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##  13 results 

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### 2021

H. Liao Y. Qiu L. Shen S. Zhai K.H. Bates M.P. Sulprizio S. Song X. Lu Q. Zhang B. Zheng K. Li D.J. Jacob. 2021. “[Ozone Pollution in the North China Plain Spreading into the Late-Winter Haze Season](/publications/ozone-pollution-north-china-plain-spreading-late-winter-haze-season)”. PNAS, 118, Pp. e2015797118



 

 

H. Liao Y. Qiu L. Shen S. Zhai K.H. Bates M.P. Sulprizio S. Song X. Lu Q. Zhang B. Zheng K. Li D.J. Jacob. 2021. “[Ozone Pollution in the North China Plain Spreading into the Late-Winter Haze Season](/publications/ozone-pollution-north-china-plain-spreading-late-winter-haze-season)”. PNAS, 118, Pp. e2015797118



 

 

 

- [ descriptionPublisher's Version](https://www.pnas.org/content/118/10/e2015797118)
 
- [ descriptionPublisher's Version](https://www.pnas.org/content/118/10/e2015797118)
 
 

D.J. Jacob X. Wang Z. Liu T. Wen V. Shah K. Li J. Moch K.H. Bates S. Song L. Shen Y. Zhang G. Luo F. Yu Zhai S. 2021. “[Control of Particulate Nitrate Pollution in China](/publications/control-particulate-nitrate-pollution-china)”. Nature Geosci., 14, Pp. 389-95



 

 

D.J. Jacob X. Wang Z. Liu T. Wen V. Shah K. Li J. Moch K.H. Bates S. Song L. Shen Y. Zhang G. Luo F. Yu Zhai S. 2021. “[Control of Particulate Nitrate Pollution in China](/publications/control-particulate-nitrate-pollution-china)”. Nature Geosci., 14, Pp. 389-95



 

 

 

- [ descriptionPublisher's Version](https://www.nature.com/articles/s41561-021-00726-z)
 
- [ descriptionPublisher's Version](https://www.nature.com/articles/s41561-021-00726-z)
 
 

S. Zhai, D.J. Jacob, X. WANG, Z. Liu, T. Wen, V. Shah, K. Li, J. Moch, K.H. Bates, S. Song, L. Shen, Y. Zhang, G. Luo, F. Yu, Y. Sun, L. Wang, M. Qi, J. Tao, K. Gui, H. Xu, Q. Zhang, T. Zhao, H.C. Lee, H. Choi, and H. Liao. 2021. “[Control of Particulate Nitrate Pollution in China](/publication/control-particulate-nitrate-pollution-china)”. Nature Geoscience, 14, Pp. 389–395



 

 

S. Zhai, D.J. Jacob, X. WANG, Z. Liu, T. Wen, V. Shah, K. Li, J. Moch, K.H. Bates, S. Song, L. Shen, Y. Zhang, G. Luo, F. Yu, Y. Sun, L. Wang, M. Qi, J. Tao, K. Gui, H. Xu, Q. Zhang, T. Zhao, H.C. Lee, H. Choi, and H. Liao. 2021. “[Control of Particulate Nitrate Pollution in China](/publication/control-particulate-nitrate-pollution-china)”. Nature Geoscience, 14, Pp. 389–395



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ descriptionPublisher's Version](https://doi.org/10.1038/s41561-021-00726-z)
 
 The concentration of fine particulate matter (PM2.5) across China has decreased by 30–50% over the period 2013–2018 due to stringent emission controls. However, the nitrate component of PM2.5 has not responded effectively to decreasing emissions of... 

 

 

- [ descriptionPublisher's Version](https://doi.org/10.1038/s41561-021-00726-z)
 
 

 



### 2020

J. Wang, J. Ye, D. Liu, Y. Wu, J. Zhao, W. Xu, C. Xie, F. Shen, J. Zhang, P.E. Ohno, Y. Qin, X. Zhao, S.T. Martin, and A.K.Y. Lee. 2020. “[Rethinking of Black-Carbon Associated Organic Particles: Insights into Aged Biomass Burning Organic Aerosol](/publications/rethinking-black-carbon-associated-organic-particles-insights-aged-biomass)”. Environmental Science &amp; Technology



 

 

J. Wang, J. Ye, D. Liu, Y. Wu, J. Zhao, W. Xu, C. Xie, F. Shen, J. Zhang, P.E. Ohno, Y. Qin, X. Zhao, S.T. Martin, and A.K.Y. Lee. 2020. “[Rethinking of Black-Carbon Associated Organic Particles: Insights into Aged Biomass Burning Organic Aerosol](/publications/rethinking-black-carbon-associated-organic-particles-insights-aged-biomass)”. Environmental Science &amp; Technology



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ picture\_as\_pdfRethinking of black-carbo...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/wang_junfeng2020.pdf)
 
 Black carbon (BC) particles in Beijing summer haze play an important role in  
regional radiation balance and related environmental processes. Understanding the  
factors that lead to variability in the impacts of BC remains limited. Here, we present  
observation... 

 

 

- [ picture\_as\_pdfRethinking of black-carbo...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/wang_junfeng2020.pdf)
 
 

X. WANG, D.J. Jacob, X. Fu, T. Wang, M. Le Breton, M. Hallquist, Z. Liu, E.E. McDuffie, and H. Liao. 2020. “[Effects of Anthropogenic Chlorine on PM2.5 and Ozone Air Quality in China](/publications/effects-anthropogenic-chlorine-pm25-and-ozone-air-quality-china)”. Environmental Science &amp; Technology



 

 

X. WANG, D.J. Jacob, X. Fu, T. Wang, M. Le Breton, M. Hallquist, Z. Liu, E.E. McDuffie, and H. Liao. 2020. “[Effects of Anthropogenic Chlorine on PM2.5 and Ozone Air Quality in China](/publications/effects-anthropogenic-chlorine-pm25-and-ozone-air-quality-china)”. Environmental Science &amp; Technology



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ picture\_as\_pdfEffects of anthropogenic ...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/es0c02296_si_001.pdf)
 
 China has large anthropogenic chlorine emissions from agricultural fires, residential biofuel, waste incineration, coal combustion, and industrial processes. Here we quantify the effects of chlorine on fine particulate matter (PM2.5) and ozone air quality... 

 

 

- [ picture\_as\_pdfEffects of anthropogenic ...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/es0c02296_si_001.pdf)
 
 

Li K., D.J. Jacob, L. Shen, X. Liu, I. De Smedt, and H. Liao. 2020. “[2013–2019 Increases of Surface Ozone Pollution in China: Anthropogenic and Meteorological Influences](/publications/2013%E2%80%932019-increases-surface-ozone-pollution-china-anthropogenic-and)”. Atmospheric Chemistry and Physics



 

 

Li K., D.J. Jacob, L. Shen, X. Liu, I. De Smedt, and H. Liao. 2020. “[2013–2019 Increases of Surface Ozone Pollution in China: Anthropogenic and Meteorological Influences](/publications/2013%E2%80%932019-increases-surface-ozone-pollution-china-anthropogenic-and)”. Atmospheric Chemistry and Physics



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ picture\_as\_pdf2013–2019 increases of ...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/acp-20-11423-2020.pdf)
 
 Surface ozone data from the Chinese Ministry of Ecology and Environment (MEE) network show sustained increases across the country over the 2013–2019 period. Despite Phase 2 of the Clean Air Action Plan targeting ozone pollution, ozone was higher in 2018... 

 

 

- [ picture\_as\_pdf2013–2019 increases of ...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/acp-20-11423-2020.pdf)
 
 

V. Shah, D.J. Jacob, K. Li, R.F. Silvern, S. Zhai, M. Liu, J.T. Lin, and Q. Zhang. 2020. “[Effect of Changing NOx Lifetime on the Seasonality and Long-Term Trends of Satellite-Observed Tropospheric NO2 Columns over China](/publications/effect-changing-nox-lifetime-seasonality-and-long-term-trends-satellite)”. Atmospheric Chemistry and Physics



 

 

V. Shah, D.J. Jacob, K. Li, R.F. Silvern, S. Zhai, M. Liu, J.T. Lin, and Q. Zhang. 2020. “[Effect of Changing NOx Lifetime on the Seasonality and Long-Term Trends of Satellite-Observed Tropospheric NO2 Columns over China](/publications/effect-changing-nox-lifetime-seasonality-and-long-term-trends-satellite)”. Atmospheric Chemistry and Physics



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ picture\_as\_pdfEffect of changing NOx li...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/acp-20-1483-2020.pdf)
 
 Satellite observations of tropospheric NO2 columns are extensively used to infer trends in anthropogenic emissions of nitrogen oxides (NOx ≡ NO + NO2), but this may be complicated by trends in NOx lifetime. Here we use 2004–2018 observations from the... 

 

 

- [ picture\_as\_pdfEffect of changing NOx li...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/acp-20-1483-2020.pdf)
 
 

 



### 2019

K. Li, D.J. Jacob, H. Liao, J. Zhu, V. Shah, L. Shen, K.H. Bates, Q. Zhang, and S. Zhai. 2019. “[A Two-Pollutant Strategy for Improving Ozone and Particulate Air Quality in China](https://www.nature.com/articles/s41561-019-0464-x.epdf?author_access_token=GJnx5DupMK2dVEaqUEBMr9RgN0jAjWel9jnR3ZoTv0PbhYC0f4x_RvmG_NEj3J7NueU1Cps8U2hze6V6_c1nQAt5p-5Sgq0G0aug1YudS_DbeuXaWkqmgDo8JCSnq43J6taDH44YwDg78iwRKfUcJQ%3D%3D)”. Nature Geoscience, 12, Pp. 906-10



 

 

K. Li, D.J. Jacob, H. Liao, J. Zhu, V. Shah, L. Shen, K.H. Bates, Q. Zhang, and S. Zhai. 2019. “[A Two-Pollutant Strategy for Improving Ozone and Particulate Air Quality in China](https://www.nature.com/articles/s41561-019-0464-x.epdf?author_access_token=GJnx5DupMK2dVEaqUEBMr9RgN0jAjWel9jnR3ZoTv0PbhYC0f4x_RvmG_NEj3J7NueU1Cps8U2hze6V6_c1nQAt5p-5Sgq0G0aug1YudS_DbeuXaWkqmgDo8JCSnq43J6taDH44YwDg78iwRKfUcJQ%3D%3D)”. Nature Geoscience, 12, Pp. 906-10



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ picture\_as\_pdfA two-pollutant strategy ...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/s41561-019-0464-x.pdf)
 
 Fine particulate matter (PM2.5) decreased by 30–40% across China during 2013–2017 in response to the governmental Clean Air Action. However, surface ozone pollution worsened over the same period. Model simulations have suggested that the increase in ozone... 

 

 

- [ picture\_as\_pdfA two-pollutant strategy ...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/s41561-019-0464-x.pdf)
 
 

L. Shen, D.J. Jacob, L. Zhu, Q. Zhang, B. Zheng, M.P. Sulprizio, K. Li, I. De Smedt, G. Gonzalo Abad, H. Cao, T.-M. Fu, and H. Liao. 2019. “[2005-2016 Trends of Formaldehyde Columns over China Observed by Satellites: Increasing Anthropogenic Emissions of Volatile Organic Compounds and Decreasing Agricultural Fire Emissions](/publications/2005-2016-trends-formaldehyde-columns-over-china-observed-satellites)”. Geophysical Research Letters, 46, Pp. 4468-75



 

 

L. Shen, D.J. Jacob, L. Zhu, Q. Zhang, B. Zheng, M.P. Sulprizio, K. Li, I. De Smedt, G. Gonzalo Abad, H. Cao, T.-M. Fu, and H. Liao. 2019. “[2005-2016 Trends of Formaldehyde Columns over China Observed by Satellites: Increasing Anthropogenic Emissions of Volatile Organic Compounds and Decreasing Agricultural Fire Emissions](/publications/2005-2016-trends-formaldehyde-columns-over-china-observed-satellites)”. Geophysical Research Letters, 46, Pp. 4468-75



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ picture\_as\_pdf2005-2016 trends of forma...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/2019gl082172.pdf)
 
 We use 2005–2016 observations of formaldehyde (HCHO) columns over China from the OMI,GOME‐2, and SCIAMACHY satellite instruments to evaluate long‐term trends in emission inventories of volatile organic compounds (VOCs) that affect air quality. The... 

 

 

- [ picture\_as\_pdf2005-2016 trends of forma...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/2019gl082172.pdf)
 
 

S. Zhai, D.J. Jacob, X. WANG, L. Shen, K. Li, Y. Zhang, K. Gui, T. Zhao, and H. Liao. 2019. “[Fine Particulate Matter (PM2.5) Trends in China, 2013-2018: Separating Contributions from Anthropogenic Emissions and Meteorology](/publications/fine-particulate-matter-pm25-trends-china-2013-2018-separating-contributions)”. Atmospheric Chemistry and Physics, 19, Pp. 11031-41



 

 

S. Zhai, D.J. Jacob, X. WANG, L. Shen, K. Li, Y. Zhang, K. Gui, T. Zhao, and H. Liao. 2019. “[Fine Particulate Matter (PM2.5) Trends in China, 2013-2018: Separating Contributions from Anthropogenic Emissions and Meteorology](/publications/fine-particulate-matter-pm25-trends-china-2013-2018-separating-contributions)”. Atmospheric Chemistry and Physics, 19, Pp. 11031-41



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ picture\_as\_pdfFine particulate matter (...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/acp-19-11031-2019.pdf)
 
 Fine particulate matter (PM2.5) is a severe air pollution problem in China. Observations of PM2.5 have been available since 2013 from a large network operated by the China National Environmental Monitoring Center (CNEMC). The data show a general 30 %–50 %... 

 

 

- [ picture\_as\_pdfFine particulate matter (...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/acp-19-11031-2019.pdf)
 
 

L. Shen, D.J. Jacob, X. Liu, G. Huang, K. Li, and H. Liao. 2019. “[An Evaluation of the Ability of the Ozone Monitoring Instrument (OMI) to Observe Boundary Layer Ozone Pollution across China: Application to 2005-2017](/publications/evaluation-ability-ozone-monitoring-instrument-omi-observe-boundary-layer)”. Atmospheric Chemistry and Physics, 19, Pp. 6551-60



 

 

L. Shen, D.J. Jacob, X. Liu, G. Huang, K. Li, and H. Liao. 2019. “[An Evaluation of the Ability of the Ozone Monitoring Instrument (OMI) to Observe Boundary Layer Ozone Pollution across China: Application to 2005-2017](/publications/evaluation-ability-ozone-monitoring-instrument-omi-observe-boundary-layer)”. Atmospheric Chemistry and Physics, 19, Pp. 6551-60



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ picture\_as\_pdfAn evaluation of the abil...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/acp-19-6551-2019.pdf)
 
 Nadir-viewing satellite observations of tropospheric ozone in the UV have been shown to have some sensitivity to boundary layer ozone pollution episodes, but so far they have not yet been compared to surface ozone observations collected by large-scale... 

 

 

- [ picture\_as\_pdfAn evaluation of the abil...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/acp-19-6551-2019.pdf)
 
 

X. WANG, D.J. Jacob, M.P. Sulprizio, S. D. Eastham, L. Zhu, Q. Chen, B. Alexander, T. Sherwen, M.J. Evans, B.H. Lee, J.D. Haskin, F.D. Lopez-Hilfike, J.A. Thornton, G.L. Huey, and H. Liao. 2019. “[The Role of Chlorine in Global Tropospheric Chemistry](/publications/role-chlorine-global-tropospheric-chemistry)”. Atmospheric Chemistry and Physics



 

 

X. WANG, D.J. Jacob, M.P. Sulprizio, S. D. Eastham, L. Zhu, Q. Chen, B. Alexander, T. Sherwen, M.J. Evans, B.H. Lee, J.D. Haskin, F.D. Lopez-Hilfike, J.A. Thornton, G.L. Huey, and H. Liao. 2019. “[The Role of Chlorine in Global Tropospheric Chemistry](/publications/role-chlorine-global-tropospheric-chemistry)”. Atmospheric Chemistry and Physics



 

 

 

- add\_circle\_outline do\_not\_disturb\_on Abstract
- [ picture\_as\_pdfThe role of chlorine in g...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/acp-19-3981-2019.pdf)
 
 We present a comprehensive simulation of tropospheric chlorine within the GEOS-Chem global 3-D model of oxidant–aerosol–halogen atmospheric chemistry. The simulation includes explicit accounting of chloride mobilization from sea salt aerosol by acid... 

 

 

- [ picture\_as\_pdfThe role of chlorine in g...](/sites/g/files/omnuum6151/files/acmg-jlaqc/files/acp-19-3981-2019.pdf)
 
 

 



 

 

 

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