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Thermal ZnO dissociation in a rapid aerosol reactor as part of a solar hydrogen production cycle

机译:ZnO在快速气溶胶反应器中的热解离,是太阳能制氢的一部分

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An experimental investigation of the thermal dissociation of ZnO particles in aerosol flow was conducted. A cooling lance and quench tube were used to sharpen residence time determination and limit product recombination. Experiments were performed at temperatures between 1873 and 2023 K and residence times between 1.11 and 1.78 s. Product particles were distributed between the walls of the quench tube, a gravity collection vessel, and a downstream HEPA filter. Chemical analysis showed material in gravity vessel was largely unreacted. Physical and chemical analysis of particles collected in the quench tube and filter indicated conversion to Zn with some recombination. Arrhenius pre-exponential factors were measured between 2.23 × 10~9 and 1.67 × 10~(10) s~(-1). These parameters gave rates three orders of magnitude faster than stationary configurations. The net conversions after recombination had a maximum value of 18%, with a mean value of 8%. Product particle sizes ranged between 5 and 70 nm, a size whose surface area was expected to increase the rate of the Zn hydrolysis step of the cycle.
机译:进行了ZnO颗粒在气溶胶流中热解离的实验研究。使用冷却喷枪和淬火管来加快停留时间的确定并限制产物的重组。实验是在1873年至2023 K之间的温度和1.11至1.78 s的停留时间之间进行的。产物颗粒分布在骤冷管,重力收集容器和下游HEPA过滤器的壁之间。化学分析表明重力容器中的材料大部分未反应。对在淬火管和过滤器中收集到的颗粒进行的物理和化学分析表明,经过一定程度的重组后转化为锌。阿雷尼乌斯的指数前因子在2.23×10〜9和1.67×10〜(10)s〜(-1)之间测量。这些参数使速率比固定配置快三个数量级。重组后的净转化率的最大值为18%,平均值为8%。产物的粒径在5-70nm之间,该粒径的表面积可望增加循环中Zn水解步骤的速率。

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