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Evaluation on Formation of Aluminosilicate Network in Ternary-blended Geopolymer Using Infrared Spectroscopy

机译:用红外光谱法评估三元混合地质聚合物中硅铝酸盐网络的形成

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This study used an optimized mixture of red mud (RM), rice husk ash (RHA), diatomaceous earth (DE), and water glass solution (WGS) with silica modulus of 2.5 to produce geopolymer-based material. The geopolymer product was tested engineering properties which are in good agreement of ASTM requirements for building materials. For microstructure, the geopolymer samples were characterized by using Fourier-transform infrared spectroscopy (FTIR) and focused on evaluation on formation of aluminosilicate network in the ternary-blended geopolymer. The results showed that tetra-silicates or acid silicic (Si(OH)_4 or H_4SiO_4) dissolved and reacted with the iron oxide (Fe_2O_3) in RM and DE to form the oligomer precursors of sialate -O-Si-O-Al-O-, sialate-siloxo -O-Si-O-Al-O-Si-O-, sialate-disiloxo -O-Si-O-Al-O-Si-O-Si-O-, tetra-silicate [SiO_4]~(4-), and tetra-aluminate [AlO_4]~(4-). The formation of sodium alumino-silicate iron hydroxide polymeric network were easily detected by vibrational modes of -T-O-T- and -T-O-Na units (T refers to tetrahedral such as that of Si or Al) and of -OH and H-O-H. As well as, there were appearances of the membered ring or chain structural units of geopolymers.
机译:这项研究使用了二氧化硅模量为2.5的赤泥(RM),稻壳灰(RHA),硅藻土(DE)和水玻璃溶液(WGS)的优化混合物来生产基于地质聚合物的材料。该地质聚合物产品经过了工程性能测试,非常符合ASTM对建筑材料的要求。对于微观结构,通过使用傅里叶变换红外光谱(FTIR)对地质聚合物样品进行表征,并重点评估三元混合地质聚合物中硅铝酸盐网络的形成。结果表明,四硅酸盐或酸性硅酸盐(Si(OH)_4或H_4SiO_4)在RM和DE中与氧化铁(Fe_2O_3)溶解并反应形成唾液酸-O-Si-O-Al-O的低聚物前体-,硅酸盐-硅氧烷-O-Si-O-Al-O-Si-O-,硅酸盐-二硅氧烷-O-Si-O-Al-O-Si-O-Si-O-,四硅酸盐[SiO_4] 〜(4-)和四铝酸盐[AlO_4]〜(4-)。通过-T-O-T-和-T-O-Na单元(T是指诸如Si或Al的四面体的)和-OH和H-O-H的振动模式很容易检测到铝硅酸钠-氢氧化铁钠聚合物网络的形成。以及,存在地质聚合物的元环或链结构单元的外观。

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