uri,href,identifier,attrs.Author,attrs.DOI,attrs.Date,attrs.ISSN,attrs.Issue,attrs.Journal,attrs.Pages,attrs.Publisher,attrs.Title,attrs.Volume,attrs.Year,attrs._record_number,attrs._uuid,attrs.reftype,child_publication
/reference/49301e4c-b341-4ac2-8895-c460c50ca8f1,https://data.globalchange.gov/reference/49301e4c-b341-4ac2-8895-c460c50ca8f1,49301e4c-b341-4ac2-8895-c460c50ca8f1,"Rasmussen, D. J.; Hu, Jianlin; Mahmud, Abdullah; Kleeman, Michael J.",10.1021/es403446m,2013/12/17,0013-936X,24,"Environmental Science & Technology",14258-14266,"American Chemical Society","The ozone–climate penalty: Past, present, and future",47,2013,24245,49301e4c-b341-4ac2-8895-c460c50ca8f1,"Journal Article",/article/10.1021/es403446m
/reference/4beaa115-1cbe-404e-a62d-4a943c946820,https://data.globalchange.gov/reference/4beaa115-1cbe-404e-a62d-4a943c946820,4beaa115-1cbe-404e-a62d-4a943c946820,"Cakmak, Sabit; Dales, Robert E.; Coates, Frances",10.1016/j.jaci.2011.09.025,,0091-6749,1,"Journal of Allergy and Clinical Immunology",228-231,,"Does air pollution increase the effect of aeroallergens on hospitalization for asthma?",129,2012,17665,4beaa115-1cbe-404e-a62d-4a943c946820,"Journal Article",/article/10.1016/j.jaci.2011.09.025
/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/,1631-0713,11,"Comptes Rendus Geoscience",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/4f8e1139-485d-4667-90a8-d8f1cfa45ef3,https://data.globalchange.gov/reference/4f8e1139-485d-4667-90a8-d8f1cfa45ef3,4f8e1139-485d-4667-90a8-d8f1cfa45ef3,"Breitner, Susanne; Wolf, Kathrin; Devlin, Robert B.; Diaz-Sanchez, David; Peters, Annette; Schneider, Alexandra",10.1016/j.scitotenv.2014.03.048,2014/07/01/,0048-9697,,"Science of The Total Environment",49-61,,"Short-term effects of air temperature on mortality and effect modification by air pollution in three cities of Bavaria, Germany: A time-series analysis",485-486,2014,24272,4f8e1139-485d-4667-90a8-d8f1cfa45ef3,"Journal Article",/article/10.1016/j.scitotenv.2014.03.048
/reference/52b8c0e6-00b2-42aa-9df5-6d46fe600b7d,https://data.globalchange.gov/reference/52b8c0e6-00b2-42aa-9df5-6d46fe600b7d,52b8c0e6-00b2-42aa-9df5-6d46fe600b7d,"Mitchell, Robert J.; Liu, Yongqiang; O’Brien, Joseph J.; Elliott, Katherine J.; Starr, Gregory; Miniat, Chelcy Ford; Hiers, J. Kevin",10.1016/j.foreco.2013.12.003,2014/09/01/,0378-1127,,"Forest Ecology and Management",316-326,,"Future climate and fire interactions in the southeastern region of the United States",327,2014,24249,52b8c0e6-00b2-42aa-9df5-6d46fe600b7d,"Journal Article",/article/10.1016/j.foreco.2013.12.003
/reference/54a66159-1675-43bb-b5d3-a9b7f283e4de,https://data.globalchange.gov/reference/54a66159-1675-43bb-b5d3-a9b7f283e4de,54a66159-1675-43bb-b5d3-a9b7f283e4de,"Fann, Neal; Nolte, Christopher G.; Dolwick, Patrick; Spero, Tanya L.; Curry Brown, Amanda; Phillips, Sharon; Anenberg, Susan",10.1080/10962247.2014.996270,,2162-2906,5,"Journal of the Air & Waste Management Association",570-580,,"The geographic distribution and economic value of climate change-related ozone health impacts in the United States in 2030",65,2015,16106,54a66159-1675-43bb-b5d3-a9b7f283e4de,"Journal Article",/article/10.1080/10962247.2014.996270
/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,,1944-8007,9,"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/586feb2f-3502-4e0e-9127-9ff17fddbdc1,https://data.globalchange.gov/reference/586feb2f-3502-4e0e-9127-9ff17fddbdc1,586feb2f-3502-4e0e-9127-9ff17fddbdc1,"Baker, K. R.; Woody, M. C.; Tonnesen, G. S.; Hutzell, W.; Pye, H. O. T.; Beaver, M. R.; Pouliot, G.; Pierce, T.",10.1016/j.atmosenv.2016.06.032,2016/09/01/,1352-2310,,"Atmospheric Environment",539-554,,"Contribution of regional-scale fire events to ozone and PM2.5 air quality estimated by photochemical modeling approaches",140,2016,24276,586feb2f-3502-4e0e-9127-9ff17fddbdc1,"Journal Article",/article/10.1016/j.atmosenv.2016.06.032
/reference/5b77745d-bb40-42d3-ad8e-f301a79c64c5,https://data.globalchange.gov/reference/5b77745d-bb40-42d3-ad8e-f301a79c64c5,5b77745d-bb40-42d3-ad8e-f301a79c64c5,"Ha, Sandie; Zhu, Yeyi; Liu, Danping; Sherman, Seth; Mendola, Pauline",10.1016/j.envres.2017.02.021,2017/05/01/,0013-9351,,"Environmental Research",394-400,,"Ambient temperature and air quality in relation to small for gestational age and term low birthweight",155,2017,25135,5b77745d-bb40-42d3-ad8e-f301a79c64c5,"Journal Article",/article/10.1016/j.envres.2017.02.021
/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/5d3a9428-c81f-4c38-bda4-0b475b07d947,https://data.globalchange.gov/reference/5d3a9428-c81f-4c38-bda4-0b475b07d947,5d3a9428-c81f-4c38-bda4-0b475b07d947,"Künzli, Nino; Avol, Ed; Wu, Jun; Gauderman, W. James; Rappaport, Ed; Millstein, Joshua; Bennion, Jonathan; McConnell, Rob; Gilliland, Frank D.; Berhane, Kiros; Lurmann, Fred; Winer, Arthur; Peters, John M.",10.1164/rccm.200604-519OC,,1535-4970,11,"American Journal of Respiratory and Critical Care Medicine",1221-1228,,"Health effects of the 2003 southern California wildfires on children",174,2006,16477,5d3a9428-c81f-4c38-bda4-0b475b07d947,"Journal Article",/article/10.1164/rccm.200604-519OC
/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","U.S. Global Change Research Program","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,,1748-9326,12,"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/61c46ee1-2699-4d2e-b1c6-4c72b78b67a5,https://data.globalchange.gov/reference/61c46ee1-2699-4d2e-b1c6-4c72b78b67a5,61c46ee1-2699-4d2e-b1c6-4c72b78b67a5,"Cook, Benjamin I.; Smerdon, Jason E.; Seager, Richard; Coats, Sloan",10.1007/s00382-014-2075-y,"November 01",1432-0894,9,"Climate Dynamics",2607-2627,,"Global warming and 21st century drying",43,2014,24270,61c46ee1-2699-4d2e-b1c6-4c72b78b67a5,"Journal Article",/article/10.1007/s00382-014-2075-y
/reference/636f74ab-265f-472d-b281-79cf300f93e1,https://data.globalchange.gov/reference/636f74ab-265f-472d-b281-79cf300f93e1,636f74ab-265f-472d-b281-79cf300f93e1,"Fann, Neal; Alman, Breanna; Broome, Richard A.; Morgan, Geoffrey G.; Johnston, Fay H.; Pouliot, George; Rappold, Ana G.",10.1016/j.scitotenv.2017.08.024,2018/01/01/,0048-9697,,"Science of The Total Environment",802-809,,"The health impacts and economic value of wildland fire episodes in the U.S.: 2008–2012",610-611,2018,24265,636f74ab-265f-472d-b281-79cf300f93e1,"Journal Article",/article/10.1016/j.scitotenv.2017.08.024
/reference/6a142d72-6867-42b1-884c-1131ace7a0ad,https://data.globalchange.gov/reference/6a142d72-6867-42b1-884c-1131ace7a0ad,6a142d72-6867-42b1-884c-1131ace7a0ad,"Ziska, Lewis H.; Gebhard, Dennis E.; Frenz, David A.; Faulkner, Shaun; Singer, Benjamin D.; Straka, James G.",10.1067/mai.2003.53,,00916749,2,"Journal of Allergy and Clinical Immunology",290-295,,"Cities as harbingers of climate change: Common ragweed, urbanization, and public health",111,2003,17892,6a142d72-6867-42b1-884c-1131ace7a0ad,"Journal Article",/article/10.1067/mai.2003.53
/reference/6ca2830c-5ffa-491d-865f-24da6b3f5be2,https://data.globalchange.gov/reference/6ca2830c-5ffa-491d-865f-24da6b3f5be2,6ca2830c-5ffa-491d-865f-24da6b3f5be2,"Shindell, D. T.; Fuglestvedt, J. S.; Collins, W. J.",10.1039/C7FD00009J,,1359-6640,,"Faraday Discussions",429-451,"The Royal Society of Chemistry","The social cost of methane: Theory and applications",200,2017,25142,6ca2830c-5ffa-491d-865f-24da6b3f5be2,"Journal Article",/article/10.1039/C7FD00009J
/reference/6f5e49f0-fd59-4eba-9311-05ce16734498,https://data.globalchange.gov/reference/6f5e49f0-fd59-4eba-9311-05ce16734498,6f5e49f0-fd59-4eba-9311-05ce16734498,"Johnston, F.H.Henderson, S.B.Chen, Y.Randerson, J.T.Marlier, M.DeFries, R.S.Kinney, P.Bowman, D.M.J.S.Brauer, M.",10.1289/ehp.1104422,,0091-6765,5,"Environmental Health Perspectives",695-701,,"Estimated global mortality attributable to smoke from landscape fires",120,2012,645,6f5e49f0-fd59-4eba-9311-05ce16734498,"Journal Article",/article/10.1289/ehp.1104422
/reference/713cd919-826b-426d-bf51-761a58ec7f22,https://data.globalchange.gov/reference/713cd919-826b-426d-bf51-761a58ec7f22,713cd919-826b-426d-bf51-761a58ec7f22,"D'Amato, G.; Liccardi, G.; Frenguelli, G.",10.1111/j.1398-9995.2006.01271.x,Jan,1398-9995,1,Allergy,11-16,,"Thunderstorm-asthma and pollen allergy",62,2007,18458,713cd919-826b-426d-bf51-761a58ec7f22,"Journal Article",/article/10.1111/j.1398-9995.2006.01271.x
/reference/75cf1c0b-cc62-4ca4-96a7-082afdfe2ab1,https://data.globalchange.gov/reference/75cf1c0b-cc62-4ca4-96a7-082afdfe2ab1,75cf1c0b-cc62-4ca4-96a7-082afdfe2ab1,USGCRP,10.7930/J0J964J6,,,,,470,"U.S. Global Change Research Program","Climate Science Special Report: Fourth National Climate Assessment, Volume I",,2017,21557,75cf1c0b-cc62-4ca4-96a7-082afdfe2ab1,Report,/report/climate-science-special-report
/reference/76a779a0-2305-4820-b462-9f5b917260d6,https://data.globalchange.gov/reference/76a779a0-2305-4820-b462-9f5b917260d6,76a779a0-2305-4820-b462-9f5b917260d6,"Nemet, G.F.Holloway, T.Meier, P.",10.1088/1748-9326/5/1/014007,,,1,"Environmental Research Letters",014007,,"Implications of incorporating air-quality co-benefits into climate change policymaking",5,2010,2199,76a779a0-2305-4820-b462-9f5b917260d6,"Journal Article",/article/10.1088/1748-9326/5/1/014007
/reference/783e2c66-47c0-4770-aeb6-3ea4d0d6df59,https://data.globalchange.gov/reference/783e2c66-47c0-4770-aeb6-3ea4d0d6df59,783e2c66-47c0-4770-aeb6-3ea4d0d6df59,"Bell, Michelle L.; Dominici, Francesca",10.1093/aje/kwm396,,0002-9262,8,"American Journal of Epidemiology",986-997,,"Effect modification by community characteristics on the short-term effects of ozone exposure and mortality in 98 US communities",167,2008,24273,783e2c66-47c0-4770-aeb6-3ea4d0d6df59,"Journal Article",/article/10.1093/aje/kwm396
/reference/787ffd4c-0f81-4e5c-a353-a843437f93d7,https://data.globalchange.gov/reference/787ffd4c-0f81-4e5c-a353-a843437f93d7,787ffd4c-0f81-4e5c-a353-a843437f93d7,"Shen, L.; Mickley, L. J.; Murray, L. T.",10.5194/acp-17-4355-2017,,1680-7324,6,"Atmospheric Chemistry and Physics",4355-4367,"Copernicus Publications","Influence of 2000–2050 climate change on particulate matter in the United States: Results from a new statistical model",17,2017,24240,787ffd4c-0f81-4e5c-a353-a843437f93d7,"Journal Article",/article/10.5194/acp-17-4355-2017
/reference/7a9fde66-dbc1-4152-bd11-2d68d4e7d66a,https://data.globalchange.gov/reference/7a9fde66-dbc1-4152-bd11-2d68d4e7d66a,7a9fde66-dbc1-4152-bd11-2d68d4e7d66a,"D’Amato, G.; Liccardi, G.; D’Amato, M.; Cazzola, M.",10.1053/rmed.2001.1112,Jul,"0954-6111 (Print)0954-6111",7,"Respiratory Medicine",606-11,,"The role of outdoor air pollution and climatic changes on the rising trends in respiratory allergy",95,2001,18645,7a9fde66-dbc1-4152-bd11-2d68d4e7d66a,"Journal Article",/article/10.1053/rmed.2001.1112
/reference/7d31ed6d-4cf6-4c76-8009-bbd4f376d457,https://data.globalchange.gov/reference/7d31ed6d-4cf6-4c76-8009-bbd4f376d457,7d31ed6d-4cf6-4c76-8009-bbd4f376d457,"Zanobetti, Antonella; Schwartz, Joel",10.1186/1476-069x-7-22,"May 30",1476-069X,1,"Environmental Health",22,,"Is there adaptation in the ozone mortality relationship: A multi-city case-crossover analysis",7,2008,25899,7d31ed6d-4cf6-4c76-8009-bbd4f376d457,"Journal Article",/article/10.1186/1476-069x-7-22
/reference/7dff169a-bb19-4f80-bdc9-9aae8d13a86f,https://data.globalchange.gov/reference/7dff169a-bb19-4f80-bdc9-9aae8d13a86f,7dff169a-bb19-4f80-bdc9-9aae8d13a86f,"Albertine, Jennifer M.; Manning, William J.; DaCosta, Michelle; Stinson, Kristina A.; Muilenberg, Michael L.; Rogers, Christine A.",10.1371/journal.pone.0111712,,1932-6203,11,"PLoS ONE",e111712,,"Projected carbon dioxide to increase grass pollen and allergen exposure despite higher ozone levels",9,2014,16124,7dff169a-bb19-4f80-bdc9-9aae8d13a86f,"Journal Article",/article/10.1371/journal.pone.0111712
/reference/81430bfc-5d67-4109-982a-4cfd344f057c,https://data.globalchange.gov/reference/81430bfc-5d67-4109-982a-4cfd344f057c,81430bfc-5d67-4109-982a-4cfd344f057c,EPA,,,,,,633,"U.S. Environmental Protection Agency","Inventory of U.S. Greenhouse Gas Emissions and Sinks: 1990-2015",2017,2017,20914,81430bfc-5d67-4109-982a-4cfd344f057c,Report,/report/inventory-us-greenhouse-gas-emissions-sinks-1990-2015
/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,,1680-7324,4,"Atmospheric Chemistry and Physics",2943-2970,"Copernicus Publications","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/82c89e3a-fe40-4faf-b048-76aacef2385d,https://data.globalchange.gov/reference/82c89e3a-fe40-4faf-b048-76aacef2385d,82c89e3a-fe40-4faf-b048-76aacef2385d,"Zu, Ke; Liu, Xiaobin; Shi, Liuhua; Tao, Ge; Loftus, Christine T.; Lange, Sabine; Goodman, Julie E.",10.1016/j.envint.2017.04.006,2017/07/01/,0160-4120,,"Environment International",139-145,,"Concentration-response of short-term ozone exposure and hospital admissions for asthma in Texas",104,2017,24215,82c89e3a-fe40-4faf-b048-76aacef2385d,"Journal Article",/article/10.1016/j.envint.2017.04.006
/reference/84019093-f280-45e8-8bf1-e8a826ba6a3f,https://data.globalchange.gov/reference/84019093-f280-45e8-8bf1-e8a826ba6a3f,84019093-f280-45e8-8bf1-e8a826ba6a3f,"Leung, L. Ruby; William I. Gustafson",10.1029/2005GL022911,,,16,"Geophysical Research Letters",L16711,,"Potential regional climate change and implications to U.S. air quality",32,2005,25138,84019093-f280-45e8-8bf1-e8a826ba6a3f,"Journal Article",/article/10.1029/2005GL022911
/reference/89c49b97-dc6e-489c-bd95-a5a0a4bb0ee7,https://data.globalchange.gov/reference/89c49b97-dc6e-489c-bd95-a5a0a4bb0ee7,89c49b97-dc6e-489c-bd95-a5a0a4bb0ee7,"Wu, Shiliang; Mickley, Loretta J.; Leibensperger, Eric M.; Jacob, Daniel J.; Rind, David; Streets, David G.",10.1029/2007JD008917,,2169-8996,D6,"Journal of Geophysical Research: Atmospheres",D06302,,"Effects of 2000–2050 global change on ozone air quality in the United States",113,2008,18932,89c49b97-dc6e-489c-bd95-a5a0a4bb0ee7,"Journal Article",/article/10.1029/2007JD008917
/reference/8a28e4aa-b6c1-4d0c-98ed-c77a9e6685d4,https://data.globalchange.gov/reference/8a28e4aa-b6c1-4d0c-98ed-c77a9e6685d4,8a28e4aa-b6c1-4d0c-98ed-c77a9e6685d4,"EPA,",,,,,,199,,"Emissions Inventory for Air Quality Modeling Technical Support Document: Heavy-Duty Vehicle Greenhouse Gas Phase 2 Final Rule",,2016,24229,8a28e4aa-b6c1-4d0c-98ed-c77a9e6685d4,Report,/report/emissions-inventory-air-quality-modeling-technical-support-document-heavy-duty-vehicle-greenhouse-gas-phase-2-final-rule
/reference/8e7c1bc6-33dc-479d-a0d7-0d8c90f647bf,https://data.globalchange.gov/reference/8e7c1bc6-33dc-479d-a0d7-0d8c90f647bf,8e7c1bc6-33dc-479d-a0d7-0d8c90f647bf,"D’Amato, Gennaro; Baena-Cagnani, Carlos E.; Cecchi, Lorenzo; Annesi-Maesano, Isabella; Nunes, Carlos; Ansotegui, Ignacio; D’Amato, Maria; Liccardi, Gennaro; Sofia, Matteo; Canonica, Walter G.",10.1186/2049-6958-8-12,"February 11",2049-6958,1,"Multidisciplinary Respiratory Medicine",12,,"Climate change, air pollution and extreme events leading to increasing prevalence of allergic respiratory diseases",8,2013,24268,8e7c1bc6-33dc-479d-a0d7-0d8c90f647bf,"Journal Article",/article/10.1186/2049-6958-8-12
/reference/95755225-e93a-48f1-a908-08ca73cd179e,https://data.globalchange.gov/reference/95755225-e93a-48f1-a908-08ca73cd179e,95755225-e93a-48f1-a908-08ca73cd179e,"Mallia, D. V.; Lin, J. C.; Urbanski, S.; Ehleringer, J.; Nehrkorn, T.",10.1002/2014JD022472,,2169-8996,1,"Journal of Geophysical Research Atmospheres",147-166,,"Impacts of upwind wildfire emissions on CO, CO2, and PM2.5 concentrations in Salt Lake City, Utah",120,2015,24250,95755225-e93a-48f1-a908-08ca73cd179e,"Journal Article",/article/10.1002/2014JD022472
/reference/971ee908-7da0-416e-8b6c-a72984d129ba,https://data.globalchange.gov/reference/971ee908-7da0-416e-8b6c-a72984d129ba,971ee908-7da0-416e-8b6c-a72984d129ba,"Anenberg, Susan C.; Weinberger, Kate R.; Roman, Henry; Neumann, James E.; Crimmins, Allison; Fann, Neal; Martinich, Jeremy; Kinney, Patrick L.",10.1002/2017GH000055,,2471-1403,3,GeoHealth,80-92,,"Impacts of oak pollen on allergic asthma in the United States and potential influence of future climate change",1,2017,24278,971ee908-7da0-416e-8b6c-a72984d129ba,"Journal Article",/article/10.1002/2017GH000055
/reference/985fedce-31c6-4109-a1b6-2cebd4870f7e,https://data.globalchange.gov/reference/985fedce-31c6-4109-a1b6-2cebd4870f7e,985fedce-31c6-4109-a1b6-2cebd4870f7e,"Jaffe, Daniel A.; Wigder, Nicole L.",10.1016/j.atmosenv.2011.11.063,2012/05/01/,1352-2310,,"Atmospheric Environment",1-10,,"Ozone production from wildfires: A critical review",51,2012,25137,985fedce-31c6-4109-a1b6-2cebd4870f7e,"Journal Article",/article/10.1016/j.atmosenv.2011.11.063
/reference/9a00eef2-553a-4d14-b03b-8976ffd9b375,https://data.globalchange.gov/reference/9a00eef2-553a-4d14-b03b-8976ffd9b375,9a00eef2-553a-4d14-b03b-8976ffd9b375,"TFHTAP,",,,,,,278,,"Hemispheric Transport of Air Pollution 2010 Part A: Ozone and Particulate Matter",,2010,25145,9a00eef2-553a-4d14-b03b-8976ffd9b375,Report,/report/hemispheric-transport-air-pollution-2010-part-ozone-particulate-matter
/reference/9a153a86-3b2a-4409-ab6b-c7a2004f6ba1,https://data.globalchange.gov/reference/9a153a86-3b2a-4409-ab6b-c7a2004f6ba1,9a153a86-3b2a-4409-ab6b-c7a2004f6ba1,"LaDeau, S. L.; Clark, J. S.",10.1111/j.1365-2435.2006.01133.x,,1365-2435,3,"Functional Ecology",541-547,"Blackwell Publishing Ltd","Pollen production by Pinus taeda growing in elevated atmospheric CO2",20,2006,24256,9a153a86-3b2a-4409-ab6b-c7a2004f6ba1,"Journal Article",/article/10.1111/j.1365-2435.2006.01133.x
/reference/9a222c75-5ff9-408e-9694-b7bd90a2a0ca,https://data.globalchange.gov/reference/9a222c75-5ff9-408e-9694-b7bd90a2a0ca,9a222c75-5ff9-408e-9694-b7bd90a2a0ca,"Cascio, Wayne E.",10.1016/j.scitotenv.2017.12.086,2018/05/15/,0048-9697,,"Science of The Total Environment",586-595,,"Wildland fire smoke and human health",624,2018,25898,9a222c75-5ff9-408e-9694-b7bd90a2a0ca,"Journal Article",/article/10.1016/j.scitotenv.2017.12.086
/reference/9a5df1b6-a2cb-4cce-8ccb-c96a0d0dbd48,https://data.globalchange.gov/reference/9a5df1b6-a2cb-4cce-8ccb-c96a0d0dbd48,9a5df1b6-a2cb-4cce-8ccb-c96a0d0dbd48,"Chen, Kai; Wolf, Kathrin; Hampel, Regina; Stafoggia, Massimo; Breitner, Susanne; Cyrys, Josef; Samoli, Evangelia; Andersen, Zorana Jovanovic; Bero-Bedada, Getahun; Bellander, Tom; Hennig, Frauke; Jacquemin, Bénédicte; Pekkanen, Juha; Peters, Annette; Schneider, Alexandra; on behalf of the UF; HEALTH Study Group",10.1097/ee9.0000000000000008,,,1,"Environmental Epidemiology",e008,,"Does temperature-confounding control influence the modifying effect of air temperature in ozone–mortality associations?",2,2018,25897,9a5df1b6-a2cb-4cce-8ccb-c96a0d0dbd48,"Journal Article",/article/10.1097/ee9.0000000000000008
/reference/a02f25a1-29c1-4564-9b41-7d974e8ce6b5,https://data.globalchange.gov/reference/a02f25a1-29c1-4564-9b41-7d974e8ce6b5,a02f25a1-29c1-4564-9b41-7d974e8ce6b5,"Bell, Michelle L.; McDermott, Aidan; Zeger, Scott L.; Samet, Jonathan M.; Dominici, Francesca",10.1001/jama.292.19.2372,,0098-7484,19,"JAMA: The Journal of the American Medical Association",2372-2378,,"Ozone and short-term mortality in 95 US urban communities, 1987-2000",292,2004,18880,a02f25a1-29c1-4564-9b41-7d974e8ce6b5,"Journal Article",/article/10.1001/jama.292.19.2372
/reference/a10a9c51-85d3-4569-8c3c-98a68fe7b399,https://data.globalchange.gov/reference/a10a9c51-85d3-4569-8c3c-98a68fe7b399,a10a9c51-85d3-4569-8c3c-98a68fe7b399,"Trail, Marcus A.; Tsimpidi, Alexandra P.; Liu, Peng; Tsigaridis, Kostas; Hu, Yongtao; Rudokas, Jason R.; Miller, Paul J.; Nenes, Athanasios; Russell, Armistead G.",10.1021/acs.est.5b00473,2015/04/21,0013-936X,8,"Environmental Science & Technology",5133-5141,"American Chemical Society","Impacts of potential CO2-reduction policies on air quality in the United States",49,2015,24235,a10a9c51-85d3-4569-8c3c-98a68fe7b399,"Journal Article",/article/10.1021/acs.est.5b00473
/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,,1520-0477,12,"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/a1a1caa5-a3b6-4dd1-aef3-396aebc8cfed,https://data.globalchange.gov/reference/a1a1caa5-a3b6-4dd1-aef3-396aebc8cfed,a1a1caa5-a3b6-4dd1-aef3-396aebc8cfed,"Park, R.J., D.J. Jacob, M. Chin, and R.V. Martin",10.1029/2002JD003190,,0148-0227,D12,"Journal of Geophysical Research",4355,,"Sources of carbonaceous aerosols over the United States and implications for natural visibility",108,2003,18909,a1a1caa5-a3b6-4dd1-aef3-396aebc8cfed,"Journal Article",/article/10.1029/2002JD003190
/reference/a29b612b-8c28-4c93-9c18-19314babce89,https://data.globalchange.gov/reference/a29b612b-8c28-4c93-9c18-19314babce89,a29b612b-8c28-4c93-9c18-19314babce89,"Wehner, M.F.; J.R. Arnold; T. Knutson; K.E. Kunkel; A.N. LeGrande",10.7930/J0CJ8BNN,,,,,231-256,"U.S. Global Change Research Program","Droughts, Floods, and Wildfires",,2017,21566,a29b612b-8c28-4c93-9c18-19314babce89,"Book Section",/report/climate-science-special-report/chapter/drought-floods-hydrology
/reference/a65e5260-d143-49dd-b20e-c0fefddbef70,https://data.globalchange.gov/reference/a65e5260-d143-49dd-b20e-c0fefddbef70,a65e5260-d143-49dd-b20e-c0fefddbef70,"Shindell, D.Kuylenstierna, J. C. I.Vignati, E.van Dingenen, R.Amann, M.Klimont, Z.Anenberg, S. C.Muller, N.Janssens-Maenhout, G.Raes, F.Schwartz, J.Faluvegi, G.Pozzoli, L.Kupiainen, K.Hoglund-Isaksson, L.Emberson, L.Streets, D.Ramanathan, V.Hicks, K.Oanh, N. T. K.Milly, G.Williams, M.Demkine, V.Fowler, D.",10.1126/science.1210026,Jan,0036-8075,6065,Science,183-189,,"Simultaneously mitigating near-term climate change and improving human health and food security",335,2012,2849,a65e5260-d143-49dd-b20e-c0fefddbef70,"Journal Article",/article/10.1126/science.1210026
/reference/a891db17-805b-4736-a361-320864fd2da2,https://data.globalchange.gov/reference/a891db17-805b-4736-a361-320864fd2da2,a891db17-805b-4736-a361-320864fd2da2,"Shilpa Rao; Zbigniew Klimont; Joana Leitao; Keywan Riahi; van Dingenen, Rita; Lara Aleluia Reis; Katherine Calvin; Frank Dentener; Laurent Drouet; Shinichiro Fujimori; Mathijs Harmsen; Gunnar Luderer; Chris Heyes; Jessica Strefler; Massimo Tavoni; van Vuuren, Detlef P.",10.1088/1748-9326/11/12/124013,,1748-9326,12,"Environmental Research Letters",124013,,"A multi-model assessment of the co-benefits of climate mitigation for global air quality",11,2016,20843,a891db17-805b-4736-a361-320864fd2da2,"Journal Article",/article/10.1088/1748-9326/11/12/124013
/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,,1680-7324,5,"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/a9675625-6dcf-4e0d-89cd-721628a9efe1,https://data.globalchange.gov/reference/a9675625-6dcf-4e0d-89cd-721628a9efe1,a9675625-6dcf-4e0d-89cd-721628a9efe1,"Xing, Jia; Wang, Jiandong; Mathur, Rohit; Pleim, Jonathan; Wang, Shuxiao; Hogrefe, Christian; Gan, Chuen-Meei; Wong, David C.; Hao, Jiming",10.1021/acs.est.6b00767,2016/07/19,0013-936X,14,"Environmental Science & Technology",7527-7534,"American Chemical Society","Unexpected benefits of reducing aerosol cooling effects",50,2016,24220,a9675625-6dcf-4e0d-89cd-721628a9efe1,"Journal Article",/article/10.1021/acs.est.6b00767
/reference/aac67a5f-bf2c-4128-abbb-c47f57a51f44,https://data.globalchange.gov/reference/aac67a5f-bf2c-4128-abbb-c47f57a51f44,aac67a5f-bf2c-4128-abbb-c47f57a51f44,"WHO/Europe,",,,,,,302,,"Review of evidence on health aspects of air pollution — REVIHAAP project: Final technical report",,2013,24221,aac67a5f-bf2c-4128-abbb-c47f57a51f44,Report,/report/review-evidence-on-health-aspects-air-pollution-revihaap-project-final-technical-report
