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Water gas shift reaction and selective oxidation of CO in microreactors

机译:微反应器中的水煤气变换反应和CO的选择性氧化

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摘要

The following paper shows the successful application of some selective oxidation(selox)and water gas shift(WGS)catalysts to microreactors,which allow to reduce the CO content in a model gas mixture that contains the major product components of a reformer or of partial oxidizer used for hydrogen production for fuel cells.At small average residence times of less than 30 ms,which are typical for microstructured reactors,the water gas shift reaction at 250-300 deg C using a Ru/ZrO2 catalyst allowed to reduce the CO content by more than 95%.By means of the selox reaction,a residual CO content of 1 vol.% could be oxidized to CO_2 with a conversion of more than 99% when using a CuO/CeO_2 catalyst at less than 150 deg C and an average residence time of 14 ms.However,CO-selectivity amounted to 20% for the selox reaction only.For both the WGS and the selox reaction,those catalysts that have the largest surface enlargement are the most active ones.The prepared selox catalysts allow the temperature range of selective CO oxidation to be extended"considerably.The usable temperature range is increased from 60-120 deg C(conventional reactors)to 60-180 deg C.Because of the small dimension and the high heat transfer coefficients of a microreactor system,temperatures can be reached very fast.Additional temperature ranges can be controlled exactly,which is important to maximize the CO-selectivity.
机译:以下论文显示了一些选择性氧化(selox)和水煤气变换(WGS)催化剂在微反应器上的成功应用,这可以减少包含重整器或部分氧化器主要产品成分的模型气体混合物中的CO含量用于微细反应堆的典型平均停留时间少于30毫秒,在250-300摄氏度下使用Ru / ZrO2催化剂进行水煤气变换反应,可降低CO含量。大于95%。通过selox反应,当使用CuO / CeO_2催化剂在低于150摄氏度且平均温度低于1摄氏度时,残留的1%的CO含量可被氧化为CO_2,转化率超过99%停留时间为14毫秒。但是,对于selox反应,CO选择性仅为20%。对于WGS和selox反应,具有最大表面膨胀率的催化剂都是活性最高的催化剂。温度选择性CO氧化的范围将大大扩展。可用的温度范围从60-120℃(常规反应器)增加到60-180℃。由于微反应器系统的尺寸小和传热系数高,可以非常快地达到温度。可以精确控制其他温度范围,这对于最大化CO选择性非常重要。

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