化学
生物燃料
生物量(生态学)
环境科学
环境友好型
制浆造纸工业
工艺工程
组合化学
生物
生物技术
生态学
农学
工程类
作者
Luiza A.D. Benincá,Alexandre S. França,Gabriela C. Brêda,Raquel A.C. Leão,Rodrigo Volcan Almeida,Frank Hollmann,Rodrigo O. M. A. de Souza
标识
DOI:10.1016/j.mcat.2022.112469
摘要
• High power LED on biocatalyzed photodecarboxylation reactions. • Continuous-flow photodecarboxylation mediated by Cv FAP. • Sunlight and solar panel as alternative sources for photodecarboxylation. The fatty acid photodecarboxylase from Chlorella variabilis NC64A ( Cv FAP) promotes the elimination of CO 2 from fatty acids (C n ) producing the corresponding hydrocarbon ( Cn-1 ). Therefore, this enzyme is of great biotechnological interest since it can be used in alternative biofuel production routes matching the concept of green chemistry. However, due to its recent discovery, this reaction still requires optimizations, which was the focus of the present work together with the application of continuous flow system. The results in batch reactors showed the importance of using high power LED lamps (300 W) to reduce the reaction time for full conversion (30 min, >99%). In another approach, a continuous flow system demonstrated high potential, as it enabled full conversion with a half concentration of enzyme extract in a very short residence time of 15 min. Furthermore, the use of less expensive and sustainable light sources, not previously reported for reactions with Cv FAP, were evaluated with full conversion (>99%) after 1 h for continuous flow reactions using 300 W common white LED lamp and based preliminary batch reactions investigations using direct sunlight. Thus, important advances and new perspectives for Cv FAP photodecarboxylation reactions could be achieved with the present report.
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