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Sequential acid-/alkali-pretreatment of empty palm fruit bunch fiber

机译:空棕榈果束纤维的连续酸/碱预处理

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摘要

Pretreatment processes are key technologies for generating fermentable sugars based on lignocellulosic biomass. In this study, we developed a novel method for empty palm fruit bunch fiber (EPFBF) using sequential pretreatment with dilute acid and then alkali. Dilute sulfuric acid was used in the first step, which removed 90% of the hemicellulose and 32% of the lignin, but left most of the cellulose under the optimum pretreatment condition. Sodium hydroxide was then applied in the second step, which extracted lignin effectively with a 70% delignification yield, partially disrupting the ordered fibrils of the EPFBF and thus enhancing the enzyme digestibility of the cellulose. The sequentially pretreated biomass consisted of 82% cellulose, less than 1% hemicellulose, and 30% lignin content afterward. The pretreated biomasses morphologically revealed rough, porous, and irregularly ordered surfaces for enhancing enzyme digestibility. These results indicate that the sequentially acid/alkali-pretreated EPFBF could be broadly useful as a novel biomass.
机译:预处理工艺是基于木质纤维素生物质产生可发酵糖的关键技术。在这项研究中,我们开发了一种新的空棕榈果束纤维(EPFBF)的方法,先后用稀酸和碱进行预处理。第一步使用稀硫酸,该硫酸除去了90%的半纤维素和32%的木质素,但在最佳预处理条件下保留了大部分纤维素。然后将氢氧化钠用于第二步,以70%的去木质素产率有效地提取木质素,部分破坏EPFBF的有序原纤维,从而增强纤维素的酶消化率。依次预处理的生物质由82%的纤维素,少于1%的半纤维素和30%的木质素组成。预处理的生物质在形态上显示出粗糙,多孔和不规则有序的表面,以增强酶的消化率。这些结果表明,顺序酸/碱预处理的EPFBF可以广泛用作新型生物质。

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