uri,href,identifier,attrs.Author,attrs.DOI,attrs.Date,attrs.ISSN,attrs.Journal,attrs.Keywords,attrs.Pages,attrs.Title,attrs.Volume,attrs.Year,attrs._record_number,attrs._uuid,attrs.reftype,child_publication
/reference/0dcee9aa-9230-420c-a1a9-c02510c6df0f,https://data.globalchange.gov/reference/0dcee9aa-9230-420c-a1a9-c02510c6df0f,0dcee9aa-9230-420c-a1a9-c02510c6df0f,"Westervelt, D. M.; Horowitz, L. W.; Naik, V.; Tai, A. P. K.; Fiore, A. M.; Mauzerall, D. L.",10.1016/j.atmosenv.2016.07.040,2016/10/01/,1352-2310,"Atmospheric Environment","PM; Climate change; Climate model; Sensitivity",43-56,"Quantifying PM2.5-meteorology sensitivities in a global climate model",142,2016,24225,0dcee9aa-9230-420c-a1a9-c02510c6df0f,"Journal Article",/article/10.1016/j.atmosenv.2016.07.040
/reference/1994b6dc-9753-44a1-a1b2-1d1566c39287,https://data.globalchange.gov/reference/1994b6dc-9753-44a1-a1b2-1d1566c39287,1994b6dc-9753-44a1-a1b2-1d1566c39287,"Camalier, Louise; Cox, William; Dolwick, Pat",10.1016/j.atmosenv.2007.04.061,,0004-6981,"Atmospheric Environment",,7127-7137,"The effects of meteorology on ozone in urban areas and their use in assessing ozone trends",41,2007,16101,1994b6dc-9753-44a1-a1b2-1d1566c39287,"Journal Article",/article/10.1016/j.atmosenv.2007.04.061
/reference/1bc5d64e-b530-4b8b-a6b5-19f40499ee94,https://data.globalchange.gov/reference/1bc5d64e-b530-4b8b-a6b5-19f40499ee94,1bc5d64e-b530-4b8b-a6b5-19f40499ee94,"EPA,",,,,,,,"National Air Quality: Status and Trends of Key Air Pollutants [web site]",,2017,24226,1bc5d64e-b530-4b8b-a6b5-19f40499ee94,"Web Page",/webpage/392184ef-f33e-4b5b-968e-af93e1715cb7
/reference/1d7245db-8407-4ca3-9db8-175ce77f2b10,https://data.globalchange.gov/reference/1d7245db-8407-4ca3-9db8-175ce77f2b10,1d7245db-8407-4ca3-9db8-175ce77f2b10,"Chen, J.; Avise, J.; Lamb, B.; Salathé, E.; Mass, C.; Guenther, A.; Wiedinmyer, C.; Lamarque, J. F.; O'Neill, S.; McKenzie, D.; Larkin, N.",10.5194/acp-9-1125-2009,,1680-7324,"Atmospheric Chemistry and Physics",,1125-1141,"The effects of global changes upon regional ozone pollution in the United States",9,2009,25132,1d7245db-8407-4ca3-9db8-175ce77f2b10,"Journal Article",/article/10.5194/acp-9-1125-2009
/reference/2085e6ae-5608-4e91-86c2-36df7baa8fec,https://data.globalchange.gov/reference/2085e6ae-5608-4e91-86c2-36df7baa8fec,2085e6ae-5608-4e91-86c2-36df7baa8fec,"EPA,",,,,,,[various],"Health Risk and Exposure Assessment for Ozone: Final Report ",,2014,24231,2085e6ae-5608-4e91-86c2-36df7baa8fec,Report,/report/health-risk-exposure-assessment-ozone-final-report
/reference/20bac876-62ce-4d20-9041-a7461e1b93fc,https://data.globalchange.gov/reference/20bac876-62ce-4d20-9041-a7461e1b93fc,20bac876-62ce-4d20-9041-a7461e1b93fc,"Simon, Heather; Reff, Adam; Wells, Benjamin; Xing, Jia; Frank, Neil",10.1021/es504514z,2015/01/06,0013-936X,"Environmental Science & Technology",,186-195,"Ozone trends across the United States over a period of decreasing NOx and VOC emissions",49,2015,24238,20bac876-62ce-4d20-9041-a7461e1b93fc,"Journal Article",/article/10.1021/es504514z
/reference/2bd16a59-d347-4fb4-9ff7-701e0c32ab60,https://data.globalchange.gov/reference/2bd16a59-d347-4fb4-9ff7-701e0c32ab60,2bd16a59-d347-4fb4-9ff7-701e0c32ab60,"Dawson, John P.; Bloomer, Bryan J.; Winner, Darrell A.; Weaver, Christopher P.",10.1175/BAMS-D-12-00181.1,2014/04/01,1520-0477,"Bulletin of the American Meteorological Society",,521-532,"Understanding the meteorological drivers of U.S. particulate matter concentrations in a changing climate",95,2014,19093,2bd16a59-d347-4fb4-9ff7-701e0c32ab60,"Journal Article",/article/10.1175/BAMS-D-12-00181.1
/reference/328b7923-3257-4326-804c-c2ee79a023d5,https://data.globalchange.gov/reference/328b7923-3257-4326-804c-c2ee79a023d5,328b7923-3257-4326-804c-c2ee79a023d5,"Zheng, Xue-yan; Ding, Hong; Jiang, Li-na; Chen, Shao-wei; Zheng, Jin-ping; Qiu, Min; Zhou, Ying-xue; Chen, Qing; Guan, Wei-jie",10.1371/journal.pone.0138146,,,"PLOS ONE",,e0138146,"Association between air pollutants and asthma emergency room visits and hospital admissions in time series studies: A systematic review and meta-analysis",10,2015,24217,328b7923-3257-4326-804c-c2ee79a023d5,"Journal Article",/article/10.1371/journal.pone.0138146
/reference/342dcbb2-a2cf-49d9-9f2f-46562422c410,https://data.globalchange.gov/reference/342dcbb2-a2cf-49d9-9f2f-46562422c410,342dcbb2-a2cf-49d9-9f2f-46562422c410,"Hogrefe, C.; B. Lynn; K. Civerolo; J.‐Y. Ku; J. Rosenthal; C. Rosenzweig; R. Goldberg; S. Gaffin; K. Knowlton; P. L. Kinney",10.1029/2004JD004690,,,"Journal of Geophysical Research: Atmospheres",,D22301,"Simulating changes in regional air pollution over the eastern United States due to changes in global and regional climate and emissions",109,2004,25136,342dcbb2-a2cf-49d9-9f2f-46562422c410,"Journal Article",/article/10.1029/2004JD004690
/reference/3ccc0f92-9b21-4012-b368-d66568254a3a,https://data.globalchange.gov/reference/3ccc0f92-9b21-4012-b368-d66568254a3a,3ccc0f92-9b21-4012-b368-d66568254a3a,"Heald, C. L.; Henze, D. K.; Horowitz, L. W.; Feddema, J.; Lamarque, J. F.; Guenther, A.; Hess, P. G.; Vitt, F.; Seinfeld, J. H.; Goldstein, A. H.; Fung, I.",10.1029/2007JD009092,,2156-2202,"Journal of Geophysical Research","SOA; climate; MEGAN; 0305 Aerosols and particles; 0315 Biosphere/atmosphere interactions; 0322 Constituent sources and sinks; 0325 Evolution of the atmosphere; 0365 Troposphere: composition and chemistry",D05211,"Predicted change in global secondary organic aerosol concentrations in response to future climate, emissions, and land use change",113,2008,24262,3ccc0f92-9b21-4012-b368-d66568254a3a,"Journal Article",/article/10.1029/2007JD009092
/reference/4f1b9afd-efc6-4f29-82ca-032786eb9a9c,https://data.globalchange.gov/reference/4f1b9afd-efc6-4f29-82ca-032786eb9a9c,4f1b9afd-efc6-4f29-82ca-032786eb9a9c,"West, J. Jason; Szopa, Sophie; Hauglustaine, Didier A.",10.1016/j.crte.2007.08.005,2007/10/01/,1631-0713,"Comptes Rendus Geoscience","Ozone; Air pollution; Human mortality; Atmospheric modeling; Health effects; Future scenarios; Tropospheric chemistry; Pollution de l’air; Mortalité humaine; Modélisation atmosphérique; Effets sur la santé; Scénarios futurs; Chimie troposphérique",775-783,"Human mortality effects of future concentrations of tropospheric ozone",339,2007,25143,4f1b9afd-efc6-4f29-82ca-032786eb9a9c,"Journal Article",/article/10.1016/j.crte.2007.08.005
/reference/552e0a6a-98c6-4d6c-b7ff-fdcc572fa914,https://data.globalchange.gov/reference/552e0a6a-98c6-4d6c-b7ff-fdcc572fa914,552e0a6a-98c6-4d6c-b7ff-fdcc572fa914,"Bloomer, Bryan J.; Stehr, Jeffrey W.; Piety, Charles A.; Salawitch, Ross J.; Dickerson, Russell R.",10.1029/2009gl037308,,1944-8007,"Geophysical Research Letters",,L09803,"Observed relationships of ozone air pollution with temperature and emissions",36,2009,16100,552e0a6a-98c6-4d6c-b7ff-fdcc572fa914,"Journal Article",/article/10.1029/2009gl037308
/reference/5c599d79-a94a-40bc-862e-d599de07b599,https://data.globalchange.gov/reference/5c599d79-a94a-40bc-862e-d599de07b599,5c599d79-a94a-40bc-862e-d599de07b599,"Ebi, Kristie L.; McGregor, Glenn",10.1289/ehp.11463,,,"Environmental Health Perspectives",,1449-1455,"Climate change, tropospheric ozone and particulate matter, and health impacts",116,2008,25133,5c599d79-a94a-40bc-862e-d599de07b599,"Journal Article",/article/10.1289/ehp.11463
/reference/5ec155e5-8b77-438f-afa9-fbcac4d27690,https://data.globalchange.gov/reference/5ec155e5-8b77-438f-afa9-fbcac4d27690,5ec155e5-8b77-438f-afa9-fbcac4d27690,"Fann, Neal; Brennan, Terry; Dolwick, Patrick; Gamble, Janet L.; Ilacqua, Vito; Kolb, Laura; Nolte, Christopher G.; Spero, Tanya L.; Ziska, Lewis",10.7930/J0GQ6VP6,,,,,"69–98","Ch. 3: Air quality impacts",,2016,19375,5ec155e5-8b77-438f-afa9-fbcac4d27690,"Book Section",/report/usgcrp-climate-human-health-assessment-2016/chapter/air-quality-impacts
/reference/60bb2b8e-5a2d-46f4-8474-84a1256ca392,https://data.globalchange.gov/reference/60bb2b8e-5a2d-46f4-8474-84a1256ca392,60bb2b8e-5a2d-46f4-8474-84a1256ca392,"Liu, Jia Coco; Loretta J. Mickley; Melissa P. Sulprizio; Xu Yue; Roger D. Peng; Francesca Dominici; Michelle L. Bell",10.1088/1748-9326/11/12/124018,,1748-9326,"Environmental Research Letters",,124018,"Future respiratory hospital admissions from wildfire smoke under climate change in the Western US",11,2016,24252,60bb2b8e-5a2d-46f4-8474-84a1256ca392,"Journal Article",/article/10.1088/1748-9326/11/12/124018
/reference/8168dfd7-c53f-4e89-ba22-991d6a2179a6,https://data.globalchange.gov/reference/8168dfd7-c53f-4e89-ba22-991d6a2179a6,8168dfd7-c53f-4e89-ba22-991d6a2179a6,"Lin, M.; Horowitz, L. W.; Payton, R.; Fiore, A. M.; Tonnesen, G.",10.5194/acp-17-2943-2017,,1680-7324,"Atmospheric Chemistry and Physics",,2943-2970,"US surface ozone trends and extremes from 1980 to 2014: Quantifying the roles of rising Asian emissions, domestic controls, wildfires, and climate",17,2017,24254,8168dfd7-c53f-4e89-ba22-991d6a2179a6,"Journal Article",/article/10.5194/acp-17-2943-2017
/reference/a19a16db-8155-45a3-83f0-357064ec254a,https://data.globalchange.gov/reference/a19a16db-8155-45a3-83f0-357064ec254a,a19a16db-8155-45a3-83f0-357064ec254a,"Weaver, C. P.; Cooter, E.; Gilliam, R.; Gilliland, A.; Grambsch, A.; Grano, D.; Hemming, B.; Hunt, S. W.; Nolte, C.; Winner, D. A.; Liang, X-Z.; Zhu, J.; Caughey, M.; Kunkel, K.; Lin, J-T.; Tao, Z.; Williams, A.; Wuebbles, D. J.; Adams, P. J.; Dawson, J. P.; Amar, P.; He, S.; Avise, J.; Chen, J.; Cohen, R. C.; Goldstein, A. H.; Harley, R. A.; Steiner, A. L.; Tonse, S.; Guenther, A.; Lamarque, J-F.; Wiedinmyer, C.; Gustafson, W. I.; Leung, L. R.; Hogrefe, C.; Huang, H-C.; Jacob, D. J.; Mickley, L. J.; Wu, S.; Kinney, P. L.; Lamb, B.; Larkin, N. K.; McKenzie, D.; Liao, K-J.; Manomaiphiboon, K.; Russell, A. G.; Tagaris, E.; Lynn, B. H.; Mass, C.; Salathé, E.; O'neill, S. M.; Pandis, S. N.; Racherla, P. N.; Rosenzweig, C.; Woo, J-H.",10.1175/2009BAMS2568.1,,1520-0477,"Bulletin of the American Meteorological Society",,1843-1863,"A preliminary synthesis of modeled climate change impacts on U.S. regional ozone concentrations",90,2009,19100,a19a16db-8155-45a3-83f0-357064ec254a,"Journal Article",/article/10.1175/2009BAMS2568.1
/reference/a92b6912-a92c-482b-a8e7-f43d324947e3,https://data.globalchange.gov/reference/a92b6912-a92c-482b-a8e7-f43d324947e3,a92b6912-a92c-482b-a8e7-f43d324947e3,"Val Martin, M.; Heald, C. L.; Lamarque, J. F.; Tilmes, S.; Emmons, L. K.; Schichtel, B. A.",10.5194/acp-15-2805-2015,,1680-7324,"Atmospheric Chemistry and Physics",,2805-2823,"How emissions, climate, and land use change will impact mid-century air quality over the United States: A focus on effects at National Parks",15,2015,18929,a92b6912-a92c-482b-a8e7-f43d324947e3,"Journal Article",/article/10.5194/acp-15-2805-2015
/reference/afbd60ab-ba9f-4547-88e3-968bc3a4b949,https://data.globalchange.gov/reference/afbd60ab-ba9f-4547-88e3-968bc3a4b949,afbd60ab-ba9f-4547-88e3-968bc3a4b949,"Jacob, D. J.Winner, D. A.",10.1016/j.atmosenv.2008.09.051,,1352-2310,"Atmospheric Environment",,51-63,"Effect of climate change on air quality",43,2009,577,afbd60ab-ba9f-4547-88e3-968bc3a4b949,"Journal Article",/article/10.1016/j.atmosenv.2008.09.051
/reference/b4038a28-b14b-4ae8-b783-0de19e3cffdd,https://data.globalchange.gov/reference/b4038a28-b14b-4ae8-b783-0de19e3cffdd,b4038a28-b14b-4ae8-b783-0de19e3cffdd,"Fiore, Arlene M.; Naik, Vaishali; Leibensperger, Eric M.",10.1080/10962247.2015.1040526,,2162-2906,"Journal of the Air & Waste Management Association",,645-685,"Air quality and climate connections",65,2015,19147,b4038a28-b14b-4ae8-b783-0de19e3cffdd,"Journal Article",/article/10.1080/10962247.2015.1040526
/reference/c644739f-2708-4c5b-ba4d-a9dd0a50d3dc,https://data.globalchange.gov/reference/c644739f-2708-4c5b-ba4d-a9dd0a50d3dc,c644739f-2708-4c5b-ba4d-a9dd0a50d3dc,"Spracklen, D.V.Mickley, L.J.Logan, J.A.Hudman, R.C.Yevich, R.Flannigan, M.D.Westerling, A.L.",10.1029/2008JD010966,,,"Journal of Geophysical Research",,D20301,"Impacts of climate change from 2000 to 2050 on wildfire activity and carbonaceous aerosol concentrations in the western United States",114,2009,2914,c644739f-2708-4c5b-ba4d-a9dd0a50d3dc,"Journal Article",/article/10.1029/2008JD010966
/reference/ccd5ec24-c9a9-4e7d-9ae4-b51314ef0e03,https://data.globalchange.gov/reference/ccd5ec24-c9a9-4e7d-9ae4-b51314ef0e03,ccd5ec24-c9a9-4e7d-9ae4-b51314ef0e03,"Abel, David; Holloway, Tracey; Kladar, Ryan M.; Meier, Paul; Ahl, Doug; Harkey, Monica; Patz, Jonathan",10.1021/acs.est.6b06201,2017/05/16,0013-936X,"Environmental Science & Technology",,5838-5846,"Response of power plant emissions to ambient temperature in the eastern United States",51,2017,24279,ccd5ec24-c9a9-4e7d-9ae4-b51314ef0e03,"Journal Article",/article/10.1021/acs.est.6b06201
/reference/d3f82686-12ef-4e1e-9a15-cf89236a53a8,https://data.globalchange.gov/reference/d3f82686-12ef-4e1e-9a15-cf89236a53a8,d3f82686-12ef-4e1e-9a15-cf89236a53a8,"Schelegle, Edward S.; Christopher A. Morales; William F. Walby; Susan Marion; Roblee P. Allen",10.1164/rccm.200809-1484OC,,,"American Journal of Respiratory and Critical Care Medicine","ozone,clinical study,exposure assessment,human",265-272,"6.6-hour inhalation of ozone concentrations from 60 to 87 parts per billion in healthy humans",180,2009,24242,d3f82686-12ef-4e1e-9a15-cf89236a53a8,"Journal Article",/article/10.1164/rccm.200809-1484OC
/reference/e00fb4e2-6406-40be-90f8-071dfc43cca3,https://data.globalchange.gov/reference/e00fb4e2-6406-40be-90f8-071dfc43cca3,e00fb4e2-6406-40be-90f8-071dfc43cca3,EPA,,,,,,1251,"Integrated Science Assessment for Ozone and Related Photochemical Oxidants",,2013,18813,e00fb4e2-6406-40be-90f8-071dfc43cca3,Report,/report/epa-600-r-10-076f
/reference/f7ffc8dd-70ec-4779-817a-b2985c0779e7,https://data.globalchange.gov/reference/f7ffc8dd-70ec-4779-817a-b2985c0779e7,f7ffc8dd-70ec-4779-817a-b2985c0779e7,EPA,,,,,,,"Integrated Science Assessment for Particulate Matter",,2009,18616,f7ffc8dd-70ec-4779-817a-b2985c0779e7,Report,/report/epa-600-r-08-139f
