再生生物质粉煤灰改性砂浆的开发与性能

IF 4.6 Q2 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY Recycling Pub Date : 2024-05-24 DOI:10.3390/recycling9030046
Julien Hubert, Sophie Grigoletto, Frédéric Michel, Zengfeng Zhao, Luc Courard
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引用次数: 0

摘要

欧洲生物质粉煤灰的产量逐年增加,到 2020 年将达到 550 万吨。燃烧生物质产生的粉煤灰尚未被标准认可为砂浆和混凝土中水泥的替代材料。第一种方法是通过比较粉煤灰与粉煤灰砂浆(EN 450-1 和 ASTM C618)的机械强度(包括抗压强度)、新态特性和硬化特性来确定生物质灰的替代极限。在设计砌筑砂浆和渲染砂浆时,采用了不同的火力发电厂木材燃烧产生的粉煤灰替代率。虽然总体性能有所下降,但使用生物质灰制成的砂浆仍具有适合用于砌筑(90 天后,替代率为 10%的砌筑砂浆抗压强度下降 13%)或渲染(90 天后,替代率为 10%的渲染砂浆抗压强度下降 20%)的特性。不过,吸水率和孔隙率(砌筑砂浆和渲染砂浆的吸水率和孔隙率分别为 24.1% 和 23.7%)并没有明显改变,这可能有助于获得良好的耐久性能。
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Development and Properties of Recycled Biomass Fly Ashes Modified Mortars
The production of biomass fly ash has been increasing every year in Europe, reaching 5.5 million tons in 2020. Fly ash produced by burning biomass is not yet accepted in the standards as a substitute material for cement in mortar and concrete. In a first approach, the substitution limit of biomass ash is determined by comparing the mechanical strengths (among others, compressive strength), fresh state properties and hardened properties of mortars produced with fly ash with those of mortars produced with coal fly ash (EN 450-1 and ASTM C618). Masonry and rendering mortars have been designed with different substitution rates of fly ashes from wood combustion in thermal power plants. Although there is an overall decrease in performance, mortars made with biomass ash retain properties that make them suitable for use in masonry (loss of 13% compressive strength for masonry mortars with 10% substitution rate after 90 days) or rendering (loss of 20% compressive strength for rendering mortars with 10% substitution rate after 90 days). Water absorption and porosity (24.1 and 23.7% for masonry and rendering mortars, respectively) are, however, not significantly modified, which potentially contributes to good durability properties.
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来源期刊
Recycling
Recycling Environmental Science-Management, Monitoring, Policy and Law
CiteScore
6.80
自引率
7.00%
发文量
84
审稿时长
11 weeks
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