1 |
Effects of pore structure and wettability on methane adsorption capacity of mud rock: Insights from mixture of organic matter and clay minerals Luo P, Zhong NN, Khan I, Wang XM, Wang HJ, Luo QY, Guo ZP Fuel, 251, 551, 2019 |
2 |
Critical heat flux for flow boiling of water on micro-structured Zircaloy tube surfaces Haas C, Kaiser F, Schulenberg T, Wetzel T International Journal of Heat and Mass Transfer, 120, 793, 2018 |
3 |
Fabrication of polymeric nanofibrous mats with controllable structure and enhanced wetting behavior using one-step electrospinning Beigmoradi R, Samimi A, Mohebbi-Kalhori D Polymer, 143, 271, 2018 |
4 |
Critical heat flux enhancement by surface modification in a saturated pool boiling: A review Mori S, Utaka Y International Journal of Heat and Mass Transfer, 108, 2534, 2017 |
5 |
Micromechanism of coal dust wettability and its effect on the selection and development of dust suppressants Yao QG, Xu CC, Zhang YS, Zhou G, Zhang SC, Wang D Process Safety and Environmental Protection, 111, 726, 2017 |
6 |
Numerical study on the wettability dependent interaction of a rising bubble with a periodic open cellular structure Cai X, Worner M, Marschall H, Deutschmann O Catalysis Today, 273, 151, 2016 |
7 |
The structural modification and rehydration behaviours of milk protein isolate powders: The effect of granule growth in the high shear granulation process Ji JF, Cronin K, Fitzpatrick J, Maguire P, Zhang HZ, Miao S Journal of Food Engineering, 189, 1, 2016 |
8 |
Versatile aluminum alloy surface with various wettability Lu BP, Li N Applied Surface Science, 326, 168, 2015 |
9 |
Structure and wettability property of the growth and nucleation surfaces of thermally treated freestanding CVD diamond films Pei XQ, Cheng SH, Ma YB, Wu DF, Liu JS, Wang QL, Yang YZ, Li HD Applied Surface Science, 346, 189, 2015 |
10 |
Fabrication and wettability of monolithic bimodal porous Cu with Gasar macro-pores and dealloying nano-pores Du M, Zhang HW, Li YX, Liu Y, Chen X, He Y Applied Surface Science, 353, 804, 2015 |