2013•Journal of Chemical Engineering of Chinese UniversitiesRequires access

Kinetics of Inhibition Reaction of Coke Deterioration by BP Inhibitor

Zhang Ze-zh

Open publisher page 0 citations

Abstract

In order to improve the inhibition technologies of coke deterioration,the kinetic data of the inhibition reaction of coke deterioration by using the BP inhibitor were obtained from thermogravimetric analysis,and based on the unreacted shrinking core model at different temperatures,the obtained data were used to establish the reaction kinetic models.The model parameters were determined and the statistical tests show that the models are significant and credible.According to the Arrhenius equation the activation energy Ea and the effective diffusion activation energy ED of the inhibition reaction of coke samples loaded BP inhibitor are 285.0 kJ·mol-1and 164.6 kJ·mol-1,respectively,which are both higher than that of the blank coke samples,142.0 kJ·mol-1and 96.3 kJ·mol-1,respectively.Based on the kinetic models,the relative resistances of the external diffusion mass transfer,ηG /∑η,the relative resistances of the internal diffusion mass transfer,ηD /∑η,and the relative resistances of interfacial chemical reaction,ηC /∑η were calculated.The calculated results reveal that the inhibition reaction of sample S0 is mainly affected by interfacial chemical reaction and external diffusion,while the inhibition reaction of sample SBP is mainly affected by internal diffusion and interfacial reaction at the beginning of the reaction,and then both samples are affected by ηG,ηD and ηC simultaneously.In addition,the inhibition reaction is affected by the interfacial chemical reaction at lower reaction temperature,and then the ηC /∑η decreases with the reaction temperature increase.

About this research paper

What this paper is about

In order to improve the inhibition technologies of coke deterioration,the kinetic data of the inhibition reaction of coke deterioration by using the BP inhibitor were obtained from thermogravimetric analysis,and based on the unreacted shrinking core model at different temperatures,the obtained data were used to establish the reaction kinetic models.The model parameters were determined and the statistical tests show that the models are significant and credible.According to the Arrhenius equation the activation energy Ea and the effective diffusion activation energy ED of the inhibition reaction of coke samples loaded BP inhibitor are 285.0 kJ·mol-1and 164.6 kJ·mol-1,respectively,which are both higher than that of the blank coke samples,142.0 kJ·mol-1and 96.3 kJ·mol-1,respectively.Based on the kinetic models,the relative resistances of the external diffusion mass transfer,ηG /∑η,the relative resistances of the internal diffusion mass transfer,ηD /∑η,and the relative resistances of interfacial chemical reaction,ηC /∑η were calculated.The calculated results reveal that the inhibition reaction of sample S0 is mainly affected by interfacial chemical reaction and external diffusion,while the inhibition reaction of sample SBP is mainly affected by internal diffusion and interfacial reaction at the beginning of the reaction,and then both samples are affected by ηG,ηD and ηC simultaneously.In addition,the inhibition reaction is affected by the interfacial chemical reaction at lower reaction temperature,and then the ηC /∑η decreases with the reaction temperature increase.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In order to improve the inhibition technologies of coke deterioration,the kinetic data of the inhibition reaction of coke deterioration by using the BP inhibitor were obtained from thermogravimetric analysis,and based on the unreacted shrinking core model at different temperatures,the obtained data were used to establish the reaction kinetic models.The model parameters were determined and the statistical tests show that the models are significant and credible.According to the Arrhenius equation the activation energy Ea and the effective diffusion activation energy ED of the inhibition reaction of coke samples loaded BP inhibitor are 285.0 kJ·mol-1and 164.6 kJ·mol-1,respectively,which are both higher than that of the blank coke samples,142.0 kJ·mol-1and 96.3 kJ·mol-1,respectively.Based on the kinetic models,the relative resistances of the external diffusion mass transfer,ηG /∑η,the relative resistances of the internal diffusion mass transfer,ηD /∑η,and the relative resistances of interfacial chemical reaction,ηC /∑η were calculated.The calculated results reveal that the inhibition reaction of sample S0 is mainly affected by interfacial chemical reaction and external diffusion,while the inhibition reaction of sample SBP is mainly affected by internal diffusion and interfacial reaction at the beginning of the reaction,and then both samples are affected by ηG,ηD and ηC simultaneously.In addition,the inhibition reaction is affected by the interfacial chemical reaction at lower reaction temperature,and then the ηC /∑η decreases with the reaction temperature increase.

Key concepts: Activation energy, Chemistry, Order of reaction, Arrhenius equation, Thermogravimetric analysis, Coke, Diffusion, Chemical kinetics

Related papers

Back to paper searchBrowse research topicsOriginal source
Kinetics of Inhibition Reaction of Coke Deterioration by BP Inhibitor — Research Paper | ScholarLens