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Production of geopolymer binders using clay minerals and industrial wastes

机译:使用粘土矿物和工业废物生产地缘聚合物粘合剂

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摘要

The objective of this study was to establish the most suitable mixtures of Tunisian illito-kaolinitic clay and industrial wastes (phosphogypsum [PG] and waste brick) to produce geopolymer binders. The raw clay sample was heated at 850?°C and characterized by chemical and thermal analyses, X-ray diffraction, and infrared spectroscopy. Four mixtures with different ratios (4%, 8%, 12%, and 16%) of PG as a partial replacement for the calcined clay were investigated. The obtained mixture powders were dissolved in a strong alkaline solution (10, 14, and 17?mol (NaOH)/L) and the produced geopolymers were preserved for 28?days and then characterized by determining their compressive strength. Results showed that increasing the percentage of PG up to 8% reveals an enhancement in the mechanical properties. The highest value of 36?MPa was attained for NaOH concentration of 14?M. At this optimal condition, the calcined clay was replaced by the powder of waste red brick and the produced geopolymer binders had almost the same mechanical property.
机译:本研究的目的是建立最合适的突尼斯illito-kaolinitic粘土和工业废物混合物(磷酸缺口[pg]和废砖),以产生地缘聚合物粘合剂。将原料粘土样品在850Ω℃下加热,并通过化学和热分析,X射线衍射和红外光谱。研究了作为煅烧粘土的部分替代的不同比例(4%,8%,12%和16%)PG的四种混合物。将得到的混合物粉末溶于强碱性溶液(10,14和17〜17摩尔)(NaOH)/ L)中,并保留所产生的地质聚合物28℃,然后通过确定它们的抗压强度来表征。结果表明,增加高达8%的PG百分比显示出机械性能的增强。最高值为36?MPa的NaOH浓度为14μm。在这种最佳条件下,煅烧的粘土被废红砖的粉末取代,所产生的地缘聚合物粘合剂具有几乎相同的机械性能。

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