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Optimized Bioproduction of Itaconic and Fumaric Acids Based on Solid-State Fermentation of Lignocellulosic Biomass

机译:基于木质纤维素生物质的固态发酵优化衣康酸和富马酸的生物生产

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摘要

The bioproduction of high-value chemicals such as itaconic and fumaric acids (IA and FA, respectively) from renewable resources via solid-state fermentation (SSF) represents an alternative to the current bioprocesses of submerged fermentation using refined sugars. Both acids are excellent platform chemicals with a wide range of applications in different market, such as plastics, coating, or cosmetics. The use of lignocellulosic biomass instead of food resources (starch or grains) in the frame of a sustainable development for IA and FA bioproduction is of prime importance. Filamentous fungi, especially belonging to the genus, have shown a great capacity to produce these organic dicarboxylic acids. This study attempts to develop and optimize the SSF conditions with lignocellulosic biomasses using and to produce IA and FA. First, a kinetic study of SSF was performed with non-food resources (wheat bran and corn cobs) and a panel of pH and moisture conditions was studied during fermentation. Next, a new process using an enzymatic cocktail simultaneously with SSF was investigated in order to facilitate the use of the biomass as microbial substrate. Finally, a large-scale fermentation process was developed for SSF using corn cobs with ; this specific condition showed the best yield in acid production. The yields achieved were 0.05 mg of IA and 0.16 mg of FA per gram of biomass after 48 h. These values currently represent the highest reported productions for SSF from raw lignocellulosic biomass.
机译:通过固态发酵(SSF)从可再生资源生物生产高价值化学品,例如衣康酸和富马酸(分别为IA和FA)代表了当前使用精制糖进行深层发酵的生物过程的替代方法。两种酸都是出色的平台化学品,在塑料,涂料或化妆品等不同市场中都有广泛的应用。在IA和FA生物生产的可持续发展框架中,使用木质纤维素生物质代替食物资源(淀粉或谷物)至关重要。丝状真菌,特别是属于该属的真菌,显示出产生这些有机二羧酸的巨大能力。这项研究试图利用木质纤维素生物质开发和优化SSF条件,并产生IA和FA。首先,对非食物资源(麦麸和玉米芯)进行了SSF的动力学研究,并在发酵过程中研究了一系列pH和水分条件。接下来,研究了同时使用酶促混合物和SSF的新工艺,以促进生物质作为微生物底物的使用。最终,开发了一种使用玉米芯与SSF的SSF大规模发酵工艺。该特定条件显示出产酸的最佳收率。 48小时后,每克生物质获得的产量为0.05毫克IA和0.16毫克FA。这些值目前代表了来自原始木质纤维素生物质的SSF报道的最高产量。

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