Chemical Engineering Department, Faculty of Engineering, Universitas Gadjah Mada, Jalan Grafika 2, Kampus UGM, Yogyakarta, Indonesia.
Chemical Engineering Department, Faculty of Industrial Engineering, UPN Veteran Yogyakarta, Jalan SWK 104 (Lingkar Utara), Condongcatur, Yogyakarta, Indonesia.
Appl Biochem Biotechnol. 2022 Jun;194(6):2684-2699. doi: 10.1007/s12010-022-03806-x. Epub 2022 Mar 4.
Microalgae have the potential to emerge as renewable feedstocks to replace fossil resources in producing biofuels and chemicals. Levulinic acid is one of the most promising substances which may serve as chemical building blocks. This work investigated the use of Spirulina platensis residue (solid residue after lipids extraction) to produce LA via acid hydrolysis reaction. In this study, Spirulina platensis residue was set to have a solid-liquid ratio of 5% (w/v). The effect of process parameters on the Spirulina platensis residue to levulinic acid hydrolysis reaction was observed at temperatures ranging from 140 to 180 °C under four acid concentrations, i.e., 0.25, 0.5, 0.8, and 1 M. A simplified kinetic model was also developed to describe the behavior of Spirulina platensis residue conversion to levulinic acid, based on the pseudo-homogeneous-irreversible-1 order reaction. The results showed that the proposed model could capture the experimental data well. The reaction network also considered involvement of intermediate products namely glucose and 5-hydroxymethylfurfural. The results showed that Spirulina platensis residue, with acid catalysts, can be used to produce levulinic acid, and the kinetic model can provide useful information for understanding the Spirulina platensis residue to levulinic acid hydrolysis reaction.
微藻有可能成为可再生原料,替代化石资源来生产生物燃料和化学品。其中,乙酰丙酸是最有前途的物质之一,可用作化学结构单元。本工作研究了利用螺旋藻残渣(提取脂质后的固体残渣)通过酸水解反应生产 LA。在这项研究中,设定螺旋藻残渣的固液比为 5%(w/v)。在四种酸浓度(0.25、0.5、0.8 和 1 M)下,观察了温度在 140 至 180°C 范围内对螺旋藻残渣到乙酰丙酸水解反应的过程参数的影响。还基于拟均相不可逆一级反应,开发了一个简化的动力学模型来描述螺旋藻残渣转化为乙酰丙酸的行为。结果表明,所提出的模型可以很好地捕捉实验数据。反应网络还考虑了中间产物葡萄糖和 5-羟甲基糠醛的参与。结果表明,螺旋藻残渣与酸催化剂一起可以用来生产乙酰丙酸,动力学模型可以为理解螺旋藻残渣到乙酰丙酸水解反应提供有用的信息。