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The utilization demineralized rice husk waste for biofuel source via pyrolysis: thermogravimetric analysis and kinetic study

机译:利用热解法将脱盐的稻壳废料用作生物燃料的热重分析和动力学研究

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Rice husk is considered as agricultural waste that causes environmental problem during its handling. In this study, rice husk was treated with acid (citric acid and nitric acid) solutions prior used as raw material for producing biofuel and chemicals via pyrolysis. The pyrolysis behaviors of rice husk treated with water and acid solutions have been investigated through thermogravimetric analysis from room temperature to 600 oC at the heating rate of 10oC/min under 50 ml/min nitrogen flow. Demineralization treatment using strong acid (nitric acid) solution showed more impacts to the rice husk in thermogravimetric analysis, i.e. lower ash content, less minerals content and thermal stability increased. One step model kinetic resulted the lowest activation energy (12.8709 kJ/mol) occured at the 5% nitric acid solution treatment. Excellent agreement between the experimental data and model predictions was found with 8.63% of the relative error. In other words, demineralization using 5% nitric acid solution would improve rice husk performance during its pyrolysis reaction for producing biofuel.
机译:稻壳被认为是农业废弃物,在处理过程中会引起环境问题。在这项研究中,稻壳先经过酸(柠檬酸和硝酸)溶液处理,然后用作热解生产生物燃料和化学品的原料。通过在50 ml / min氮气流量下以10 oC / min的升温速率从室温到600 oC的热重分析,研究了用水和酸溶液处理过的稻壳的热解行为。在热重分析中,使用强酸(硝酸)溶液进行脱盐处理对稻壳有更大的影响,即较低的灰分,较少的矿物质含量和热稳定性。一步模型动力学导致最低的活化能(12.8709 kJ / mol)发生在5%硝酸溶液处理中。实验数据与模型预测之间的一致性极好,相对误差为8.63%。换句话说,使用5%硝酸溶液进行脱矿质将改善稻壳在生产生物燃料的热解反应过程中的性能。

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