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Design and construction of fixed bed pyrolysis system andudplum seed pyrolysis for bio-oil production

机译:固定床热解系统的设计与施工李子热解生物油

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摘要

This work investigated the production of bio oil from plum seed (Zyziphus jujuba) by fixed bed pyrolysis technology. A fixed bed pyrolysis system has been designed and fabricated for production of bio oil. The major components of the system are: fixed bed reactor, liquid condenser and liquid collector. Nitrogen gas was used to maintain the inert atmosphere in the reactor where the pyrolysis reaction takes place. The feedstock considered in this study is plum seed as it is available waste material in Bangladesh. The reactor is heated by means of a cylindrical biomass external heater. Rice husk was used as the energy source. The products are oil, char and gas. The parameters varied are reactor bed temperature, running time and feed particle size. The parameters are found to influence the product yields significantly. The maximum liquid yield of 39 wt% at 5200C for a feed particle size of 2.36-4.75 mm and a gas flow rate of 8 liter/min with a running time of 120 minute. The pyrolysis oil obtained at these optimum process conditions are analyzed for some of their properties as an alternative fuel. The density of the liquid was closer with diesel. The viscosity of the plum seed liquid was lower than that of the conventional fuels. The calorific value of the pyrolysis oil is one half of the diesel fuel.
机译:这项工作研究了通过固定床热解技术从李子(Zyziphus jujuba)中生产生物油的方法。已经设计并制造了用于生产生物油的固定床热解系统。该系统的主要组件是:固定床反应器,液体冷凝器和液体收集器。氮气用于维持发生热解反应的反应器中的惰性气氛。本研究中考虑的原料是李子种子,因为它是孟加拉国可获得的废物。反应器通过圆柱形生物质外部加热器加热。稻壳被用作能源。产品是石油,焦炭和天然气。改变的参数是反应器床温度,运行时间和进料粒度。发现这些参数显着影响产物的产率。在进料粒度为2.36-4.75 mm,气体流速为8升/分钟,运行时间为120分钟的条件下,在5200℃下最大液体收率为39重量%。分析在这些最佳工艺条件下获得的热解油作为替代燃料的某些性能。液体的密度与柴油更接近。李子种子液体的粘度低于常规燃料的粘度。热解油的热值是柴油的一半。

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