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Direct injection of superheated steam for continuous hydrolysis reaction

机译:直接注入过热蒸汽进行连续水解反应

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The primary intent for previous continuous hydrolysis studies was to minimize the reaction temperature and reaction time. In this work, hydrolysis is the first step of a proprietary chemical process to convert lipids to sustainable, drop-in replacements for petroleum based fuels. To improve the economics of the process, attention is now focused on optimizing the energy efficiency of the process, maximizing the reaction rate, and improving the recovery of the glycerol by-product. A laboratory-scale reactor system has been designed and built with this goal in mind. Sweet water (water with glycerol from the hydrolysis reaction) is routed to a distillation column and heated above the boiling point of water at the reaction pressure. The steam pressure allows the steam to return to the reactor without pumping. Direct injection of steam into the hydrolysis reactor is shown to provide favorable equilibrium conditions resulting in a high quality of FFA product and rapid reaction rate, even without preheating the inlet water and oil and with lower reactor temperatures and lower fresh water demand. The high enthalpy of the steam provides energy for the hydrolysis reaction. Steam injection offers enhanced conditions for continuous hydrolysis of triglycerides to high-purity streams of FFA and glycerol.
机译:先前连续水解研究的主要目的是使反应温度和反应时间最小化。在这项工作中,水解是专有化学工艺的第一步,该工艺将脂质转化为石油基燃料的可持续的直接替代品。为了提高该方法的经济性,现在将注意力集中在优化该方法的能量效率,使反应速率最大化以及提高甘油副产物的回收率上。考虑到这一目标,已经设计并建造了实验室规模的反应器系统。将甜水(水解反应产生的甘油水)送入蒸馏塔,并在反应压力下加热至水的沸点以上。蒸汽压力使蒸汽无需泵送即可返回反应器。已显示将蒸汽直接注入水解反应器可提供有利的平衡条件,即使不预热入口水和油且反应器温度较低且新鲜水需求较低,也可提供高质量的FFA产品和快速的反应速率。蒸汽的高焓为水解反应提供能量。蒸汽注入为甘油三酯连续水解为FFA和甘油的高纯度物流提供了增强的条件。

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