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Effect of Biomass Waste Materials as Unconventional Aggregates in Multifunctional Mortars for Indoor Application

机译:生物质废料作为室内应用多功能砂浆中的非传统聚集体的影响

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In order to decrease energy consumption in buildings, a new way to recycle materials coming from biomasses waste in mortars was studied. Forthis purpose, mortars with water/cement equal to 0.5 by weight and aggregate/cement equal to 3.5 by volume were considered. Cement was replaced by hydraulic lime and sand was substituted with two different types of spruce sawdust shavings (as it is and roasted), biomass bottom ash and biomass fly ash. The results show that mortar prepared with cement has obviously a better mechanical strength and 60% lower capillary water absorption. All unconventional aggregates increase the total porosity of lime mortars. Moreover, biomass fly ash and both spruce sawdust shavings based mortars can be classified as lightweight mortar. Regardless of porosity and lightness, biomass bottom ash improves up to 150% the mechanical performance of lime-based mortars. Concerning durability, bio-based lime mortars show in general nearly twice higher capillary water absorption with respect to the sand lime mortars whit the exception of spruce sawdust shavings and biomass bottom ash. Mortars can be classified as permeable to water vapour. As it is and roasted spruce sawdust shavings are able to increase three and two times the capacity of the mortar to be a hygroscopic buffer in terms of MBV values.
机译:为了降低建筑物的能量消耗,研究了从迫击炮中回收来自生物量废物的材料的新方法。目的,考虑了具有等于0.5重量等0.5重量和等于3.5体积的水/水泥的砂浆。水泥被液压石灰所取代,砂被两种不同类型的云杉锯末刨花(如此,烤),生物质底灰和生物质粉煤灰。结果表明,用水泥制备的砂浆明显是更好的机械强度和60%的毛细管吸水。所有非传统的聚集体都增加了石灰砂浆的总孔隙率。此外,生物质粉煤灰和基于云杉的砂岩砂浆可以被分类为轻质砂浆。无论孔隙度和亮度如何,生物质底灰分布提高了石灰基砂浆的机械性能的150%。关于耐久性,生物的石灰砂浆一般表现出与砂石灰砂浆丝毫近两倍较高的毛细管吸水,除了云杉的锯末剃须和生物质底灰。迫击炮可以被分类为水蒸气。由于它和烤云杉锯末刨花能够在MBV值方面增加砂浆的容量为吸湿缓冲液的三倍和两倍。

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