Fe^II(EDTA)^2-溶液吸收NO气体的传质-反应过程

王菲, 刘有智, 袁志国, 祁贵生, 焦纬洲
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引用次数: 0

摘要

在处理推进剂和炸药生产过程中产生的nox废气时,采用湿式氧化法处理NO很难被快速氧化和吸收,导致吸收率低。为了解决这一问题,在鼓泡反应器中采用铁络合物FeII(EDTA)2-(乙二胺四乙酸,EDTA)作为NO的吸附剂。考察了吸收液浓度和NO气体浓度对吸收率的影响。分析了NO吸附的传质反应过程。导出了描述NO吸收过程的理论模型。结果表明:在实验条件下,FeII(EDTA)2-对NO的吸附速率随NO浓度的增加呈线性增加,且FeII(EDTA)2-对NO的吸附是一个准一级反应过程。吸附过程模型计算值与实验值误差在5%以内,具有较好的一致性,可用于描述FeII(EDTA)2-溶液吸附NO的传质反应过程。
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Fe^II(EDTA)^2-溶液吸收NO气体的传质-反应过程
NO is difficult to be rapidly oxidized and absorbed in the wet oxidation method used in the treatment of the NO x exhaust gases produced in the production process of propellants and explosives, which cause the low absorption rate. To solve this problem, ferrous complex FeII(EDTA)2- (Ethylene Diamine Tetraacetic Acid, EDTA)was used as the absorbent of NO in a bubbling reactor. The effects of absorbing solution concentration and NO gas concentration on the absorption rate were investigated. The mass transfer-reaction process of NO absorption was analyzed. The theoretical model describing the NO absorption process was derived. Results show that: under experimental conditions, the absorption rate increases linearly with the increase of NO concentration, and the NO absorbed by FeII(EDTA)2- is a pseudo first-order reaction process. The error between calculated values obtained by absorption process model and experimental ones is within 5%, both have good consistency, which can be used to describe the mass transfer-reaction process of NO absorbed by FeII(EDTA)2- solution.
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来源期刊
Hanneng Cailiao/Chinese Journal of Energetic Materials
Hanneng Cailiao/Chinese Journal of Energetic Materials Engineering-Industrial and Manufacturing Engineering
CiteScore
1.90
自引率
0.00%
发文量
4271
期刊介绍: Chinese Journal of Energetic Materials is a vital forum for the exchange of science and technology in energetic materials, and information on - Propellants - Explosives - Pyrotechnics - Ignition, combustion and detonation
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