首页> 外文期刊>Journal of Engineering and Technological Sciences >Comparative Study of the Preparation of Reducing Sugars Hydrolyzed from High-Lignin Lignocellulose Pretreated with Ionic Liquid, Alkaline Solution and Their Combination
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Comparative Study of the Preparation of Reducing Sugars Hydrolyzed from High-Lignin Lignocellulose Pretreated with Ionic Liquid, Alkaline Solution and Their Combination

机译:离子液体,碱性溶液预处理高木质素木质素纤维素水解制备还原糖的比较研究

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The ionicliquid [MMIM][DMP] was synthesized from the reactants methyl imidazole [MIM] and trimethylphosphate [TMP] and verified using 1 HNMR and FTIR. Coconut coir dust was pretreated with a 1% alkaline solution.Its crystalline structure increased significantly due to the dissolution of lignin and hemicelluloses under alkaline conditions, exposing the cellulose. After NaOH and IL were employed, the XRD showed that peak (002) decreased significantly and peak (101) almost vanished. This significant decrease in crystallinity was related to the alteration of the substrate from the cellulose I structure to the cellulose II structure. The pretreated substrates were hydrolyzed to convert them to reducing sugars by pure cellulase and xylanase,and the reaction was conducted at 60°C, pH 3, for 12 or 48 hours. The yields of sugar hydrolyzed from untreated and NaOH-pretreated substrates were 0.07 and 0.12 g sugar/g lignocellulose, respectively. Pretreatment with IL or the combination of NaOH+IL resulted in yields of reducing sugars of 0.11 and 0.13 g/g, respectively. These findings showed that IL pretreatment of the high-lignin lignocellulose is a new prospect for the economical manufacture of reducing sugars and bioethanol in the coming years.
机译:由反应物甲基咪唑[MIM]和磷酸三甲酯[TMP]合成离子液体[MMIM] [DMP],并使用1 HNMR和FTIR进行验证。椰子椰壳粉尘用1%的碱性溶液预处理,由于木质素和半纤维素在碱性条件下溶解,从而暴露了纤维素,其晶体结构显着增加。使用NaOH和IL后,X射线衍射显示峰(002)显着下降,峰(101)几乎消失。结晶度的显着降低与底物从纤维素I结构改变为纤维素II结构有关。通过纯纤维素酶和木聚糖酶将预处理的底物水解以将其转化为还原糖,并且该反应在60℃,pH 3下进行12或48小时。从未处理的底物和经NaOH预处理的底物水解的糖产量分别为0.07和0.12 g糖/ g木质纤维素。用IL或NaOH + IL的组合进行的预处理分别导致还原糖的产量为0.11 g / g和0.13 g / g。这些发现表明,IL预处理高木质素木质纤维素是未来几年经济生产还原糖和生物乙醇的新前景。

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