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Optimization of Process Parameters for Organic Municipal Solid Waste Torrefaction

机译:有机城市固体废弃物的过程参数优化

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Rapid waste generation, which exceeds the capacity of natural decomposition, is the expected result population growth and unplanned urbanization. The lack of proper solid waste management systems has become a major challenge in developing countries. Torrefaction of organic material is a great approach to overcome this challenge, as it generates a value-added torrefied material for different markets. This investigation was aimed at introducing a layer model for packed bed torrefactor and established the optimum control reference for energy input. The reactor bottom temperature was maintained at 350 °C by controlling the flow rate of heated nitrogen gas, which was the energy carrier. The optimum energy input profile was obtained by non-linear optimization of batch type fixed bed torrefactor model using the APMonitor, a Mixed Integer Non-Linear Programing suite. Finally, the study reveals that the torrefaction is a favorable process to convert bulky, moist, and perishable organic MSW material into an energy dense, dry, water resistant, and easily crushable, valuable fuel.
机译:快速废物的产生,这超过了自然分解的能力,是预期的结果人口增长和无计划的城市化。由于缺乏适当的固体废物管理系统已成为发展中国家的一个重大挑战。有机材料的烘焙是克服这种挑战很大的方法,因为它会产生针对不同的市场增值焙干材料。此调查的目的是引入对填充床torrefactor的层模型,并建立了能量输入的最佳控制基准。反应器底部的温度,通过控制加热的氮气的流率,这是能量载体保持在350℃。通过使用APMonitor,一个混合整数非线性编程套件间歇式固定床torrefactor模型的非线性优化获得的最佳的能量输入轮廓。最后,该研究表明,烘焙是一个有利的方法来转换笨重,湿润,和易腐有机MSW材料到能量密集的,干燥的,抗水,并且易于破坏的,有价值的燃料。

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