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首页> 外文期刊>Chemical engineering journal >Intrinsic gasification kinetics of coal chars generated in a high-pressure, high-temperature flow reactor
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Intrinsic gasification kinetics of coal chars generated in a high-pressure, high-temperature flow reactor

机译:在高压,高温流量反应器中产生的煤炭的固有气化动力学

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An understanding of the intrinsic gasification rates of chars generated at high temperatures and elevated pressures is crucial for the design and optimization of gasifiers. Therefore, a widely used Pittsburgh No. 8 coal was partially gasified in a CO2/N-2 atmosphere at 1300 degrees C at a range of pressures (3.4, 6.2, 11.3, 15.5, and 21.7 bar) in a high-pressure, high-temperature flow reactor to generate char. The intrinsic reaction rate of those chars with CO2 was obtained using a high-pressure thermogravimetric analyzer. The kinetic parameters were obtained using an nth-order model. The results show that the intrinsic reaction rate was less affected by the char generation pressure, while the apparent reaction rate was primarily dependent on the surface area evolution during the gasification process. The apparent reactivity reached a maximum for the char generated at 6.2 bar and decreased with further increases in pressure. Among the kinetic parameters, the activation energies were not affected over the range of char generation pressures (3.4-21.7 bar), while the pre-exponential factors were within similar orders of magnitude. The order of reaction was determined by varying the CO2 partial pressure. The order of reaction decreased with increasing char generation pressure and closely followed the surface area at that conversion in most cases.
机译:理解在高温下产生的Chars的内在气化速率和升高的压力是对煤气的设计和优化的关键。因此,在高压,高度高的压力范围内(3.4,6.2,11.3,15.5和21.7巴),在CO 2 / N-2气氛中,在CO 2 / N-2气氛中,在CO 2 / N-2气氛中,在CO 2 / N-2气氛中,在CO 2 / N-2大气中部分气化。 - 生成炭的温度。使用高压热重分析仪获得二氧化碳的本质反应速率。使用N阶模型获得动力学参数。结果表明,所固体反应速率受到焦炭产生压力的影响较小,而表观反应速率主要取决于气化过程中的表面积演变。表观反应性达到6.2巴中产生的炭的最大值,并且随着压力的进一步增加而降低。在动力学参数中,活化能量不受炭化压力范围(3.4-21.7巴)的影响,而预指数因子是类似的数量级。通过改变CO 2分压来确定反应顺序。随着Char发电的增加,反应顺序降低,在大多数情况下,在该转化率下紧密遵循表面积。

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