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Rice husk ash-geopolvmer composite

机译:米饭记住灰地形综合

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摘要

This research aimed to enhance properties of fly ash based geopolymer through usage of three types of rice husk ash(RHA).The replacement in the content of 0%,3%,5% and 10% by weight was chosen.The RHA used in this study were obtained from(i)the rice drying-process(ii),(iii)in house by burning RH at 600°C and 700 °C.Liquid sodium silicate(LSS)and sodium hydroxide(SH)solution were used as activating agents.The weight ratio of LSS to SH was 1.0 and total liquid to solid was 0.6.The geopolymer prepared without RHA(the control)gave an average compressive strength of 35.91±3.30 MPa.All types of RHA replacement at 3% resulted in an improvement of compressive strength.Further increasing RHA content resulted in an adverse effect on workability and compressive strength of the final products.The highest compressive strength value of 42.52±4.86 MPa was obtained at 3% replacement using RHA burnt at 700 °C.The density results showed a decreased when incorporation of high content of RHA was beyond 5%.
机译:本研究的目的是增强基于通过三种类型的稻壳灰(RHA)中的0%,3%,5%和10%重量的含量.The替换的使用地质聚合物粉煤灰性能是chosen.The RHA中使用通过燃烧Rh在600℃和700℃下燃烧Rh,从700℃和700℃下硅酸钠(LSS)和氢氧化钠(SH)溶液(SH)溶液(SH)溶液(SH)溶液(SH)溶液(SH)溶液(SH)溶液(SH)溶液(III)在房屋内获得该研究。活化剂。LSS至SH的重量比为1.0,并且总液体至固体为0.6。没有RHA制备的地缘聚合物(对照)给出了35.91±3.30mPa的平均抗压强度。所有的RHA替代品达到3%抗压强度的提高。增加了RHA含量的增加导致对最终产品的可加工性和抗压强度产生不利影响。使用RHA烧焦在700°C时,在3%替代物中获得最高的压缩强度值为42.52±4.86MPa当掺入高含量的rha超过5%时,密度结果显示出降低。

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