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Incorporation of biochar in cementitious materials: A roadmap of biochar selection

机译:在胶凝材料中纳入生物炭:生物炭选择的路线图

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Increasing cement production in construction sector and waste generation in industrial sectors are of the major sources of CO2 emission. For decades, it has been the concern of environmentalists to convince constructors and researchers to find sustainable solutions targeting aforementioned problems. The attempts focused on identification of wastes to be successfully complied with construction materials. Biochar has recently received attention due to several environmental and technological advantages, shortly include carbon sequestration, low thermal conductivity, chemical stability and low flammability. For this reason, biochar is recognized as an efficient candidate for cement or lightweight aggregates replacement in building materials. Biochar addition could result in a reduction of capillary absorption in mortar paste. Besides, its addition accelerates cement hydration and restricts shrinkage cracking in cement mortar. The present review categorizes all the biochar critical features affecting the performance of cementitious materials. The effect of biochar addition as filler and cement replacement on the workability, hydration, mechanical and transfer properties of cement paste/composites is reviewed in this paper. From the data collection, an optimum biochar content around 2% is shown to contribute to the improvement of mechanical properties. The gaps in the literature are identified and the future research plans are proposed. (C) 2021 Published by Elsevier Ltd.
机译:在工业部门的建筑行业和废物发电中增加水泥产生的主要来源是二氧化碳排放的主要来源。几十年来,环境保护者表示符合建设者和研究人员的关切,以找到针对上述问题的可持续解决方案。该试图侧重于识别废物以成功遵守建筑材料。 BioChar最近由于几种环境和技术优势而受到关注,不久地包括碳封存,导热性低,化学稳定性和低易燃性。因此,Biochar被认为是用于水泥或轻质聚集体在建筑材料中更换的有效候选者。 Biochar加入可能导致砂浆浆料中的毛细管吸收。此外,它的添加加速水泥水合,并限制水泥砂浆中的收缩裂缝。本综述分类了影响水泥材料性能的所有BioChar关键特征。本文综述了生物炭添加剂作为填料和水泥替代水泥膏/复合材料的可加工性,水合,机械和转移性能的影响。从数据收集,最佳Biochar含量约为2%,有助于改善机械性能。鉴定了文献中的差距,提出了未来的研究计划。 (c)2021由elestvier有限公司出版

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