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Optimization of Alkaline Pretreatment of Coffee Pulp for Production of Bioethanol

机译:纸浆碱法预处理生产生物乙醇的工艺优化

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摘要

The use of lignocellulosic raw materials in bioethanol production has been intensively investigated in recent years. However, for efficient conversion to ethanol, many pretreatment steps are required prior to hydrolysis and fermentation. Coffee stands out as the most important agricultural product in Brazil and wastes such as pulp and coffee husk are generated during the wet and dry processing to obtain green grains, respectively. This work focused on the optimization of alkaline pretreatment of coffee pulp with the aim of making its use in the alcoholic fermentation. A central composite rotatable design was used with three independent variables: sodium hydroxide and calcium hydroxide concentrations and alkaline pretreatment time, totaling 17 experiments. After alkaline pretreatment the concentration of cellulose, hemicellulose, and lignin remaining in the material, the subsequent hydrolysis of the cellulose component and its fermentation of substrate were evaluated. The results indicated that pretreatment using 4% (w/v) sodium hydroxide solution, with no calcium hydroxide, and 25 min treatment time gave the best results (69.18% cellulose remaining, 44.15% hemicelluloses remaining, 25.19% lignin remaining, 38.13 gIL of reducing sugars, and 27.02 gIL of glucose) and produced 13.66 gIL of ethanol with a yield of 0.4 g ethanollg glucose.
机译:近年来,已经对木质纤维素原料在生物乙醇生产中的用途进行了深入研究。然而,为了有效地转化为乙醇,在水解和发酵之前需要许多预处理步骤。咖啡是巴西最重要的农产品,在湿法和干法加工过程中分别产生纸浆和咖啡果皮等废物,以获取绿色谷物。这项工作的重点是优化咖啡浆的碱性预处理,以使其用于酒精发酵。使用具有三个独立变量的中央复合材料可旋转设计:氢氧化钠和氢氧化钙的浓度以及碱的预处理时间,总共进行了17个实验。碱预处理后,材料中残留的纤维素,半纤维素和木质素的浓度,纤维素成分的后续水解及其对底物的发酵进行了评估。结果表明,使用4%(w / v)氢氧化钠溶液进行预处理,不使用氢氧化钙,并且处理时间为25分钟,效果最佳(剩余的纤维素为69.18%,半纤维素为44.15%,木质素为25.19%,38.13 gIL还原糖和27.02 gIL葡萄糖),产生13.66 gIL乙醇,产量为0.4 g乙醇/葡萄糖。

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