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Wood Chip Drying in Fixed Beds: Drying Kinetics and Economics of Drying at a Municipal Combined Heat and Power Plant Site

机译:固定床木屑干燥:市政热电厂联合干燥场的干燥动力学和干燥经济学

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Drying of wood chips at a power plant site increases the lower heating value and decreases composting and dry matter losses in long-term storage. In this study, experimentally measured drying curves for wood chips are produced to study the drying kinetics of the chips. Drying curves have been used to assess whether or not wood chip drying in a batch-type fixed bed dryer at a municipal Combined Heat and Power (CHP) plant site is profitable when using external excess heat or solar energy as a heat source in drying, and what could be the reasonable drying parameters for that. The curves have been determined by changing bed heights (100, 300, 500mm), temperature of inlet air (30, 50, 70, 90 degrees C) and air velocities (0.3m/s, 0.5m/s, 0.7m/s) in the tests. Air has been used as a drying gas. The results show that drying time decreases considerably when the temperature of the drying air increases from 50 degrees C to 70 degrees C. The influence of drying air temperature on the drying time is no longer so remarkable as the temperature increases from 70 degrees C to 90 degrees C. This indicates that the inlet air temperature should be at least 70 degrees C. The results also indicate that the air velocity should be at least 0.5m/s in order to achieve reasonable drying times. The economics of drying have been evaluated in the study by calculating the payback period for the dryer. According to the results, drying could be profitable if investment costs are appropriate (not much higher than 1,500 Euro/m(2)) and the price of the wood chips is sufficiently high (higher than approximate to 15-20 Euro/MWh). It is, however, important to consider that drying at a municipal CHP plant site is always case-dependent.
机译:在发电厂现场干燥木片可提高较低的发热量,并减少长期存储中的堆肥和干物质损失。在这项研究中,通过实验测量得出木屑的干燥曲线,以研究木屑的干燥动力学。干燥曲线已用于评估在使用外部多余热量或太阳能作为干燥热源的情况下,在市政热电联产工厂的间歇式固定床干燥机中进行木屑干燥是否有利可图,以及什么是合理的干燥参数通过改变床高(100、300、500mm),进气温度(30、50、70、90摄氏度)和风速(0.3m / s,0.5m / s,0.7m / s)确定曲线)在测试中。空气已被用作干燥气体。结果表明,当干燥空气的温度从50摄氏度增加到70摄氏度时,干燥时间大大减少。随着温度从70摄氏度升高到90摄氏度,干燥空气温度对干燥时间的影响不再那么明显。摄氏度。这表明进气温度应至少为70摄氏度。结果还表明,空气速度应至少为0.5m / s,以实现合理的干燥时间。通过计算干燥机的投资回收期,在研究中评估了干燥的经济性。根据结果​​,如果投资成本合适(不高于1,500欧元/平方米(2))并且木屑的价格足够高(高于大约15-20欧元/兆瓦时),干燥可能会有利可图。但是,重要的是要考虑到市政CHP工厂现场的干燥始终视情况而定。

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