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Microwave-assisted production of optimized pyrolysis liquid oil from oil palm fiber

机译:微波辅助从油棕纤维中生产优化的热解液油

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This study highlights the microwave-assisted optimization on the production of pyrolysis liquid oil (PLO) from oil palm fiber (OPF)focusing on the liquid oil yield and the concentration of total phenolic content (TPC). Final temperature (400-600 degrees C) and AC loading (50-100 g) showed significant effects on the PLO yield andTPC concentration, compared to the holding time (15-30 min), as verified by using response surface methodology (RSM) via central composite design (CCD) approach. The TPC concentration is highly important for biomedical applications such as antioxidant and antimicrobial agent that will be presented in the future work. At optimum condition, highest PLO yield determined was 40.66 wt % together with 26.61 +/- 0.96 mg gallic acid/g of TPC concentration. The major composition (73.4%) of concentrated pyrolysis liquid oil (CPLO)consisting of phenolic compound and its derivatives has been observed via GCMS analysis. Thus, this study successfully demonstrated the potential utilization of OPF as one of the sustainable feedstocks for the production of PLO. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项研究着重介绍了微波辅助从油棕纤维(OPF)生产热解液体油(PLO)的优化,重点是液体油的产率和总酚含量(TPC)的浓度。最终温度(400-600摄氏度)和AC负荷(50-100 g)与保持时间(15-30分钟)相比,对PLO产量和TPC浓度表现出显着影响,已通过响应面方法(RSM)进行了验证通过中央复合设计(CCD)方法。 TPC浓度对于生物医学应用(例如抗氧化剂和抗微生物剂)非常重要,这些将在未来的工作中提出。在最佳条件下,确定的最高PLO产率为40.66 wt%,同时每g TPC浓度为26.61 +/- 0.96 mg没食子酸。通过GCMS分析已观察到由酚类化合物及其衍生物组成的浓热解液油(CPLO)的主要成分(73.4%)。因此,这项研究成功地证明了OPF作为生产PLO的可持续原料之一的潜在利用。 (C)2018 Elsevier Ltd.保留所有权利。

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