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首页> 外文期刊>Journal of thermal analysis and calorimetry >A study by NCDTA and TG of a coal power unit waste effects on the early hydration stages of Type II Portland cement
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A study by NCDTA and TG of a coal power unit waste effects on the early hydration stages of Type II Portland cement

机译:NCDTA和TG对煤电器单元废弃物影响II型港口水泥的早期水合阶段的研究

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摘要

Abstract A Brazilian coal power plant generates a waste composed by the fly and bottom ashes produced from coal combustion and by a spent sulfated lime generated after SO2 capture from combustion gases. This work presents a study of the early stages of the hydration of composites formed by this waste and a type II Portland cement, which will be used for CO2 capture. The cement substitution degrees in the evaluated composites were 10, 20, 30 and 40%, and the effect of the coal power unit waste on the hydration reaction was analyzed on real time by NCDTA, during the first 40?h of hydration. The results show that the higher is the substitution degree, the higher is the retarding effect on the cement hydration process. Actually, by respective thermogravimetric (TG) and derivative thermogravimetric (DTG) analysis on initial cement mass basis, this effect is caused by double exchange reactions among Ca and Mg components of the waste, during the first 4?h of hydration, which promote a much higher exothermic effect in the NCDTA curve, simultaneously to respective induction periods. The pozzolanic reactions, due to the presence of the waste silica and alumina containing amorphous phases, consume part of the original Ca(OH)2 content existent in the waste in the case of 30 and 40% substituted pastes, and also from part of the Ca(OH)2 produced in cement hydration reactions, in the case of the 10 and 20% substituted pastes.]]>
机译:<![CDATA [<标题>抽象 ara ID =“PAR1”>巴西煤电站产生由煤燃烧产生的飞行和底部灰烬组成的废物,并通过所以在所以之后产生的废硫酸盐石灰。下标> 2 从燃烧气体中捕获。这项工作提出了由该废物和II型港口水泥形成的复合材料水合的早期阶段的研究,该水泥将用于CO <下标> 2 捕获。评估复合材料中的水泥取代度为10,20,30和40%,并且在水合的前40℃下,通过NCDTA实时地分析煤动力单元废物对水合反应的影响。结果表明,取代度越高,越高,对水泥水化过程的延迟效果越高。实际上,通过对初始水泥质量的基础各自的热重分析(Tg)和衍生物热重分析(DTG)分析,这种效果是由废物的CA和Mg组分之间的双重交换反应,在第一个4?H的水合过程中促进NCDTA曲线中的放热效果大得多,同时以各自的诱导期。由于废物二氧化硅和含有无定形阶段的氧化铝的存在,消耗在30%和40%取代浆料的废物中消耗原始Ca(OH)<下标> 2 含量的一部分,以及在水泥水化反应中产生的Ca(OH)<下标> 2 的一部分,在10%和20%取代的糊剂的情况下。]>

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