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Deep Eutectic Solvent (DES) as a Pretreatment for Oil Palm Empty Fruit Bunch (OPEFB) in Sugar Production

机译:深度共晶溶剂(DES)作为油棕榈空粉刺(OPEFB)在糖生产中的预处理

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Oil Palm Empty Fruit Bunch (OPEFB) was pretreated using Deep Eutectic Solvent (DES) at different parameters to enable a highest yield of sugar. DES is a combination of two or more cheap and safe components to form an eutectic mixture through hydrogen bond interaction, which has a melting point lower than that of each component. DES can be used to replace Ionic Liquids (ILs), which are more expensive and toxic. In this study, OPEFB was pretreated with DES mixture of choline chloride : urea in 1:2 molar ratio. The pretreatment was performed at temperature 110°C and 80°C for 4 hours and 1 hour. Pretreatment A (110°C, 4 hours), B (1l0°C, 1 hour), C (80°C, 4 hours) and D (80°C, 1 hour). Enzymatic hydrolysis was done by using the combination of two enzymes, namely, Cellic Ctec2 and Cellic Htec2. Morphology surface of OPEFB is observed under Scanning Electron Microscopy (SEM). The treated fiber is tested for crystallinity using XRD and functional group analysis using FTIR, to check the effect of the pretreatment on the fiber and compared it with the untreated fiber. From XRD analysis, DES successfully gave an effect towards degree of crystallinity of cellulose. Pretreatment A and B successfully reduce the percentage of crystallinity while pretreatment C and D increased the percentage of crystallinity. From FTIR analysis, DES can expose the structure of cellulose even though the functional group of lignin and hemicellulose were still present. Upon enzymatic hydrolysis, DES-treated fiber successfully produced sugar but not significantly when compared with raw. Pretreatment A, B, C and D produced glucose at the amount of 60.47 mg/ml, 66.33 mg/ml, 61.96 mg/ml and 59.12 mg/ml respectively. However, pretreatment C gave the highest xylose (70.01 mg/ml) production compared to other DES pretreatments.
机译:在不同参数下使用深共晶溶剂(DES)预处理油棕空果实束(OPEFB),以实现最高的糖产率。 DES是两种或多种廉价和安全组分的组合,以通过氢键相互作用形成共晶混合物,其熔点低于每种组分的熔点。 DES可用于代替离子液体(ILS),其更昂贵且有毒。在该研究中,用氯化胆碱的DES混合物预处理OPEFB:尿素在1:2摩尔比中进行预处理。预处理在温度110℃和80℃下进行4小时,1小时。预处理(110℃,4小时),B(1L0℃,1小时),C(80℃,4小时)和D(80°C,1小时)。通过使用两种酶的组合,即细胞CTEC2和Cellic HTEC2来完成酶水解。在扫描电子显微镜(SEM)下观察OPEFB的形态学表面。使用FTIR使用XRD和官能团分析测试处理过的纤维,以检查预处理对纤维的影响,并将其与未处理的纤维进行比较。从XRD分析中,DES成功地对纤维素的结晶度进行了影响。预处理A和B成功减少了结晶度的百分比,而预处理C和D增加了结晶度的百分比。从FTIR分析,即使仍存在木质素和半纤维素的官能团,DES可以暴露纤维素的结构。在酶水解后,与原料相比,DES处理的纤维成功地制备了糖,但不会显着。预处理A,B,C和D分别产生60.47mg / ml,66.33mg / ml,61.96mg / ml和59.12mg / mL的量的葡萄糖。然而,与其他DES预处理相比,预处理C使得最高的木糖(70.01mg / ml)的生产。

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