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Biodiesel production process intensification using a rotor-stator type generator of hydrodynamic cavitation

机译:转子定子型水动力空化发生器强化生物柴油生产工艺

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Triglyceride transesterification for biodiesel production is a model reaction which is used to compare the conversion efficiency, yield, reaction time, energy consumption, scalability and cost estimation of different reactor technology and energy source. This work describes an efficient, fast and cost-effective procedure for biodiesel preparation using a rotating generator of hydrodynamic cavitation (HC). The base-catalyzed transesterification (methanol/sodium hydroxide) has been carried out using refined and bleached palm oil and waste vegetable cooking oil. The novel HC unit is a continuous rotor-stator type reactor in which reagents are directly fed into the controlled cavitation chamber. The high-speed rotation of the reactor creates micron-sized droplets of the immiscible reacting mixture leading to outstanding mass and heat transfer and enhancing the kinetics of the transesterification reaction which completes much more quickly than traditional methods. All the biodiesel samples obtained respect the ASTM standard and present fatty acid methyl ester contents of >99% m/m in both feedstocks. The electrical energy consumption of the HC reactor is 0.030 kW h per L of produced crude biodiesel, making this innovative technology really quite competitive. The reactor can be easily scaled-up, from producing a few hundred to thousands of liters of biodiesel per hour while avoiding the risk of orifices clogging with oil impurities, which may occur in conventional HC reactors. Furthermore it requires minimal installation space due to its compact design, which enhances overall security. (C) 2016 Elsevier B.V. All rights reserved.
机译:用于生物柴油生产的甘油三酸酯酯交换反应是一种模型反应,用于比较不同反应器技术和能源的转化效率,产率,反应时间,能耗,可扩展性和成本估算。这项工作描述了一种高效,快速且具有成本效益的生物柴油制备过程,该过程使用水力空化(HC)旋转发生器进行。碱催化的酯交换反应(甲醇/氢氧化钠)已使用精制和漂白的棕榈油和废植物食用油进行。新型HC装置是连续转子-定子型反应器,其中将试剂直接进料到受控的空化室中。反应器的高速旋转产生了不混溶的反应混合物的微米大小的液滴,从而导致了出色的质量和传热,并增强了酯交换反应的动力学,这比传统方法要快得多。获得的所有生物柴油样品均符合ASTM标准,两种原料中的脂肪酸甲酯含量均> 99%m / m。每升生产的粗制生物柴油,HC反应器的电能消耗为0.030 kWh,这使得这项创新技术确实具有相当的竞争力。该反应器可以轻松按比例放大,从每小时生产几百到几千升的生物柴油,同时避免了孔口被油类杂质堵塞的风险,而传统的HC反应器可能会堵塞。此外,由于其紧凑的设计,它需要最小的安装空间,从而增强了整体安全性。 (C)2016 Elsevier B.V.保留所有权利。

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