Characteristics of Cement Raw Mix and Clinker used Non-Carbonated Materials

Young Jun Lee, Woo Sung Yum, Sung Kwan Seo, Yong Sik Chu
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Abstract

The cement industry emits a large amount of GHGs (greenhouse gases) and about 65% of GHGs is originated from limestone. So non-carbonated CaO materials were examined to replace limestone in this study. It was attempt to replace limestone by used blast furnace slag, converter slag, and KR slag with high CaO content. For manufacture clinker, LSF, SM, and IM were controlled at 92, 2.5, and 1.6, respectively, and the CaCO3 replacement rate was fixed at 3%, 6%, 9%, and 12%. As using blast furnace slag, the CaCO3 replacement rate was possible up to 12%, but for converter slag and KR slag, up to 3% and 9% were possible. The burnability of clinker was better when blast furnace slag and KR slag were used. The XRD peak intensity of clinker used blast furnace slag gradually decreased as the amount of slag used increased, but when KR slag was used, the XRD peak intensity actually increased. It was presumed to be because KR slag has a high CaO content and already contains C2S, making it easier to produce clinker minerals.
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非碳化材料水泥生料和熟料的特性
水泥行业排放大量的温室气体(温室气体),约65%的温室气体来自石灰石。因此,本研究采用无碳化CaO材料替代石灰石。尝试用高CaO含量的废高炉渣、转炉渣和KR渣替代石灰石。对于制造熟料,LSF、SM和IM分别控制在92、2.5和1.6,CaCO3替代率固定为3%、6%、9%和12%。使用高炉渣时,CaCO3替代率可达12%,而使用转炉渣和KR渣时,CaCO3替代率可达3%和9%。使用高炉渣和KR渣时,熟料的可燃性较好。随着炉渣用量的增加,使用高炉矿渣的熟料的XRD峰强度逐渐降低,而使用KR矿渣时,其XRD峰强度反而增加。据分析,这是因为KR渣中CaO含量高,而且已经含有C2S,因此更容易产生熟料矿物。
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