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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Investigation of a Lignin-Based Deep Eutectic Solvent Using p-Hydroxybenzoic Acid for Efficient Woody Biomass Conversion
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Investigation of a Lignin-Based Deep Eutectic Solvent Using p-Hydroxybenzoic Acid for Efficient Woody Biomass Conversion

机译:利用对羟基苯甲酸进行高效木质生物量转化的木质素基深度共晶溶剂研究

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摘要

Deep eutectic solvents (DESs) are effective solvents for biomass conversion and have been proposed as alternatives to ionic liquids (ILs). Herein, we first report an effective pretreatment of woody biomass using a novel hardwood lignin-based DES prepared from p-hydroxybenzoic acid (PB) and choline chloride (ChCl), which are used as the hydrogen bond donor and acceptor, respectively. The impacts of the ChCl-PB DES on structural properties and enzymatic hydrolysis of poplar wood were comprehensively evaluated. The performance of ChCl-PB DES was also compared with two other DESs with p-coumaric acid (PCA) and 4-hydroxybenzaldehyde (PHA) as the hydrogen bond donors, which have been successfully applied to herbaceous biomass conversion in previous studies. The results showed that hemicellulose and lignin were effectively fractionated during the proposed ChCl-PB DES pretreatment under a relatively mild temperature. The ChCl-PB DES pretreatment resulted in up to 69% of delignification, and the pretreated poplar residues had over 90% of glucose yield by a 72 h-enzymatic hydrolysis. Transformation of poplar biomass during the DES pretreatment was evaluated by gel permeation chromatography (GPC), two-dimensional heteronuclear single quantum coherence (2D-HSQC), and P-31-nuclear magnetic resonance (NMR) spectroscopies. The recovered lignin showed relatively high purity, narrow molecular weight distribution (PDI < 1.6), and relatively low molecular weight (similar to 1400 g/mol for M-w). A sustainable process was achieved by recycling DES as well as the utilization of PB, which is a producible aromatic compound from hardwood lignin, for the proposed DES formation in the system. This study indicates that the proposed novel DES with a hardwood lignin-based PB compound is a promising pretreatment solvent to achieve an economically feasible biomass conversion process.
机译:深度共晶溶剂(DESS)是生物质转化的有效溶剂,并且已被提出为离子液体(ILS)的替代品。在此,我们首先使用由对羟基苯甲酸(Pb)制备的新的硬木木质素基因和氯化胆碱(CHCL)的基于硬木木质素的DEs进行了有效预处理,其分别用作氢键供体和受体。全面评估CHCL-PB DES对杨树木结构性能和酶水解的影响。还将CHCl-PbSs的性能与与氢键供体的氢键供体的氢键供体相比,与氢键供体相比,与氢键供体相比,与氢键供体相比。结果表明,在相对温度温度下提出的CHCL-PB DES预处理期间有效分离半纤维素和木质素。 CHCL-PB DES预处理导致高达69%的脱泻,预处理的杨树残基超过90%的葡萄糖产率通过72h-酶水解。通过凝胶渗透色谱(GPC),二维异核单量子相干性(2D-HSQC)和P-31核磁共振(NMR)光谱评估在DES预处理期间杨树生物质的转化。回收的木质素显示出相对高的纯度,窄的分子量分布(PDI <1.6),相对低的分子量(与M-W类似于1400g / mol)。通过再循环DES以及利用PB来实现可持续的方法,其是来自硬木木质素的可生产化合物,用于该系统中的提出的DES形成。本研究表明,具有硬木基础素的PB化合物的提出的新型DES是一种有前进的预处理溶剂,以实现经济上可行的生物质转化方法。

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