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Assessment of heat pumping technology in oleochemical fatty acid fractionation

机译:油化学脂肪酸分馏中热泵技术评估

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Similar to petroleum industry,major energy consumption in oleochemical plants is also dominated by separation process in order to obtain purified oleochemical cuts.Combination of the distillation column with heat pumping system has emerged as one of the most popular techniques in heat integration.Although heat pumping technology has been proven to be effective in petroleum separation,the research on this technology in oleochemical separation has not yet been discovered.Hence,it would be appealing to investigate the feasibility of integrating heat pump technology with distillation units in hopes of reducing energy usage in the separation of oleochemical products.In this study,two configurations of heat pumping system,namely direct vapor recompression(VRC)and bottom flashing heat pump(BFHP)are simulated in Aspen Plus particularly for fractionation of palm kernel oil(PKO)fatty acid.Proper selection of thermodynamic package is discussed in detail.Only three major components of PKO-based fatty acid are involved in the simulation in order to arrive at simple simulation and easy convergence.Simulation results indicates that both configurations of heat pump can be feasibly integrated with the distillation column.However,to satisfy the heating and cooling requirement,supply of makeup utility is necessary.
机译:与石油工业类似,油化学植物的主要能耗也是由分离过程主导的,以获得用热泵系统获得蒸馏塔的蒸馏塔,作为热集成中最受欢迎的技术之一。尽管热泵技术已被证明在石油分离中有效,尚未发现对油化学分离中这项技术的研究尚未发现。应该有吸引力地研究热泵技术与蒸馏装置的可行性,希望减少能源使用的希望油化学产品的分离。本研究,两种散热系统配置,即直接蒸汽再压缩(VRC)和底部闪蒸热泵(BFHP)在Aspen Plus中模拟,特别是对于棕榈仁油(PKO)脂肪酸的分馏。 Proper selection of thermodynamic package is discussed in detail.Only three major components of PKO-based fa TTY酸涉及模拟,以便在简单的模拟和容易收敛的情况下到达。仿效结果表明,热泵的两种配置可以与蒸馏塔可公开集成。但是,为了满足加热和冷却要求,供应化妆品有必要的。

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