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Use of spent catalyst from catalytic cracking in fluidized bed as a new concrete additive

机译:流化床催化裂化产生的废催化剂用作新型混凝土添加剂

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The hydration of cement paste was studied as a function of addition of spent catalyst for catalytic cracking in fluidized bed, as compared with similar use of microsilica and fly ashes. The course of the hydration process was studied by TG and DTA, Xray diffraction, and infrared absorption methods. The time of setting of freshly prepared pastes and the compressive and bending strengths of sample beams after the 7th and 28th days of setting were determined. The contents of Ca(OH)(2) in the pastes at different times of hydration were determined from the results of the thermogravimetric studies. The studies disclosed the pozzolana nature of the additives. The ability of combining with Ca(OH)(2) was similar in the spent catalyst and microsilica. In the presence of the spent catalyst, the hydration process was strongly exothermic which promoted rapid setting of the cement paste. Calcium carbonate-aluminates formed in the system affect favorably the strength of the concretes formed. (C) 1998 Elsevier Science B.V. [References: 14]
机译:与微粉二氧化硅和粉煤灰的类似用途相比,研究了水泥浆的水合与添加废催化剂以在流化床中进行催化裂化的功能。通过TG和DTA,X射线衍射和红外吸收方法研究了水合过程。确定刚准备好的糊状物的凝固时间以及凝固后第7天和第28天后样品梁的抗压强度和弯曲强度。根据热重研究的结果确定在不同水化时间的糊中Ca(OH)(2)的含量。研究揭示了添加剂的火山灰性质。在废催化剂和微二氧化硅中,与Ca(OH)(2)结合的能力相似。在废催化剂存在下,水合过程强烈放热,促进了水泥浆的快速凝固。在体系中形成的碳酸钙-铝酸盐会有利地影响所形成的混凝土的强度。 (C)1998 Elsevier Science B.V. [参考:14]

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