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Use of ultrafine rice husk ash with high-carbon content as pozzolan in high performance concrete

机译:高碳超细稻壳灰作为火山灰在高性能混凝土中的用途

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摘要

Rice husk ash (RHA) has been generated in large quantities in rice producing countries. This by-product can contain non-crystalline silica and thus has a high potential to be used as cement replacement in mortar and concrete. However, as the RHA produced by uncontrolled burning conditions usually contains high-carbon content in its composition, the pozzolanic activity of the ash and the rheology of mortar or concrete can be adversely affected. In this paper the influence of different grinding times in a vibratory mill, operating in dry open-circuit, on the particle size distribution, BET specific surface area and pozzolanic activity of the RHA is studied, in order to improve RHA's performance. In addition, four high-performance concretes were produced with 0%, 10%, 15%, and 20% of the cement (by mass) replaced by ultrafine RHA. For these mixtures, rheological, mechanical and durability tests were performed. For all levels of cement replacement, especially for the 20%, the ultra-fine RHA concretes achieved superior performance in the mechanical andrndurability tests compared with the reference mixture. The workability of the concrete, however, was reduced with the increase of cement replacement by RHA.
机译:在稻米生产国已经大量产生稻壳灰(RHA)。该副产物可能包含非晶态二氧化硅,因此具有很高的潜力,可以用作砂浆和混凝土中的水泥替代品。但是,由于在不受控制的燃烧条件下产生的RHA通常在其成分中包含高碳含量,因此灰分的火山灰活性以及砂浆或混凝土的流变性会受到不利影响。为了提高RHA的性能,本文研究了在干式开路运行的振动磨中,不同研磨时间对RHA的粒度分布,BET比表面积和火山灰活性的影响。此外,生产了四种高性能混凝土,分别用超细RHA代替了水泥(按质量计)的0%,10%,15%和20%。对于这些混合物,进行了流变,机械和耐久性测试。对于所有水平的水泥替代品,尤其是20%的水泥替代品,超细RHA混凝土在机械耐久试验中均达到了优于参考混合物的优异性能。然而,随着RHA替代水泥的增加,混凝土的可加工性降低了。

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