Development of Alkali-Activated Binders from Recycling Regional Tuff and Marble Wastes

İ. Tekin, Baraka Ciza, H. Gökçe
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Abstract

The sustainability goals of the developing world have led many industries to recycle their wastes and reduce emitting greenhouse gases. To contribute to these environmental responsibilities, this study has focused on the development of eco-friendly binder materials from regional ground tuff and marble wastes by the activation of Na2SiO3 and NaOH or slaked lime (Ca(OH)2). The results of the study show that alkali-activated composites tend to the expansion, drying shrinkage cracking, leaching and efflorescence. The compressive strength values of the NaOH and Ca(OH)2-activated pastes have reached up to 15 MPa and 9 MPa, respectively. A reduction in the NaOH molarity has improved the compressive strength, dimensional stability and durability of tuff-based alkali-activated pastes.
从地区凝灰岩和大理石废料中回收碱活性粘合剂的研制
发展中国家的可持续发展目标促使许多行业回收废物,减少温室气体排放。为了履行这些环境责任,本研究的重点是通过Na2SiO3和NaOH或熟石灰(Ca(OH)2)的活化,从区域地面凝灰岩和大理石废物中开发环保型粘结材料。研究结果表明,碱活化复合材料易发生膨胀、干燥收缩、开裂、浸出和膨松现象。NaOH和Ca(OH)2活化膏体的抗压强度分别达到15 MPa和9 MPa。NaOH摩尔浓度的降低提高了凝灰岩基碱活性浆料的抗压强度、尺寸稳定性和耐久性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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