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Use of ceramic sanitaryware as an alternative for the development of new sustainable binders

机译:使用陶瓷卫生洁具作为开发新型可持续粘合剂的替代方案

摘要

Large amounts of ceramic sanitary-ware waste are generated in both the production process and construction and demolition practices. This waste contains amorphous phases that may react with the Portlandite that originates during Portland cement hydration or with an alkali solution, leading to a low CO2-binding material. This study investigated the pozzolanic activity of ceramic sanitary-ware waste, together with its potential to form new binders by alkali activation. For this purpose, raw material was characterized by X-ray diffraction, X-ray fluorescence, particle size distribution, thermogravimetry (TGA) and scanning electron microscopy (SEM). Percentages of ceramic waste of 15 wt.% and 25 wt.%, to replace Portland cement, were used to assess the pozzolanic behavior of this material, and samples were cured at 20oC for different curing times. Alkali-activated samples, in which Ca (OH)2 was used as a source of calcium, and NaOH and sodium silicate solutions were utilized as activators, were cured for 7 days at 65oC. The microstructural evolution of the developed binders was assessed in pastes by SEM and TGA analyses, and mortars were used to evaluate the compressive strength behavior. While some strength gain was observed due to pozzolanic activity, compressive strength values within the 14-36 MPa range were obtained in the alkali-activated mortars in accordance with the activator concentration and the percentage of Ca (OH)2 addition.
机译:在生产过程以及建筑和拆除实践中都会产生大量的陶瓷卫生废料。该废物包含无定形相,这些无定形相可能与在波特兰水泥水化过程中产生的波特兰石或与碱溶液发生反应,从而导致二氧化碳含量低的材料。这项研究调查了陶瓷卫浴废料的火山灰活性,以及​​其通过碱活化形成新粘合剂的潜力。为此,通过X射线衍射,X射线荧光,粒度分布,热重分析(TGA)和扫描电子显微镜(SEM)对原料进行表征。用15%(重量)和25%(重量)的陶瓷废料代替波特兰水泥来评估这种材料的火山灰性能,并在20oC下将样品固化不同的固化时间。碱活化样品(其中Ca(OH)2被用作钙源,而NaOH和硅酸钠溶液被用作活化剂)在65oC下固化7天。通过SEM和TGA分析评估糊剂中已开发粘合剂的微观结构演变,并使用砂浆评估抗压强度行为。尽管由于火山灰活性而观察到一些强度增加,但是根据活化剂浓度和Ca(OH)2的添加百分比,在碱活化砂浆中获得的抗压强度值在14-36 MPa范围内。

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