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Valorization of Alkaline Peroxide Mechanical Pulp by Metal Chloride-Assisted Hydrotropic Pretreatment for Enzymatic Saccharification and Cellulose Nanofibrillation

机译:金属氯化物辅助的亲水预处理预处理过氧化碱机械浆的酶促糖化和纤维素纳米原纤化

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摘要

Developing economical and sustainable fractionation technology of lignocellulose cell walls is the key to reaping the full benefits of lignocellulosic biomass. This study evaluated the potential of metal chloride-assisted p-toluenesulfonic acid (p-TsOH) hydrolysis at low temperatures and under acid concentration for the co-production of sugars and lignocellulosic nanofibrils (LCNF). The results indicated that three metal chlorides obviously facilitated lignin solubilization, thereby enhancing the enzymatic hydrolysis efficiency and subsequent cellulose nanofibrillation. The CuCl2-assisted hydrotropic pretreatment was most suitable for delignification, resulting in a relatively higher enzymatic hydrolysis efficiency of 53.2%. It was observed that the higher residual lignin absorbed on the fiber surface, which exerted inhibitory effects on the enzymatic hydrolysis, while the lower lignin content substrates resulted in less entangled LCNF with thinner diameters. The metal chloride-assisted rapid and low-temperature fractionation process has a significant potential in achieving the energy-efficient and cost-effective valorization of lignocellulosic biomass.
机译:发展木质纤维素细胞壁的经济且可持续的分级分离技术是收获木质纤维素生物质的全部益处的关键。这项研究评估了在低温和酸性条件下,金属氯化物辅助的对甲苯磺酸(p-TsOH)水解的潜力,可共同生产糖和木质纤维素纳米原纤维(LCNF)。结果表明,三种金属氯化物明显促进了木质素的溶解,从而提高了酶水解效率和随后的纤维素纳米原纤化。 CuCl2辅助的水溶预处理最适合去木质素,因此酶水解效率相对较高,为53.2%。观察到较高的残留木质素在纤维表面上的吸收,对酶水解产生抑制作用,而较低的木质素含量的底物则导致较小直径的缠结LCNF。金属氯化物辅助的快速低温分馏工艺在实现木质纤维素生物质的节能和经济高效的增值方面具有巨大潜力。

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