首页> 外文期刊>Chemical Engineering Science >MEASUREMENT OF MULTICOMPONENT ADSORPTION KINETICS OF GASES IN ACTIVATED CARBON BY A BATCH ADSORBER FT-IR TECHNIQUE
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MEASUREMENT OF MULTICOMPONENT ADSORPTION KINETICS OF GASES IN ACTIVATED CARBON BY A BATCH ADSORBER FT-IR TECHNIQUE

机译:间歇吸附FT-IR技术测定活性炭中气体的多组分吸附动力学

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摘要

Single- and multicomponent systems of ethane, propane and n-butane adsorbing onto Ajar activated carbon were studied with a batch adsorber FT-IR technique. Pure-component single and binary systems of ethane-propane, ethane-n-butane and propane-n-butane and ternary systems of ethane, propane and n-butane were studied. System temperatures were at 10, 30 and 60 degrees C. Effects of competition and temperature were examined qualitatively, and then compared to a model(HMSMD) proposed by Hu and Do (1993a, A.I.Ch.E. J. 39, 1628-1640), which has been shown to be accurate in predicting multicomponent dynamics in a differential adsorption bed (DAB) system, in which the external concentration was maintained constant throughout the course of adsorption. Qualitatively the data were in general agreement with expectation, although some anomalies were apparent. Data quality decreased with increasing temperature due to errors in IR signal resolution. For single-component systems, agreement with the model was good for ethane, fair for propane and poor for n-butane. Agreement between the model and binary or ternary systems was generally poor. A pore mouth resistance mechanism, inadequate description of multicomponent equilibria or surface heterogeneity may be responsible for the observed discrepancies. [References: 13]
机译:利用间歇式吸附器FT-IR技术研究了乙烷,丙烷和正丁烷吸附在Ajar活性炭上的单组分和多组分体系。研究了乙烷-丙烷,乙烷-正丁烷和丙烷-正丁烷的纯组分单和二元体系,以及乙烷,丙烷和正丁烷的三元体系。系统温度分别为10、30和60摄氏度。定性研究了竞争和温度的影响,然后将其与Hu and Do(1993a,AICh.EJ 39,1628-1640)提出的模型(HMSMD)进行比较。已证明在差分吸附床(DAB)系统中预测多组分动力学方面是准确的,在该系统中,外部浓度在整个吸附过程中保持恒定。定性的数据与预期基本一致,尽管有些异常是显而易见的。由于红外信号分辨率的误差,数据质量随着温度的升高而下降。对于单组分系统,与该模型的一致性对于乙烷是好的,对于丙烷是公平的,对于正丁烷是差的。该模型与二元或三元系统之间的一致性通常很差。孔隙抵抗力机制,对多组分平衡的不充分描述或表面异质性可能是造成观察到的差异的原因。 [参考:13]

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