Department of Chemical Engineering

Education
PhD from Tsinghua University
Bachelor from Tsinghua University


Research 
Microfluidic technology
Fabrication of functional materials using microfluidic technology
Microchemical technology
 
Teaching
Principles of chemical engineering
 
Contact
Email:  lanwj@126.com 
TEL: 86-010-89733965 
Address of Office: B313 chemical building, China University of Petroleum-Beijing, 18 Fuxue Road, Changping, Beijing China
 
Publications
1.       Lan W J, Li S W*, Wang Y J, Luo G S*, CFD simulation of droplet formation in micro-channels by a modified level set method, Ind Eng Chem Res, 53, 4913-4921, 2014.
2.       Lan W J, Li S W, Xu J H*, Luo G S*, Preparation and carbon dioxide separation performance of a hollow fiber supported ionic liquid membrane, Ind Eng Chem Res, 52(20), 6770-6777, 2013.
3.       Lan W J, Li S W, Xu J H*, Luo G S*, A one-step microfluidic approach for controllable preparation of nanoparticle-coated patchy microparticles, Microfluid Nanofluid, 13(3), 491-498, 2012.
4.       Lan W J, Li S W, Xu J H, Luo G S*, Controllable synthesis of microscale titania fibers and tubes using co-laminar micro-flows, Chem Eng J, 181, 828-833, 2012.
5.       Lan W J, Li S W, Xu J H*, Luo G S*, Synthesis of titania-silica core-shell microspheres via a controlled interface reaction in a microfluidic device, Langmuir, 27(21), 13242-13247, 2011.
6.       Lan W J, Li S W, Xu J H, Luo G S*, Controllable preparation of nanoparticle-coated chitosan microspheres in a co-axial microfluidic device, Lab Chip, 11(4), 652-657, 2011.
7.       Lan W J, Li S W, Xu J H, Luo G S*, One-step synthesis of chitosan-silica hybrid microspheres in a microfluidic device, Biomed Microdevices , 12(6), 1087, 2010.
8.       Lan W J, Li S W, Xu J H, Luo G S*, Rapid measurement of fluid viscosity using co-flowing in a co-axial microfluidic device. Microfluid Nanofluid, 8(5), 687-693, 2010.
9.       Lan, W J, Li, S W, Lu, Y C, Xu J H, Luo G S*, Controllable preparation of microscale tubes with multiphase co-laminar flow in a double co-axial microdevice. Lab Chip, 9(22), 3282-3288, 2009.