Research Centre for Sustainable Process Technology (CESPRO), Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia UKM, 43600, Bangi, Selangor, Malaysia.
Chemical Engineering Program, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia UKM, 43600, Bangi, Selangor, Malaysia.
Bioprocess Biosyst Eng. 2019 Jan;42(1):117-130. doi: 10.1007/s00449-018-2019-8. Epub 2018 Sep 27.
Continuous bio-production of succinic acid was reported in homogeneous solid dispersion (HSD) system utilizing porous coconut shell activated carbon (CSAC) as immobilization carrier. The aim of the present work was to implement the HSD system to increase the area of cell immobilization and the rate of succinic-acid production from the lignocellulosic medium. The ratio of the two enzymes (cellulase-to-hemicellulase) was initially optimized to break down the lignocellulose into its free monomers, wherein the best ratio was determined as 4:1. Succinic-acid production was evaluated in the HSD system by varying the substrate loading and dilution rate. The results showed that high productivities of succinic acid were obtained when 60 g/L glucose was fed over a dilution rates ranging from 0.03 to 0.4/h. The titer of succinic acid decreased gradually with higher dilution rate, whereas the residual substrate concentration increased with it. Critical dilution rate was determined to be 0.4/h at which the best productivity of succinic acid of 6.58 g/L h and its yield of 0.66 g/g were achieved using oil palm fronds (OPF) hydrolysate. This work lends evidence to the use of CSAC and lignocellulosic hydrolysate to further exploit the potential economies of scale.
连续生物生产琥珀酸在均相固体分散(HSD)系统中报道,利用多孔椰子壳活性炭(CSAC)作为固定化载体。本工作的目的是实施 HSD 系统,以增加细胞固定化面积和从木质纤维素介质中生产琥珀酸的速率。最初优化了两种酶(纤维素酶-半纤维素酶)的比例,将木质纤维素分解成游离单体,最佳比例确定为 4:1。通过改变基质加载和稀释率,在 HSD 系统中评估了琥珀酸的生产。结果表明,当以 60 g/L 的葡萄糖进料时,在 0.03 至 0.4/h 的稀释率范围内可获得较高的琥珀酸产率。随着稀释率的升高,琥珀酸的浓度逐渐降低,而残留基质浓度则随之升高。临界稀释率确定为 0.4/h,此时使用油棕叶(OPF)水解物可获得琥珀酸的最佳产率为 6.58 g/L/h,产率为 0.66 g/g。这项工作证明了 CSAC 和木质纤维素水解物的使用可以进一步挖掘规模经济的潜力。