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十篇代表性第一/通讯作者论文
Liu, W.*; Liu, X.; Yang, H.; Ciais, P.; Wada, Y., Global water scarcity assessment incorporating green water in crop production. Water Resources Research 2022, e2020WR028570. https://doi.org/10.1029/2020WR028570
Liu, W.*; Ciais, P.; Liu, X.; Yang, H.; Hoekstra, A. Y.; Tang, Q.; Wang, X.; Li, X.; Cheng, L., Global phosphorus losses from croplands under future precipitation scenarios. Environmental Science & Technology 2020, 54, (22), 14761-14771. https://doi.org/10.1021/acs.est.0c03978
Liu, W.*; Yang, H.*; Ciais, P.; Kummu, M.; Hoekstra, A.Y., China's food supply sources under trade conflict with the United States and limited domestic land and water resources. Earth’s Future 2020, 8, (3), e2020EF001482. https://doi.org/10.1029/2020EF001482
Liu, W.*; Antonelli, M.; Kummu, M.; Zhao, X.; Wu, P.; Liu, J.; Zhuo, L.; Yang, H., Savings and losses of global water resources in food‐related virtual water trade. Wiley Interdisciplinary Reviews: Water 2018, 6, (1), e1320. https://doi.org/10.1002/wat2.1320
Liu, W.; Yang, H.; Tang, Q.; Liu, X., Understanding the Water–Food–Energy Nexus for supporting sustainable food production and conserving hydropower potential in China. Frontiers in Environmental Science 2019, 7, 50. https://doi.org/10.3389/fenvs.2019.00050
Liu, W.*; Yang, H.; Folberth, C.; Müller, C.; Ciais, P.; Abbaspour, K.C.; Schulin, R., Achieving high crop yields with low nitrogen emissions in global agricultural input intensification. Environmental Science & Technology 2018, 52, 13782–13791.https://doi.org/10.1021/acs.est.8b03610
Liu W.*; Yang H.; Ciais P.; Stamm C.; Zhao X.; Williams J.; Abbaspour K.; Schulin R., 2018.Integrative crop-soil-management modelling to assess global phosphorus losses from major crop cultivations.Global Biogeochemical Cycles 2018, 32, 1074–1086. https://doi.org/10.1029/2017GB005849
Liu, W.; Antonelli, M.; Liu, X.; Yang, H., Towards improvement of grey water footprint assessment: with an illustration for global maize cultivation. Journal of Cleaner Production 2017, 147, 1–9. https://doi.org/10.1016/j.jclepro.2017.01.072
Liu, W.*; Yang, H.; Folberth, C.; Wang, X.; Luo, Q.; Schulin, R., Global investigation of impacts of PET methods on simulating crop-water relations for maize. Agriculture and Forest Meteorology 2016, 221, 164–175.https://doi.org/10.1016/j.agrformet.2016.02.017
Liu, W.*; Yang, H.; Liu, J.; Azevedo, L.; Wang, X.; Xu, Z.; Abbaspour, K.; Schulin, R., Global assessment of nitrogen losses and trade-offs with yields from major crop cultivations. Science of the Total Environment2016, 572, 526–537.https://doi.org/10.1016/j.scitotenv.2016.08.093
十篇代表性合作论文
Franke, J. A.; Muller, C.; Minoli, S.; Elliott, J.; Folberth, C.; Gardner, C.; Hank, T.; Izaurralde, R. C.; Jagermeyr, J.; Jones, C. D.; Liu, W.; Olin, S.; Pugh, T. A. M.; Ruane, A. C.; Stephens, H.; Zabel, F.; Moyer, E. J., Agricultural breadbaskets shift poleward given adaptive farmer behavior under climate change. Global Change Biology 2022, 28, 167-181.https://doi.org/10.1111/gcb.15868
Liu, X.; Liu, W.; Liu, L.; Tang, Q.; Liu, J.; Yang, H., Environmental flow requirements largely reshape global surface water scarcity assessment. Environmental Research Letters 2021, 16, (10), 104029.https://doi.org/10.1088/1748-9326/ac27cb
Thiery, W.; Lange, S.; Rogelj, J.; Schleussner, C. F.; Gudmundsson, L.; Seneviratne, S. I.; Andrijevic, M.; Frieler, K.; Emanuel, K.; Geiger, T.; Bresch, D. N.; Zhao, F.; Willner, S. N.; Buchner, M.; Volkholz, J.; Bauer, N.; Chang, J.; Ciais, P.; Dury, M.; Francois, L.; Grillakis, M.; Gosling, S. N.; Hanasaki, N.; Hickler, T.; Huber, V.; Ito, A.; Jagermeyr, J.; Khabarov, N.; Koutroulis, A.; Liu, W.; Lutz, W.; Mengel, M.; Muller, C.; Ostberg, S.; Reyer, C. P. O.; Stacke, T.; Wada, Y., Intergenerational inequities in exposure to climate extremes. Science 2021, 374, (6564), 158-160.https://doi.org/10.1126/science.abi7339
J?germeyr, J.; Müller, C.; Ruane, A. C.; Elliott, J.; Balkovic, J.; Castillo, O.; Faye, B.; Foster, I.; Folberth, C.; Franke, J. A.; Fuchs, K.; Guarin, J. R.; Heinke, J.; Hoogenboom, G.; Iizumi, T.; Jain, A. K.; Kelly, D.; Khabarov, N.; Lange, S.; Lin, T.-S.; Liu, W.; Mialyk, O.; Minoli, S.; Moyer, E. J.; Okada, M.; Phillips, M.; Porter, C.; Rabin, S. S.; Scheer, C.; Schneider, J. M.; Schyns, J. F.; Skalsky, R.; Smerald, A.; Stella, T.; Stephens, H.; Webber, H.; Zabel, F.; Rosenzweig, C., Climate impacts on global agriculture emerge earlier in new generation of climate and crop models. Nature Food 2021.https://doi.org/10.1038/s43016-021-00400-y
Wang, X.; Muller, C.; Elliot, J.; Mueller, N. D.; Ciais, P.; Jagermeyr, J.; Gerber, J.; Dumas, P.; Wang, C.; Yang, H.; Li, L.; Deryng, D.; Folberth, C.; Liu, W.; Makowski, D.; Olin, S.; Pugh, T. A. M.; Reddy, A.; Schmid, E.; Jeong, S.; Zhou, F.; Piao, S., Global irrigation contribution to wheat and maize yield. Nature Communications 2021, 12, (1), 1235. https://doi.org/10.1038/s41467-021-21498-5
Zabel, F.; Muller, C.; Elliott, J.; Minoli, S.; Jagermeyr, J.; Schneider, J. M.; Franke, J. A.; Moyer, E.; Dury, M.; Francois, L.; Folberth, C.; Liu, W.; Pugh, T. A. M.; Olin, S.; Rabin, S. S.; Mauser, W.; Hank, T.; Ruane, A. C.; Asseng, S., Large potential for crop production adaptation depends on available future varieties. Global Change Biology 2021, 27, (16), 3870-3882. https://doi.org/10.1111/gcb.15649
J?germeyr, J., Robock, A., Elliott, J., Müller, C., Xia, L., Khabarov, N., Folberth, C., Schmid, E., Liu, W., Zabel, F., Rabin, S.S., Puma, M.J., Heslin, A.C., Franke, J., Foster, I., Asseng, S., Bardeen, C.G., Toon, O.B., Rosenzweig, C., 2020. A regional nuclear conflict would compromise global food security. Proceedings of the National academy of Sciences of the United States of America, 117, 7071–7081. https://doi.org/10.1073/pnas.1919049117
Liu, X.; Liu, W.; Yang, H.; Tang, Q.; Fl?rke, M.; Masaki, Y.; Müller Schmied, H.; Ostberg, S.; Pokhre, Y.; Satoh, Y.; Wada, Y., Multimodel assessments of human and climate impacts on mean annual streamflow in China. Hydrology and Earth System Sciences 2019, 23, 1245–1261.https://doi.org/10.5194/hess-23-1245-2019
Liu, X.; Tang, Q.; Liu, W.; Veldkamp, T.; Boulange, J.; Liu, J.; Wada, Y.; Huang, Z.; Yang, H., A spatially explicit assessment of growing water stress in China from the past to the future. Earth’s Future 2019, 7, 1027–1043. https://doi.org/10.1029/2019EF001181
Müller, C.; Elliott, J.; Chryssanthacopoulos, J.; Arneth, A.; Balkovic, J.; Ciais, P.; Deryng, D.; Folberth, C.; Glotter, M.; Hoek, S.; Iizumi, T.; Izaurralde, R. C.; Jones, C.; Khabarov, N.; Lawrence, P.; Liu, W.; Olin, S.; Pugh, T. A. M.; Ray, D. K.; Reddy, A.; Rosenzweig, C.; Ruane, A. C.; Sakurai, G.; Schmid, E.; Skalsky, R.; Song, C. X.; Wang, X. H.; de Wit, A.; Yang, H., Global gridded crop model evaluation: benchmarking, skills, deficiencies and implications. Geoscientific Model Development 2017, 10, (4), 1403-1422.https://doi.org/10.5194/gmd-10-1403-2017