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R. Warren, Mastrandrea, M., Hope, C., and al, et, Variation in the climatic response to SRES emissions scenarios in integrated assessment models, Climatic Change, vol. 102, no. 3-4, pp. 671-685, 2010.
R. Warren, Price, J., Graham, E., Forstenhaeusler, N., and VanDerWal, J., The projected effect on insects, vertebrates, and plants of limiting global warming to 1.5 degrees C rather than 2 degrees C, Science, vol. 360, no. 6390, 2018.
R. Warren, The Role of interactions in a world implementing adaptation and mitigation solutions to climate change, Philosophical Transactions of the Royal Society A, vol. 369, pp. 217-241, 2011.
R. Warren, S Santos, dela Nava, Bane, M., Barker, T., Barton, C., Ford, R., Fuessel, H. - M., Klein, R., Linstead, C., Kohler, J., T., M., Osborn, T., Pan, H., Raper, S., Riley, G. D., Winne, S., and Anderson, D., Development of the Community Integrated Assessment System (CIAS), a multi-institutional modular integrated assessment approach for modelling climate change, and of SoftIAM, its supporting software, Environmental Modelling and Software, vol. 5, pp. 592-610, 2008.
R. Warren, Andrews, O., Brown, S., Forstenhaeusler, N., Gernaat, D., Goodwin, P., Harris, I., He, Y., Home, C., Colón-González, F. J., Nicholls, R., Osborn, T., Price, J., Van Vuuren, D., and Wright, R., Risks associated with global warming of 1.5 or 2C. Tyndall Centre Briefing Note, 2018.PDF icon briefing_note_risks_warren_r1-1.pdf (1.08 MB)
R. Warren, Price, J., VanDerWal, J., Graham, E., and Forstenhaeusler, N., How much difference does half a degree of global warming make to insects, vertebrates and plants?, Science, 2018.
R. Warren, VanDerWal, J., Price, J., Welbergen, J. A., Atkinson, I., Ramirez-Villegas, J., Osborn, T. J., Jarvis, A., Shoo, L. P., Williams, S. E., and Lowe, J., Quantifying the benefit of early climate change mitigation in avoiding biodiversity loss, Nature Climate Change, 2013.
R. Warren, Wilby, R., Brown, K., Watkiss, P., Betts, R., Murphy, J., and Lowe, J., Advancing national climate change risk assessment to deliver national adaptation plans, Philosophical Transactions of the Royal Society a-Mathematical Physical and Engineering Sciences, vol. 376, no. 2121, 2018.
R. Warren, Quantifying implications of limiting global warming to 1.5 or 2°C above pre-industrial levels, Nature Climate Change, no. Submitted, 2018.
R. Warren, Santos, S., Arnell, A., Bane, M., Barker, T., Barton, C., Ford, R., Hankin, R., Klein, R., Kohler, J., T., M., and Osborn, T., Development of the Community Integrated Assessment System (CIAS), a multi-institutional modular integrated assessment approach for modelling climate change, and of SoftIAM, its supporting software, Environmental Modelling and Software, vol. 5, pp. 592-610, 2007.
W. Wang, Zhu, T., Yao, L., Zhang, J., Zhu, Y., Wen, L., Chen, J., Yang, L., Wang, X., Xu, C., and Sui, X., Enhanced formation of fine particulate nitrate at a rural site on the North China Plain in summer: The important roles of ammonia and ozone, Atmospheric Environment, vol. 101, pp. 294-302, 2014.
T. Wang and Watson, J., China's carbon emissions and international trade: implications for post-2012 policy, Climate Policy, vol. 8, 2008.
Y. Wang, Sun, M., and Song, B., Public perceptions of and willingness to pay for sponge city initiatives in China , 2017.
Y. Wang, Li, X., Sun, M., and Yu, H., Managing urban ecological land as properties: Conceptual model, public perceptions, and willingness to pay, Resources, Conservation and Recycling, vol. 133, pp. 21-29, 2018.
T. Wang and Watson, J., Commentary on B. Lee and N. Mabey's, "An EU-China pact is key to a global climate deal”, Europe's World, 2008.
W. Wang, Wang, S., Xu, J. (, Zhou, R., Shi, C., and Zhou, B., Gas-phase ammonia and PM2.5 ammonium in a busy traffic area of Nanjing, China, 2016.
T. Wang and Watson, J., Scenario analysis of China's emissions pathways in the 21st century for low carbon transition, Energy Policy, vol. 38, no. 7, pp. 3537-3546, 2010.
J. Wang, Xi, F., Liu, Z., Bing, L., Alsaedi, A., Hayat, T., Ahmad, B., and Guan, D., The spatiotemporal features of greenhouse gases emissions from biomass burning in China from 2000 to 2012, Journal of Cleaner Production, vol. 181, pp. 801-808, 2018.
X. Ke Wang, Rossignol, S., Ma, Y., Yao, L., Wang, M. Yi, Chen, J. Min, George, C., and Wang, L., Molecular characterization of atmospheric particulate organosulfates in three megacities at the middle and lower reaches of the Yangtze River, 2016.
D. Wang, Zhou, B., Fu, Q., Zhao, Q., Zhang, Q., Chen, J., Yang, X., Duan, Y., and Li, J., Intense secondary aerosol formation due to strong atmospheric photochemical reactions in summer: observations at a rural site in eastern Yangtze River Delta of China, 2016.
H. L. Wang, Qiao, L. P., Lou, S. R., Zhou, M., Chen, J. M., Wang, Q., Tao, S. K., Chen, C. H., Huang, H. Y., Li, L., and Huang, C., PM2.5 pollution episode and its contributors from 2011 to 2013 in urban Shanghai, China, Atmospheric Environment, vol. 123, no. B, pp. 298-305, 2015.
B. Wang, Can the CDM bring technology transfer to developing countries? An empirical study of technology transfer in China's CDM projects, The Governance of Clean Development Working Paper Series No. 002. 2009.
T. Wang and Watson, J., China's carbon emissions and international trade: implications for post-2012 policy, Climate Policy, vol. 8, 2008.
C. Walsh, Dawson, R., Hall, J. W., Barr, S., Batty, M., Bristow, A. L., Carney, S., Dagoumas, A., Ford, A., Harpham, C., Tight, M. R., Watters, H., and Zanni, A. M., Assessment of climate change mitigation & adaptation in cities, Urban Design and Planning 2011, vol. 2, pp. 75-84, 2011.
C. Walsh and Larkin, A., Size Matters: Exploring the importance of vessel characteristics to inform estimates of shipping emissions, Applied Energy, 2012.