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Microwave-assisted pyrolysis of palm kernel shell: Optimization using response surface methodology (RSM)

机译:棕榈仁壳的微波辅助热解:使用响应面法(RSM)进行优化

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In this study, response surface methodology (RSM) based on central composite rotatable design (CCRD) was applied to determine the optimum condition for pyrolysis of palm kernel shell (PKS) using microwave-assisted pyrolysis system. Three operating variables, namely reaction time (min), sample mass (g) and nitrogen gas flow rate (mL/min) with a total of 20 individual experiments were conducted to optimize the combination effects of the variables. RSM based upon CCRD can be applied to correlate the experimental microwave-assisted pyrolysis results, with regression coefficients of 96.6, 95.0, 96.4 and 99.2 for the calorific value, fixed carbon content, volatile matters content and yield percentage, respectively. This proved that the RSM based on CCRD is efficiently applicable for the pyrolysis study using microwave-assisted pyrolysis system. The predicted optimum conditions for the pyrolysis process was at 31.5 min for reaction time, 30 g for sample mass and 100 mL/min for nitrogen gas flow rate, resulting in calorific value, fixed carbon content, volatile matters content and yield percentage of 29.9 MJ/ kg, 59.8 wt%, 36.4 wt% and 40.0 wt%, respectively. Thus, maximum production of PKS char, with low volatile matters content and high calorific value and fixed carbon content via microwave-assisted pyrolysis system can be optimized using RSM.
机译:在这项研究中,基于中央复合可旋转设计(CCRD)的响应面方法(RSM)被用于确定使用微波辅助热解系统进行棕榈仁壳(PKS)热解的最佳条件。进行了三个操作变量,即反应时间(min),样品质量(g)和氮气流速(mL / min),总共进行了20个单独的实验,以优化变量的组合效果。基于CCRD的RSM可用于关联微波辅助热解实验结果,其发热量,固定碳含量,挥发物含量和产率百分比的回归系数分别为96.6、95.0、96.4和99.2。这证明了基于CCRD的RSM可以有效地应用于微波辅助热解系统的热解研究。预计热解过程的最佳条件是反应时间为31.5分钟,样品质量为30 g,氮气流速为100 mL / min,其热值,固定碳含量,挥发物含量和产率百分比为29.9 MJ /kg、59.8wt%、36.4wt%和40.0wt%。因此,使用微波辅助热解系统可以优化挥发性物质含量低,发热量高,固定碳含量高的PKS炭的最大产量。

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