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Stabilization of Industrial by-Products Using Alkali Activation

机译:使用碱活化稳定工业副产品

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摘要

With increase in the growth of industrialization, proper disposal of wastes is one of the major issues nowadays that has to be handled with seriously Research has sprung to full pace in recent years on utilization of wastes. Geopolymerization is the latest trend in that path. The requirements for the synthesis of any geopolymer are alkali solution and aluminosilicate material. So the by-products which are rich in Silica and Alumina can be used as aluminosilicate sources. In the present work, four by-products namely ground granulated blast furnace slag (GGBFS), fly ash, rice husk ash (RHA) and red mud were taken as raw materials. All the materials except rice husk ash constitute alumina along with silica. These materials were activated by NaOH with varying percentages i.e. 5%, 10%, 15% of raw material. Light compaction tests were conducted for each addition of chemical to the raw material. The effect of different percentages of NaOH on the strength of raw materials was investigated by unconfined compressive tests. For each combination of raw material and percentage of NaOH, three samples were prepared at optimum moisture content (OMC) and maximum dry density (MDD) and kept for curing at ambient temperature for prefixed periods (i.e. 0day, 7days, and 28 days). Mineralogical analysis of the samples was done by X-ray diffraction (XRD) analysis. The results show that with increase in percentages of NaOH, the strength of GGBFS and fly ash increases. But the strength of alkali activated RHA on 7th day of curing decreases from the immediate strength due to presence of carbon in the material. The strength of red mud with 5% NaOH on 7th day is higher than the immediate strength and for other percentages, the strength decreases. The reaction between alkali and slag is quick which completes with 7 days of curing. Reaction products were found to be sodium aluminium silicate in GGBFS, fly ash, and RHA from XRD analysis.
机译:随着工业化的发展,废物的正确处理已成为当今必须严肃处理的主要问题之一。近年来,有关废物利用的研究如雨后春笋般涌现。地聚合是这条道路上的最新趋势。合成任何地质聚合物的要求是碱溶液和铝硅酸盐材料。因此,富含二氧化硅和氧化铝的副产物可用作硅铝酸盐来源。在目前的工作中,以磨碎的高炉矿渣(GGBFS),粉煤灰,稻壳灰(RHA)和赤泥这四种副产品为原料。除稻壳灰以外的所有材料与二氧化硅一起构成氧化铝。这些材料用不同百分比的NaOH活化,即原料的5%,10%,15%。每种原料中都添加了化学物质,进行了压实测试。通过无限制压缩试验研究了不同百分比的NaOH对原料强度的影响。对于每种原料和NaOH的百分比组合,分别在最佳水分含量(OMC)和最大干密度(MDD)下制备了三个样品,并在室温下进行了预定时间(即0天,7天和28天)固化。样品的矿物学分析通过X射线衍射(XRD)分析完成。结果表明,随着NaOH百分比的增加,GGBFS和粉煤灰的强度增加。但是由于材料中存在碳,固化后第7天的碱活化RHA的强度会从即时强度下降。在第7天,含5%NaOH的赤泥的强度高于即时强度,对于其他百分比,强度降低。碱和矿渣之间的反应很快,固化7天即可完成。通过XRD分析发现,反应产物为GGBFS中的硅酸钠铝,飞灰和RHA。

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    Sahoo Jayashree;

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