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Optimization of Submerged Cultivation Parameters for a Novel Biological Pretreatment of Rice Straw to Enhance Enzymatic Hydrolysis

机译:新型稻草生物预处理提高酶解潜油条件的优化

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Statistical optimization of submerged cultivation parameters was carried out by Taguchi orthogonal array design for delignification of rice straw using a novel alkalophilic fungus MVI.2011. Parameters such as media composition, pH, temperature, inoculum volume, biomass volume and incubation time were optimized in this study. The objective was to maximize the release of glucose (% of saccharification) at the end of 8 h enzymatic hydrolysis. Incubation time and concentration of peptone in the cultivation media, with P-values 0.027 and 0.041, respectively, were the most significant factors affecting the delignification reaction. Optimal run gave percentage of saccharification of 14.18 +/- 1.13% (g g(-1)) analogous to an increase of 1.96-fold in comparison with untreated rice straw (7.23 +/- 0.04% [g g(-1)]). The reaction was scaled up to delignify 120 g rice straw in a 5-L fermenter, the % saccharification of which was 13.5 +/- 0.68% (g g(-1)), equivalent to an increase of 1.87-fold when compared to untreated straw. Fungal pretreatment with MVI.2011 exhibited exemplary hydrolysis rate and demanded less than a week for delignification. The study reports for the first time, a biological pretreatment technique that takes only 6 days. This method can be extended to the pretreatment of other lignocelluloses. (c) 2018 American Institute of Chemical Engineers Environ Prog, 38:e13020, 2019
机译:使用新型的嗜碱真菌MVI.2011,通过Taguchi正交阵列设计对稻草进行脱木质素,对淹没栽培参数进行了统计优化。在这项研究中,优化了诸如培养基组成,pH,温度,接种量,生物量和孵育时间等参数。目的是在8 h酶促水解结束时最大限度地释放葡萄糖(糖化%)。影响培养基中去木质素反应的最重要因素是培养液中蛋白ub的孵育时间和蛋白浓度(P值分别为0.027和0.041)。最佳运行得到的糖化百分比为14.18 +/- 1.13%(g g(-1)),与未经处理的稻草(7.23 +/- 0.04%[g g(-1)])相比增加了1.96倍。扩大反应规模,以在5升发酵罐中对120克稻草进行脱木质素,其糖化百分比为13.5 +/- 0.68%(gg(-1)),与未处理的相比增加1.87倍稻草。用MVI.2011进行的真菌预处理显示出极高的水解速度,并且需要不到一周的时间进行脱木质素处理。该研究首次报告了仅需六天的生物预处理技术。该方法可以扩展到其他木质纤维素的预处理。 (c)2018年美国化学工程师学会Environ Prog,38:e13020,2019

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