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Experimentally designed corn biomass fractionation to obtain lignin nanoparticles and fermentable sugars

机译:实验设计的玉米生物质分馏以获得木质素纳米粒子和可发酵的糖

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Pretreatment steps carefully designed are essential to achieve a more integral and profitable use of plant biomasses in their conversion into building blocks to produce bioethanol and biomaterials. In this work, lignin extraction from corn biomass was optimized using a design of experiments (DOE) applied to a sequential acidalkali pretreatment, varying temperature, time, and NaOH concentration in the alkali step. Selective extraction of lignin allowed the preparation of lignin nanoparticles, at the same time that it favored glucose release by hydrolysis of the cellulosic matrix. According to DOE results, alkali concentration was the most relevant factor for lignin removal and 2% NaOH, at 90 to 95 degrees C for 20 to 35 min would be enough to achieve less than 10% of residual lignin in the solid. These conditions were experimentally validated and resulted in a hydrolysis yield of 87.4 +/- 7.3% and in a liquor containing approximately 50% of the initial lignin content. A great quantity of this neat lignin (92.9 +/- 6.3%) was recovered by non-solvent addition as spherical nanoparticles, with a diameter smaller than 100 nm, and stable in a large pH range (5 to 11). Therefore, the optimization presented herewith resulted in lignin valorization by the suitable fabrication of value-added lignin nanoparticles, concomitantly to improved hydrolysis yields of cellulose aiming at bioethanol production.
机译:预处理步骤精心设计对于实现更加积分和有利可图的植物生物量在转换成建筑物块中以产生生物乙醇和生物材料,这是必不可少的。在这项工作中,利用碱性酸碱预处理,不同温度,时间和NaOH浓度的实验(DOE)设计优化了从玉米生物质的木质素提取。选择性提取木质素允许制备木质素纳米粒子,同时它通过纤维素基质的水解而获得葡萄糖释放。根据DOE结果,碱浓度是木质素去除的最相关的因子,2%NaOH,在90至95℃下,20至35分钟将足以达到固体中残留木质素的少于10%的残留木质素。通过实验验证这些条件,并导致水解产率为87.4 +/- 7.3%,并在含有初始木质素含量的约50%的液体中。通过作为球形纳米颗粒的非溶剂添加,直径小于100nm的非溶剂,并且在大的pH范围内(5至11)中的稳定,通过非溶剂加入大量的这种纯净的木质素(92.9 +/- 6.3%)。因此,这里呈现的优化导致Lignin Valorization通过合适的增压木质素纳米颗粒制备,其伴随着改善了旨在生物乙醇生产的纤维素的水解产率。

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