Experimental Investigation and Performance Optimisation of Washing Cycles for Pre-processing of Coal Fly Ash

K. Brinthan, S. Shivadhahini, Uag Senadheera, Wam Fernando
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Abstract

Coal Fly Ash (CFA), a by-product of thermal power plant combustion, has a profound focus among researchers due to its pozzolanic properties, porosity, wide chemical composition, and thermal stability. While being suitable for many applications (e.g., pozzolanic material, soil stabiliser, and structural fill), CFA is also a potential precursor for synthesising zeolites, broadly used in wastewater treatment. However, pre-processing is crucial due to the heterogeneous nature of CFA. This work focused on pre-processing CFA prior to wastewater treatment through continuous washing cycles at various operating temperatures. To this end, we studied the pH and conductivity of the solution after washing over multiple cycles, Sauter mean diameter, and the mineralogy of the settled CFA. The gathered results were analysed and optimised through response surface methodology. This was done to find the best combination of the number of washing cycles and temperature to remove soluble ions and increase the surface area of CFA particles. The analytical outcome revealed that five washing cycles at 70°C were adequate, with minimal soluble ions and maximum surface area. Evidently, these findings demonstrated significant improvements in the physical and chemical properties of CFA as a precursor for zeolite synthesis. Therefore, we recommend further studies on this front to extend the effective usage of CFA for the synthesis of commercial zeolites to be used for wastewater treatment.
粉煤灰预处理洗选循环试验研究及性能优化
煤飞灰(CFA)是火电厂燃烧的副产物,因其具有火山灰性质、多孔性、广泛的化学成分和热稳定性而受到研究人员的广泛关注。虽然CFA适用于许多应用(例如,火山灰材料,土壤稳定剂和结构填料),但它也是合成沸石的潜在前体,广泛用于废水处理。然而,由于CFA的异质性,预处理是至关重要的。这项工作的重点是在废水处理之前通过不同操作温度下的连续洗涤循环对CFA进行预处理。为此,我们研究了多次洗涤后溶液的pH值和电导率、Sauter平均直径以及沉淀CFA的矿物学。利用响应面法对收集到的结果进行分析和优化。这样做是为了找到洗涤循环次数和温度的最佳组合,以去除可溶性离子并增加CFA颗粒的表面积。分析结果表明,在70°C下进行5次洗涤就足够了,可溶离子最少,表面积最大。显然,这些发现证明了CFA作为沸石合成前驱体的物理和化学性质的显著改善。因此,我们建议在这方面进行进一步的研究,以扩大CFA的有效利用,以合成用于废水处理的商业沸石。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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