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速生泡桐木材增值的生物炼制工艺比较研究。

Comparative study of biorefinery processes for the valorization of fast-growing Paulownia wood.

机构信息

Department of Chemical Engineering, Faculty of Science, Universidade de Vigo (Campus Ourense), As Lagoas, 32004 Ourense, Spain; Environmental Technology and Assessment Laboratory, Campus da Auga- Campus Ourense, Universidade de Vigo, 32004 Ourense, Spain.

Department of Chemical Engineering, Faculty of Science, Universidade de Vigo (Campus Ourense), As Lagoas, 32004 Ourense, Spain.

出版信息

Bioresour Technol. 2020 Oct;314:123722. doi: 10.1016/j.biortech.2020.123722. Epub 2020 Jun 24.

Abstract

In this work, valorization of Paulownia wood (PW) was proposed following several process configurations for biofuels and value-added compounds production. Firstly, autohydrolysis and ethanol-organosolv strategies were assessed separately for the fractionation of PW to enhance the enzymatic digestibility of cellulose. A third strategy focused on a sequential process (autohydrolysis and organosolv) was explored. Two temperatures were selected for the first stage of the combined process. High concentration of oligosaccharides (26.29 g/L) and high concentration of degradation products (17.21 g/L) were obtained at 210 and 230 °C, respectively. The solids obtained from both pretreatments were subjected to organosolv delignification (200 °C, 3 h and 50% ethanol) achieving delignification of 58 and 30% for the autohydrolyzed biomass at 210 °C and 230 °C, respectively. The combined process resulted in susceptible biomass able to produce 64 g/L of ethanol. Therefore, the strategies explored in this work open the possibility to build a refinery around Paulownia wood.

摘要

在这项工作中,提出了几种生物燃料和增值化合物生产的工艺配置,以实现泡桐木材(PW)的增值。首先,分别评估了自水解和乙醇-有机溶剂策略,以分离 PW,提高纤维素的酶解可及性。第三种策略侧重于探索顺序工艺(自水解和有机溶剂)。选择了两个温度用于组合工艺的第一阶段。在 210°C 和 230°C 下,分别获得了 26.29 g/L 的高寡糖浓度和 17.21 g/L 的高降解产物浓度。来自两种预处理的固体均进行有机溶剂脱木质素(200°C,3 小时和 50%乙醇),在 210°C 和 230°C 下,自水解生物质的脱木质素率分别为 58%和 30%。组合工艺得到了易于生物转化的生物质,可生产 64 g/L 的乙醇。因此,本工作中探索的策略为围绕泡桐木材建立炼油厂提供了可能性。

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