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Design of A Plant to Produce 5 Ton per Day Liquid Fuel from Waste Plastic (Low Density Polyethylene)

机译:由废塑料(低密度聚乙烯)生产日产5吨液体燃料的工厂设计

摘要

The present work involves the study and design for the production of liquid fuel from waste plastic (LDPE) by thermal pyrolysis. The process is carried out thermal pyrolysis where degradation of larger molecules into smaller molecules. The effect of temperature has been studied at different temperatures 475°c, 500°c, 525°c, 550°c and the following wt. % are 47.3%, 63.2%, 69.8%, 77.07% respectively. The most economical process flow diagram was designed for production of liquid fuel from waste plastic (LDPE). The maximum yield of product is obtained at optimum temperature 550°c. With the help of product flow rate, the required raw materials are calculated which are 6.48 tons per day to produce 5 ton per day liquid fuel. Residence time is the time required for reaction and this noted as 57 min from the experiment. Design of the reactor is done with help of residence time and flow rate of raw materials and calculated to be 544 liters. Designing of equipment (vessel) are done with the help of mass balance and heat balances reactions. Volume of the vessel is found out from the steady state heat conduction equations. The optimum diameter and length of the reactor are calculated. Cost estimation of the plant is calculated and it is found that it is feasible to put a plant of 5tons of liquid fuel and with help of input cost and output cost and then profitability is calculated
机译:目前的工作涉及通过热解从废塑料(LDPE)生产液体燃料的研究和设计。该过程进行热解,其中较大的分子降解为较小的分子。在475°c,500°c,525°c,550°c和以下wt。%的不同温度下研究了温度的影响。 %分别是47.3%,63.2%,69.8%和77.07%。最经济的工艺流程图设计用于由废塑料(LDPE)生产液体燃料。在最佳温度550°C下可获得最大的产品收率。借助产品流量,计算出每天需要6.48吨才能生产每天5吨液体燃料的原材料。停留时间是反应所需的时间,从实验中记为57分钟。反应器的设计在停留时间和原料流速的帮助下完成,计算为544升。设备(容器)的设计是在质量平衡和热平衡反应的帮助下完成的。从稳态热传导方程中可以找到容器的体积。计算反应器的最佳直径和长度。计算了该工厂的成本估算,发现放置5吨液体燃料的工厂并在投入成本和产出成本的帮助下可行,然后计算获利能力

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    Venumadhav Penta;

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  • 年度 2015
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