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首页> 外文期刊>Journal of Cleaner Production >Glass recycling in the production of low-temperature stoneware tiles
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Glass recycling in the production of low-temperature stoneware tiles

机译:低温粗陶砖生产中的玻璃回收

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The current study deals with the development of low-temperature stoneware tiles with boron-rich waste glass as sintering promotor in a modified triaxial ceramic body. The obtained results are part of a larger project financed by the Italian region of Emilia Romagna and aiming at developing novel formulations for sustainable ceramic products classified as porcelain stoneware. We successfully obtained highly vitrified ceramic tiles (Bla class) at a firing temperature almost 140 degrees C lower than that normally applied for this product by modifying a traditional triaxial composition and including waste glass. The ecological sustainability was thus improved by lower emissions and substitution of natural raw materials with secondary ones. Pilot scale trials confirmed full adaptability to existing powder processing routes. The microstructure and the temperature-induced phase evolution were analyzed by scanning electron microscopy (SEM) and quantitative phase analyses using X-ray powder diffraction (XRPD) and the Rietveld method. It will be shown that the triaxial body minerals are highly reactive in the boron-rich viscous melt leading to eutectic melting and recrystallization. The high reactivity renders this particular ceramic system flexible in terms of liquid phase composition and post-firing crystal assemblages and is therefore suitable as a base system for design of sustainable ceramic products. (C) 2018 Elsevier Ltd. All rights reserved.
机译:目前的研究涉及在改良的三轴陶瓷体中以富含硼的废玻璃为烧结促进剂的低温粗陶砖的开发。获得的结果是由意大利艾米利亚·罗马涅(Emilia Romagna)地区资助的一个较大项目的一部分,该项目旨在开发分类为瓷器的可持续陶瓷产品的新型配方。通过改性传统的三轴成分并包括废玻璃,我们成功地在比通常应用于该产品的烧成温度低约140摄氏度的烧成温度下成功获得了高度玻璃化的瓷砖(Bla级)。因此,通过降低排放量并用天然原料替代天然原料,改善了生态可持续性。中试规模试验证实了对现有粉末加工路线的完全适应性。通过扫描电子显微镜(SEM)分析微观结构和温度诱导的相演化,并使用X射线粉末衍射(XRPD)和Rietveld方法进行定量相分析。结果表明,三轴体矿物在富含硼的粘性熔体中具有高反应性,从而导致低共熔和再结晶。高反应性使该特定陶瓷系统在液相组成和烧成后的晶体组合方面具有灵活性,因此适合用作可持续陶瓷产品设计的基础系统。 (C)2018 Elsevier Ltd.保留所有权利。

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