Studying the Effect of High Temperature on the Content of Glass and Brick Waste Binders after Alkaline Activation

I. Y. Omri, Z. Rahmouni, N. Tebbal
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Abstract

The high-temperature mechanical behaviour of a glass and brick waste alkaline to synthesize geopolymer mortar was studied. The mortar in question contained 100% glass powder GWP and 90% of a blend of brick waste GBWP, brick waste BWP and a solid activator (10 mol concentration of NaOH mixed with glass water (Na2SiO3). The material was tested during exposure to high temperatures to establish its density, weight loss, compressive strength, accessible porosity in water, expansion of pastes, XRD and TG-DSC analysis using an innovative methodology to notch the hydrated geopolymers paste specimens after exposed to five maximum temperatures, 100℃, 200℃, 400℃, 600℃ and 800℃ without any imposed load during the heating. The results were found that GBWP gave better values in compressive strength, reaching 38.3 MPa at 100℃ and other proportional values at 400℃, 600℃ respectively compared with GWP. As for the density, the high temperature contributed to its decrease, which caused the presence of high porosity at 800℃. On the other hand, the high temperature helped to improve the mechanical and physical behavior of BWP, where the resistance reached 24.91 MPa at 200℃. In addition, for the microstructure and different particles related to the interactions were identified through the XRD and TG-DSC analysis procedure, in order to know the highest temperatures that allow changing the structure and properties of this type of alternative binders.
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研究高温对碱活化后玻璃、砖废粘结剂含量的影响
研究了玻璃和砖废碱合成地聚合物砂浆的高温力学性能。所述砂浆含有100%的玻璃粉GWP和90%的砖废GWP、砖废BWP和固体活化剂(10 mol浓度的NaOH与玻璃水(Na2SiO3)混合)的混合物。采用创新的方法,在加热过程中不施加任何载荷的情况下,分别在100℃、200℃、400℃、600℃和800℃五个最高温度条件下,对材料进行高温暴露测试,确定其密度、失重、抗压强度、水中可达孔隙率、膏体膨胀率、XRD和TG-DSC分析。结果表明,与GWP相比,GBWP具有较好的抗压强度值,在100℃时达到38.3 MPa,在400℃、600℃时达到其他比例值。在密度方面,高温降低了密度,在800℃时出现了高孔隙率。另一方面,高温有助于改善BWP的力学和物理性能,在200℃时,BWP的电阻达到24.91 MPa。此外,通过XRD和TG-DSC分析程序,对其微观结构和不同颗粒的相互作用进行了鉴定,以了解允许改变这类替代粘合剂的结构和性能的最高温度。
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