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Strength and water permeability of concrete containing palm oil fuel ash and rice husk-bark ash

机译:含棕榈油燃料灰和稻壳树皮灰的混凝土的强度和透水性

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摘要

In this paper, palm oil fuel ash and rice husk-bark ash, which are by-products from electricity generating power plants and disposed as wastes in landfills, were used as a partial cement replacement. They were ground and incorporated into concrete at the levels of 20%, 40% and 55% by weight of binder. Compressive strength and water permeability of concretes containing ground palm oil fuel ash (GPOA) and ground rice husk-bark ash (GRBA) were investigated. From the tests, the replacement of Portland cement by both materials resulted in the higher water demand in concrete mixtures as compared to ordinary Portland cement (OPC) concrete with compatible workability. The compressive strengths of concretes containing 20% of GPOA and GRBA were as high as that of OPC concrete and were reduced as the increase in the replacement ratios. Although the compressive strengths of concrete with the replacement of GPOA or GRBA up to 40% were lower than OPC concrete, their water permeabilities were still lower than that of OPC concrete. These results indicate that both of GPOA and GRBA can be applied as new pozzolanic materials to concrete with an acceptable strength as well as permeability.
机译:在本文中,棕榈油燃料灰和稻壳树皮灰是发电厂的副产品,并作为垃圾掩埋在垃圾填埋场中,被用作水泥的部分替代品。将它们研磨并以粘合剂​​的20%,40%和55%的含量掺入混凝土中。研究了含有地面棕榈油燃料灰(GPOA)和地面稻壳灰(GRBA)的混凝土的抗压强度和透水性。根据测试,与具有可兼容的可加工性的普通波特兰水泥(OPC)混凝土相比,用两种材料替代波特兰水泥均导致混凝土混合物中对水的需求更高。包含20%GPOA和GRBA的混凝土的抗压强度与OPC混凝土一样高,并且随着替代率的增加而降低。尽管用GPOA或GRBA代替40%的混凝土的抗压强度低于OPC混凝土,但它们的透水性仍低于OPC混凝土。这些结果表明,GPOA和GRBA都可以作为新型火山灰材料以可接受的强度和渗透性应用于混凝土。

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