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Organic solvent extraction-assisted catalytic hydrothermal liquefaction of algae to bio-oil

机译:藻类有机溶剂萃取辅助催化水热液化制取生物油

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摘要

In this paper, we report our investigation into a two-step method of transformation of algae to bio-oil. Elemental analysis, gas chromatography-mass spectrometry and Fourier transform infrared spectroscopy were used to analyze bio-oil. First, organic solvent Soxhlet extraction and reflux extraction were used in the algal extraction step. Ethanol was proven to be the best solvent, and the addition of MgSO _(4) could transform acids to esters. In MgSO _(4) extraction oil, the yield of hexadecanoic acid ethyl ester was as high as 48.40%. Then, the residual algae powders through the catalytic hydrothermal liquefaction process were converted to bio-oil. Commercialized noble metal catalysts Pd/C, Pt/C, Ru/C and Rh/C combined with Pd/HZSM-5 were used in the second step. Rh/C performed the best in the catalytic hydrothermal liquefaction process, and the highest bio-oil yield of 50.98% and HHV of 30.67 MJ kg ~(?1) were achieved. The oil yield through two steps was higher than that by a direct decomposition step. Also, the two-step method could achieve a higher energy conversion ratio of 85.61% and total energy of 81.09 kJ.
机译:在本文中,我们报告了对将藻类转化为生物油的两步方法的研究。用元素分析,气相色谱-质谱和傅里叶变换红外光谱法分析生物油。首先,在藻类提取步骤中使用有机溶剂索氏提取和回流提取。事实证明,乙醇是最好的溶剂,添加MgSO_(4)可以将酸转化为酯。在MgSO 4萃取油中,十六烷酸乙酯的收率高达48.40%。然后,通过催化水热液化过程的残留藻类粉末被转化为生物油。第二步使用商业化的贵金属催化剂Pd / C,Pt / C,Ru / C和Rh / C与Pd / HZSM-5结合。 Rh / C在催化水热液化过程中表现最好,生物油产率最高,为50.98%,HHV为30.67 MJ kg〜(?1)。通过两个步骤的油产率高于通过直接分解步骤的油产率。而且,两步法可以实现更高的能量转换率85.61%和总能量81.09 kJ。

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