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Effect of cement partial substitution by waste-based biochar in mortars properties

机译:水泥偏取代在迫击炮属性中废物生物炭的影响

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摘要

Incorporation of biochar in cementitious materials is a promising solution in the mitigation of environmental pollutants by partially cutting off the consumed ordinary Portland cement and reducing the amount of waste disposal in landfills. This work studied the partial replacement of cement by biochars having a different chemical composition and its effect on the performance of cement mortars. The feedstocks for biochar production were selected from biomass wastes produced in agro-industrial and forestry sectors in Portugal. They included olive stone, rice husk and wood chips from residual forest biomass. Biochars were produced at 500 celcius using a slow pyrolysis process. The biochars were added at different cement replacement rates; 0.5, 1, 2 and 4 wt% of cement weight. XRD and TGA were used to elaborate the effect of biochar on the hydration products. Effect of biochar addition on the capillary water absorption, compressive and flexural strength of cement mortar was analyzed. The results suggested that the biochars contributed to the promotion of hydration products. Cement replacement with 4 wt% olive stone and rice husk biochars was associated with a slight increase of 28-days compressive strength. Rice husk biochar showed the best long-term mechanical performance due to its pozzolanic reaction in the matrix. No significant changes were observed in the water absorption of cement mortar after the addition of 4 wt% biochar as cement replacement. The research outcomes suggested the beneficial effect of cement replacement with biochars from olive stone and rice husk up to 4 wt% with comparable properties. (c) 2021 Elsevier Ltd. All rights reserved.
机译:通过部分地切断消耗的普通波特兰水泥并减少垃圾填埋场中的废物处理量,巩固材料中的生物炭是一种有希望的解决方案,在减缓环境污染物中,减少了垃圾填埋场中的废物处理量。这项工作研究了具有不同化学成分的生物脉体部分替代水泥及其对水泥砂浆性能的影响。生物炭生产的原料选自葡萄牙农业工业和林业部门生产的生物质废物。它们包括橄榄油,稻壳和残留森林生物量的木屑。使用缓慢的热解过程,在500个Celcius中产生生物脉。在不同的水泥替换率下添加生物脉。 0.5,1,2和4wt%的水泥重量。 XRD和TGA用于详细说明生物炭对水合产物的影响。分析了生物炭对水泥砂浆的毛细吸水,压缩和弯曲强度的影响。结果表明,生物触发人员有助于促进水化产物。用4wt%橄榄石和稻壳Biochars的水泥更换与略微增加28天的抗压强度。稻壳BioChar由于其在基质中的波佐烷反应而显示出最佳的长期机械性能。在加入4wt%BioChar作为水泥替代后,在水泥砂浆的吸水中没有观察到显着变化。研究结果表明水泥置换与橄榄石和稻壳的生物脉冲的有益作用,其具有相当的特性,高达4重量%。 (c)2021 elestvier有限公司保留所有权利。

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