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Influence of Fly Ash From Co-Combustion of Coal and Biomass on Scaling Resistance of Concrete / Wp?yw Popio?u Lotnego Ze Wspó?spalania Wegla I Biomasy Na Odpornosc Betonu Na Powierzchniowe ?uszczenie

机译:煤与生物质共同燃烧的粉煤灰对混凝土抗结垢性的影响/煤与生物质燃烧的粉煤灰对混凝土抗表面污垢性的影响

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Industrial utilization of fly ash from various kinds of fuel plays an important role in the environmentally clean and cost effective power production. The primary market for fly ash utilization is as a pozzolanic addition in concrete production. The paper concerns the concretes containing fly ash called Fly Ash from Biomass (FAB) from co-combustion of hard coal and wood biomass (wood chips). Characterization of the fly ash was carried on by means of X-ray diffractometry and E-SEM/EDS analysis. The results of laboratory studies undertaken to evaluate the influence of FAB on concrete resistance to surface scaling due to cyclic freezing and thawing in the presence of NaCl solution were presented. The tests were carried out for concretes containing up to 25% of fly ash related to cement mass. Additionally, the microstructure of air-voids was described. It was concluded that the FAB has significant effect on concrete freeze/thaw durability. The replacement of cement by fly ash from co-combustion progressively transformed the concrete microstructure into less resistant against freeze/thaw cycles and excessive dosage (over 15%) may dangerously increase the scaling.
机译:来自各种燃料的粉煤灰的工业利用在环境清洁和具有成本效益的电力生产中起着重要作用。粉煤灰利用的主要市场是混凝土生产中的火山灰添加物。本文涉及的是由硬质煤和木材生物质(木屑)共同燃烧而来的,含有粉煤灰的混凝土,该粉煤灰来自生物质(FAB),称为粉煤灰。通过X射线衍射法和E-SEM / EDS分析对粉煤灰进行表征。介绍了实验室研究的结果,以评估FAB对在NaCl溶液中循环冻结和解冻引起的混凝土抗结垢性的影响。该测试是针对与水泥质量相关的粉煤灰含量不超过25%的混凝土进行的。另外,描述了气孔的微观结构。结论是,FAB对混凝土的抗冻/融化耐久性具有显着影响。共燃中的粉煤灰替代水泥逐渐将混凝土的微结构转变为抗冻融循环性,而过量(超过15%)可能会增加结垢的危险。

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