Mathematical Modeling of Heat and Mass Transfer in Gas Absorption on a Drop of a Volatile Absorbent

被引:0
作者
A. G. Murav’ev
机构
[1] Yaroslav Mudryi Novgorod State University,
来源
Theoretical Foundations of Chemical Engineering | 2005年 / 39卷
关键词
Transfer Coefficient; Mole Fraction; Mass Flow; Dispersion Medium; Mass Transfer Coefficient;
D O I
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中图分类号
学科分类号
摘要
A model of simultaneous heat and mass transfer in absorption of component A from a gas mixture in a drop of a volatile absorbent at commensurable phase resistances is constructed based on the known model of heat and mass transfer inside a drop. Heat and mass transfers in the gas phase are described in terms of the heat and mass transfer coefficients. The relation between the dimensionless mole fraction of component A and temperature averaged over the drop volume and the mole fraction and temperature at the drop surface is found using Duhamel’s principle and the balance of the heat and mass flows at the interface. The solutions of the resulting integro-differential equations are presented as a series of exponential functions with constant coefficients, as is the solution of the internal problem. For the process of absorption of ammonia in a water drop, the dimensionless average temperature in the drop as a function of time are given at different concentrations of vapor in the bulk of the dispersion medium.
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页码:379 / 384
页数:5
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[1]   Mathematical modeling of heat and mass transfer in gas absorption on a drop of a volatile absorbent [J].
Murav'ev, AG .
THEORETICAL FOUNDATIONS OF CHEMICAL ENGINEERING, 2005, 39 (04) :379-384
[2]   Modeling of Hydrodynamics and Mass Transfer in Countercurrent Polydisperse Gas–Liquid Flow [J].
V. A. Naumov .
Theoretical Foundations of Chemical Engineering, 2001, 35 :335-340
[3]   Mass transfer between a drop or gas bubble and an isotropic turbulent flow [J].
G. I. Kelbaliev .
Theoretical Foundations of Chemical Engineering, 2012, 46 :477-485
[4]   Physical and Mathematical Modelling of Mass Transfer in Ladles due to Bottom Gas Stirring: A Review [J].
Conejo, Alberto N. .
PROCESSES, 2020, 8 (07)
[5]   Modeling of simultaneous heat and mass transfer processes in ammonia–water absorption systems from general correlations [J].
Jaime Sieres ;
José Fernández-Seara .
Heat and Mass Transfer, 2007, 44 :113-123
[6]   Modeling of hydrodynamics and mass transfer in countercurrent polydisperse gas-liquid flow [J].
Naumov, VA .
THEORETICAL FOUNDATIONS OF CHEMICAL ENGINEERING, 2001, 35 (04) :335-340
[7]   Modeling of heat and mass transfer during high temperature treatment of aspen [J].
Duygu Kocaefe ;
Ramdane Younsi ;
Bushra Chaudry ;
Yaşar Kocaefe .
Wood Science and Technology, 2006, 40 :371-391
[8]   Gas-Liquid Mass-Transfer Properties in CO2 Absorption System with Ionic Liquids [J].
Zhang, Xin ;
Bao, Di ;
Huang, Ying ;
Dong, Haifeng ;
Zhang, Xiangping ;
Zhang, Suojiang .
AICHE JOURNAL, 2014, 60 (08) :2929-2939
[9]   Evaluation of mass transfer coefficient for gas condensates in porous systems: Experimental and modeling [J].
Mohamadi-Baghmolaei, Mohamad ;
Azin, Reza ;
Osfouri, Shahriar ;
Zendehboudi, Sohrab .
FUEL, 2019, 255
[10]   Artificial neural network modeling on the prediction of mass transfer coefficient for ozone absorption in RPB [J].
Liu, Taoran ;
Liu, Yiran ;
Wang, Dan ;
Li, Yingwen ;
Shao, Lei .
CHEMICAL ENGINEERING RESEARCH & DESIGN, 2019, 152 :38-47