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首页> 外文期刊>Indian journal of chemical technology >Sequential acid-autoclave and microwave-alkali pretreatment of rice straw for bioethanol production
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Sequential acid-autoclave and microwave-alkali pretreatment of rice straw for bioethanol production

机译:稻草序酸-高压釜和微波-碱预处理制取生物乙醇

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Two-step acid-autoclave and microwave-alkali pre-treatment process of rice straw have been carried out for bioethanol production. The reaction conditions of both the steps are optimized using Response Surface Methodology. The studies reveal that the optimum conditions for acid-autoclave pretreatment are found to be 1.90 per cent acid concentration, 51.85 min time and 1:17.51 solid:liquid ratio with maximum release of reducing sugars (16.94 g per 100 g) and minimum release of furfurals (0.93 g per 100 g). For second step pretreatment i.e. microwave-alkali, optimized conditions are observed to be 3.75 percent alkali concentration, 9.16 min time and 475W microwave power with minimum lignin content of 2.96 percent in pre-treated straw. Scanning electron micrographs reveal extensive damage of silicified waxy surface and disruption of the cell wall structure of straw after two step pre-treatment process. It has been concluded that sequential pre-treatment of rice straw using acid-autoclave and microwave-alkali process efficiently remove hemicellulose and lignin from straw, thereby increasing accessibility of cellulose to enzymatic hydrolysis for enhanced production of fermentable sugars and bioethanol.
机译:已经进行了稻草两步酸-高压釜和微波-碱预处理工艺来生产生物乙醇。这两个步骤的反应条件均使用响应表面方法进行了优化。研究表明,酸-高压釜预处理的最佳条件是酸浓度为1.90%,时间为51.85分钟,固液比为1:17.51,还原糖的释放量最大(每100克中为16.94克),而糖的最小释放量则为2.5。糠醛(每100克0.93克)。对于第二步预处理(即微波碱),观察到的最佳条件是碱浓度为3.75%,时间为9.16分钟,微波功率为475W,预处理秸秆中木质素的最低含量为2.96%。扫描电子显微镜照片显示,经过两步预处理后,硅化蜡质表面受到了广泛破坏,秸秆的细胞壁结构受到破坏。已经得出结论,使用酸高压釜和微波碱法对稻草进行顺序预处理可以有效地从稻草中除去半纤维素和木质素,从而增加了纤维素酶解的可及性,从而提高了可发酵糖和生物乙醇的产量。

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