王戎

青年研究员

Tel:021-31248922

Email:rongwang@fudan.edu.cn

复旦大学环境科学与工程系教授,本科和博士毕业于北京大学,之后在法国和美国深造,主要从事大气化学、气候变化、清洁能源等领域研究。近年在 Nature、Joule、PNAS、Nature Geos.、Nature Commun.等发表学术论文100余篇,获得“中国十大新锐科技人物”、 “中国十大气象科技进展”(第一完成人)、联合国工业组织“全球科技创新突出贡献奖”、亚洲气溶胶协会“青年科学家奖”、中国化学会的“青年环境化学奖”等荣誉,指导研究生获得了第九届 “中国未来女科学家” 计划(全国共10人)、国家博士后创新人才支持计划(A类)(2024、2023年各一项)、国家自然科学基金青年项目、上海市“启明星-扬帆”计划、“唐孝炎环境科学创新一等奖”、“高廷耀环保科技发展基金会青年博士杰出人才”等奖励。

发表论文

  • Wang, Y.J., Wang, R.*, Tanak, K., Ciais, P., Peñuelas, J., Balkanski, Y., Sardans, J., Hauglustaine, D., Liu, W., Xing, X.F., Li, J.R., Xu, S.Q., Xiong, Y.K.., Yang, Y.P., Cao, J., Chen, J., Wang, L., Tang, X., Zhang, R. Accelerating the energy transition towards photovoltaic and wind in China. Nature2023, 619, 761–767. (IF 69.504).

  • Wang, Y.J., Wang, R.*, Tanaka, K., Ciais, P., Penuelas, J., Balkanski, Y., Sardans, J., Hauglustaine, D., Cao, J.J., Chen, J.M., Wang, L., Tang, X., Zhang, R.H. Global spatiotemporal optimization of photovoltaic and wind power to achieve the Paris Agreement targets. Nature Communications 2025. https://doi.org/10.1038/s41467-025-57292-w (IF 17.694).

  • Xu, S., Wang, R.*, Gasser, T., Ciais, P., Peñuelas, J., Balkanski, Y., Boucher, O., Janssens, I. A., Sardans, J., Clark, J. H., Cao, J., Xing, X., Chen, J., Wang, L., Tang, X., Zhang, R. Delayed use of bioenergy crops might threaten climate mitigation and food security. Nature2022, 609, 299–306. (IF 69.504).

  • Wang, R.*, Saunders, H., Moreno-Cruz, J., Caldeira, K. Induced energy-saving efficiency improvements amplify effectiveness of climate change mitigation. Joule 2019, 3, 2103-2119 (IF 46.048).

  • Wang, R.*, Balkanski, Y., Boucher, O., Ciais, P., Penuelas, J., Tao, S. Significant contribution of combustion-related emissions to the atmospheric phosphorus budget. Nature Geoscience. 2015, 8(1), 48-54 (IF 16.305).

  • Xing, X.F., Wang, R.*, Bauer, B., Ciais, P., Cao, J.J., Chen, J.M., Tang, X., Wang, L., Yang, X., Boucher, O., Goll, D., Peñuelas, J., Janssens, I.A., Balkanski, Y., Clark, J., Ma, J.M., Pan, B., Zhang, S.C., Ye, X.N., Wang, Y.T., Li, Q., Luo, G., Shen, G.F., Li, W., Yang, Y.C., Xu., S.Q. Spatially explicit analysis identifies significant potential for bioenergy with carbon capture and storage in China. Nature Communications. 2021, 12, 3159, doi://doi.org/10.1038/s41467-021-23282-x.(IF 17.694).

  • Xing, X.F., Xiong, Y.K., Yang, R.P., Wang, R.*, Wang, W.B., Kan, H.D., Lu, T., Li, D.S., Cao, J.J., Peñuelas, J.,  Ciais, P., Nico, B., Olivier, B., Balkanski,Y., Hauglustaine, Brasseur, G., Morawska, L., Janssens, I. A., Wang, X.R., Sardans, D., Wang, Y.J., Deng, Y.F., Wang, L., Chen, J.M., Tang, X., Zhang, R.H.Predicting the effect of confinement on the COVID-19 spread using machine learning enriched with satellite air pollution observations.Proc. Natl. Acad. Sci. USA. 2021, 118, e2109098118,doi.org/10.1073/pnas.2109098118. (IF 12.779).

  • Wang, R., Tao, S.*, Balkanski, Y., Ciais, P., Boucher, O., Liu, J.F.,Piao, S.L., Shen, H.Z., Vuolo, M.R., Valari,M., Chen, H., Chen, Y.C., Cozic, A., Huang, Y., Li, B.G., Li, W., Shen, G.F., Wang, B., Zhang, Y.Y. Exposure to ambient black carbon derived from a unique inventory and high-resolution model. Proc. Natl. Acad. Sci. USA. 2014, 111(7), 2459-2463 (IF 9.522).

  • Xiong Y.K., Wang, R.*, Gasser T., Ciais P., Peñuelas J., Sardans J., Clark J.H., Cao J.J., Xing X., Xu S.Q., Deng Y. F., Wang L., Chen J., Tang X., Zhang R.H. Potential impacts of pandemics on global warming, agricultural production, and biodiversity loss. One Earth 2024, 7 , 1–17 (IF 16.232).

  • Wang, R.*, Yang, Y.C., Xing, X.F., Wang, L., Chen, J.M., Tang, X., Cao, J.J., Morawska, L., Balkanski,Y., Hauglustaine, D., Ciais, P., Ma, J.M. Stringent Emission Controls Are Needed to Reach Clean Air Targets for Cities in China under a Warming Climate. Environ. Sci. & Technol. 2022,56(16), 11199-11211 (IF 11.357).

  • Wang, R.*, Penuelas, J. Monitoring compliance in pandemic management with air pollution data: a lesson from COVID-19. Environ. Sci. & Technol.2021, 55, 13571-13574. (IF 11.357)

  • Wang, R.#*, Xiong, Y.K.#, Xing, X.F. #, Yang, R.P. #, Li, J.R., Wang,Y.J., Cao, J.J.,  Balkanski,Y., Peñuelas, J., Ciais, P., Hauglustaine, D., Sardans, D., Chen, J.M., Ma, J.M., Tang, X., Kan, H.D., Zhang, Y., Oda, T., Morawska, L., Zhang, R.H., Tao, S.Daily CO2 Emission Reduction Indicates the Control of Activities to Contain COVID-19 in China.The Innovation. 2020,1(3),100062. (IF 16).

  • Wang, R*. Global Emission Inventory and Atmospheric Transport of Black Carbon: Evaluation of the Associated Exposure. Springer Theses 2015. 978-3-662-46479-3, Springer Berlin Heidelberg.

  • Wang, R.*, Andrews, E., Balkanski, Y., Boucher, O., Myhre, G., Samset, B.H., Schulz, M., Schuster, G.L., Valari, M., Tao, S. Spatial Representativeness error in the ground-level observation networks for black carbon radiation absorption. Geophys. Res. Lett.2018, 45(4), 2106-2114 (IF 4.497).

  • Wang, R.*, Goll, D., Balkanski, Y., Hauglustaine, D., Boucher, O., Ciais, P., Janssen, I., Penuelas, J., Guenet, B., Sardans, J., Bopp, L., Vuichard, N., Zhou, F., Li, B.G., Piao, S.L., Peng, S.S., Huang, Y., Tao, S. Global forest carbon uptake due to nitrogen and phosphorus deposition from 1850 to 2100. Global Change Biology2017, 23(11), 4854-4872 (IF 8.555).

  • Wang, R.*, Goll, D., Balkanski, Y., Hauglustaine, D., Boucher, O., Ciais, P., Janssen, I., Penuelas, J., Guenet, B., Sardans, J., Bopp, L., Vuichard, N., Zhou, F., Li, B.G., Piao, S.L., Peng, S.S., Huang, Y., Tao, S. Global forest carbon uptake due to nitrogen and phosphorus deposition from 1850 to 2100. Global Change Biology. 2017, 23(11), 4854-4872 (IF 8.555).

  • Wang, R.*, Moreno-Cruz, J., Caldeira, K. Will the use of a carbon tax for revenue generation produce an incentive to continue carbon emissions? Environ. Res. Lett.2017, 12(6), 064001 (IF 6.096).

  • Wang, R., Balkanski, Y., Boucher, O., Ciais, P., Schuster, G. L., Chevallier, F., Samset, B. H., Liu, J. F., Piao, S.L., Valari, M., Tao, S*. Estimation of global black carbon direct radiative forcing and its uncertainty constrained by observations. J. Geophys. Res. Atmos. 2016, 121(10), 5948-5971 (IF 3.821).

  • Wang, R.*, Balkanski, Y., Boucher, O., Bopp, L., Chappell, A., Ciais, P., Hauglustaine, D., Penuelas, J., Tao, S. Sources, transport and deposition of iron in the global atmosphere. Atmos. Chem. Phys.2015, 15(11), 6247-6270 (IF 5.414).

  • Wang, R.*, Balkanski, Y., Bopp, L., Aumont, O., Boucher, O., Ciais, P., Gehlen, M., Penuelas, J., Ethe, C., Hauglustaine, D., Li, B.G., Liu, J.F., Zhou, F., Tao, S. Influence of anthropogenic aerosol deposition on the relationship between oceanic productivity and warming. Geophys. Res. Lett.2015, 42(24), 10745-10754 (IF 4.497).

  • Wang, R., Tao, S.*, Shen, H.Z., Huang, Y., Chen, H., Balkanski, Y., Boucher, O., Ciais,   P., Shen, G.F., Li, W., Zhang, Y. Y. , Chen, Y.C., Lin, N. ,Su, S., Li, B.G., Liu, J. F.,Liu, W.X.  Trend in global black carbon emissions from 1960 to 2007. Environ. Sci. & Technol.2014, 48(12), 6780-6787 (IF 11.357).

  • Wang, R., Tao, S.*, Ciais, P., Shen, H.Z., Huang, Y., Chen, H., Shen, G.F., Wang, B., Li, W., Zhang, Y.Y., Lu, Y., Zhu, D., Chen, Y.C., Liu, X. P., Wang, W. T., Wang, X. L., Liu, W. X., Li, B. G., Piao, S. L. High-resolution mapping of combustion processes and implications for CO2 emissions. Atmos. Chem. Phys.2013, 13(10), 5189-5203 (IF 5.414).

  • Wang, R., Tao, S.*, Wang, W.T., Liu, J.F., Shen, H.Z., Shen, G.F., Wang, B., Liu, X.P., Li, W., Huang, Y., Zhang, Y.Y., Lu, Y., Chen, H., Chen, Y.C., Wang, C., Zhu, D., Wang, X.L., Li, B.G., Liu, W.X., Ma, J.M. Black carbon emissions in China from 1949 to 2050. Environ. Sci. & Technol.2012, 46(14), 7595-7603 (IF 11.357).

  • Wang, R., Tao, S.*, Shen, H.Z., Wang, X.L., Li, B. G., Shen, G.F., Wang, B., Li, W., Liu, X.P., Huang, Y., Zhang, Y.Y., Lu, Y., Ouyang, H.L. Global emission of black carbon from motor vehicles from 1960 to 2006. Environ. Sci. & Technol. 2012, 46(2), 1278-1284 (IF 11.357).

  • Wang, R., Cao, H.Y.*, Li, W., Wang, W., Wang, W.T., Zhang, L.W., Liu, J.M., Ouyang, H.L., Tao, S. Spatial and seasonal variations of polycyclic aromatic hydrocarbons in Haihe Plain, China. Environ. Pollut.2011, 159(5), 1413-1418. (IF 6.792).

  • Wang, R., Tao, S.*, Wang, B., Yang, Y., Lang, C., Zhang, Y.X., Hu, J., Ma, J.M., Hung, H. Sources and pathways of polycyclic aromatic hydrocarbons transported to Alert, the Canadian High Arctic. Environ. Sci. & Technol.2010, 44(3), 1017-1022 (IF 11.357).

  • Wang,S.H. , Zhang ,Y.G. * ,Ju, W.M., Chen,J.M. , Ciais,P., Cescatti ,A., Sardans ,J. , Janssens,I.A. , Wu,M.S. , Berry,J.A., Campbell,E., Martínez,F.M., Alkama,R., Sitch,S., Friedlingstein,P. , Smith,W.K. , Yuan,W.P. ,He,W.,Lombardozzi,D.,Kautz,M.,Zhu,D.,Lienert,S.,Kato,E.,Poulter,B., Sanders,T.G.M., Krüger, I. ,Wang,R., Zeng,N., Tian,H.Q., Vuichard,N., Jain,A.K. ,Wiltshire ,A.,Haverd ,V., Goll ,D.S.,Peñuelas,J. Recent global decline of CO2 fertilization effects on vegetation photosynthesis. Science. 2020, 370 (6522), 1295-1300.

  • Ciais,P.*,Yao,Y.T.,Gasser,T.,Baccini,A., Wang,Y.L., Lauerwald, R.,Peng,S.S.,Bastos,A., Li,W., Raymond,P.A., Canadell,J.G., Peters,G.P.,Andres,R.J. ,Chang,J.F., Yue,C., Dolman, A.J.,Haverd,V., Hartmann,J., Laruelle,G., Konings,A.G., King, A.W., Liu,Y., Luyssaert,S.,Maignan,F.,Patra,P.K.,Peregon,A.,Regnier,P., Pongratz,J., Poulter,B., Shvidenko,A., Valentini,R.,Wang,R.,Broquet,G.,Yin,Y.,Zscheischler,J.,Guenet,B.,Goll,D.S.,Ballantyne,A.P.,Yang,H.,Qiu,C.J.,Zhu,D.Empirical estimates of regional carbon budgets imply reduced global soil heterotrophic respiration. National Science Review. 2020 ,https://doi.org/10.1093/nsr/nwaa145 (IF 16.693).

  • Boucher,O.*, Balkanski,Y., Hodnebrog,O., Myhre,C.L., Myhre,G., Quaas,J., Samset ,B.H., Schutgens ,N., Stier,P., Wang, R. Jury is still out on the radiative forcing by black carbon. Proc. Natl. Acad. Sci. USA. 2016, 113(35), E5092-E5093.

  • Li, B.G. *, Gasser, T., Ciais, P., Piao, S.L., Tao, S., Balkanski, Y., Hauglustaine, D., Boisier, J.P., Chen, Z., Huang, M.T., Li, L.Z., Li, Y., Liu, H.Y., Liu, J.F., Peng, S.S., Shen, Z.H., Sun, Z.Z., Wang, R., Wang, T., Yin, G.D., Yin, Y., Zeng, H., Zeng, Z.Z., Zhou, F. The contribution of China’s emissions to global climate forcing. Nature. 2016, 531, 357-361.

  • Han,P.F.*,Lin,X.H.,Zeng,N.,Oda,T.,Zhang,W.**,Liu,D.***,Cai,Q.X.,Crippa,M.,Guan,D.B.,Ma,X.L.,Janssens-Maenhout,G.,Meng,W.J.,Shan,Y.L.,Tao,s.,Wang,G.C.,Wang,H.K.,Wang,R.,Wu,L.,Zhang,Q.,Zhao,F.,Zheng,B. Province-level fossil fuel CO2 emission estimates for China based on seven inventories. Journal of Cleaner Production.2020,277, 123377.

  • Han,P.F.*,Zeng,N.*,Oda,T.,Lin,X.H.,Crippa,M.,Guan,D.B.,JanssensMaenhout,G.,Ma,X.L.,Liu,Z.,Shan,Y.L., Tao,S.,Wang,H.K.,Wang,R.,Wu,L.,Yun,X.,Zhang,Q.,Zhao,F.,Zheng,B.Evaluating China's fossil-fuel CO2 emissions from a comprehensive dataset of nine inventories.Atmos. Chem. Phys.2020,20(19),11371-11385.

  • javascript:;Li,W.,Li,B.G.*,Tao,S.,Ciais,P.,Piao,S.L.,Shen,G.F.,Peng,S.S.,Wang,R.,Gasser,T.,Balkanski,Y.,Li,L.,Fu,B.,Yin,T.Y.,Li,X.Y.,An,J.,Han,Y.M. Missed atmospheric organic phosphorus emitted by terrestrial plants,part 2: Experiment of volatile phosphorus. Environ. Pollut.2020,258, 113728.

  • Resplandy, L.*, Keeling, R.F., Eddebbar, Y., Brooks, M., Wang, R.,Bopp, L., Long, M. C., Dunne,J.P., Koeve,W., Oschlies, A.Quantification of ocean heat uptake from changes in atmospheric O2 and CO2 composition.Scientific reports.2019,9,20244.

  • Wang,Y.L.*, Broquet,G., Ciais,P., Chevallier,F., Vogel,F., Wu,L., Yin,Y., Wang,R., Tao,S. Potential of European 14CO2 observation network to estimate the fossil fuel CO2 emissions via atmospheric inversions. Atmos. Chem. Phys. 2018, 18 (6), 4229-4250.  

  • Huser,B.J.*,Futter,M.N.,Wang,R.,Fölster,J. Persistent andwidespread long-term phosphorus declines in Boreal lakes in Sweden. Sci. Total Environ., 2018, 613, 240-249.

  • Lun,F.,Liu,J.G.*, Ciais,P.,Nesme,T.,Chang,J.F.,Wang,R.,Goll,D.,Sardans,J., Penuelas,J., Obersteiner,M. Global and regional phosphorus budgets in agricultural systems and their implications for phosphorus-use efficiency. Earth Sys. Sci. Data. 2018, 10(1), 1-18.  

  • Richon, C.*, Dutay, J.C., Dulac, F., Wang, R., Balkanski, Y., Nabat, P., Aumont, O., Desboeufs, K., Laurent, B., Guieu, C.,Raimbault, P., Beuvier, J. Modeling the impacts of atmospheric deposition of nitrogen and desert dust-derived phosphorus on nutrients and biological budgets of the Mediterranean Sea. Prog. Oceanogr. 2018,163,21-39.  

  • Richon,C.*,Dutay,J.C.,Dulac,F.,Wang,R.,Balkanski,Y. Modeling the biogeochemical impact of atmospheric phosphate deposition from desert dust and combustion sources to the Mediterranean Sea. Biogeosciences.2018,15 (8), 2499-2524.

  • Kumar,D.B., Verma,S.*, Boucher, O., Wang,R. Constrained simulation of aerosol species and sources during pre-monsoon season over the Indian subcontinent. Atmospheric Research.2018,214, 91-108.

  • Wang, Y.L.*, Ciais, P., Goll, D., Huang, Y.Y., Luo, Y.Q., Wang, Y.P., Bloom, A.A., Broquet, G.,Hartmann, J.,Peng,S.S.,Penuelas,J.,Piao,S.L.,Sardans,J.,Stocker,B.D.,Wang,R.,Zaehle,S.,Zechmeister-Boltenstern,S.GOLUM-CNP v1.0: a data-driven modeling of carbon, nitrogen and phosphorus cycles in major terrestrial biomes. Geoscientific Model Development. 2018,11(9), 3903-3928.

  •  Balkanski,Y.*, Menut,L., Garnier,E., Wang, R., Evangeliou, N., Jourdain, S., Eschstruth, C., Vrac, M., Yiou,P. Mortality induced by PM2.5 exposure following the 1783 Laki eruption using reconstructed meteorological fields. Scientific reports. 2018, 8, 15896. 

  • Li, X.Y., Balkanski, Y., Wu, Z.F., Gasser, T., Ciais, P., Zhou, F., Li, L., Tao, S., Peng, S.S., Piao, S.L.,Wang, R., Wang,T., Li, B.G. * Analysis of slight precipitation in China during the past decades and its relationship with advanced very high radiometric resolution normalized difference vegetation index. International Journal of Climatology. 2018, 38(15),5563-5575.

  • Lin,X.*,Ciais,P.,Bousquet,P.,Ramonet,M.,Yin,Y.,Balkanski,Y.,Cozic,A.,Delmotte,M.,Evangeliou,N.,Indira,N.K., Locatelli,R., Peng,S.S.,Piao,S.L., Saunois,M., Swathi,P.S., Wang,R., Yver-Kwok,C., Tiwari,Y.K., Zhou,L.X. Simulating CH4 and CO2 over South and East Asia using the zoomed chemistry transport model LMDz-INCA. Atmos. Chem. Phys. 2018, 18(13), 9475-9497.

  • Zhan,X.Y., Bo,Y.,Zhou,F.*, Liu,X.J., Paerl,H.W., Shen,J.L., Wang,R., Li,F.R., Tao,S., Dong, Y.J., Tang, X.Y. Evidence for the importance of atmospheric nitrogen deposition to eutrophic Lake Dianchi, China. Environ. Sci. & Technol. 2017, 51(12), 6699-6708.

  • Wang,Y.L.*, Broquet,G., Ciais,P., Chevallier,F., Vogel,F., Kadygrov,N., Wu,L., Yin,Y., Wang,R., Tao,S. Estimation of observation errors for large-scale atmospheric inversion of CO2 emissions from fossil fuel combustion. Tellus B: Chem. Phys. Meteorol.2017, 69, 1325723.

  • Kangah,Y.*,Ricaud,P.,Attié,J.L.,Saitoh,N.,Hauglustaine,D.A.,Wang,R.,ElAmraoui,L.,Zbinden,R.,Delon,C.Summertime upper tropospheric nitrous oxide over the Mediterranean as a footprint of Asian emissions. J. Geophys. Res. Atmos.2017, 122 (8), 4746-4759.

  • Ringeval, B.*, Augusto, L., Monod, H., Van Apeldoorn, D., Bouwman, L., Yang, X.J., Achat, D.L., Chini, L.P., Van Oost, K. , Guenet, B., Wang, R., Decharme, B., Nesme, T., Pellerin, S. Phosphorus in agricultural soils: drivers of its distribution at the global scale. Global Change Biology.2017, 23 (8), 3418-3432.

  • Chen, Y., Shen, G., Huang, Y., Zhang, Y., Han, Y., Wang, R., Shen, H., Su, S., Lin, N., Zhu, D., Pei, L., Zheng, X., Wu, J., Wang, X., Liu, W., Wong, M., Tao, S*. Household air pollution and personal exposure risk of polycyclic aromatic hydrocarbons among rural residents in Shanxi, China. Indoor air.2016,26(2),246–258.

  • Zhou, F.*, Shang, Z.Y., Zeng, Z.Z., Piao, S.L., Ciais, P., Raymond, P.A., Wang, X.H., Wang, R., Chen, M.P., Yang, C.L., Tao, S., Zhao, Y., Meng, Q., Gao, S.S., Mao, Q. New model for capturing the variations of fertilizer-induced emission factors of N2O. Global Biogeochemical Cycles. 2015, 29(6), 885-897.

  • Huang, Y., Shen, H.Z., Chen, Y.L., Zhong, Q.R., Chen, H., Wang, R., Shen, G.F., Liu, J.F., Li, B.G., Tao, S*. Global organic carbon emissions from primary sources from 1960 to 2009. Atmos. Environ. 2015, 122, 505-512.

  • Evangeliou, N.*, Balkanski, Y., Cozic, A., Hao, W.M., Mouillot, F., Thonicke, K., Paugam, R., Zibtsev, S., Mousseau, T.A., Wang, R., Poulter, B., Petkov, A., Yue, C., Cadule, P., Koffi, B., Kaiser, J. W., Møller, A.P. Fire evolution in the radioactive forests of Ukraine and Belarus: future risks for the population and the environment. Ecological Monographs.2015. 85 (1),49-72.

  • Chen, Y.L., Wang, R., Shen, H.Z., Li, W., Chen, H., Huang, Y., Zhang, Y.Y., Chen, Y.C., Su, S., Lin, N., Liu, J.F., Li, B.G., Wang, X.L., Liu, W.X., Coveney, R.M., Tao, S*. Global mercury emissions from combustion in light of international fuel trading. Environ. Sci. & Technol. 2014, 48(3), 1727-1735.

  • Zhou, F.*, Shang, Z.Y., Ciais, P., Tao, S., Piao, S.L., Raymond, P., He, C.F., Li, B.G., Wang, R., Wang, X.H., Peng, S.S., Zeng, Z.Z., Chen, H., Ying, N., Hou, X.K., Xu, P.  A new high-resolution N2O emission inventory for China in 2008. Environ. Sci. & Technol. 2014, 48(15), 8538-8547.

  • Huang, Y., Shen, H.Z., Chen, H., Wang, R., Zhang, Y.Y., Su, S., Chen, Y.C., Lin, N., Zhuo, S.J., Zhong, Q.R.,Wang,X.L.,Liu,J.F., Li, B.G., Liu, W.X., Tao, S*. Quantification of global primary emissions of PM2.5, PM10, and TSP from combustion and industrial process sources. Environ. Sci. & Technol. 2014, 48(23), 13834-13843.

  • Ciais, P.*, Dolman, A. J., Bombelli, A., Duren, R., Peregon, A., Rayner, P. J., Miller, C.,Gobron, N., Kinderman, G.,Marland, G.,Gruber, N.,Chevallier, F., Andres, R. J., Balsamo, G.,Bopp, L., Breon, F.M., Broquet, G.,Dargaville, R., Battin, T. J.,Borges, A .,Bovensmann, H., Buchwitz, M.,Butler, J., Canadell, J. G., Cook, R. B.,DeFries, R., Engelen, R., Gurney, K. R.,Heinze, C.,Heimann, M.,Held, A.,Henry, M., Law, B., Luyssaert, S.,Miller, J.,Moriyama, T.,Moulin, C., Myneni, R. B.,Nussli, C.,Obersteiner, M.,Ojima, D.,Pan, Y.,Paris, J.D., Piao, S. L.,Poulter, B.,Plummer, S.,Quegan, S.,Raymond, P.,Reichstein, M.,Rivier, L., Sabine, C.,Schimel, D.,Tarasova, O., Valentini, R.,Wang, R., van der Werf, G.,Wickland, D.,Williams, M., Zehner, C. Current systematic carbon-cycle observations and the need for implementing a policy-relevant carbon observing system. Biogeosciences. 2014, 11(13),3547-3602.

  • Li, W., Wang, C., Wang, H.Q.J., Chen, J.W., Yuan, C.Y., Li, T.C., Wang, W.T., Shen, H.Z., Huang, Y., Wang, R., Wang, B., Zhang, Y.Y., Chen, H., Chen, Y.C., Tang, J.H., Wang, X.L., Liu, J.F., Coveney,R. M., Tao, S.* Distribution of atmospheric particulate matter (PM) in rural field, rural village and urban areas of northern China. Environ. Pollut. 2014, 185, 134-140.

  • Li, W., Wang, C., Wang, H.Q.J., Chen, J.W., Shen, H.Z., Shen, G.F., Huang, Y., Wang, R., Wang, B., Zhang, Y.Y., Chen, H., Chen, Y.C., Su, S., Lin, N., Tang, J.H., Li, Q.B., Wang, X.L., Liu, J.F., Tao, S.* Atmospheric polycyclic aromatic hydrocarbons in rural and urban areas of northern China. Environ. Pollut. 2014, 192, 83-90.

  • Zhu, D., Tao, S. *, Wang, R., Shen, H.Z., Huang, Y., Shen, G.F., Wang, B., Li, W., Zhang, Y.Y., Chen, H., Chen, Y.C., Liu, J.F., Li, B.G., Wang, X.L., Liu, W.X. Temporal and spatial trends of residential energy consumption and air pollutant emissions in China. App. Energ. 2013, 106, 17-24.

  • Shen, H.Z., Huang, Y., Wang, R., Zhu, D., Li, W., Shen, G.F., Wang, B., Zhang, Y.Y., Chen, Y. C.,Lu, Y., Chen, H., Li, T.C., Sun, K., Li, B.G., Liu, W.X., Liu, J.F., Tao, S. *  Global atmospheric emissions of polycyclic aromatic hydrocarbons from 1960 to 2008 and future predictions. Environ. Sci. & Technol. 2013, 47(12), 6415-6424.  

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  • Shen, G.F., Tao, S.*, Wei, S.Y., Zhang, Y.Y., Wang, R., Wang, B., Li, W., Shen, H.Z., Huang, Y., Chen, Y.C., Chen, H., Yang, Y.F., Wang, W., Wei, W., Wang, X.L., Liu, W.X., Wang, X.J., Simonich,S.L.M. Reductions in emissions of carbonaceous particulate matter and polycyclic aromatic hydrocarbons from combustion of biomass pellets in comparison with raw fuel burning. Environ. Sci. & Technol. 2012, 46(11), 6409-6416.

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  • Tao, S.*, Wang, W.T., Liu, W.X., Zuo, Q., Wang, X.L., Wang, R., Wang, B., Shen, G.F., Yang,Y.H.,He,J.S. Polycyclic aromatic hydrocarbons and organochlorine pesticides in surface soils from the Qinghai-Tibetan plateau. J. Environ. Monitoring. 2011, 13(1), 175-181.

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  • Shen,G.F.,Wang,W.,Yang,Y.F.,Ding,J.N.,Xue,M.,Min,Y.J.,Zhu,C.,Shen,H.Z.,Li,W.,Wang,B.,Wang,R.,Wang,X.L., Tao,S.*,Russell,A.G. Emissions of PAHs from indoor crop residue burning in a typical rural stove: Emission factors, size distributions and gas-particle partitioning. Environmental science & technology.2011, 45(4), 1206-1212.

  • Shen, G.F., Tao, S.*,Wang, W.,Yang, Y.F.,Ding, J.N.,Xue, M.,Min, Y.J., Zhu, C.,Shen, H.Z.,Li,W.,Wang, B.,Wang, R.,Wang, W.T.,Wang, X.L.,Russell, A.G.  Emission of Oxygenated Polycyclic Aromatic Hydrocarbons from Indoor Solid Fuel Combustion. Environ. Sci. & Technol. 2011,45 (8), 3459-3465.

  • Shen, G.F., Wang, W., Yang, Y.F., Zhu, C., Min, Y.J., Xue, M., Ding, J.N., Li, W., Wang, B., Shen, H.Z., Wang, R., Wang, X.L., Tao, S.* Emission factors and particulate matter size distribution of polycyclic aromatic hydrocarbons from residential coal combustions in rural Northern China. Atmos. Environ. 2010, 44(39), 5237-5243.

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  • Shen,G.F., Yang,Y.F.,Wang,W., Tao,S.*, Zhu,C., Min,Y.J., Xue,M., Ding,J.N., Wang, B., Wang, R., Shen,H.Z., Li,W., Wang,X.L.,Russell,A.G. Emission factors of particulate matter and elemental carbon for crop residues and coals burned in typical household stoves in China. Environmental science & technology .2010,44 (18), 7157-7162.