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Preparation of a Sulfate-based Complex Coagulant from Boiler Slag and its Application in Domestic Sewage Treatment

机译:从锅炉渣制备硫酸盐的复合凝血剂及其在国内污水处理中的应用

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This paper presents a new way of recycling aluminum and iron in boiler slag derived from coal combustion plants for the production of a sulfate-based complex coagulant containing ferric sulfate and aluminum sulfate. The boiler slag sample was determined for more complete characterization by means of scanning electron microscopy(SEM), X-ray diffraction(XRD), X-ray fluorescence(XRF) and other techniques. An analysis for the boiler slag sample collected from Baotou Steel Plant located in Inner Mongolia, PR China showed that the quantity of iron and aluminum oxides, in general, accounted for about 35% of the boiler slag. XRD analysis indicates that predominate minerals such as kaolinite, quartz, calcium silicide, hematate and metakoalin exist in this boiler slag. This boiler salg was evaluated to determine the efficiency of converting the iron and aluminum components of the material into a sulfate-based complex coagulant when heated with sulfuric acid at different temperatures and reaction times. The maximum concentrations of Fe~(3+) and Al~(3+) in the complex coagulant prepared from the boiler slag were obtained at 130 and after 3 h of reaction time. These concentrations were 0.04 M Fe~(3+) and 0.46 M Al~(3+), respectively. The corresponding conversion efficiencies of aluminum and iron were 66.2 and 95.0% in the boiler slag, respectively. Finally, the prepared sulfate-based complex coagulant proved to be an effective agent for reducing the turbidity and chemical oxygen demand(COD) of a typical domestic sewage sample.
机译:本文呈现回收铝和铁在从煤燃烧植物的用于生产含有硫酸铁和硫酸铝基于硫酸盐的复合物的凝结剂锅炉炉渣的新方法。锅炉炉渣样品通过扫描电子显微镜(SEM),X射线衍射(XRD),X-射线荧光(XRF)和其他技术来确定用于更完整的表征。用于从设在内蒙古包钢植物收集的炉渣样品的分析中,PR中国表明,铁和铝的氧化物的量,一般来说,占锅炉炉渣的约35%。 XRD分析表明,占主导地位的矿物,如高岭石,石英,硅化钙,hematate和metakoalin存在于这个锅炉炉渣。此锅炉salg进行评价,以确定何时在不同温度和反应时间的硫酸加热转换材料的铁和铝部件成基于硫酸盐的复合物凝结剂的效率。在130,获得和的反应时间3小时后在从锅炉炉渣制备的复合凝结剂的Fe〜(3+)和Al〜(3+)的最大浓度。这些浓度为0.04M的铁〜(3+)和分别0.46级的Al〜(3+)。的铝和铁的相应的转换效率分别为66.2和在锅炉炉渣95.0%。最后,将制备的基于硫酸盐的复合物凝结剂被证明是用于降低浊度和典型的生活污水样品的化学需氧量(COD)的有效试剂。

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