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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >EFFECTS OF COMPOSITION,TEMPERATURE AND PURGE ON THE PERFORMANCE OF THE CYCLIC ADSORPTION OF CO_2 AND CH_4 ON ACTIVATED CARBON
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EFFECTS OF COMPOSITION,TEMPERATURE AND PURGE ON THE PERFORMANCE OF THE CYCLIC ADSORPTION OF CO_2 AND CH_4 ON ACTIVATED CARBON

机译:组成,温度和吹扫量对活性炭循环吸附CO_2和CH_4性能的影响

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This paper deals with pressure-swing-adsorption(PSA)experiments for removing CO_2 and CH_4 from a mixture with an'inert'such as hydrogen or helium.Specific features are quasi cyclic steady-state and no breakthrough of the adsorbed impurity during the adsorption-production step,implying that information has to be taken inside the column,here by a set of temperature measurements.The purpose is to propose an approach for evaluating the effect on the behaviour and performance of different working conditions(feed composition,temperature,conditions of regeneration,adsorbent)under conditions of optimal bed length.We define a new criterion to represent the effective sorption capacity required in adsorption,which we call critical bed fraction(CBF),defined as the fraction of bed length occupied by the temperature and concentration fronts at incipient breakthrough of the less adsorbed component,at cyclic steady-state.The effects of the different parameters on performance(recovery and productivity)may then be expressed and analysed in terms of CBF.Some noteworthy observations are the following:for a given amount of purge,the flow velocity in the purge step may have an optimal valuea relatively high concentration of CH_4 may have positive effects on both recovery and productivity when used with a high purge velocity,because it contributes to a better desorption of CO_2;the advantages of an adsorbent having a high capacity per unit mass and fast internal kinetics may be offset if the density is low,implying a low capacity per unit volume.
机译:本文采用变压吸附(PSA)实验从具有惰性的氢或氦等混合物中去除CO_2和CH_4。其具体特征是准循环稳态,吸附过程中吸附杂质没有突破。生产步骤,这意味着必须在塔内获取信息,这里需要进行一组温度测量。目的是提出一种评估不同工作条件(进料组成,温度,条件)对行为和性能的影响的方法我们定义了一个新的标准来表示吸附所需的有效吸附容量,称为临界床分数(CBF),定义为温度和浓度所占床长的分数在循环稳态下,吸附较少的组分开始突破。不同参数对性能的影响(回收率和生产率)然后可以用CBF表示和分析。一些值得注意的观察如下:对于给定的吹扫量,吹扫步骤中的流速可能具有最佳值相对较高的CH_4浓度可能对两者的回收率都有积极影响较高的吹扫速度使用时具有较高的生产率和生产率,因为它有助于更​​好地解吸CO_2;如果密度低,则吸附剂每单位质量的容量高且内部动力学快的优点可能会抵消,这意味着每单位质量的容量低单位体积。

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