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首页> 外文期刊>Modern Applied Science >Study of Pretreatment and Enzymatic Hydrolysis on Microcrystalline Cellulose and HVS A4 Paper in Pressurized CO2 Media
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Study of Pretreatment and Enzymatic Hydrolysis on Microcrystalline Cellulose and HVS A4 Paper in Pressurized CO2 Media

机译:加压CO2介质中微晶纤维素和HVS A4纸的预处理和酶水解研究

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The aim of this work is to investigate the potential used of pressurized CO2 in the pre-treatment and the enzymatic hydrolysis of waste HVS A4 paperto produce a monomeric sugars (C5 and C6 sugars) which is a precursor for bioethanol production. Prior to the utilization of waste HVS A4 paper, the microcrystalline cellulose and HVS A4 paper were first used in the experiments as model compound in order to gain better insights of the process. The experiment consists of two main parts which are the preliminary experimentsto determine the best pretreatment conditionsbetween two selected pressure values (80 and 100 bar) at a fixed temperature (T = 75 oC) and the enzymatic hydrolysis experiments. In the latter, the microcrystalline and HVS A4 paper were hydrolyzed at different pressures (100 bar, 125 bar, and 150 bar) and at different cellulase intakes (1% (v/v), 3% (v/v), and 5% (v/v)) with a fixed temperature (50°C). The hydrolyzed products were analyzed with a High Performance Liquid Chromatography (HPLC) to quantify the monomeric sugars and to determine the presence of the side products (furfural, HMF and levulinic acid). Within the experimental range, a maximum glucose concentration of 7602.35 ppm and 4560.79 ppm are obtained for microcrystalline and HVS A4 paper, respectively. In addition, there are no furfural, HMF and levulinic acid detected in the products This study shows a potential used of pressurized CO2 in the pretreatment and enzymatic hydrolysis of the model compound and gives a better insight for further application.
机译:这项工作的目的是研究加压HCO2在废HVS A4纸的预处理和酶水解中产生单体糖(C5和C6糖)的潜力,该单体糖是生物乙醇生产的前体。在利用废弃的HVS A4纸之前,首先在实验中使用微晶纤维素和HVS A4纸作为模型化合物,以便更好地了解该过程。该实验由两个主要部分组成,它们是准备实验,以确定在固定温度(T = 75 oC)的两个选定压力值(80和100 bar)之间的最佳预处理条件,以及酶促水解实验。在后者中,微晶纸和HVS A4纸在不同压力(100 bar,125 bar和150 bar)和不同纤维素酶摄入量(1%(v / v),3%(v / v)和5)下水解%(v / v)),且温度固定(50°C)。用高效液相色谱法(HPLC)分析水解产物,以定量单体糖并确定副产物(糠醛,HMF和乙酰丙酸)的存在。在实验范围内,微晶纸和HVS A4纸的最大葡萄糖浓度分别为7602.35 ppm和4560.79 ppm。此外,在产品中未检测到糠醛,HMF和乙酰丙酸。该研究表明加压CO2在模型化合物的预处理和酶水解中的潜在用途,并为进一步应用提供了更好的见识。

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