Improving Kiln Feed Chemistry and Overburden Wasting through Controlled Consistent Quarry Material Mix: A Case Study at Union Bridge Cement Plant

K. Boakye
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引用次数: 1

Abstract

Cement is made by milling clinker with a mix of grinded gypsum. The clinker is produced using a rotary kiln which burns a mixture of limestone, clay, magnesium, silica, and iron with desired atomic percentages. The quarry is the primary source of raw material for the rotary kiln in cement production. The consistency of material feed chemistry, in which the quarry plays a key role, is crucial for optimizing the performance of a rotary kiln. The quarry implemented a six-step methodology that comprised a modified 3D mining software modeling tool, a database computer loop prediction tools, and other tools to improve mining sequencing, optimize raw material usage, and provide consistent chemistry mix material for the kiln. By using overburden as a raw material in the mix, the quarry nearly universally reduces the environmental impact of squandering unwanted material in the quarry. This has a significant environmental impact since it requires less space to manage the overburden waste generated during mining. In addition, raw material usage was optimized for clinker production causing a reduction of 4% in sand usage as raw material, reduction in raw material purchase cost, reducing the variability of kiln feed chemistry, and producing high-quality clinker. The standard deviation of kiln feed LSF was improved by 45 percent, and the variability in kiln feed was reduced by 65 percent.
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通过控制矿料配比改善窑料化学性质和覆盖层浪费——以联合桥水泥厂为例
水泥是用熟料和磨碎的石膏混合制成的。熟料是用回转窑生产的,回转窑燃烧石灰石、粘土、镁、二氧化硅和铁的混合物,达到所需的原子百分比。采石场是水泥生产中回转窑原料的主要来源。原料化学浓度对回转窑性能的优化至关重要,而原料化学浓度在回转窑中起着关键作用。采石场实施了六步方法,包括改进的3D采矿软件建模工具,数据库计算机循环预测工具和其他工具,以改善采矿顺序,优化原材料使用,并为窑炉提供一致的化学混合材料。通过在混合物中使用覆盖层作为原材料,采石场几乎普遍减少了在采石场浪费多余材料对环境的影响。这对环境有重大影响,因为它需要较少的空间来管理采矿期间产生的覆盖层废物。此外,对熟料生产的原料使用进行了优化,减少了4%的原料砂用量,降低了原料采购成本,减少了窑料化学的变化,生产出了高质量的熟料。窑料LSF的标准差提高了45%,窑料变异性降低了65%。
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