1 |
Batch process heat storage integration: A simple and effective graphical approach Abdelouadoud Y, Lucas E, Krummenacher P, Olsen D, Wellig B Energy, 185, 804, 2019 |
2 |
Sabatier based power-to-gas system: Heat exchange network design and thermoeconomic analysis Toro C, Sciubba E Applied Energy, 229, 1181, 2018 |
3 |
Influence of the chip format on the development of mass loss, moisture content and chemical composition of poplar chips during storage and drying in open-air piles Pecenka R, Lenz H, Idler C Biomass & Bioenergy, 116, 140, 2018 |
4 |
Techno-economic study of compressed air energy storage systems for the grid integration of wind power Huang Y, Keatley P, Chen HS, Zhang XJ, Rolfe A, Hewitt NJ International Journal of Energy Research, 42(2), 559, 2018 |
5 |
Techno-economic analysis of oxy-combustion coal-fired power plant with cryogenic oxygen storage Hanak DP, Powell D, Manovic V Applied Energy, 191, 193, 2017 |
6 |
A novel process for direct solvent regeneration via solar thermal energy for carbon capture Khalilpour R, Milani D, Qadir A, Chiesa M, Abbas A Renewable Energy, 104, 60, 2017 |
7 |
Syngas-based annex concepts for chemical energy storage and improving flexibility of pulverized coal combustion power plants Wolfersdorf C, Boblenz K, Pardemann R, Meyer B Applied Energy, 156, 618, 2015 |
8 |
Experimental study on the start-up with dry gases from normal cell temperatures in self-humidified proton exchange membrane fuel cells Kong IM, Jung A, Kim BJ, Baik KD, Kim MS Energy, 93, 57, 2015 |
9 |
Biomass gasification using low-temperature solar-driven steam supply Ravaghi-Ardebili Z, Manenti F, Corbetta M, Pirola C, Ranzi E Renewable Energy, 74, 671, 2015 |
10 |
Power generation plants with carbon capture and storage: A techno-economic comparison between coal combustion and gasification technologies Tola V, Pettinau A Applied Energy, 113, 1461, 2014 |