Upgrading a clinker cooler: IKN clinker inlet distribution system ("KIDS")

D. Gagnon
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引用次数: 3

Abstract

Portland cement is fabricated with a blend of clinker, gypsum and minor proportions of chemical additives. Clinker being the principal element of this blend, its physical properties have direct effects on Portland cement quality. The temperature of clinker when exiting the process line is one of the most important factors. Grinding of the final blend of clinker-gypsum-additives has temperature limitations for the production of quality cement and more and more cement producers are asked by the end users to offer a cooled Portland cement. These reasons explain why clinker cooling is an important phase in clinker production. The clinker cooler is exposed to extremely difficult operating conditions with a highly abrasive and hot material. When leaving the rotary kiln, clinker is in an unstable state still being partly molten. Grate coolers aeration in the first sections cause a partial fluidisation of clinker. Under certain abnormal conditions, this unstable phase presents upset conditions in the cooler and gives headaches to the operators. Conventional grate coolers could not solve these flow problems on all occasions but new developments in grate coolers have greatly reduced and nearly eliminated these problems. This reports on a successful modification to process lines with a new revolutionary cooling technology.
升级熟料冷却器:IKN熟料入口分配系统(“KIDS”)
硅酸盐水泥是由熟料、石膏和少量化学添加剂混合制成的。熟料是硅酸盐水泥的主要成分,其物理性能直接影响硅酸盐水泥的质量。熟料出线时的温度是影响熟料生产的重要因素之一。熟料-石膏-助剂的最终混合粉磨对生产高质量水泥有温度限制,越来越多的水泥生产商被最终用户要求提供冷却波特兰水泥。这些原因解释了为什么熟料冷却是熟料生产中的一个重要阶段。熟料冷却器暴露在极其困难的操作条件下,具有高磨蚀性和高温材料。熟料离开回转窑时处于不稳定状态,仍处于部分熔融状态。篦冷器在第一段的曝气引起熟料的部分流化。在某些不正常的条件下,这种不稳定的相在冷却器中出现紊乱状态,使操作人员感到头痛。传统的篦冷器不能在所有场合解决这些流动问题,但篦冷器的新发展大大减少和几乎消除了这些问题。本文报道了一种新的革命性冷却技术对工艺线的成功改造。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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