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Heat and mass transfer studies of palm kernel cake (PKC) in fluidized bed fermenter

机译:流化床发酵罐中棕榈仁饼(PKC)的传热传质研究

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Solid state fermentation (SSF) which involves the growth of microorganism on moist solid substrates in the absence of free flowing water, has gained renewed attention over submerged fermentation for specific applications. During the SSF process in fermenter, there are three main engineering problems encountered such as the removal of metabolic heat from the substrate, diffusion of O and moisture through the substrate, and heterogeneity of the substrate and inoculum. A fluidized bed fermenter in which the particles move independently like a fluid was proposed to conduct the study. Throughout the study, rapid heat transfer from PKC to air was experimentally observed within the first 150s with a temperature drop of 30pC. This indicated that the excellent heat transfer between palm kernel cake and air allows solid state fermentation of PKC without accumulation of metabolic heat in the fermenter. Apart from heat removal, water adsorption study on PKC from air to bed was carried out. It showed that the increase of adsorbed water in PKC was proportional to air relative humidity and inversely proportional to superficial air velocity. The maximum moisture content adsorbed by PKC under fluidization conditions was around 10% (on dry basis). Finally, mathematical models for heat and mass transfer were proposed which can predict the experimental data quite satisfactorily.
机译:固态发酵(SSF)涉及在没有自由流动水的情况下在潮湿的固体基质上生长的微生物,因此对于特定用途的浸入式发酵已引起了新的关注。在发酵罐的SSF过程中,遇到了三个主要的工程问题,例如从底物去除代谢热,O和水分通过底物的扩散以及底物和接种物的异质性。提出了其中颗粒像流体一样独立移动的流化床发酵罐进行研究。在整个研究过程中,通过实验观察到在头150秒钟内从PKC到空气的快速热传递,温度下降了30pC。这表明棕榈仁饼与空气之间的出色传热使PKC固态发酵,而不会在发酵罐中积累代谢热。除了散热以外,还进行了从空气到床对PKC的水吸附研究。结果表明,PKC中吸附水的增加与空气相对湿度成正比,与表面空气速度成反比。在流化条件下,PKC吸附的最大水分含量约为10%(以干基计)。最后,建立了传热传质的数学模型,可以较好地预测实验数据。

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