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Intensification of microalgae drying and oil extraction process by vapor recompression and heat integration

机译:蒸汽再压缩和热集成微藻干燥和油提取过程的增强

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摘要

Reducing energy penalty caused by drying and oil extraction is the most critical challenge in microalgae biodiesel production. In this study, vapor recompression and heat integration are utilized to optimize the performance of wet microalgae drying and oil extraction. In the microalgae drying stage, the hot exhaust stream is recompressed and coupled with wet microalgae to recover the condensate heat. In the oil extraction stage, the exergy rate of recovered solvent is also elevated by compressor and then exchanged heat with feed and bottom stream in the distillation column. Energy and mass balance of the intensified process is investigated and compared with the conventional microalgae drying-extraction process. The simulation results indicated that the total energy consumption of the intensified process can be saved by 52.4% of the conventional route.
机译:减少干燥和油萃取引起的能源惩罚是微藻生物柴油生产中最关键的挑战。在该研究中,利用蒸汽再压缩和热聚合来优化湿法微藻干燥和油提取的性能。在微藻干燥阶段中,热排气流被压下并与湿法微藻偶联以回收冷凝物热量。在油提取阶段,回收溶剂的渗透率也被压缩机升高,然后用蒸馏塔中的饲料和底部流交换热量。研究了增强过程的能量和质量平衡,并与常规的微藻干燥提取过程进行了比较。仿真结果表明,增强过程的总能耗可以节省52.4%的常规路线。

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