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Kinetic Modelling of the Pyrolysis of Biomass for the Development of Charcoal Briquette

机译:用于开发木炭煤的生物质热解的动力学建模

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Waste of biomass can be utilized as an energy alternative such as a charcoal briquette. In the waste of biomass, there is carbon element bonded in the cellulose which can be utilized as an energy source of solid fuel. Charcoal briquette from waste of biomass can be developed via pyrolysis process. Terminalia Catappa L. and Myristica fragrans (nutmeg seeds shells) shells were used as raw material for the manufacture of charcoal briquettes. Pyrolysis process took place under isothermal conditions at a temperature of 350°C, 400°C, 450°C, 500°C, and 550°C with variation of times were 30 minutes, 60 minutes and 90 minutes. During the pyrolysis process, there were three main components observed, namely liquid (bio oil), gases and solids (char). Data obtained for measuring the kinetics of liquids and gases were taken in interval of 5 minutes. The results showed that the rise in temperature will increase the rate of pyrolysis process and increase the yield of gases and liquids as well as lowering the yield for solid. The best fitted kinetic model is the representation of biomass pyrolysis process involving secondary decomposition of the liquid. The results of briquette development showed that these two biomasses can be used as raw material of energy alternative.
机译:浪费生物质可以用作能量替代品,例如木炭煤层。在生物质的浪费中,在纤维素中粘合的碳元素可以用作固体燃料的能源。可以通过热解过程开发废物浪费生物质的木炭煤层。终端炎Catappa L.和MyRistica植物(Nutmeg种子壳)壳被用作制造木炭煤球的原料。在350℃,400℃,450℃,500℃和550℃的温度下,在等温条件下发生热解过程,随时间的变化为30分钟,60分钟和90分钟。在热解过程中,观察到三种主要成分,即液体(Bio油),气体和固体(Char)。用于测量液体和气体动力学的测量的数据是在5分钟的间隔进行。结果表明,温度升高将增加热解过程的速率,增加气体和液体的产率,降低固体的产率。最佳拟合的动力学模型是涉及液体分解的生物质热解过程的表示。压块发展的结果表明,这两种生物量可以用作能量替代品的原料。

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