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Co-Gasification Of Coal And Empty Fruit Bunch (EFB) In An Entrained Flow Gasification

机译:气流床气化中煤与空果束(EFB)的共气化

摘要

In Malaysia, empty fruit bunch (EFB) is one of the major biomass source from the palm udoil industry. It is an environmental friendly, renewable and sustainable source of energy, which may be used to generate electricity and other forms of energy. EFB may be converted into synthesis gas (syngas) through the gasification process, or mixed with coal through the co-gasification process. Raw EFB usually consists of high moisture content and low energy density compared to coal. Having a mixture of biomass and coal is one of the method to increase the efficiency of the biomass gasification process. Hence, it is the objective of this work to investigate the co-gasification of coal and EFB at various process conditions, whereby, an entrained flow gasifier was used to investigate the effect of the gasification temperature in the range of 700°C–900°C, for various coal-EFB mixtures on the syngas composition. The produced gas was collected and quantified using gas chromatography. It was found that when the mass ratio of coal to EFB was increased, the production of hydrogen (H2), carbon monoxide (CO) and carbon dioxide (CO2) also increases. Besides that, the carbon conversion and the higher heating value (HHV) of the gas products also increases with increasing in mass ratio of coal-EFB mixtures. The highest cold gas efficiency (CGE) recorded for coal mixture is 2.72 MJ/m 3. Thus, this shows the potential in co-gasification for producing alternative energy to the conventional fossil fuel resources that is depleting.
机译:在马来西亚,空果束(EFB)是棕榈 udoil工业的主要生物质来源之一。它是一种环境友好,可再生和可持续的能源,可用于发电和其他形式的能源。 EFB可通过气化过程转化为合成气(合成气),或通过共气化过程与煤混合。与煤相比,原始EFB通常包含高水分含量和低能量密度。具有生物质和煤的混合物是增加生物质气化过程效率的方法之一。因此,这项工作的目的是研究煤和EFB在各种工艺条件下的共气化,从而使用气流床气化炉研究700°C–900°C范围内气化温度的影响。 C,对于合成气组成的各种煤-EFB混合物。收集产生的气体并使用气相色谱法定量。发现当煤与EFB的质量比增加时,氢(H 2),一氧化碳(CO)和二氧化碳(CO 2)的产生也增加。除此之外,随着煤-EFB混合物的质量比增加,气体产物的碳转化率和较高的热值(HHV)也增加。煤混合物记录的最高冷气效率(CGE)为2.72 MJ / m 3。因此,这表明了共气化生产替代消耗的传统化石燃料资源的替代能源的潜力。

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