2. Multiphase flow and emulsion based processes in the area of reaction, separation and micro/nano material synthesis.
Tianjin University, B.S., Chemical Engineering and Technology, 2006/09 - 2010/07
2. The Excellent Young PhD researcher of DICP,2018
1. Yao CQ, Zhao YC, Ma HY, Liu YY, Zhao QK, Chen GW*. Two-phase flow and mass transfer in microchannels: A review from local mechanism to global models. Chemical Engineering Science, 2021,223,115734.
2. Liu YY, Zhao QK, Yue J, Yao CQ*, Chen GW*. Effect of mixing on mass transfer characterization in continuous slugs and dispersed droplets in biphasic slug flow microreactors. Chemical Engineering Journal, 2021,406,126885.
3. Zhao QK, Ma HY, Liu YY, Yao CQ*, Yang LX, Chen GW*. Hydrodynamics and mass transfer of Taylor bubbles flowing in non-Newtonian fluids in a microchannel. Chemical Engineering Science, 2021, 116299.
4. Zhu K, Yao CQ*, Liu Y, Chen GW*. Using expansion units to improve CO2 absorption for natural gas purification-a study on the hydrodynamics and mass transfer. Chinese Journal of Chemical Engineering, 2021, doi.org/10.1016/j.cjche.2020.08.025
5. Liu YY, Yue J, Xu C, Zhao, SN, Yao, CQ*, Chen GW*. Hydrodynamics and local mass transfer characterization under gas–liquid–liquid slug flow in a rectangular microchannel. AIChE J, 2020, 66, e16085.
6. Yao CQ, Zhao YC, Zheng J, Zhang Qi, Chen GW*. The effect of liquid viscosity and modeling of mass transfer in gas – liquid slug flow in a rectangular microchannel. AIChE J, 2020, 66, e16934.
7. Zhu K, Yao CQ*, Liu Y, Chen GW*. Theoretical approach to CO2 absorption in microreactors and reactor volume prediction. Chemical Engineering and Processing-Process Intensification, 2020,107904.
8. Yao CQ, Ma HY, Zhao QK, Liu YY, Zhao YC, Chen GW*. Mass transfer in liquid-liquid Taylor flow in a microchannel: local concentration distribution, mass transfer regime and the effect of fluid viscosity. Chemical Engineering Science, 2020,223,115734.
9. Zhou YF#, Yao CQ#, Zhang P, Zhang XL, Lu HY, Zhao YC*.Dynamic Coupling of Mass Transfer and Chemical Reaction for Taylor Flow along a Serpentine Microchannel. Industrial & Engineering Chemistry Research, 2020, 59, 9279-9292.
10. Yao CQ, Zheng J, Zhang Qi, Chen GW*. Characteristics of gas-liquid Taylor flow with different liquid viscosities in a rectangular microchannel. Chemical Engineering Journal, 2019, 373,437-445.
11. 尧超群,陈光文*,袁权。微通道内气-液两相传质过程行为及其应用.化工学报, 2019, 70, 3635-3644.
12. Zhang Q, Liu HC, Zhao SN, Yao CQ*, Chen GW*. Hydrodynamics and mass transfer characteristics of liquid–liquid slug flow in microchannels: The effects of temperature, fluid properties and channel size, Chemical Engineering Journal, 2019,358,794-805.
13. Peng Zhang#,Yao CQ#, Ma HY, Jin N,Zhang XL, Lü HY,Zhao YC*. Dynamic changes in gas-liquid mass transfer during Taylor flow in long serpentine square microchannels. Chemical Engineering Science, 2018, 182, 17-27.
14. Yao CQ*,Zhao YC,Chen GW*. Multiphase processes with ionic liquids in microreactors: hydrodynamics, mass transfer and applications. Chemical Engineering Science, 2018, 189,340-359.
15. Yao CQ,Liu YY,Chao Xu,Zhao SN,Chen GW*. Formation of liquid-liquid slug flow in a microfluidic T-junction: Effects of fluid properties and leakage flow. AIChE Journal, 2018,64,346-357.
16. Liu YY,Jun Yue,Zhao SN,Yao CQ*,Chen GW*. Bubble splitting under gas-liquid-liquid three-phase flow in a double T-junction microchannel. AIChE Journal, 2018, 64, 376-388.
17. Yao CQ, Liu YY, Zhao SN, Dong ZY, Chen GW*. Bubble/droplet formation and mass transfer during gas-liquid-liquid segmented flow with soluble gas in a microchannel. AIChE Journal, 2017,63,1727-1739.
18. Yao CQ, Kai Zhu, Liu YY, Liu HC, Jiao FJ, Chen GW*. Intensified CO2 absorption in a microchannel reactor under elevated pressures. Chemical Engineering Journal, 2017, 319,179-190.