking techniques during the destabilization-hydrolysis of the AMD

机译:酸性矿山排水(AMD)中CaCO3和Ca(OH)2之间的化学反应性,通过混合和摇动技术在AMD的不稳定水解过程中

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The acid mine drainage (AMD) was poured into five 500 ml glass beakers. The samples were dosed with synthetic af-PFCl of Ca(OH)2 and af-PFCl of CaCO3 polymers respectively. The samples were treated in a jar test and a shaker at 250 rpm for 2 min, and thereafter were allowed to settle for an hour after which the pH, conductivity and turbidity (TSS) were measured. A similar second set of experiments was conducted by placing the samples in a shaker at 250 rpm for 2 min, after which three measurements were conducted after 1, 2 and 6 h. Similar third and fourth set of experiments was conducted dosing the AMD with 0.043 M of Ca2+ in Ca(OH)2, and 0.043 M Ca2+ in CaCO3 respectively. A fifth set of experiment was conducted by dosing the AMD sample with 0.021 and 0.043 M Ca2+ in Ca(OH)2 respectively and treated in a jar test, shaker and without mixing. The synthetic acid free PFCl of Ca(OH)2 or CaCO3 exhibited a high TSS removal efficiency. Both polymers also show a similarly identical TSS removal efficiency, which depict Fe3+ ions as the principal role player during destabilization-hydrolysis. Effective sedimentation of the turbid materials in the AMD sample with af-PFCl polymers of both Ca(OH)2 or CaCO3 occurs after 2 h of settling. The TSS removal values in the AMD sample which were treated in a shaker at 200 rpm are slightly lower than those treated in a jar test at 200 rpm. The residual TSS values in the AMD samples stirred at 350 rpm during rapid mixing are slightly higher compared to those stirred at 200 rpm rapid mixing.
机译:将酸性矿山排水系统(AMD)倒入五个500毫升玻璃烧杯中。分别给样品添加Ca(OH)2的合成af-PFCl和CaCO3聚合物的af-PFCl。将样品在广口瓶试验和摇床中以250 rpm的转速处理2分钟,然后静置一个小时,然后测量pH,电导率和浊度(TSS)。通过将样品在250 rpm的振动器中放置2分钟,进行了类似的第二组实验,然后在1、2和6小时后进行了3次测量。进行了相似的第三组和第四组实验,分别给AMD配以Ca(OH)2中的0.043 M Ca2 +和CaCO3中的0.043 M Ca2 +。第五组实验是通过分别向AMD样品中的Ca(OH)2溶液中加入0.021和0.043 M Ca2 +的AMD样品进行的,并在广口瓶试验,摇动器中进行处理,并且不混合。 Ca(OH)2或CaCO3的合成无酸PFCl表现出很高的TSS去除效率。两种聚合物还显示出相似的TSS去除效率,这表明Fe3 +离子是去稳定-水解过程中的主要角色。在沉降2小时后,用Ca(OH)2或CaCO3的af-PFCl聚合物有效沉淀AMD样品中的混浊物质。在200 rpm的振动器中处理过的AMD样品中的TSS去除值略低于在200 rpm的jar测试中处理的TSS去除值。与以200 rpm快速混合搅拌的样品相比,在快速混合期间以350 rpm搅拌的AMD样品中的残留TSS值略高。

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