69354
|
|
Kunanuntakij, K; Varabuntoonvit, V; Vorayos, N; Panjapornpon, C; Mungcharoen, T Thailand Green GDP assessment based on environmentally extended input-output model(2017) |
76858
|
|
Chunark, P; Promjiraprawat, K; Limmeechokchai, B Impacts of CO2 Reduction Target and Taxation on Thailand's Power System Planning towards 2030(2014) |
69226
|
|
Winyuchakrit, P; Limmeechokchai, B; Matsuoka, Y; Gomi, K; Kainuma, M; Fujino, J; Suda, M Thailand's low-carbon scenario 2030: Analyses of demand side CO2 mitigation options(2011)Energy For Sustainable Development, 15.0, 4 |
68031
|
|
Sahabuddin, M; Khan, I Analysis of demand, generation, and emission for long-term sustainable power system planning using LEAP: The case of Bangladesh(2023)Journal Of Renewable And Sustainable Energy, 15, 3 |
69081
|
|
Hussain, A; Perwez, U; Ullah, K; Kim, CH; Asghar, N Long-term scenario pathways to assess the potential of best available technologies and cost reduction of avoided carbon emissions in an existing 100% renewable regional power system: A case study of Gilgit-Baltistan (GB), Pakistan(2021) |
68126
|
|
Abbasi, SA; Harijan, K; Khan, MWA; Mengal, A; Shaikh, F; Memon, ZA; Mirjat, NH; Kumar, L Long-term optimal power generation pathways for Pakistan(2021)Energy Science & Engineering, 9, 12 |
69168
|
|
Vishwanathan, SS; Garg, A Energy system transformation to meet NDC, 2 °C, and well below 2 °C targets for India(2020)Climatic Change, 162, 4 |
69055
|
|
Rehman, SAU; Cai, YP; Siyal, ZA; Mirjat, NH; Fazal, R; Kashif, SUR Cleaner and Sustainable Energy Production in Pakistan: Lessons Learnt from the Pak-TIMES Model(2020)Energies, 13, 1 |
66287
|
|
Ma, T; Ostergaard, PA; Lund, H; Yang, HX; Lu, L An energy system model for Hong Kong in 2020(2014) |