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Pretreatment of corn stover ash to improve its effectiveness as a supplementary cementitious material in concrete

机译:玉米秸秆灰的预处理,以提高其在混凝土中的补充水泥材料的有效性

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This paper investigates the feasibility of using corn stover ash (CSA) as supplementary cementitious material to replace cement in concrete. Three types of CSA - water-washed, acid-washed, and untreated burned corn stover - were produced, and the influence of the pretreatment regimens on the physical and chemical properties of the produced ashes are evaluated. Moreover, the influence of CSA on the hydration kinetics of cement pastes, and compressive strength and bulk electrical resistivity of concrete specimens is discussed. The results of this study show that pretreating the corn stover before combustion increases the SiO2 content of the ash, and reduces the Cl and K2O contents, the loss on ignition, and the median particle size. The results also show that the pretreated CSA is more reactive and can accelerate the cement hydration process. Both acid- and water-washed CSA increase the strength and bulk electrical resistivity of concrete at later ages. Incorporating untreated CSA in the concrete mixture, on the other hand, reduces the compressive strength and bulk electrical resistivity of the concrete, due to the negative impacts of deleterious agents (such as high ash alkali contents) on the cement hydration process. While further work is needed, pretreated CSA could potentially be used as a novel supplementary cementitious material in concrete.
机译:本文研究了使用玉米渣(CSA)作为补充水泥材料以更换混凝土的水泥的可行性。制备了三种类型的CSA - 水洗,洗涤和未处理的烧焦玉米秸秆 - 评估预处理方案对所产生的灰烬物理和化学性质的影响。此外,讨论了CSA对水泥浆料水合动力学的影响,以及混凝土样本的抗压强度和散装电阻率。该研究的结果表明,在燃烧前预处理玉米秸秆增加了灰分的SiO 2含量,并降低了Cl和K2O内容物,点火损失以及中值粒径。结果还表明,预处理的CSA更具反应性,可以加速水泥水化过程。酸和水洗的CSA均提高后代混凝土的强度和散装电阻率。另一方面,在混凝土混合物中掺入未处理的CSA,降低了混凝土的抗压强度和散装电阻率,这是由于有害药剂(例如高灰碱含量)对水泥水合过程的负面影响。虽然需要进一步的工作,但预处理的CSA可能被用作混凝土中的新型补充水泥材料。

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