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首页> 外文期刊>International Journal of Environmental Science and Technology >Environmental effects of concretes produced from partial replacement of cement and sand with coal ash
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Environmental effects of concretes produced from partial replacement of cement and sand with coal ash

机译:用煤灰部分替代水泥和沙子产生的混凝土的环境影响

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Environmental effects of concretes produced from partial replacement of cement and sand with coal ash were investigated. Oxide composition of coal ash and cement was determined with X-ray fluorescence spectrometer, while particle size and shape were determined using scanning electron microscope. Concrete mixtures were produced by replacing cement and sand with coal ash at 10, 20, 30 and 40%. Their workability, setting times and compressive strengths were obtained using iron cube mold, Vicat apparatus and compression testing machine, respectively. Biochemical oxygen demand (BOD) and pH of curing water were analyzed. Pollution potential of the cement and concretes produced by partially replacing cement with coal ash was evaluated using CO2 emission simulation. Concretes in which sand was replaced with coal ash (CAS) had better slumps and compressive strengths than those in which cement was replaced with coal ash (CAC). Setting times increased as more coal ash was added but were lower for CAS. BOD analysis of curing water showed it was safe for livestock consumption and body contact during recreational use. CO2 emissions and concrete carbonation analysis showed blending of cement with coal ash reduced emissions which ranged from 0.22 to 0.33 kg but was 0.37 kg in conventional concrete. CAC-40:60 had the lowest emission of CO2 from cement. CO2 uptake after 50-year service life showed that CAC-30:70 had the highest absorption-to-emission ratio of 38.5%. Secondary application of coal ash in concrete production should be encouraged as concretes of similar strengths were obtained with reduction in environmental pollution.
机译:研究了用煤灰部分替代水泥和沙子部分替代的混凝土的环境影响。用X射线荧光光谱仪测定煤灰和水泥的氧化物组合物,而使用扫描电子显微镜测定粒度和形状。通过在10,20,30%和40%的粉煤灰取代水泥和沙子来生产混凝土混合物。使用铁立方体模具,VICAT装置和压缩试验机获得其可加工性,设定时间和抗压强度。分析了生物化学需氧量(BOD)和固化水的pH。通过CO2排放模拟评估通过部分替代煤灰通过部分替代水泥生产的水泥和混凝土的污染潜力。用煤灰(CAS)代替沙子的混凝土具有比煤灰(CAC)所取代的水泥更好的坍落度和抗压强度。随着更多煤灰加入但是CAS较低的设定时间增加。 HOD分析固化水显示出在娱乐使用期间牲畜消耗和身体接触是安全的。二氧化碳排放和混凝土碳酸化分析显示水泥与煤灰减少排放的混合,其排放量为0.22至0.33千克,但在常规混凝土中为0.37千克。 CAC-40:60具有来自水泥的最低排放二氧化碳。 50年的使用寿命后CO2吸收显示,CAC-30:70的吸收率最高为38.5%。应鼓励煤灰在混凝土生产中的二次应用,因为在减少环境污染的情况下获得了类似强度的混凝土。

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