TY - JOUR
T1 - Modeling Investigation of Concurrent-flow Chemical Extraction Process
AU - Nie, Miaomiao
AU - Tan, Jing
AU - Deng, Wen Sheng
AU - Su, Yue Feng
N1 - Publisher Copyright:
© 2019 Published under licence by IOP Publishing Ltd.
PY - 2019/8/22
Y1 - 2019/8/22
N2 - In this study, modeling investigation of mass transfer in concurrent-flow chemical extraction process is carried out. Continuum Model is used to describe mass transfer process. Concentration curves in organic droplet and aqueous liquid film are firstly calculated and rate-limiting step is determined to be mass transfer of solute in aqueous phase. Mass transfer performance in aqueous phase is further calculated. Volumetric mass transfer coefficient and volumetric mass transfer coefficient during mass transfer time before solute concentration decreases to 5%, are calculated for evaluating mass transfer characteristics. The effect of organic droplet size is studied. The result demonstrates that increase in aqueous/organic volume ratio significantly decreases mass transfer performance, decrease in droplet size enhances mass transfer process through both reducing mass transfer resistance and increasing contacting area.
AB - In this study, modeling investigation of mass transfer in concurrent-flow chemical extraction process is carried out. Continuum Model is used to describe mass transfer process. Concentration curves in organic droplet and aqueous liquid film are firstly calculated and rate-limiting step is determined to be mass transfer of solute in aqueous phase. Mass transfer performance in aqueous phase is further calculated. Volumetric mass transfer coefficient and volumetric mass transfer coefficient during mass transfer time before solute concentration decreases to 5%, are calculated for evaluating mass transfer characteristics. The effect of organic droplet size is studied. The result demonstrates that increase in aqueous/organic volume ratio significantly decreases mass transfer performance, decrease in droplet size enhances mass transfer process through both reducing mass transfer resistance and increasing contacting area.
UR - http://www.scopus.com/inward/record.url?scp=85073556340&partnerID=8YFLogxK
U2 - 10.1088/1742-6596/1284/1/012024
DO - 10.1088/1742-6596/1284/1/012024
M3 - Conference article
AN - SCOPUS:85073556340
SN - 1742-6588
VL - 1284
JO - Journal of Physics: Conference Series
JF - Journal of Physics: Conference Series
IS - 1
M1 - 012024
T2 - 2019 3rd International Conference on Data Mining, Communications and Information Technology, DMCIT 2019
Y2 - 24 May 2019 through 26 May 2019
ER -