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Production of a complex coagulant from fly ash
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机译:用粉煤灰生产复合混凝剂
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Fly ash was explored as a raw material for the production of a complex coagulant containing ferric sulfate and aluminum sulfate. An analysis for five major metal oxides in 71 fly ash samples collected from 32 power plants located in four different countries showed that the quantity of iron and aluminum oxides, in general, accounted for about 40% of the fly ash. A fly ash sample collected from City Power, Springfield, Illinois (CPSIL), was selected for more complete characterization by means of scanning electron microscopy (SEM) and other techniques. This fly ash was evaluated to determine the efficiency of converting the iron and aluminum components of the material into a complex coagulant when heated with sulfuric acid at different temperatures and reaction times. The maximum concentrations of Fe2+ and Al3+ in the complex coagulant prepared from the fly ash were obtained at 120 degrees C and after 4 h of reaction time. These concentrations were 0.58 M Fe3+ and 0.93 M Al3+, respectively. These concentrations correspond to conversion efficiencies of 84.8% for iron and 55.1% for aluminum in the fly ash. The complex coagulant proved to be an effective agent for reducing the turbidity, arsenic concentration and chemical oxygen demand (COD) of a given wastewater sample. 2005 Elsevier B.V. All rights reserved.
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机译:探索了粉煤灰作为生产含硫酸铁和硫酸铝的复合凝结剂的原料。对从四个不同国家的32个电厂收集的71个粉煤灰样品中的五种主要金属氧化物进行的分析表明,总体而言,铁和氧化铝的含量约占粉煤灰的40%。选择了从伊利诺斯州斯普林菲尔德市城市电力公司(CPSIL)收集的粉煤灰样品,以通过扫描电子显微镜(SEM)和其他技术进行更全面的表征。评估了该粉煤灰,以确定在不同温度和反应时间下用硫酸加热时,将材料的铁和铝成分转化为复合凝结剂的效率。由粉煤灰制得的复合凝结剂中Fe2 +和Al3 +的最大浓度在120摄氏度和4小时的反应时间后获得。这些浓度分别为0.58 M Fe3 +和0.93 M Al3 +。这些浓度对应于粉煤灰中铁的转化效率为84.8%,铝的转化效率为55.1%。事实证明,复合混凝剂是减少给定废水样品的浊度,砷浓度和化学需氧量(COD)的有效试剂。 2005 Elsevier B.V.保留所有权利。
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