王誌立(Zhili Wang) 王誌立 研究員 wangzl@cma.gov.cn 010-58993372
研究興趣 大氣成分對全球和區域氣候變化的影響及其反饋 碳中和約束下大氣成分-氣候變化-可再生能源的交互作用 氣溶膠-雲-輻射相互作用及其對氣候的影響 教育背景 2001.09 - 2005.06👨🏼💼:南京信息工程大學大氣科學學院💁🏻♂️🦀,獲理學學士學位 2005.09 - 2008.06:南京信息工程大學大氣科學學院,獲理學碩士學位 2008.09 - 2011.07:中國科學院研究生院,獲理學博士學位 研究經歷 2011.7 - 2013.9:中國氣象科學研究院大氣成分研究所,助理研究員 2013.10 - 2019.9🈺:中國氣象科學研究院大氣成分研究所,副研究員 2019.10 - 2019.11📋:中國氣象科學研究院大氣成分與環境氣象研究所,副所長/副研究員 2019.12 - 2020.12:中國氣象科學研究院大氣成分與環境氣象研究所🍎,副所長/研究員 2021.1 - 2023.3:中國氣象科學研究院大氣成分與環境氣象研究所(碳中和監測與評估中心),副所長/研究員 2023.4 - 今🛻:中國氣象科學研究院大氣成分與環境氣象研究所(碳中和監測與評估中心)🏋️♂️🦹,所長/研究員 承擔課題 國家自然科學基金面上項目👦🏽💪🏿:非甲烷短壽命氣候強迫因子減排對未來亞洲極端氣候及人口暴露風險的影響研究,2023.01-2026.12,在研🐘,主持 中國氣象科學研究院科技發展基金:人類活動對太陽能幹旱事件的影響及未來預估研究,2024.03-2026.12📑,在研,主持 中國氣象科學研究院科技發展基金🗯:短壽命氣候汙染物減排對未來亞洲極端氣候和人口暴露風險的影響🚴🏽♀️,2022.01-2024.12,在研,主持 中國工程院戰略研究與咨詢項目課題🆓🙆:我國應對氣候變化👨👨👦、實現碳中和最優路徑↙️、方式、節奏和力度研究,2024.01-2026.12🤹🏿♂️,在研,參與 國家自然科學基金碳中和專項項目:面向我國碳中和最優路徑實現的自然-社會系統多尺度相互作用模式耦合💁🏿、數據監測支持和決策支撐研究的頂層設計(總課題),2023.01-2025.12,在研,參與 國家自然科學基金重大項目:區域/全球一體化數值化學天氣耦合預報系統的構建與應用,2021.01-2025.12,在研,參與 國家自然科學基金面上項目:人為氣溶膠強迫對東亞夏季對流層上層溫度及季風環流的影響機製研究,2019.01-2022.12,結題🧖🤾🏻,主持 國家自然科學基金應急管理項目💑:從傳統氣象學到地球系統科學:大氣科學面臨的機遇與挑戰🌛🧔🏽♀️,2019.01-2019.12🔀,結題🚔,參與 國家自然科學基金重大研究計劃重點項目:中國大氣汙染物對雲和輻射的影響及其氣候效應研究,2017.01-2020.12,結題,參與 國家自然科學基金面上項目:東亞季風系統對過去和未來人為氣溶膠排放變化響應的模擬研究,2016.01-2019.12,結題🥱👆🏻,主持 公益性行業科研專項:新一代雲-輻射-氣溶膠物理過程模塊的研製與應用,2014.01-2016.12,結題🐺,參加 國家自然科學基金青年基金項目👸🏿:雙參數層雲微物理方案在氣候模式中的應用及氣溶膠間接效應的初步研究👖,2013.01-2015.12,結題,主持 國家重點基礎發展研究計劃課題✩🫰:全球氣溶膠的氣候效應及對亞洲季風的影響,2011.01-2015.12,結題🍄,參與 國家重點基礎發展研究計劃課題:氣溶膠氣候效應及未來的情景預估,2006.09-2011.08,結題📸🧗♀️,參與 學術兼職 2018.6 - 2021.12👧:《中國氣候與生態環境演變:2021》科學評估報告編委 2019.1 - 今:世界氣象組織國際沙塵暴預警咨詢系統亞洲區域科學咨詢委員會成員 2020.7 - 今🤳🏻:《氣象》常務編委 2021.1 - 2021.9:《中國碳中和與清潔空氣協同路徑年度報告》工作組成員 2021.10 - 今:國際氣象學與大氣科學協會中國委員會青年工作組成員 2021.12 - 今:中國能源研究會能源系統工程專業委員會委員 2023.11 - 今:《熱帶氣象學報》編委 2024.4 - 今:《Discover Atmosphere》編委 獲獎情況 2012年:獲第 29 屆中國氣象學會年會優秀論文獎(排名第一) 2014年🚼:獲評第八屆全國優秀青年氣象科技工作者 2015年🌦:入選第二批氣象部門青年英才 2019年:獲中國氣象學會“大氣科學基礎研究成果獎”一等獎(排名第二) 2020年:入選科技部創新人才推進計劃重點領域創新團隊“霧-霾監測預報創新團隊”(排名第十一) 2022年:入選中國氣象科學研究院高層次人才科技領軍人才培養計劃 2023年:研究成果入選2022年度中國生態環境十大科技進展(排名第五) 發表論文 Wang, Z.*, Y. Lei, H. Che*, B. Wu, and X. Zhang (2024), Aerosol forcing regulating the recent decadal change of summer water vapor budget over the Tibetan Plateau. Nat. Commun., 15, 2233. Liu, L., Z. Wang*, H. Che, D. Wang, K. Gui, B. Liu, K. Ma, and X. Zhang (2024), Climate factors influencing springtime dust activities over Northern East Asia in 2021 and 2023. Atmos. Res., 303(15), 107342. Li, Y., Z. Wang*, Y. Lei, X. Yu, L. Liu, H. Che, and X. Zhang (2024), Sorely reducing emissions of non-methane short-lived climate forcers will worsen compound flood-heatwave extremes in the Northern Hemisphere. Adv. Clim. Chang. Res., https://doi.org/10.1016/j.accre.2024.05.003. Lei, Y., Z. Wang*, D. Wang, X. Zhang, H. Che, X. Yue, C. Tian, J. Zhong, L. Guo, L. Li, H. Zhou, L. Liu, and Y. Xu (2023), Co-benefits of carbon neutrality in enhancing and stabilizing solar and wind energy. Nat. Clim. Chang., 13, 693-700. Li, Y., Z. Wang*, Y. Lei, H. Che, X. Zhang (2023), Impacts of reductions in non-methane short-lived climate forcers on future climate extremes and the resulting population exposure risks in eastern and southern Asia. Atmos. Chem. Phys., 23, 2499-2523. Lei, Y., Z. Wang*, X. Zhang, H. Che, X. Yue, C. Tian, J. Zhong, L. Guo, H. Zhou (2022), Avoided population exposure to heat extremes under two scenarios of global carbon neutrality by 2050 and 2060. Environ. Res. Lett., 17, 094041. Wang, Z.*, C. Wang, S. Yang*, Y. Lei, H. Che, X. Zhang, and Q. Wang (2022), Evaluation of surface solar radiation trends over China since the 1960s in the CMIP6 models and potential impact of aerosol emissions. Atmos. Res., 268, 105991. Wang, C., Z. Wang*, Y. Lei, H. Zhang, H. Che, and X. Zhang (2022), Differences in East Asian summer monsoon responses to Asian aerosol forcing under different emission inventories. Adv. Clim. Chang. Res., 13(3), 309-322. Wang, Z.*, J. Feng*, C. Diao, Y. Li, L. Lin, and Y. Xu (2021), Reduction in European anthropogenic aerosols and the weather conditions conducive to PM2.5 pollution in North China: a potential global teleconnection pathway. Environ. Res. Lett., 16, 10405. Wang, Z., L. Lin*, Y. Xu, H. Che, X. Zhang, H. Zhang, C. Wang, K. Gui, W. Dong and B. Xie (2021), Incorrect Asian aerosols affecting the attribution and projection of regional climate change in CMIP6 models. npj Clim. Atmos. Sci., 4, 2. Mu, J., and Z. Wang* (2021), Responses of the East Asian summer monsoon to aerosol forcing in CMIP5 models: The role of upper-tropospheric temperature change. Int. J. Climatol., 41(3), 1555-1570. Yu, X., Z. Wang*, H. Zhang, J. He, Y. Li (2020), Contrasting impacts of two types of El Niño events on winter haze days in China’s Jing-Jin-Ji region. Atmos. Chem. Phys., 20, 10279–10293. Wang, Z.*, J. Mu, M. Yang, and X. Yu (2020), Reexamining the mechanisms of East Asian summer monsoon changes in response to non-East Asian anthropogenic aerosol forcing. J. Clim., 33(8), 2929-2944. Wang, Z., L. Lin*, M. Yang, and Z. Guo (2019), The role of anthropogenic aerosol forcing in interdecadal variations of summertime upper-tropospheric temperature over East Asia. Earth’s Future, 7(2), 136-150. Yu, X., Z. Wang*, H. Zhang, and S. Zhao (2019), Impacts of different types and intensities of El Niño events on winter aerosols over China. Sci. Total Environ., 655, 766-780. Lin, L., Z. Wang*, Y. Xu, Q. Fu, and W. Dong (2018), Larger sensitivities of precipitation extremes in response to aerosol than greenhouse gas forcing in CMIP5 models. J. Geophys. Res. Atmos., 123(15), 8062-8073. Lin, L., Z. Wang*, Y. Xu, X. Zhang, H. Zhang, and W. Dong (2018), Additional intensification of seasonal hot and flooded extreme over China in a 2°C warmer world compared to 1.5ºC. Earth’s Future, 6(7), 968-978. Wang, Z., L. Lin*, M. Yang, Y. Xu, and J. Li (2017), Disentangling fast and slow responses of the East Asian summer monsoon to reflecting and absorbing aerosol forcings. Atmos. Chem. Phys., 17, 11075-11088. Wang, Z.*, Q. Wang, and H. Zhang (2017), Equilibrium climate response of the East Asian summer monsoon to forcing of anthropogenic aerosol species. J. Meteor. Res., 31(6), 1018-1033. Wang, Z.*, L. Lin*, X. Zhang, H. Zhang, L. Liu, and Y. Xu (2017), Scenario dependence of future changes in climate extremes under 1.5 °C and 2 °C global warming. Sci. Rep., 7, 46432. Wang, Q., Z. Wang*, and H. Zhang (2017), Impact of anthropogenic aerosols from global, East Asian, and non-East Asian sources on East Asian summer monsoon system. Atmos. Res., 183, 224-236. Wang, Z.*, L. Lin, M. Yang, and Y. Xu (2016), The effect of future reduction in aerosol emissions on climate extremes in China. Clim. Dyn., 47(9-10), 2885-2899. Wang, Z.*, H. Zhang*, and X. Zhang (2016), Projected response of East Asian summer monsoon system to future reductions in emissions of anthropogenic aerosols and their precursors. Clim. Dyn., 47(5-6), 1455-1468. Lin, L., Z. Wang*, Y. Xu, and Q. Fu (2016), Sensitivity of precipitation extremes to radiative forcing of greenhouse gases and aerosols. Geophys. Res. Lett., 43(18), 9860-9868. Wang, Z., H. Zhang, and X. Zhang* (2015), Simultaneous reductions in emissions of black carbon and co-emitted species will weaken the aerosol net cooling effect. Atmos. Chem. Phys., 15(7), 3671-3685. Zhang, H., Z. Wang*, F. Zhang, and X. Jing (2015), Impact of four-stream radiative transfer algorithm on aerosol direct radiative effect and forcing. Int. J. Climatol., 35(14), 4318-4328. Wang, Z., H. Zhang*, and P. Lu (2014), Improvement of cloud microphysics in the aerosol-climate model BCC_AGCM2.0.1_CUACE/Aero, evaluation against observations, and updated aerosol indirect effect. J. Geophys. Res. Atmos., 119(13), 8400-8417. Wang, Z., H. Zhang*, J. Li, X. Jing, and P. Lu (2013), Radiative forcing and climate response due to the presence of black carbon in cloud droplets. J. Geophys. Res. Atmos., 118(9), 3662-3675. Wang, Z., H. Zhang*, X. Jing, and X. Wei (2013), Effect of non-spherical dust aerosol on its direct radiative forcing. Atmos. Res., 120-121, 112-126. Wang, Z., H. Zhang*, and X. Shen (2011), Radiative forcing and climate response due to black carbon in snow and ice. Adv. Atmos. Sci., 28(6), 1336-1344. Wang, Z., H. Zhang*, X. Shen, S. Gong, and X. Zhang (2010), Modeling study of aerosol indirect effects on global climate with an AGCM. Adv. Atmos. Sci., 27(5), 1064-1077. 吳進,李琛,王誌立*,馬誌強,李梓銘,朱曉婉,韓婷婷🖐,唐宜西,馬小會(2022),兩類汙染型下中低空風切變對PM2.5濃度影響. 中國環境科學,42(11)🐉,5016-5022. 王誌立,郭品文,張華*(2009)🧑🏽🦰,黑碳氣溶膠直接輻射強迫及其對中國降水影響的模擬研究. 氣候與環境研究,14(2),161−171. 王誌立👩❤️👩🧘🏽♂️,張華*💐🦺,郭品文(2009),南亞地區黑碳氣溶膠對亞洲夏季風的影響. 高原氣象👐,28(2),419−424. 出版書籍 1😁,張華👨🏻🎤、王誌立、趙樹雲等🧗🏼♂️,《大氣氣溶膠及其氣候效應》,氣象出版社👨🏽🦲,2017年11月。 #以上信息由本人提供📌,更新時間🚠👨🏽🏭:2024/10/18 |