首页> 外文会议>ASME international conference on energy sustainability >RAPID PRODUCTION OF HYDROGEN AND CARBON MONOXIDE VIA THE HETEROGENEOUS OXIDATION OF Zn(g)
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RAPID PRODUCTION OF HYDROGEN AND CARBON MONOXIDE VIA THE HETEROGENEOUS OXIDATION OF Zn(g)

机译:通过Zn(G)的非均相氧化快速生产氢气和一氧化碳

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The heterogeneous oxidation of Zn(g) is considered as an improved approach to the production of H_2 and CO in the two-step Zn/ZnO solar thermochemical cycle. The rate of Zn(g) oxidation by H_2O and CO_2 is measured gravimetrically in a quartz tubular flow reactor for temperatures between 800 and 1150 K, Zn(g) concentrations up to 36 mol%, and H_2O/CO_2 concentrations up to 45 mol%. The rate of the heterogeneous oxidation of Zn(g) by both H_2O and CO_2 is on the order of 10~(-8)-10~(-5) mol cm~(-2) s~(-1). For similar oxidizing conditions, H_2O oxidizes Zn(g) three times as fast as CO_2, indicative of a lower heterogeneous oxidation activation energy in the H_2O system. Less than one second is required to convert more than 85% of Zn to ZnO for all temperatures in both the H_2O and CO_2 reacting systems.
机译:Zn(g)的异质氧化被认为是在两步Zn / ZnO太阳能热化学循环中产生H_2和CO的改进方法。通过H_2O和CO_2的Zn(g)氧化的速率在石英管状反应器中以800至1150k,Zn(g)浓度高达36mol%的温度,高达45摩尔%的温度。 H_2O和CO_2两者的Zn(G)的异质氧化率约为10〜(-8)-10〜(-5)摩尔CM〜(-2)S〜(-1)。对于类似的氧化条件,H_2O将Zn(g)氧化为快速为CO_2,表示H_2O系统中的较低的非均相氧化活化能。对于H_2O和CO_2反应系统中的所有温度,需要少于一秒将超过85%的Zn转换为ZnO。

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