Pooja N S, Sajeev M S, Jeeva M L, Padmaja G
1Division of Crop Utilization, ICAR-Central Tuber Crops Research Institute, Thiruvananthapuram, Kerala 695 017 India.
2Division of Crop Protection, ICAR-Central Tuber Crops Research Institute, Thiruvananthapuram, Kerala 695 017 India.
3 Biotech. 2018 Jan;8(1):69. doi: 10.1007/s13205-018-1095-4. Epub 2018 Jan 13.
The effect of microwave (MW)-assisted acid or alkali pretreatment (300 W, 7 min) followed by saccharification with a triple enzyme cocktail (Cellic, Optimash BG and Stargen) with or without detoxification mix on ethanol production from three cassava residues (stems, leaves and peels) by was investigated. Significantly higher fermentable sugar yields (54.58, 47.39 and 64.06 g/L from stems, leaves and peels, respectively) were obtained after 120 h saccharification from MW-assisted alkali-pretreated systems supplemented (D+) with detoxification chemicals (Tween 20 + polyethylene glycol 4000 + sodium borohydride) compared to the non-supplemented (D0) or MW-assisted acid-pretreated systems. The percentage utilization of reducing sugars during fermentation (48 h) was also the highest (91.02, 87.16 and 89.71%, respectively, for stems, leaves and peels) for the MW-assisted alkali-pretreated (D+) systems. HPLC sugar profile indicated that glucose was the predominant monosaccharide in the hydrolysates from this system. Highest ethanol yields (, g/g), fermentation efficiency (%) and volumetric ethanol productivity (g/L/h) of 0.401, 78.49 and 0.449 (stems), 0.397, 77.71 and 0.341 (leaves) and 0.433, 84.65 and 0.518 (peels) were also obtained for this system. The highest ethanol yields (ml/kg dry biomass) of 263, 200 and 303, respectively, for stems, leaves and peels from the MW-assisted alkali pretreatment (D+) indicated that this was the most effective pretreatment for cassava residues.
研究了微波(MW)辅助酸或碱预处理(300W,7分钟),然后用三种酶的混合物(Cellic、Optimash BG和Stargen)糖化,有无解毒混合物对三种木薯残渣(茎、叶和皮)生产乙醇的影响。与未添加(D0)或MW辅助酸预处理系统相比,在120小时糖化后,MW辅助碱预处理系统添加(D+)解毒化学品(吐温20 + 聚乙二醇4000 + 硼氢化钠)后,可发酵糖产量显著更高(茎、叶和皮分别为54.58、47.39和64.06g/L)。MW辅助碱预处理(D+)系统在发酵(48小时)期间还原糖的利用率百分比也最高(茎、叶和皮分别为91.02%、87.16%和89.71%)。HPLC糖谱表明葡萄糖是该系统水解产物中的主要单糖。该系统还获得了最高乙醇产量(g/g)、发酵效率(%)和体积乙醇生产率(g/L/h),茎为0.401、78.49和0.449,叶为0.397、77.71和0.341,皮为0.433、84.65和0.518。MW辅助碱预处理(D+)的茎、叶和皮的最高乙醇产量(ml/kg干生物质)分别为263、200和303,表明这是木薯残渣最有效的预处理方法。