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Analysis of co-fired clay and palm kernel shells as a cementitious material in Ghana

机译:加纳共烧粘土和棕榈仁壳作为胶结材料的分析

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The treatment of clay through a calcination process at high temperatures have been the usual and a common means of producing clay pozzolan as a supplementary cementitious material. However incorporating waste biomass as a component material in clay is very uncommon. This work analyzed the use of palm kernel shells as a component material in clay and were calcined at a high temperature of 800°C. The palm kernel shells were used to replace clay at 10%, 20% and 30% by weight. Strength activity index prescribed by ASTM C311 was used to determine the maximum mixture proportion between calcined clay and palm kernel shells. The calcined clay and palm kernel shell mixtures that gave the maximum strength were subjected to an incremental replacement dosage of Portland cement between 10% and 40% by weight. Test results indicated that the maximum strength mixture proportion between clay and palm kernel shells was obtained at 20% replacement of clay. Moreover the maximum value that showed a better strength performance through the incremental replacement by the calcined material was also at 20% Portland cement replacement. The study recommended the use of palm kernel shells to a limit of 20% clay replacement. The is because at higher content of palm kernel shells in clay calcined at a high temperature, more unreactive crystalline phases are formed that inhibit reactivity of pozzolanic active phases. The use of 20wt.% of palm kernel shells in clay to produce a supplementary cementitious material provides a sustainable means of waste disposal via construction application.
机译:在高温下通过煅烧工艺处理粘土是生产粘土火山灰作为辅助胶结材料的常用方法。然而,将废弃的生物质作为组成材料掺入粘土中的情况很少见。这项工作分析了棕榈仁壳作为粘土中的组成材料的用途,并在800°C的高温下进行了煅烧。棕榈仁壳用于代替粘土,其重量为10%,20%和30%。使用ASTM C311规定的强度活性指数来确定煅烧粘土和棕榈仁壳之间的最大混合比例。使具有最大强度的煅烧粘土和棕榈仁壳混合物经受重量百分比在10%至40%之间的波特兰水泥的增量替代剂量。试验结果表明,粘土和棕榈仁壳之间的最大强度混合比是在粘土置换量为20%时获得的。此外,通过逐步煅烧材料替代而显示出更好的强度性能的最大值也是波特兰水泥替代率为20%。该研究建议将棕榈仁壳的使用限制为粘土替代量的20%。这是因为在高温煅烧的粘土中棕榈仁壳含量较高时,会形成更多的不活泼的结晶相,从而抑制火山灰活性相的反应性。在粘土中使用20wt。%的棕榈仁壳生产补充胶结材料,可通过建筑应用提供可持续的废物处理方式。

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