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Experimental study on a compact methanol-fueled reformer with heat regeneration using ceramic honeycomb (third report: observation of reaction structure and its effect on reforming characteristics)

机译:陶瓷蜂窝料加热再生紧致甲醇燃料重整器的实验研究(第三次报告:反应结构观察及其对重整特性的影响)

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A ceramic honeycomb is applied to a 1-kW class compact tubular-type fuel reformer based on non-catalytic partial oxidation (POX) of methanol. Liquid methanol was used due to its easy handling characteristics. It is confirmed that POX in a super-rich condition can be sustained within the reactor. In most conditions, the reaction was stabilized near the outlet surface of the ceramic honeycomb where the maximum temperature is observed. The maximum temperature reaches approximately the adiabatic flame temperature, therefore, the ceramic honeycomb works as an adiabatic layer and a reaction stabilizer which can sustain the reaction at a certain location. The location of the reaction varies with regard to the thermal load conditions. Stable and high conversion rate was obtained when the reaction is stabilized on the outlet surface of the ceramic honeycomb. This robust feature of reaction stabilization is a significant characteristic of the ceramic honeycomb. The reaction characteristic and its effect on the reforming performance are investigated in this study using detailed measurements of temperature distributions and gas components.
机译:基于甲醇的非催化部分氧化(POX),将陶瓷蜂窝涂在1千瓦级紧凑的管状型燃料重整器上。由于其易于处理特性,使用液体甲醇。证实,在反应器中可以持续富含高性能的POX。在大多数条件下,将反应稳定在陶瓷蜂窝的出口表面附近,其中观察到最大温度。因此,最大温度达到绝热的火焰温度大致,因此陶瓷蜂窝物作为绝热层和反应稳定剂,其可以在某个位置维持反应。反应的位置在热负荷条件方面变化。当反应稳定在陶瓷蜂窝状的出口表面上时获得稳定和高转化率。这种反应稳定化的鲁棒特征是陶瓷蜂窝的重要特征。使用温度分布和气体组分的详细测量,研究了该研究的反应特性及其对重整性能的影响。

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