Kutluk Togayhan, Kutluk Bahar Gürkaya
Department of Chemical Engineering, Kocaeli University, Kocaeli, Turkey.
Environ Technol. 2023 Nov;44(27):4099-4112. doi: 10.1080/09593330.2022.2079999. Epub 2022 May 29.
This study aims to investigate the optimized lipase-catalysed esterification reaction from novel feedstock microalgae () oil-free fatty acids (FFAs) for biolubricant (Trimethylolpropane (TMP)-triesters) synthesis. FFAs were obtained from microalgae oil by enzymatic hydrolysis. Response surface methodology (RSM) with the central composite design was performed to investigate the effect of experimental factors (lipase amount, TMP/FFAs molar ratio, reaction temperature) on the FFAs conversion and also investigated to resolve the optimum design points. After the experimental studies, the highest FFAs conversion of 93% with 92% triester and 8% mono, di esters contents were found when the lipase amount was 5.5%. TMP/FFAs molar ratio was 0.33 and the reaction temperature value was 60°C. The model fitted with the experimental values with = 0.97. It was also supported by gas chromatography and FTIR analyses that the product obtained was a lubricant.
本研究旨在探究以新型原料微藻(无油脂肪酸(FFAs))进行脂肪酶催化酯化反应以合成生物润滑剂(三羟甲基丙烷(TMP)-三酯)。通过酶促水解从微藻油中获得FFAs。采用中心复合设计的响应面法(RSM)来研究实验因素(脂肪酶用量、TMP/FFAs摩尔比、反应温度)对FFAs转化率的影响,并确定最佳设计点。经过实验研究,当脂肪酶用量为5.5%、TMP/FFAs摩尔比为0.33且反应温度为60°C时,发现FFAs的最高转化率为93%,三酯含量为92%,单酯和二酯含量为8%。该模型与实验值的拟合度为 = 0.97。气相色谱和傅里叶变换红外光谱分析也证实所获得的产物为润滑剂。