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The Effect of the Si/Al Ratio on the Properties of Water Treatment Residue (WTR)-BasecI Geopolymers

机译:Si / Al比对水处理残留物(WTR)的性质的影响 - 巴西地质聚合物

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This research aimed to develop a cementing material from synthetic geopolymers using water treatment residue (WTR) from a water treatment plant in Bangkaen as an aluminosilicate starting material, with the addition of rice husk ash (BHA) from a paddy factory in Thailand as a source of crystalline silica, to achieve Si/Al ratios of 2.00, 3.00, 4.00 and 5.00. The geopolymers were prepared by NaOH activation of the five compositions of WTR and BHA mixtures, followed by curing at ambient temperature (29±2°C). The compressive strengths of the geopolymers were determined after 3, 7, 28 and 60 Days. The samples cured for 28 Days were examined by XRD, FTIR and SEM. The Si/ Al ratio of 2.00 was found to produce the greatest strength at all curing times. After 7 Days, all samples were 30% stronger than the 3 Day-samples. XRD revealed the presence of sodium aluminium silicate hydrate, while an FTIR vibration band related to the geopoiymer product shifted to 1000 cm~(-1). SEM revealed a homogeneous non-crytalline and dense microstructure in the sample with the highest Si/AI ratio of 5.00, suggesting that a transformation to sodium silicate had occurred in this sample.
机译:该研究旨在通过使用曼谷的水处理厂(WTR)从曼谷的水处理残留物(WTR)从铝硅酸盐起始材料中开发胶合材料,并从泰国的稻田工厂添加稻壳灰(BHA)作为源泉结晶二氧化硅,实现2.00,3.00,4.00和5.00的Si / Al比。通过NaOH活化的WTR和BHA混合物的NaOH活化制备地质聚合物,然后在环境温度下固化(29±2℃)。在3,7,28和60天后测定地质聚合物的抗压强度。通过XRD,FTIR和SEM检查固化28天的样品。发现2.00的Si / Al比例在所有固化时间产生最大的强度。 7天后,所有样品比3天样品更强30%。 XRD揭示了铝硅酸铝水合物的存在,而与地质化学者产物相关的FTIR振动带移动到1000cm〜(-1)。 SEM在样品中揭示了具有5.00的最高比率的样品中的均匀的非致密链球菌和致密的微观结构,表明该样品中已经发生了对硅酸钠的转化。

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