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首页> 外文期刊>International journal of hydrogen energy >Thermal behavior and hydrogen production of methanol steam reforming and autothermal reforming with spiral preheating
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Thermal behavior and hydrogen production of methanol steam reforming and autothermal reforming with spiral preheating

机译:螺旋预热甲醇蒸汽重整和自热重整的热行为和产氢

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The present study aims to investigate the thermal behavior and hydrogen production characteristics from methanol steam reforming (MSR) and autothermal reforming (ATR) under the effects of a Cu-Zn-based catalyst and spiral preheating. Two different reaction temperatures of 250 and 300 ~°C are taken into account. Meanwhile, the O/C ratio (i.e. the molar ratio between O_2 and methanol) and S/C ratio (i.e. the molar ratio between steam and methanol) are controlled in the ranges of 0-0.5 and 1-2, respectively. The condition of O/C = 0 represents the reaction of MSR. By monitoring the supplied power into the reactor with a fixed gas hourly space velocity (GHSV) of 72,000 h~(-1) the experimental results indicate that an exothermic reaction from ATR can be attained once the O/C ratio is as high as 0.125. Increasing O/C ratio causes more heat released from the reaction, this results in the decrease in the frequency of supplied power, especially at O/C = 0.5. It is noted that the concentration of CO in the product gas is quite low compared to that of CO_2. An increase in O/C ratio abates the concentration of H_2 from the consumption of per mol methanol;however, the H_2 yield in terms of thermodynamic analysis is increased. On account of the utilization of spiral preheating on the reactants, within the investigated operating conditions the methanol conversion and hydrogen yield were always higher than 95 and 90%, respectively. A comparison suggests that the methanol conversion from ATR of methanol with spiral preheating is superior to those of other studies.
机译:本研究旨在研究在铜锌基催化剂和螺旋预热的影响下,甲醇蒸汽重整(MSR)和自热重整(ATR)的热行为和产氢特性。考虑了两个不同的反应温度250和300°C。同时,将O / C比(即,O 2和甲醇之间的摩尔比)和S / C比(即,蒸汽和甲醇之间的摩尔比)分别控制在0-0.5和1-2的范围内。 O / C = 0的条件表示MSR的反应。通过以72,000 h〜(-1)的固定气时空速(GHSV)监测向反应器提供的功率,实验结果表明,一旦O / C比高达0.125,就可以实现ATR的放热反应。 。 O / C比增加会导致反应释放更多的热量,这导致供电频率降低,尤其是在O / C = 0.5时。注意,与CO_2相比,产物气体中的CO浓度非常低。 O / C比的增加从每摩尔甲醇的消耗中减少了H_2的浓度;但是,就热力学分析而言,H_2的产率增加了。由于在反应物上利用了螺旋预热,在研究的操作条件下,甲醇转化率和氢气产率始终分别分别高于95%和90%。比较表明,在螺旋预热条件下,甲醇从ATR转化为甲醇的效果优于其他研究。

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