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Simulation and energy optimization of the stabilizer tower of a pyrolysis gasoline hydrogenation unit

机译:裂解汽油加氢装置稳定塔的仿真与能量优化

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Energy optimization of second distillation tower of a pyrolysis gasoline hydrogenation unit has been studied by the thermal cycle of vapor recompression method. The mentioned cycle is connected to the second distillation tower of the stabilizer of pyrolysis gasoline, and the results are found promising. The composite pinch curve for both the current and the optimized methods are shown. Moreover, an increase in the heat transfer rate in heat exchanger E-1014 causes energy recovery in reboiler. According to simulation results, by vapor recompression to 1970 kPa and using this heat source for thermal integration, condenser and reboiler's energies are decreased by 56.93 and 30.4 percentage, respectively.
机译:通过蒸汽再压缩的热循环研究了热解汽油加氢装置第二蒸馏塔的能量优化。所述循环连接到热解汽油稳定剂的第二蒸馏塔上,发现结果是有希望的。显示了当前方法和优化方法的复合收缩曲线。此外,热交换器E-1014中的传热速率的增加导致再沸器中的能量回收。根据模拟结果,通过将蒸汽再压缩至1970 kPa并使用该热源进行热集成,冷凝器和再沸器的能量分别降低了56.93和30.4%。

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