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Contributing to the environmental sustainability of the second generation ethanol production: Delignification of sugarcane bagasse with sodium hydroxide recycling

机译:为第二代乙醇生产的环境可持续性做出贡献:通过氢氧化钠回收对甘蔗渣进行脱木素

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摘要

A process able to perform the complete separation of the sugarcane bagasse components, making them useful for specific purposes with low water and reactant consumption is environmental and economically desirable. In this work we evaluated the pH influence on alkaline delignification of pretreated sugarcane bagasse by steam explosion, in a pilot plant, recycling the black liquor for cellulosic pulp obtainment, focused on second generation ethanol production. The black liquor was recycled four times with no pH adjustment (Series A) and for 11 times adjusting the pH (Series B). In Series A experiments lignin was not entirely removed after the third recycling reaction. NaOH can be recycled as black liquor but it is essential to maintain the pH in 13.3-12.6 range before each new delignification cycle (Series B). The reduction in water consumption can reach 65% considering the volume of black liquor produced by lignin amount recovered. The quality of the cellulosic pulp produced is not changed significantly after each reaction, making it suitable for second generation ethanol production. Preliminary calculations showed that 38% of the NaOH used can be saved, contributing to a better life cycle for this process. (C) 2014 Elsevier B.V. All rights reserved.
机译:能够进行甘蔗渣成分的完全分离,使其以低水和低反应物消耗用于特定目的的方法是环境和经济上期望的。在这项工作中,我们评估了在中试工厂中,pH值对蒸汽爆破预处理的甘蔗渣的碱性脱木质素的影响,该工厂将黑液循环用于纤维素纸浆的生产,重点是第二代乙醇的生产。黑液在不调节pH值的情况下循环四次(系列A),在调节pH值的情况下循环11次(系列B)。在系列A实验中,在第三次循环反应后,木质素并未完全去除。 NaOH可以作为黑液回收,但在每个新的脱木素循环之前(系列B),必须将pH保持在13.3-12.6范围内。考虑到回收的木质素所产生的黑液量,耗水量的减少可以达到65%。每次反应后生产的纤维素纸浆的质量没有明显改变,使其适合于第二代乙醇的生产。初步计算表明,可以节省38%的NaOH,从而为该过程提供了更好的生命周期。 (C)2014 Elsevier B.V.保留所有权利。

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