1 |
Simulation of power and cooling generation via heat recovery from a ventilation air methane abatement unit Nadaraju FJ, Maddocks AR, Zanganeh J, Moghtaderi B Fuel, 249, 27, 2019 |
2 |
The combustion mitigation of methane as a non-CO2 greenhouse gas Jiang X, Mira D, Cluff DL Progress in Energy and Combustion Science, 66, 176, 2018 |
3 |
Demonstration of mitigation and utilization of ventilation air methane in a pilot scale catalytic reverse flow reactor Li ZK, Wu ZW, Qin ZF, Zhu HQ, Wu JB, Wang RY, Lei LJ, Chen JG, Dong M, Fan WB, Wang JG Fuel Processing Technology, 160, 102, 2017 |
4 |
Enrichment of ventilation air methane by adsorption with displacement chromatography technology: Experiment and numerical simulation Yang Y, Wu YJ, Liu HQ, Ribeiro AM, Li P, Yu JG, Rodrigues AE Chemical Engineering Science, 149, 215, 2016 |
5 |
Thermodynamic stability conditions, methane enrichment, and gas uptake of ionic clathrate hydrates of mine ventilation air Du JW, Li HJ, Wang LG Chemical Engineering Journal, 273, 75, 2015 |
6 |
Energy recovery from ventilation air methane via reverse-flow reactors Gosiewski K, Pawlaczyk A, Jaschik M Energy, 92, 13, 2015 |
7 |
A feasibility study on a novel stone dust looping process for abatement of ventilation air methane Shah K, Moghtaderi B, Doroodchi E, Sandford J Fuel Processing Technology, 140, 285, 2015 |
8 |
A new method for controlling the ignition state of a regenerative combustor using a heat storage device Marin P, Diez FV, Ordonez S Applied Energy, 116, 322, 2014 |
9 |
Utilization of ventilation air methane as an oxidizing agent in chemical looping combustion Zhang YX, Doroodchi E, Moghtaderi B Energy Conversion and Management, 85, 839, 2014 |
10 |
Numerical investigation of the burning characteristics of ventilation air methane in a combustion based mitigation system Martinez DM, Cluff DL, Jiang X Fuel, 133, 182, 2014 |