Fuel ethanol production from corncob using dilute acid pretreatment and separated saccharification and fermentation by fed-batch strategy

Yuxiao Wang, Linlin Zhou, Yiting Sun
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Abstract

The aim of this study was to achieve the optimum process parameters for fuel ethanol production from corncob. After the optimization of orthogonal experiment, the process configuration including dilute acid pretreatment and separated saccharification and fermentation (SHF) by fed-batch strategy was obtained. The optimum conditions of pretreatment were that corncob was treated with 1.1% sulphuric acid and solid-to-liquid ratio=l:8 at 120°C for 3hours. After delignification with alkaline, water insoluble solid of 180g·L-1 were hydrolyzed with cellulase loading of FPA (IU·mL-1): CBA (IU·mL-1)=20:7 to per gram substrate at 48 °C and initial pH5.0. The maximum ethanol concentration from enzymatic hydrolysates fermented by Zymomonas mobilis at 35°C for 48hours reached 57.8g·L-1.
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稀酸预处理和分批进料分离糖化发酵玉米芯制备燃料乙醇
以玉米芯为原料,优选生产燃料乙醇的最佳工艺参数。通过正交试验优化,得到了稀酸预处理和补料分批分离糖化发酵(SHF)工艺配置。玉米芯预处理的最佳条件为:用1.1%硫酸,料液比为1:8,在120℃下处理3h。在48℃、初始pH5.0条件下,用纤维素酶负载FPA (IU·mL-1): CBA (IU·mL-1)=20:7水解180g·L-1的水不溶性固体。运动单胞菌35℃发酵48h酶解物乙醇浓度最高可达57.8g·L-1。
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