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Stabilization of recycled base materials with high carbon fly ash

机译:用高碳粉煤灰稳定再生基础材料

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Fly ashes produced by power plants in the United States occasionally contain significant amounts of unburned carbon due to common use of low nitrogen-oxide and sulphur-oxide burners in recent years. This ash cannot be reused in concrete production due to its reactivity with air entrainment admixtures and is being landfilled at large percentages. A study was conducted to stabilize low stiffness road surface material with high carbon fly ash. The non-cementitious fly ash was activated with another recycled material, lime kiln dust (LKD). California bearing ratio (CBR) and resilient modulus tests were conducted to determine the strength and stiffness, respectively, of the stabilized materials. Addition of LKD and curing of specimens generally increased CBR and summary resilient modulus (SM_R), and lowered plastic strains, CBR increased with increasing CaO content as well as with CaO/SiO_2 and CaO/(SiO_2 + Al_2O_3) ratio of the mixtures; however, these parameters could not be correlated with the SM_R. The unpaved road materials stabilized with LKD and fly ash are expected to lose 31-67% of their initial moduli after 12 cycles of freezing and thawing. Lower base thicknesses and reduction in construction costs can be expected by stabilizing road surface materials with high carbon fly ash.
机译:由于最近几年普遍使用低氮氧化物和硫氧化物燃烧器,美国发电厂产生的粉煤灰偶尔含有大量未燃烧的碳。由于这种灰与空气夹带剂具有反应性,因此无法在混凝土生产中重复使用,并且被大量掩埋。进行了用高碳粉煤灰稳定低硬度路面材料的研究。非胶凝性粉煤灰由另一种再生材料石灰窑粉尘(LKD)活化。进行了加利福尼亚承载比(CBR)和弹性模量测试,分别确定了稳定材料的强度和刚度。 LKD的添加和样品的固化通常会增加CBR和总弹性模量(SM_R),并降低塑性应变,CBR随着CaO含量的增加以及混合物的CaO / SiO_2和CaO /(SiO_2 + Al_2O_3)的比例而增加;但是,这些参数不能与SM_R相关。经过LKD和粉煤灰稳定的未铺装道路材料,经过12次冻融循环后,预计将损失其初始模量的31-67%。通过用高碳粉煤灰稳定路面材料,可以期望降低基础厚度并降低施工成本。

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