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首页> 外文期刊>Construction and Building Materials >Fly ash-GGBS geopolymer in boron environment: A study on rheology and microstructure by ATR FT-IR and MAS NMR
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Fly ash-GGBS geopolymer in boron environment: A study on rheology and microstructure by ATR FT-IR and MAS NMR

机译:硼环境的飞灰-GGBS地缘聚合物:ATR FT-IR和MAS NMR的流变与微观结构研究

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The present study focuses on the use of borax composite sodium silicate activator (B) in place of water glass (S) in the fly ash-GGBS composite (4:1) geopolymerization. The substituent is favoured as it delivers advantages such as increased setting time and workability by mitigating the agglomeration of flocks without affecting the compressive strength of the geopolymer. Microstructural changes of boroaluminosilicate were studied with the help of ATR-FT-IR and MAS NMR. Rheology studies indicated that the borax composite pastes display shear thinning behaviour with low yield stress and fit well with the Bingham model. In-situ ATR-FT-IR spectrum revealed the severing of silica bonds by soluble [BO4] and its incorporation into the silicate backbone resulted in the drop in of Si-O-T asymmetry vibration response. The NMR spectral changes of Si-29, Al-27 and B-11 nuclei environment in geopolymeric tetrahedral network showed that the fraction of [SiO4] and [BO4] increases upon borax addition with the diminished fraction of B-3 non-rings without any specific changes in Al coordination. The tetrahedral boron absorption band in the wave numbers at 1380-1310 cm(-1) and1134 cm(-1) is observed in FT-IR and its configuration is compatible in the reaction product. (C) 2020 Elsevier Ltd. All rights reserved.
机译:本研究侧重于使用硼砂复合硅酸钠激活剂(B)代替粉煤灰-GGBS复合材料(4:1)地区的水玻璃。取代基赞成,因为它提供了增加的优点,例如通过减轻羊群的凝聚而不影响地质聚合物的抗压强度来增加设定的时间和可加工性。在ATR-FT-IR和MAS NMR的帮助下研究了硼铝硅酸盐的微观结构变化。流变学研究表明,Borax复合材料浆料显示出剪切稀释行为,屈服应力低,与宾厄姆模型相适合。原位ATR-FT-IR光谱显示通过可溶性[BO4]的二氧化硅键对二氧化硅键的切断,并将其掺入硅酸盐骨架中,导致Si-O-T不对称振动响应的下降。在地瘤四面体网络中Si-29,Al-27和B-11核环境的NMR光谱变化表明,在硼砂加入时增加[SiO 4]和[BO4]的级分,其含量减少了B-3非环的减少Al协调的任何具体变化。在FT-IR中观察到1380-1310cm(-1)和1134cm(-1)的波浪数中的四面体硼吸收带,其构型在反应产物中相容。 (c)2020 elestvier有限公司保留所有权利。

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