A Study on the Characteristics of Chlorine-Containg Cement Depending on Changes in Gypsum and Iron Modulus

Young-Jun Lee, N. Kim, Jeong-Hoon Cho, S. Seo, Yong-sik Chu
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Abstract

The physical properties of chlorine-containing cement were analyzed to optimize the operational conditions when waste resources containing chlorine were used in the cement manufacturing process. Cement with clinker to gypsum weight ratios of 95:5 and 93:7 were manufactured. In addition, the iron modulus (IM) of clinker was set to 1.3, 1.5, and 1.7 to evaluate the burnability and physical properties of clinker. With constant chlorine content, increasing gypsum content resulted in a decrease in the 3 day-compressive strength, whereas the 28 day-compressive strength increased. In addition, flow and setting time also increased with increasing gypsum content. As the IM decreased, burnability was improved, free-CaO content decreased, alite and ferrite content increased, and compressive strength increased In particular, the compressive strength of IM 1.3 was approximately 14% greater than that of
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含氯水泥随石膏和铁模量变化特性的研究
分析了含氯水泥的物理性能,优化了含氯废资源在水泥生产过程中的操作条件。制备了熟料与石膏质量比分别为95:5和93:7的水泥。此外,将熟料的铁模量(IM)设定为1.3、1.5和1.7,以评价熟料的可燃性和物理性能。在氯含量一定的情况下,石膏含量增加导致3 d抗压强度降低,28 d抗压强度增加。随着石膏掺量的增加,流动时间和凝固时间也随之增加。随着IM的降低,可燃性提高,游离cao含量降低,alite和铁素体含量增加,抗压强度提高,其中IM 1.3的抗压强度比IM 1.3的抗压强度提高约14%
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