首页> 外文期刊>Journal of materials in civil engineering >Peat-Wood Fly Ash as Cold-Region Supplementary Cementitious Material: Air Content and Freeze-Thaw Resistance of Air-Entrained Mortars
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Peat-Wood Fly Ash as Cold-Region Supplementary Cementitious Material: Air Content and Freeze-Thaw Resistance of Air-Entrained Mortars

机译:泥炭木粉煤灰作为冷区补充胶凝材料:含气砂浆的空气含量和抗冻融性

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Fluidized bed combustion fly ash (FBCFA) is a promising industrial side stream to be used as a partial cement replacement material. Untreated and milled FBCFAs from cocombustion of peat and wood were used to replace 20% of portland cement in air-entrained and non-air-entrained mortars. Additionally, equivalent mortars containing fly ash from pulverized coal combustion (CFA) were prepared to compare FBCFAs with more conventional standardized cement replacement material. The study found that both FBCFAs produced mortars with similar compressive strengths compared to a reference, indicating that milling did not affect reactivity of ashes. Air-entrained FBCFA-containing mortars had about the same amount of entrained air compared to the reference mortar. FBCFAs outperformed CFA as a cement replacement material, which produced lower compressive strengths and reduced the amount of entrained air. Non-air-entrained mortar containing CFA suffered severe damage during the freeze-thaw (FT) experiment, unlike non-air-entrained mortars containing untreated or milled FBCFA. The addition of an air-entrainment agent improved FT resistance of all mortars, except those that contained milled FBCFA, which nevertheless had good FT resistance. This first-of-its-kind investigation of the suitability of peat-wood FBCFAs as a supplementary cementitious material in air-entrained mortars suggests a potential use of FBCFAs in cold-region concreting.
机译:流化床燃烧飞灰(FBCFA)是一种有前途的工业侧流,可用作部分水泥替代材料。泥炭和木材混合燃烧产生的未经处理和磨碎的FBCFA被用来代替加气砂浆和非加气砂浆中的20%硅酸盐水泥。此外,还准备了粉煤燃烧(CFA)中含有粉煤灰的等效砂浆,以将FBCFA与更常规的标准化水泥替代材料进行比较。研究发现,两种FBCFA所生产的砂浆均具有与参比砂浆相似的抗压强度,表明研磨不会影响骨灰的反应性。与参考砂浆相比,空气夹带的含FBCFA的砂浆夹带的空气量大致相同。 FBCFAs作为水泥替代材料的性能优于CFA,这产生了较低的抗压强度并减少了夹带的空气量。与未处理或磨碎的FBCFA的未加气砂浆不同,含CFA的未加气砂浆会在冻融(FT)实验中遭受严重破坏。添加空气夹带剂可改善所有砂浆的耐FT强度,但含有磨碎的FBCFA的砂浆仍具有良好的FT耐性。此项关于泥炭木材FBCFAs作为加气砂浆中的辅助胶结材料的适用性的同类研究首次表明,FBCFAs在寒区混凝土中的潜在用途。

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