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首页> 外文期刊>The Journal of Pure and Applied Chemistry Research >Dilute Ionic Liquids Pretreatment of Palm Empty Bunch and Its Impact to Produce Bioethanol
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Dilute Ionic Liquids Pretreatment of Palm Empty Bunch and Its Impact to Produce Bioethanol

机译:棕榈空料束的稀离子液体预处理及其对生产生物乙醇的影响

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Ethanol production through ionic liquids pretreatment of palm empty bunch (PEB) was carried out. This research aims to investigate impact of ionic liquids synthetic i.e 1-butyl-3-methyl imidazoliumbromide or [BMIM]bromide toward cellulose’s palm empty bunch and convert its cellulose into bioethanol. Ionic liquid was synthesized? through reflux and microwave assisted synthesis methods. Research investigation showed that microwave assisted synthesis produce [BMIM]bromide 90% faster than reflux method. The characterization of synthesized product using FTIR, 1 H-NMR, 13 C-NMR and LC-MS showed that these reactions have been carried out successfully. Scanning electron microscope figure out changes morphological surface of palm empty bunch caused by ionic liquid pretreatment. Crystallinity index of PEB milled and cellulose of PEFB after [BMIM]bromide dissolution were identified using comparison of PEB FTIR spectrum. Cellulose without dilute [BMIM]bromide have higher LOI number than cellulose after [BMIM]bromide dissolution. It indicated that a large part of cellulose after dissolution has been changed into amorf. Hydrolysis residue of palm empty bunch hydrolyzed by sulfuric acids 5%, 100 0 C for 5 hours and produce 685 ppm of reducing sugar. Simultaneous Saccharification and Fermentation using Trichoderma viride and Saccharomyce cerevisiae? for 5 days produce 0,69% of bioethanol.
机译:进行了离子液体预处理棕榈空束(PEB)的乙醇生产。这项研究旨在研究合成的离子液体(即1-丁基-3-甲基咪唑鎓溴化物或[BMIM]溴化物)对纤维素的棕榈空束的影响,并将其纤维素转化为生物乙醇。离子液体是合成的吗?通过回流和微波辅助合成方法。研究表明,微波辅助合成比溴化法可更快地生产[BMIM]溴化物90%。利用FTIR,1 H-NMR,13 C-NMR和LC-MS对合成产物进行表征,表明这些反应已成功进行。扫描电镜观察了离子液体预处理引起的掌空束形态表面的变化。利用PEB FTIR光谱的比较,确定了[BMIM]溴化物溶解后磨碎的PEB的结晶度和PEFB的纤维素。在[BMIM]溴化物溶解后,没有稀释的[BMIM]溴化物的纤维素的LOI值高于纤维素。这表明溶解后的大部分纤维素已转变​​为amof。棕榈空束的水解残余物在5%的硫酸中,100 0 C水解5小时,并产生685 ppm的还原糖。使用木霉木霉菌和酿酒酵母同时糖化和发酵? 5天产生0.69%的生物乙醇。

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