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Comparison of Nannochloropsis sp. cells disruption between hydrodynamic cavitation and conventional extraction

机译:水力空化与常规提取法对拟南芥属细胞破坏的比较

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Biodiesel production from microalgae is one of the solution of the future energy problem, but its production cost is still high. One of the costly stages of this process is the lipid extraction process. It can be reduced by microalgae cell disruption. One of the mechanical method to cell disruption with the lowest energy requirement is hydrodynamic cavitation. This aim of this study is to evaluate the distribution coefficient and the mass transfer coefficient value of lipid extraction of Nannochloropsis sp. assisted by hydrodynamic cavitation and compare with conventional extraction. The hydrodynamic cavitation extraction was done at 34 °C, 1 atm. The conventional extraction was done at 34 °C, 1 atm with stirring speed 260 and 1000 rpm. The experimental result shows that the distribution coefficient dependent on the temperature with the values for 50, 44, 38 and 34 °C were 0.502, 0.394, 0.349, and 0.314 respectively. And it was according to Van’ Hoff equation with the values of ΔH° was 20.718 kJ/mol and ΔS° was 58.05 J/mol/K. The hydrodynamic cavitation extraction was faster than conventional. The mass transfer coefficient values for hydrodynamic cavitation, conventional 260 rpm and 1000 rpm were 7.373, 0.534 and 0.121 1/s respectively.
机译:利用微藻生产生物柴油是解决未来能源问题的方法之一,但其生产成本仍然很高。该过程的昂贵阶段之一是脂质提取过程。它可以通过微藻细胞破坏而减少。具有最低能量需求的破坏细胞的机械方法之一是流体动力空化。这项研究的目的是评估Nannochloropsis sp。的脂质提取的分布系数和传质系数值。在水力空化作用下进行辅助,并与常规萃取进行比较。水力空化萃取在34°C,1个大气压下进行。常规萃取在34°C,1个大气压,搅拌速度260和1000 rpm下进行。实验结果表明,随温度的分布系数分别为50、44、38和34°C,分别为0.502、0.394、0.349和0.314。并且根据Van’Hoff方程,ΔH°为20.718kJ / mol,ΔS°为58.05J / mol / K。水力空化提取比常规方法快。水力空化的传质系数值分别为常规的260 rpm和1000 rpm,分别为7.373、0.534和0.121 1 / s。

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