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A Calciner at its Best

机译:一个最佳煅烧炉

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摘要

Results from one of the world's largest cement plants are presented in this paper. The plant incorporates many innovative technologies including being the largest single kiln and a preheater tower with dual-sting `hybrid' low-NOx and CO inline calciner. Commissioned with coal firing, the plant later switched to firing a blend of coal and petcoke in the kiln. The calciner has a seven-second residence time and is capable to burn several types of alternative fuels including bigger and denser fuels such as tire chips and/or solid recovered fuels.Prior to calciner installation, a detailed mathematical modeling exercise using mineral interactive computational fluid dynamics (MI-CFD) was carried out. The simulated results showed higher level of coal burnout in seven seconds' gas residence time with about 95% meal calcination levels. The CO and NOx emissions were found to be extremely low. The predicted values were later found to be reasonably close to plant data.Plant analysis for the last ten years of operation are presented. The lower NOx emissions enabled the plant to use no or very little SNCR allowing for savings of between 1-2 $M per year, as compared with other plants. Some data and simulated results are presented to highlight calciner performance and, where possible, results are compared with other state of the art calciners. The achieved success from the plant can be replicated to other plants through creating similar combustion and process conditions.
机译:本文提出了世界上最大的水泥厂之一的结果。该工厂包含许多创新技术,包括作为最大的单窑和带有双重刺痛的塔的预热器塔,其中有双刺的“混合”低Nox和Co Inline Calliner。委托煤炭烧制,工厂后来切换到窑中射击煤炭和佩德克的混合物。煅烧炉具有七秒停留时间,能够燃烧几种类型的替代燃料,包括诸如轮胎芯片和/或固体回收的燃料等更大和更密集的燃料。使用矿物交互式计算液进行详细的数学建模锻炼。进行动态(MI-CFD)。模拟结果显示七秒钟的燃气停留时间较高水平的煤炭燃烧水平,含有约95%的煅烧水平。发现CO和NOX排放量极低。后来发现预测值是合理的,合理地接近植物数据。呈现过去十年的植物数据。与其他植物相比,较低的NOx排放使工厂使用NO或非常小的SNCR允许节省1-2美元。提出了一些数据和模拟结果以突出显示煅烧炉性能,并且在可能的情况下,将结果与最艺术煅烧炉的其他状态进行比较。通过产生类似的燃烧和工艺条件,可以通过植物从植物中取得成功。

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