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Effect of Na_2SiO_3/NaOH on mechanical properties and microstructure of geopolymer mortar using fly ash and rice husk ash as precursor

机译:na_2sio_3 / naoh对使用粉煤灰和水稻壳灰作为前体的地质聚合物砂浆机械性能和微观结构的影响

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Geopolymer concrete is an eco-friendly concrete that can reduce carbon emissions on the earth surface because it used industrial waste material such as fly ash, rice husk ash, bagasse ash, and palm oil fuel. Geopolymer is semi-crystalline amorphous materials which has irregular chemical bonds structure. The material is produced by geosynthesis of aluminosilicates and alkali-silicates which produce the Si-O-Al polymer structure. This research used the ratio of fly ash and rice husk ash as precursors e.g. 100:0, 75:25, 50:50, and 25:75. NaOH solutions of 14 M and Na_2SiO_3 solutions with the variation e.g. 2.5, 2.75, 3.00, and 3.25 were used as activators on mortar geopolymer mixture. The tests of fresh mortar were slump flow and setting time. The optimum compressive strength is 68.36 MPa for 28 days resulted from mixture using 100% fly ash and Na_2SiO_3 and NaOH with ratio 2.75. The largest value of slump flow test resulted from mixture using Na_2SiO_3 and NaOH with ratio 2.50 is 17.25 cm. Based on SEM test results, mortar geopolymer microstructure with mixture RHA 0% has less pores and denser CSH structure.
机译:地质混凝土是一种生态友好的混凝土,可以减少地面表面上的碳排放,因为它使用了工业废料,如粉煤灰,稻壳,甘蔗渣和棕榈油燃料。地缘聚合物是具有不规则化学键结构的半结晶非晶材料。该材料是通过产生Si-O-Al聚合物结构的硅硅酸盐和碱硅酸盐的地质合成产生的。该研究使用粉煤灰和稻壳灰作为前体的比例。 100:0,75:25,50:50和25:75。 NaOH溶液14米和NA_2SIO_3解决方案,例如变化。 2.5,2.75,3.00和3.25用作砂浆地质聚合物混合物上的活化剂。新鲜砂浆的测试是坍落度和凝固时间。最佳抗压强度为68.36MPa 28天,由100%飞灰和Na_2SiO_3和NaOH的混合物产生28天,以2.75的比例为2.75。使用Na_2SiO_3和NaOH的混合物产生的坍落度测试的最大值为1.50厘米。基于SEM测试结果,砂浆地质聚合物微观结构具有混合物RHA 0%的孔隙和密集CSH结构较少。

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