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Properties of Inorganic Polymers Produced from Brick Waste and Metallurgical Slag

机译:砖渣和冶金渣产生的无机聚合物的性质

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This paper explores the alkali activation potential of brick wastes and metallurgical slags. Inorganic polymers (IPs) were produced using an alkaline medium consisting of sodium hydroxide and sodium silicate solutions and the optimum synthesis conditions were determined. In this context, the variable parameters, such as solid to liquid (S/L) ratio, curing temperature (60, 80 and 90 °C) and ageing time (7 and 28 days) on the compressive strength and the morphology of the produced IPs were investigated. Specimens produced under the optimum synthesis conditions were subjected to high temperature firing and immersed in distilled water and acidic solutions for various periods of time, in order to assess their durability and structural integrity. The results showed that the IPs produced using a mix ratio of 50 wt % metallurgical slag and 50 wt % brick wastes, cured at 90 °C and aged for 7 days obtained the highest compressive strength (48.9 MPa). X-ray fluorescence analysis (XRF), particle size analysis, Fourier transform infrared spectroscopy (FTIR), mineralogical analysis (XRD), mercury intrusion porosimetry (MIP), scanning electron microscopy (SEM) and thermogravimetric (TG) analysis also confirmed the optimum microstructural characteristics and the chemical reactions that took place during synthesis. The overall results of this study indicate that the co-valorization of different waste streams, which are produced in large quantities and cause environmental problems if not properly managed, is a viable alternative for the production of binders or secondary construction materials with higher added value.
机译:本文探讨了砖渣和冶金渣的碱活化潜力。使用由氢氧化钠和硅酸钠溶液组成的碱性介质生产无机聚合物(IP),并确定了最佳合成条件。在这种情况下,可变参数,例如固液比(S / L),固化温度(60、80和90°C)和老化时间(7和28天)对制品的抗压强度和形貌有影响对IP进行了调查。在最佳合成条件下生产的样品经过高温烧制,并浸入蒸馏水和酸性溶液中不同时间,以评估其耐久性和结构完整性。结果表明,使用50重量%的冶金炉渣和50重量%的砖废料的混合比例生产的IP,在90°C下固化并老化7天可获得最高的抗压强度(48.9 MPa)。 X射线荧光分析(XRF),粒度分析,傅里叶变换红外光谱(FTIR),矿物学分析(XRD),压汞法(MIP),扫描电子显微镜(SEM)和热重(TG)分析也确定了最佳方法微观结构特征和在合成过程中发生的化学反应。这项研究的总体结果表明,对大量产生的不同废物流进行共价评估,如果管理不当,会造成环境问题,是生产具有较高附加值的粘合剂或辅助建筑材料的可行选择。

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