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玉米和豆热解和燃烧的动力学
David K Okot1,2, Paul E Bilsborrow3, Anh N Phan1
1School of Engineering, Chemical Engineering, Newcastle University, UK.
通过热重力测量分析分析豆和玉米等农业废物,揭示了复杂的热解和燃烧动力学. 较高的加热速度加速了降解和气体生产,这对于优化发电反应堆至关重要.
科学领域:
- 热化学工艺工程热化学工艺工程
- 生物质能源转换生物质能源转换
- 化学动力学 化学动力学
背景情况:
- 优化热化学过程需要了解原料的动态行为.
- 像豆和玉米这样的农业残留物代表了丰富的,未充分利用的生物质资源.
研究的目的:
- 研究豆和玉米的热解和燃烧动力学.
- 为了确定加热速度对降解和气态产品产量的影响.
- 计算激活能量和反应顺序,用于过程建模.
主要方法:
- 使用非异热热重力测量分析 (TGA).
- 在热解 (惰性) 和燃烧 (氧化) 条件下,应用了不同的加热速率 (1040 K分钟-1).
- 用弗林-沃尔-奥扎瓦和基辛格-阿卡希拉-苏诺斯的方法来确定动力参数.
主要成果:
- 增加的加热速度提高了两种原料的降解率和H2O,CO和CO2的产量.
- 计算的平均激活能量为214.15kJ/mol (玉米热解),252.09kJ/mol (豆热解),202.26kJ/mol (玉米燃烧) 和165.64kJ/mol (豆燃烧).
- 反应顺序差异很大,表明复杂的,多步骤的反应机制.
结论:
- 豆和玉米的热解和燃烧是复杂的过程.
- 获得的动力学数据对于优化反应堆设计以从这些农业残留物中产生能源至关重要.
- 准确的运动建模对于高效的生物质转化技术至关重要.
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