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Development of eco-friendly concrete produced with Rice Husk Ash (RHA) based geopolymer

机译:基于稻壳灰(RHA)的地质聚合物生产的环保混凝土的开发

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This paper reports the effect of Rice Husk Ash (RHA) in geopolymer concrete on strength, durability and microstructural properties under ambient curing at a room temperature of 25 degrees C and 65 +/- 5% relative humidity. Rice husk was incinerated at 800 degrees C in a hot air oven. and ground in a ball mill to achieve the required fineness. RHA was partially added in 10, 15, 20, 25, 30 and 35 percentages to fly ash with 10% of GGBS to produce geopolymer concrete. Test results exhibit that the substitution of RHA in geopolymer concrete resulted in reduced strength properties during initial curing. In the initial stage, workability of GPC mixes was affected by RHA particles due to the presence of dormant particles in it. It is evident from the microstructural study that the presence of RHA particles densifies the matrix reducing porosity in concrete. This is due to the presence of RHA in geopolymer concrete, which affects the ratio of silica and alumina, resulting in polycondensation reactions products. This study suggests that incorporation of rice husk ash in geopolymer concrete is the solution for effective utilization of waste materials and prevention of environmental pollution due to the dumping of industrial waste and to produce eco-friendly concrete.
机译:本文报道了在室温下在25℃和65 +/- 5%相对湿度下在环境固化下产生强度,耐久性和微观结构性能的稻壳混凝土的影响。在热空气烤箱中以800℃焚烧稻壳。并在球磨机中研磨,以达到所需的细度。 rha在10,15,20,25,30和35个百分比中,粉煤灰,10%的ggbs产生地缘聚合物混凝土。试验结果表明,在岩土聚合物混凝土中取代Rha导致初始固化期间的强度特性降低。在初始阶段,由于其存在休眠颗粒,GPC混合物的可加工性受ROA颗粒的影响。从微观结构的研究中显而易见的是,RHA颗粒的存在将基质降低的混凝土中的孔隙率致密。这是由于邻缘聚合物混凝土中的rha存在,这影响了二氧化硅和氧化铝的比例,导致缩聚反应产物。本研究表明,由于工业废物倾销和生产环保混凝土,掺入稻壳混凝土中的稻壳灰溶液是有效利用废料和预防环境污染的解决方案。

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