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Delignification of Oil Palm Empty Fruit Bunch using Peracetic Acid and Alkaline Peroxide Combined with the Ultrasound

机译:油棕榈空的果子束使用过乙酸和碱性过氧化物结合超声波

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Lignocellulosic biomass has great potential as a low-cost source of fermentable sugar for the production of biofuels and high value organic acids. One potential biomass is oil palm empty fruit bunch, since it has high cellulose and hemicellulose content. However, its lignin content can hinder the access of cellulose and hemicellulose during the hydrolysis process. Therefore, an effective pretreatment for the delignification of lignocellulose biomass should be considered to reduce the lignin content. In this study, delignification of oil palm empty fruit bunch using peracetic acid and alkaline peroxide solution combined with the ultrasound method is investigated as a novel combination method of biomass pretreatment. The effect of pretreatment time was observed by using a peracetic acid solution for 1, 3, 5, 7 and 9 hours, followed by an alkaline peroxide solution for 4, 6, 8 and 10 hours. Based on the results, the best delignification was achieved by pretreatment using peracetic acid pretreatment for 3 hours, followed by alkaline peroxide pretreatment for 10 hours. Both pretreatments were assisted by the ultrasound method. The results show hemicellulose, cellulose and lignin content of 14.13%, 77.27% and 8.6% respectively. The lignin content was reduced by 68.73% and the cellulose content increased by 121.85%, relative to the untreated EFB. This result was considered as the best pretreatment, since the pretreatment time was shorter and high cellulose content together with low lignin content was achieved, which will improve the hydrolysis process.
机译:木质纤维素生物量具有巨大的可发酵糖来源,用于生产生物燃料和高价值有机酸。一个潜在的生物质是油棕空果实束,因为它具有高纤维素和半纤维素含量。然而,其木质素含量可以在水解过程中妨碍纤维素和半纤维素的进入。因此,应考虑对木质纤维素生物质的脱氨酸的有效预处理来减少木质素含量。在这项研究中,研究了使用过乙酸和碱性过氧化物溶液与超声法结合超声法的油棕色空果束的脱果作为一种新的生物质预处理方法。通过使用过乙酸溶液1,3,5,7和9小时,然后是4,6,8和10小时的碱性过氧化物溶液观察到预处理时间的效果。基于该结果,通过使用过乙酸预处理3小时的预处理来实现最佳的脱果,然后通过碱性过氧化物预处理进行10小时。通过超声法辅助两种预处理。结果显示半纤维素,纤维素和木质素含量分别为14.13%,77.27%和8.6%。木质素含量减少68.73%,纤维素含量相对于未处理的EFB增加121.85%。该结果被认为是最好的预处理,因为预处理时间较短,并且纤维素含量与低木质素含量一起实现,这将改善水解过程。

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