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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >An empirical model of absorption of nitric oxide with ammoniacal cobalt (II) solutions in a Spray Tower
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An empirical model of absorption of nitric oxide with ammoniacal cobalt (II) solutions in a Spray Tower

机译:喷雾塔中氨基钴(II)溶液吸收一氧化氮的实证模型

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An empirical model was developed for the prediction of the absorption efficiency of nitric oxide (NO) into ammoniacal cobalt (II) solution in terms of gas flow rate, liquid flow rate, and temperature. The model parameters were determined experimentally using a spraying tower with initial absorbent solution pH of 10.0-10.2 for temperatures in the range of 281.15-323.15 K. The reactions between Co2+ complexes and NO were found to be in the fast pseudo-first-order reaction regime. The correlation between the overall mass transfer coefficient and the gas and liquid flow rates was determined for NO absorption. The liquid flow rate (0.225 to 0.730 L/min) had negligible effect on the NO absorption efficiency for the conditions with excessive Co2+ complexes in the solution due to the fast reaction rates. Temperature showed detrimental effects on the NO absorption for conditions in this study. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在气体流速,液体流速和温度方面,开发了对氧化氮(NO)的吸收效率预测到氨基钴(II)溶液的吸收效率的实证模型。 通过在281.15-323.15k的温度下,使用具有10.0-10.2的初始吸收溶液pH的喷涂塔确定模型参数。CO 2 +络合物之间的反应,没有被发现在快速伪一级反应中的温度 政权。 确定整体传质系数与气体和液体流速之间的相关性无吸收。 由于快速反应速率,液体流速(0.225至0.730L / min)对溶液中具有过量的CO 2 +络合物的条件的含量没有可忽略不计。 温度表明对本研究中没有吸收的不利影响。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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