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Waste heat availability in the raw meal department of a cement plant

机译:水泥厂生料部门的余热供应

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The main aim of this study was to determine the available heat in the cement kiln exhaust gas subject to different process conditions. A Norwegian cement plant producing about 1.3 million tons of cement per year was used as a case study. A mass and energy balance was made for the raw meal department, and process data available from the plant process database as well as manually measured gas flow rates were used to calculate the available heat. The available heat can be utilized by a combination of low pressure (LP) steam generation and hot water generation. It was found that waste heat is 1.5–4.2MW for LP steam generation and 2.2–5.8MW for hot water generation. The variation in available heat is due to different raw meal types being produced, requiring different gas inlet temperatures to raw meal mill. In cases when no raw meal is produced (in maintenance shutdown periods), all the gas will bypass the mill, and approximately 20MW of LP steam and 6MW of hot water can be generated. The heat loss from the system was estimated based on measurements, and the fan power inputs were calculated. Both were found to be negligible compared to the available heat. Furthermore, the total false air coming into the system was estimated as 40–50% of the total gas flow rate going out from the raw meal department.
机译:这项研究的主要目的是确定在不同工艺条件下水泥窑废气中的可用热量。案例研究使用了一家挪威水泥厂,该厂每年生产约130万吨水泥。生料部门进行了质量和能量平衡,并使用了工厂过程数据库中可用的过程数据以及手动测量的气体流速来计算可用热量。可用的热量可以通过低压(LP)蒸汽产生和热水产生的组合来利用。结果发现,低压蒸汽产生的余热为1.5-4.2MW,热水产生的为2.2-5.8MW。可用热量的变化是由于生产的生料类型不同,要求生料磨机的进气口温度不同。在没有生粉的情况下(在维护停机期间),所有气体将绕过磨机,大约可产生20兆瓦的低压蒸汽和6兆瓦的热水。系统会根据测量结果估算系统的热损失,并计算出风扇的功率输入。与可用热量相比,发现两者都可以忽略不计。此外,估计进入系统的总虚假空气占生料部门总气体流量的40%至50%。

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