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Production of Bio-oil from Fast Pyrolysis of Oil Palm Biomass using Fluidised Bed Reactor

机译:使用流化床反应器从油棕生物质快速热解生产生物油

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Biomass is a renewable resource that can potentially be used to produce biofuels via the fast pyrolysis process. Oil palm biomass are a rich biomass resource in Malaysia, and it is therefore very important that they be utilized for more beneficial purposes, particularly in the context of the development of biofuels. The use of this pyrolysis technique can significantly contribute to reduce the biomass volume because more biomass can be consumed as raw material for bio-oil production. In this study, the thermal conversion of oil palm biomass via fast pyrolysis was carried out using a fluidised bed reactor. Several process parameters i.e types of oil palm biomass, pyrolysis temperature and particle size that can affect the yield of the pyrolysis products were investigated. EFB, trunk, frond and palm kernel shell (PKS) were used to investigate the effect of different oil palm biomass on pyrolysis products. The temperature used was in the range of 400-600 oC and particle size of EFB was < 90 – 180 μm. The results indicated that the optimum yield of bio-oils (47.4 wt.%) was obtained using EFB having a particle size of 107-125 μm at pyrolyzed temperature of 500 oC. The bio-oil and bio-char produced were characterized via physicochemical and spectrometric analyses. The calorific values of bio-oil ranged from 21 to 22 MJ kg -1 while that of bio-char 22-25 MJ kg -1 .
机译:生物质是一种可再生资源,可通过快速热解过程潜在地用于生产生物燃料。油棕生物质是马来西亚丰富的生物质资源,因此,将其用于更有益的目的非常重要,特别是在开发生物燃料的情况下。使用这种热解技术可以显着减少生物量,因为可以消耗更多的生物量作为生产生物油的原料。在这项研究中,使用流化床反应器通过快速热解进行了油棕生物质的热转化。研究了几种可能影响热解产物收率的工艺参数,即油棕生物质的类型,热解温度和粒径。 EFB,树干,叶状体和棕榈仁壳(PKS)用于研究不同油棕生物量对热解产物的影响。使用的温度在400-600 oC的范围内,EFB的粒径<90 – 180μm。结果表明,在500 oC的热解温度下,使用粒径为107-125μm的EFB可获得最佳生物油收率(47.4 wt。%)。通过理化和光谱分析对产生的生物油和生物炭进行表征。生物油的热值范围为21至22 MJ kg -1,而生物碳的热值范围为22-25 MJ kg -1。

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