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Thermal Analysis of Nigerian Oil Palm Biomass with Sachet-Water Plastic Wastes for Sustainable Production of Biofuel

机译:袋装水塑料废物用于可持续生产生物燃料的尼日利亚油棕生物质的热分析

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Nigeria, being the world’s largest importer of diesel-powered gen-sets, is expected to invest in bio-fuels in the future. Hence, it is important to examine the thermal properties and synergy of wastes for potential downstream resource utilization. In this study, thermal conversion as a route to reduce the exploding volume of wastes from sachet-water plastic (SWP) and oil palm empty fruit bunch (OPEFB) biomass was studied. Thermogravimetric (TGA) and subsequent differential scanning calorimeter (DSC) was used for the analysis. The effect of heating rate at 20 °C min ?1 causes the increase of activation energy of the decomposition in the first-stage across all the blends (0.96 and 16.29 kJ mol ?1 ). A similar phenomenon was seen when the heating rate was increased from 10 to 20 °C min ?1 in the second-stage of decomposition. Overall, based on this study on the synergistic effects during the process, it can be deduced that co-pyrolysis can be an effective waste for energy platform.
机译:尼日利亚是世界上最大的柴油发电机组进口国,有望在未来投资生物燃料。因此,重要的是检查废物的热性质和协同作用,以潜在地利用下游资源。在这项研究中,热转换是减少香包水塑料(SWP)和油棕空果束(OPEFB)生物量废物爆炸量的一种途径。使用热重分析(TGA)和后续的差示扫描量热仪(DSC)进行分析。升温速率在20°C min?1时的影响导致所有共混物(0.96和16.29 kJ mol?1)的第一阶段分解活化能增加。在分解的第二阶段中,当加热速率从10°C min?1增加到20°C min?1时,可以看到类似的现象。总的来说,基于对过程中协同效应的研究,可以推断出共热解可以成为能源平台的有效废物。

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