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首页> 外文期刊>The Science of the Total Environment >Carbonaceous micro-filler for cement: Effect of particle size and dosage of biochar on fresh and hardened properties of cement mortar
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Carbonaceous micro-filler for cement: Effect of particle size and dosage of biochar on fresh and hardened properties of cement mortar

机译:水泥碳质微填料:生物炭的粒径和用量对水泥砂浆的新鲜和硬化性能的影响

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摘要

This study explores influence of biochar particle size and surface morphology on rheology, strength development and permeability of cement mortar, under moist and dry curing condition. Experimental results show that the flowability and viscosity of cement paste is more affected by macro-porous coarser (or 'normal') biochar particles of size 2-100 mu m (NBC) compared to fine (or 'ground' biochar), which is in the size range of 0.10-2 mu m (GBC). Addition of both GBC and NBC accelerated hydration kinetics and improved early (1-day) and 28-day strength by 20-25% compared to the control. Water permeability, measured by capillary absorption was reduced by about 50% compared to control mortar, due to the addition of 0.50-1% NBC and GBC respectively. GBC is found to be more effective in minimizing loss in strength and water tightness under dry curing condition compared to the control and mortar with NBC and quartz filler respectively. In summary, findings from the study show that finer biochar particles offer superior performance in improving early strength and water tightness compared to normal biochar (with macro-pores), while 28-day properties are similar for mortar with both GBC and NBC respectively. (C) 2019 Elsevier B.V. All rights reserved.
机译:本研究探讨了干湿条件下生物炭粒径和表面形态对水泥砂浆流变性,强度发展和渗透性的影响。实验结果表明,与细颗粒(或“磨碎”生物炭)相比,尺寸为2-100微米(NBC)的大孔粗颗粒(或“正常”)生物炭颗粒对水泥浆的流动性和粘度的影响更大。尺寸范围为0.10-2微米(GBC)。与对照相比,GBC和NBC的加入均加快了水合动力学,并使早期(1天)和28天强度提高了20-25%。由于分别加入0.50-1%的NBC和GBC,与对照砂浆相比,通过毛细吸收法测得的水渗透率降低了约50%。与分别使用NBC和石英填料的对照和砂浆相比,GBC在干固化条件下能最大程度地降低强度和水密性损失,更有效。总而言之,研究结果表明,与普通生物炭(具有大孔)相比,更细的生物炭颗粒在改善早期强度和水密性方面具有优异的性能,而GBC和NBC的砂浆的28天性能相似。 (C)2019 Elsevier B.V.保留所有权利。

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