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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2022. Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop. Washington, DC: The National Academies Press. doi: 10.17226/26465.
×

References

Abatzoglou, J. T., and A. P. Williams. 2016. Impact of anthropogenic climate change on wildfire across western US forests. Proceedings of the National Academy of Sciences 113(42):11770-11775. https://doi.org/10.1073/pnas.1607171113.

Adams, K., D. S. Greenbaum, R. Shaikh, A. M. van Erp, and A. G. Russell. 2015. Particulate matter components, sources, and health: Systematic approaches to testing effects. Journal of the Air & Waste Management Association 65(5):544-558. https://doi.org/10.1080/10962247.2014.1001884.

Alvarado, M. J., C. R. Lonsdale, R. J. Yokelson, S. K. Akagi, H. Coe, J. S. Craven, E. V. Fischer, G. R. McMeeking, J. H. Seinfeld, T. Soni, J. W. Taylor, D. R. Weise, and C. E. Wold. 2015. Investigating the links between ozone and organic aerosol chemistry in a biomass burning plume from a prescribed fire in California chaparral. Atmospheric Chemistry and Physics 15(12):6667-6688. https://doi.org/10.5194/acp-15-6667-2015.

Balch, J. K., B. A. Bradley, J. T. Abatzoglou, R. C. Nagy, E. J. Fusco, and A. L. Mahood. 2017. Human-started wildfires expand the fire niche across the United States. Proceedings of the National Academy of Sciences of the United States of America 114(11):2946-2951. https://doi.org/10.1073/pnas.1617394114.

Balch, J. K., T. Schoennagel, A. P. Williams, J. T. Abatzoglou, M. E. Cattau, N. P. Mietkiewicz, and L. A. St. Denis. 2018. Switching on the big burn of 2017. Fire 1(1):17. https://doi.org/10.3390/fire1010017

Baron, N. 2010. Escape from the Ivory Tower: A Guide to Making Your Science Matter. Washington, DC: Island Press.

Bi, J., A. Wildani, H. H. Chang, and Y. Liu. 2020. Incorporating low-cost sensor measurements into high-resolution PM2.5 modeling at a large spatial scale. Environmental Science & Technology 54(4):2152-2162. https://doi.org/10.1021/acs.est.9b06046.

Borchers Arriagada, N., J. A. Horsley, A. J. Palmer, G. G. Morgan, R. Tham, and F. H. Johnston. 2019. Association between fire smoke fine particulate matter and asthma-related outcomes: Systematic review and meta-analysis. Environmental Research 179(Pt A):108777. https://doi.org/10.1016/j.envres.2019.108777.

Brey, S. J., and E. V. Fischer. 2016. Smoke in the city: How often and where does smoke impact summertime ozone in the United States? Environmental Science & Technology 50(3):1288-1294. https://doi.org/10.1021/acs.est.5b05218.

Brook, R. D., S. Rajagopalan, C. A. Pope, 3rd, J. R. Brook, A. Bhatnagar, A. V. Diez-Roux, F. Holguin, Y. Hong, R. V. Luepker, M. A. Mittleman, A. Peters, D. Siscovick, S. C. Smith, Jr., L. Whitsel, and J. D. Kaufman. 2010. Particulate matter air pollution and cardiovascular disease: An update to the scientific statement from the American Heart Association. Circulation 121(21):2331-2378. https://doi.org/10.1161/CIR.0b013e3181dbece1.

Coker, R. H., C. J. Murphy, M. Johannsen, G. Galvin, and B. C. Ruby. 2019. Wildland firefighting: Adverse influence on indices of metabolic and cardiovascular health. Journal of Occupational and Environmental Medicine 61(3):e91-e94. https://doi.org/10.1097/jom.0000000000001535.

Croft, D. P., W. Zhang, S. Lin, S. W. Thurston, P. K. Hopke, E. van Wijngaarden, S. Squizzato, M. Masiol, M. J. Utell, and D. Q. Rich. 2020. Associations between source-specific particulate matter and respiratory infections in New York State adults. Environmental Science & Technology 54(2):975-984. https://doi.org/10.1021/acs.est.9b04295.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2022. Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop. Washington, DC: The National Academies Press. doi: 10.17226/26465.
×

Davies, I. P., R. D. Haugo, J. C. Robertson, and P. S. Levin. 2018. The unequal vulnerability of communities of color to wildfire. PLOS ONE 13(11):e0205825. https://doi.org/10.1371/journal.pone.0205825.

DeFlorio-Barker, S., J. Crooks, J. Reyes, and A. G. Rappold. 2019. Cardiopulmonary effects of fine particulate matter exposure among older adults, during wildfire and non-wildfire periods, in the United States 2008-2010. Environmental Health Perspectives 127(3):37006. https://doi.org/10.1289/ehp3860.

Dennison, P. E., S. C. Brewer, J. D. Arnold, and M. A. Moritz. 2014. Large wildfire trends in the western United States, 1984–2011. Geophysical Research Letters 41(8):2928-2933. https://doi.org/10.1002/2014GL059576.

Garofalo, L. A., M. A. Pothier, E. J. T. Levin, T. Campos, S. M. Kreidenweis, and D. K. Farmer. 2019. Emission and evolution of submicron organic aerosol in smoke from wildfires in the western United States. ACS Earth and Space Chemistry 3(7):1237-1247. https://doi.org/10.1021/acsearthspacechem.9b00125.

Geng, G., N. L. Murray, H. H. Chang, and Y. Liu. 2018. The sensitivity of satellite-based PM2.5 estimates to its inputs: Implications to model development in data-poor regions. Environment International 121(Pt 1):550-560. https://doi.org/10.1016/j.envint.2018.09.051.

Henderson, S. B. 2020. The COVID-19 pandemic and wildfire smoke: Potentially concomitant disasters. American Journal of Public Health 110(8):1140-1142. https://doi.org/10.2105/ajph.2020.305744.

Hodshire, A. L., A. Akherati, M. J. Alvarado, B. Brown-Steiner, S. H. Jathar, J. L. Jimenez, S. M. Kreidenweis, C. R. Lonsdale, T. B. Onasch, A. M. Ortega, and J. R. Pierce. 2019. Aging effects on biomass burning aerosol mass and composition: A critical review of field and laboratory studies. Environmental Science & Technology 53(17):10007-10022. https://doi.org/10.1021/acs.est.9b02588.

Holstius, D. M., C. E. Reid, B. M. Jesdale, and R. Morello-Frosch. 2012. Birth weight following pregnancy during the 2003 Southern California wildfires. Environmental Health Perspectives 120(9):1340-1345. https://doi.org/10.1289/ehp.1104515.

Jaffe, D. A., S. M. O’Neill, N. K. Larkin, A. L. Holder, D. L. Peterson, J. E. Halofsky, and A. G. Rappold. 2020. Wildfire and prescribed burning impacts on air quality in the United States. Journal of the Air & Waste Management Association 70(6):583-615. https://doi.org/10.1080/10962247.2020.1749731.

Jia, G., E. Shevliakova, P. Artaxo, N. D. Noblet-Ducoudré, R. Houghton, J. House, K. Kitajima, C. Lennard, A. Popp, A. Sirin, R. Sukumar, and L. Verchot. 2019. Land–climate interactions. In Climate Change and Land: An IPCC Special Report on Climate Change, Desertification, Land Degradation, Sustainable Land Management, Food Security, and Greenhouse Gas Fluxes in Terrestrial Ecosystems. P. R. Shukla, J. Skea, E. C. Buendia, V. Masson-Delmotte, H.-O. Pörtner, D. C. Roberts, P. Zhai, R. Slade, S. Connors, R. v. Diemen, M. Ferrat, E. Haughey, S. Luz, S. Neogi, M. Pathak, J. Petzold, J. P. Pereira, P. Vyas, E. Huntley, K. Kissick, M. Belkacemi, and J. Malley, eds. Geneva, Switzerland: Intergovernmental Panel on Climate Change.

Juncosa Calahorrano, J. F., J. Lindaas, K. O’Dell, B. B. Palm, Q. Peng, F. Flocke, I. B. Pollack, L. A. Garofalo, D. K. Farmer, J. R. Pierce, J. L. Collett Jr., A. Weinheimer, T. Campos, R. S. Hornbrook, S. R. Hall, K. Ullmann, M. A. Pothier, E. C. Apel, W. Permar, L. Hu, A. J. Hills, D. Montzka, G. Tyndall, J. A. Thornton, and E. V. Fischer. 2021. Daytime oxidized reactive nitrogen partitioning in western U.S. wildfire smoke plumes. Journal of Geophysical Research: Atmospheres 126(4): e2020JD033484. https://doi.org/10.1029/2020JD033484.

Kiser, D., W. J. Metcalf, G. Elhanan, B. Schnieder, K. Schlauch, A. Joros, C. Petersen, and J. Grzymski. 2020. Particulate matter and emergency visits for asthma: A time-series study of their

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2022. Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop. Washington, DC: The National Academies Press. doi: 10.17226/26465.
×

association in the presence and absence of wildfire smoke in Reno, Nevada, 2013–2018. Environmental Health 19(1):92. https://doi.org/10.1186/s12940-020-00646-2.

Kumar, A., R. B. Pierce, R. Ahmadov, G. Pereira, S. Freitas, G. Grell, C. Schmidt, A. Lenzen, J. P. Schwarz, A. E. Perring, J. M. Katich, J. Hair, J. L. Jimenez, P. Campuzano-Jost, and H. Guo. 2022. Simulating wildfire emissions and plumerise using geostationary satellite fire radiative power measurements: A case study of the 2019 Williams Flats fire. Atmospheric Chemistry and Physics Discussions 2022:1-68. https://doi.org/10.5194/acp-2022-33.

Landguth, E. L., Z. A. Holden, J. Graham, B. Stark, E. B. Mokhtari, E. Kaleczyc, S. Anderson, S. Urbanski, M. Jolly, E. O. Semmens, D. A. Warren, A. Swanson, E. Stone, and C. Noonan. 2020. The delayed effect of wildfire season particulate matter on subsequent influenza season in a mountain west region of the USA. Environment International 139:105668. https://doi.org/10.1016/j.envint.2020.105668.

McClure, C. D., and D. A. Jaffe. 2018. US particulate matter air quality improves except in wildfire-prone areas. Proceedings of the National Academy of Sciences of the United States of America 115(31):7901-7906. https://doi.org/10.1073/pnas.1804353115.

McKenzie, D., and J. S. Littell. 2016. Climate change and the eco-hydrology of fire: Will area burned increase in a warming western USA? Ecological Applications 27(1):26-36.

McKenzie, D., U. Shankar, R. E. Keane, E. N. Stavros, W. E. Heilman, D. G. Fox, and A. C. Riebau. 2014. Smoke consequences of new wildfire regimes driven by climate change. Earth’s Future 2(2):35-59. https://doi.org/10.1002/2013EF000180.

Mietkiewicz, N., J. K. Balch, T. Schoennagel, S. Leyk, L. A. St. Denis, and B. A. Bradley. 2020. In the line of fire: Consequences of human-ignited wildfires to homes in the U.S. (1992–2015). Fire 3(3):50. https://doi.org/10.3390/fire3030050

Mirabelli, M. C., T. K. Boehmer, S. A. Damon, K. D. Sircar, H. K. Wall, F. Y. Yip, H. S. Zahran, and P. L. Garbe. 2018. Air quality awareness among U.S. adults with respiratory and heart disease. American Journal of Preventive Medicine 54(5):679-687. https://doi.org/10.1016/j.amepre.2018.01.037.

Mu, M., J. T. Randerson, G. R. van der Werf, L. Giglio, P. Kasibhatla, D. Morton, G. J. Collatz, R. S. DeFries, E. J. Hyer, E. M. Prins, D. W. T. Griffith, D. Wunch, G. C. Toon, V. Sherlock, and P. O. Wennberg. 2011. Daily and 3-hourly variability in global fire emissions and consequences for atmospheric model predictions of carbon monoxide. Journal of Geophysical Research: Atmospheres 116(D24). https://doi.org/10.1029/2011JD016245.

Navarro, K. M., M. T. Kleinman, C. E. Mackay, T. E. Reinhardt, J. R. Balmes, G. A. Broyles, R. D. Ottmar, L. P. Naher, and J. W. Domitrovich. 2019. Wildland firefighter smoke exposure and risk of lung cancer and cardiovascular disease mortality. Environmental Research 173:462-468. https://doi.org/10.1016/j.envres.2019.03.060.

Nergui, T., Y. Lee, S. H. Chung, B. K. Lamb, R. J. Yokelson, and K. Barsanti. 2017. Integrating measurement based new knowledge on wildland fire emissions and chemistry into the AIRPACT air quality forecasting for the Pacific Northwest. Abstract# A41L‐06. Presented at American Geophysical Union Fall Meeting, New Orleans, LA.

Nolte, C. G., P. D. Dolwick, N. Fann, L. W. Horowitz, V. Naik, R. W. Pinder, T. L. Spero, D. A. Winner, and L. H. Ziska. 2018. Air quality. In Impacts, Risks, and Adaptation in the United States: Fourth National Climate Assessment, Volume II. D. R. Reidmiller, C. W. Avery, D. R. Easterling, K. E. Kunkel, K. L. M. Lewis, T. K. Maycock, and B. C. Stewart, eds. Washington, DC: U.S. Global Change Research Program.

O’Dell, K., B. Ford, E. V. Fischer, and J. R. Pierce. 2019. Contribution of wildland-fire smoke to US PM2.5 and its influence on recent trends. Environmental Science & Technology 53(4):1797-1804. https://doi.org/10.1021/acs.est.8b05430.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2022. Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop. Washington, DC: The National Academies Press. doi: 10.17226/26465.
×

O’Dell, K., R. S. Hornbrook, W. Permar, E. J. T. Levin, L. A. Garofalo, E. C. Apel, N. J. Blake, A. Jarnot, M. A. Pothier, D. K. Farmer, L. Hu, T. Campos, B. Ford, J. R. Pierce, and E. V. Fischer. 2020. Hazardous air pollutants in fresh and aged western US wildfire smoke and implications for long-term exposure. Environmental Science & Technology 54(19):11838-11847. https://doi.org/10.1021/acs.est.0c04497.

Orr, A., C. A. L. Migliaccio, M. Buford, S. Ballou, and C. T. Migliaccio. 2020. Sustained effects on lung function in community members following exposure to hazardous PM2.5 levels from wildfire smoke. Toxics 8(3):53. https://doi.org/10.3390/toxics8030053.

Palm, B. B., Q. Peng, C. D. Fredrickson, B. H. Lee, L. A. Garofalo, M. A. Pothier, S. M. Kreidenweis, D. K. Farmer, R. P. Pokhrel, Y. Shen, S. M. Murphy, W. Permar, L. Hu, T. L. Campos, S. R. Hall, K. Ullmann, X. Zhang, F. Flocke, E. V. Fischer, and J. A. Thornton. 2020. Quantification of organic aerosol and brown carbon evolution in fresh wildfire plumes. Proceedings of the National Academy of Sciences of the United States of America 117(47):29469-29477. https://doi.org/10.1073/pnas.2012218117.

Peng, Q., B. B. Palm, K. E. Melander, B. H. Lee, S. R. Hall, K. Ullmann, T. Campos, A. J. Weinheimer, E. C. Apel, R. S. Hornbrook, A. J. Hills, D. D. Montzka, F. Flocke, L. Hu, W. Permar, C. Wielgasz, J. Lindaas, I. B. Pollack, E. V. Fischer, T. H. Bertram, and J. A. Thornton. 2020. HONO emissions from western U.S. wildfires provide dominant radical source in fresh wildfire smoke. Environmental Science & Technology 54(10):5954-5963. https://doi.org/10.1021/acs.est.0c00126.

Reid, C. E., M. Brauer, F. H. Johnston, M. Jerrett, J. R. Balmes, and C. T. Elliott. 2016. Critical review of health impacts of wildfire smoke exposure. Environmental Health Perspectives 124(9):1334-1343. https://doi.org/10.1289/ehp.1409277.

Selimovic, V., R. J. Yokelson, G. R. McMeeking, and S. Coefield. 2020. Aerosol mass and optical properties, smoke influence on O3, and high NO3 production rates in a western U.S. city impacted by wildfires. Journal of Geophysical Research: Atmospheres 125(16):e2020JD032791. https://doi.org/10.1029/2020JD032791.

Semmens, E. O., J. Domitrovich, K. Conway, and C. W. Noonan. 2016. A cross-sectional survey of occupational history as a wildland firefighter and health. American Journal of Industrial Medicine 59(4):330-335. https://doi.org/10.1002/ajim.22566.

Shepherd, M. 2016. 9 tips for communicating science to people who are not scientists. Forbes, November 22. https://www.forbes.com/sites/marshallshepherd/2016/11/22/9-tips-for-communicating-science-to-people-who-are-not-scientists/.

Spracklen, D. V., L. J. Mickley, J. A. Logan, R. C. Hudman, R. Yevich, M. D. Flannigan, and A. L. Westerling. 2009. Impacts of climate change from 2000 to 2050 on wildfire activity and carbonaceous aerosol concentrations in the western United States. Journal of Geophysical Research: Atmospheres 114(D20). https://doi.org/10.1029/2008JD010966.

Stavros, E. N., J. Abatzoglou, N. K. Larkin, D. McKenzie, and E. A. Steel. 2014. Climate and very large wildland fires in the contiguous western USA. International Journal of Wildland Fire 23(7):899-914. https://doi.org/10.1071/WF13169.

Stowell, J. D., G. Geng, E. Saikawa, H. H. Chang, J. Fu, C.-E. Yang, Q. Zhu, Y. Liu, and M. J. Strickland. 2019. Associations of wildfire smoke PM2.5 exposure with cardiorespiratory events in Colorado 2011–2014. Environment International 133:105151. https://doi.org/10.1016/j.envint.2019.105151.

Vaillant, N. M., and E. D. Reinhardt. 2017. An evaluation of the Forest Service Hazardous Fuels Treatment Program—Are we treating enough to promote resiliency or reduce hazard? Journal of Forestry 115(4):300-308. https://doi.org/10.5849/jof.16-067.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2022. Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop. Washington, DC: The National Academies Press. doi: 10.17226/26465.
×

Wen, X.-J., L. Balluz, and A. Mokdad. 2009. Association between media alerts of air quality index and change of outdoor activity among adult asthma in six states, BRFSS, 2005. Journal of Community Health 34(1):40-46. https://doi.org/10.1007/s10900-008-9126-4.

Westerling, A. L. 2016. Increasing western US forest wildfire activity: Sensitivity to changes in the timing of spring. Philosophical Transactions of the Royal Society B: Biological Sciences 371(1696): 20150178. https://doi.org/10.1098/rstb.2015.0178.

Westerling, A. L., H. G. Hidalgo, D. R. Cayan, and T. W. Swetnam. 2006. Warming and earlier spring increase western U.S. forest wildfire activity. Science 313(5789):940-943. https://doi.org/10.1126/science.1128834.

Wettstein, Z. S., S. Hoshiko, J. Fahimi, R. J. Harrison, W. E. Cascio, and A. G. Rappold. 2018. Cardiovascular and cerebrovascular emergency department visits associated with wildfire smoke exposure in California in 2015. Journal of the American Heart Association 7(8). https://doi.org/10.1161/jaha.117.007492.

Williams, A. P., J. T. Abatzoglou, A. Gershunov, J. Guzman-Morales, D. A. Bishop, J. K. Balch, and D. P. Lettenmaier. 2019. Observed impacts of anthropogenic climate change on wildfire in California. Earth’s Future 7(8):892-910. https://doi.org/10.1029/2019EF001210.

Xi, Y., A. V. Kshirsagar, T. J. Wade, D. B. Richardson, M. A. Brookhart, L. Wyatt, and A. G. Rappold. 2020. Mortality in US hemodialysis patients following exposure to wildfire smoke. Journal of the American Society of Nephrology 31(8):1824-1835. https://doi.org/10.1681/asn.2019101066.

Yao, J., M. Brauer, J. Wei, K. M. McGrail, F. H. Johnston, and S. B. Henderson. 2020. Sub-daily exposure to fine particulate matter and ambulance dispatches during wildfire seasons: A case-crossover study in British Columbia, Canada. Environmental Health Perspectives 128(6):067006. https://doi.org/10.1289/EHP5792.

Yue, X., L. J. Mickley, J. A. Logan, and J. O. Kaplan. 2013. Ensemble projections of wildfire activity and carbonaceous aerosol concentrations over the western United States in the mid-21st century. Atmospheric Environment 77:767-780. https://doi.org/10.1016/j.atmosenv.2013.06.003.

Zhu, Y., J. Xie, F. Huang, and L. Cao. 2020. Association between short-term exposure to air pollution and COVID-19 infection: Evidence from China. Science of The Total Environment 727:138704. https://doi.org/10.1016/j.scitotenv.2020.138704.

Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2022. Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop. Washington, DC: The National Academies Press. doi: 10.17226/26465.
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2022. Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop. Washington, DC: The National Academies Press. doi: 10.17226/26465.
×
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2022. Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop. Washington, DC: The National Academies Press. doi: 10.17226/26465.
×
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2022. Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop. Washington, DC: The National Academies Press. doi: 10.17226/26465.
×
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Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2022. Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop. Washington, DC: The National Academies Press. doi: 10.17226/26465.
×
Page 54
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2022. Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop. Washington, DC: The National Academies Press. doi: 10.17226/26465.
×
Page 55
Suggested Citation:"References." National Academies of Sciences, Engineering, and Medicine. 2022. Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop. Washington, DC: The National Academies Press. doi: 10.17226/26465.
×
Page 56
Next: Appendix A: Statement of Task »
Wildland Fires: Toward Improved Understanding and Forecasting of Air Quality Impacts: Proceedings of a Workshop Get This Book
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Wildland fires pose a growing threat to air quality and human health. Fire is a natural part of many landscapes, but the extent of area burned and the severity of fires have been increasing, concurrent with human movement into previously uninhabited fire-prone areas and forest management practices that have increased fuel loads. These changes heighten the risk of exposure to fire itself and emissions (smoke), which can travel thousands of miles and affect millions of people, creating local, regional, and national air quality and health concerns.

To address this growing threat, the National Academies brought together atmospheric chemistry and health research communities, natural resource managers, and decision makers to discuss current knowledge and needs surrounding how wildland fire emissions affect air quality and human health. Participants also explored opportunities to better bridge these communities to advance science and improve the production and exchange of information. This publication summarizes the workshop discussions and themes that emerged throughout the meeting.

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