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| Negative-emissions technology portfolios to meet the 1.5 °C target [期刊论文] Global Environmental Change, 2021-01-01, 67 Rueda O.; Mogollón J.M.; Tukker A.; Scherer L. View/Download:0/0 |
| Global sustainability, innovation and governance dynamics of national smart electricity meter transitions [期刊论文] Global Environmental Change, 2021-01-01, 68 Sovacool B.K.; Hook A.; Sareen S.; Geels F.W. View/Download:1/0 |
| An assessment of the performance of scenarios against historical global emissions for IPCC reports [期刊论文] Global Environmental Change, 2021-01-01, 66 Strandsbjerg Tristan Pedersen J.; Duarte Santos F.; van Vuuren D.; Gupta J.; Encarnação Coelho R.; Aparício B.A.; Swart R. View/Download:14/0 |
| Scenario archetypes reveal risks and opportunities for global mountain futures [期刊论文] Global Environmental Change, 2021-01-01, 69 Thorn J.P.R.; Klein J.A.; Steger C.; Hopping K.A.; Capitani C.; Tucker C.M.; Reid R.S.; Marchant R.A. View/Download:10/0 |
| Empirical testing of the visualizations of climate change mitigation scenarios with citizens: A comparison among Germany, Poland, and France [期刊论文] Global Environmental Change, 2021-01-01, 70 Xexakis G.; Trutnevyte E. View/Download:0/0 |
| Generation of 1D and 2D flood maps of Sakarya river passing through Geyve district of Sakarya city in Turkey [期刊论文] Natural Hazards, 2021-01-01, 105 (1 Ceribasi G.; Ceyhunlu A.I. View/Download:2/0 |
| Quantitative evaluation of characteristic precipitation event (CPE)’s effect on hydro-thermal state of active layer in Beiluhe area [期刊论文] Natural Hazards, 2021-01-01, 105 (2 Li D.; Zhang M.; Wen Z.; Chen B.; Xue K.; Li A. View/Download:13/0 |
| Modelling temperature extremes in the Limpopo province: bivariate time-varying threshold excess approach [期刊论文] Natural Hazards, 2021-01-01, 107 (3 Maposa D.; Seimela A.M.; Sigauke C.; Cochran J.J. View/Download:0/0 |
| How much uncertainty does the choice of data transforming method brings to heat risk mapping? Evidence from China [期刊论文] Natural Hazards, 2021-01-01, 106 (1 Zhang W.; Zhao Q.; Pei M. View/Download:5/0 |
| Half of global methane emissions come from highly variable aquatic ecosystem sources [期刊论文] Nature Geoscience, 2021-01-01, 14 (4 Rosentreter J.A.; Borges A.V.; Deemer B.R.; Holgerson M.A.; Liu S.; Song C.; Melack J.; Raymond P.A.; Duarte C.M.; Allen G.H.; Olefeldt D.; Poulter B.; Battin T.I.; Eyre B.D. View/Download:15/0 |