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Preparation of belite cement from stockpiled high-carbon fly ash using granule-hydrothermal synthesis method

机译:颗粒-水热合成法由高碳粉煤灰制备贝利特水泥

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Belite cement was prepared from lime and long-term stockpiled high-carbon fly ash by granulehydrothermal synthesis at 97 degrees C followed by calcination at 800-1000 degrees C. The effects of the lime/fly ash ratio, dosage of Na2O and calcination temperature on the phase compositions of the synthesized precursors and clinkers, and the properties of the cements were investigated. Belite cements with the flexural and compressive strengths at 28-day higher then 6.1 MPa and 32.8 MPa, respectively, were prepared. The results show that the quartz and mullite in the fly ash basically do not take part in the reactions. Adding 0.5-1.5% Na2O promotes the hydrothermal reaction and formation of C-S-H and finally increases the formation of belite. alpha'(L)-C2S and C(12)A(7) are the main cementitious minerals in the clinker calcined at 800 degrees C, while beta-C2S and gehlenite present when the calcination temperature reached 900 degrees C or higher. Replacing ordinary portland cement partly for the belite cement might reduce the water requirement and increase the strengths. (c) 2016 Elsevier Ltd. All rights reserved.
机译:由石灰和长期储存的高碳粉煤灰在97摄氏度下通过颗粒水热合成,然后在800-1000摄氏度下煅烧来制备贝利特水泥。石灰/粉煤灰比,Na2O用量和煅烧温度对研究了合成前体和熟料的相组成以及水泥的性能。制备了抗弯强度和抗压强度分别比6.1 MPa和32.8 MPa高28天的贝利特水泥。结果表明,粉煤灰中的石英和莫来石基本上不参与反应。添加0.5-1.5%Na2O促进了水热反应和C-S-H的形成,并最终增加了珍珠岩的形成。 α'(L)-C2S和C(12)A(7)是在800摄氏度下煅烧的熟料中的主要胶结矿物,而当煅烧温度达到900摄氏度或更高时,β-C2S和钠钙石存在。用普通的硅酸盐水泥代替贝利特水泥可能会减少用水量并提高强度。 (c)2016 Elsevier Ltd.保留所有权利。

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