90
Franklin, M., Chau, K., Cushing, L. J., & Johnston, J. E. (2019). Characterizing flaring from unconventional oil and gas operations in south Texas using satellite observations. Environmental
Science & Technology, 53(4), 2220–2228.
Garcia-Gonzales, D. A., Shamasunder, B., & Jerrett, M. (2019). Distance decay gradients in
hazardous air pollution concentrations around oil and natural gas facilities in the city of Los
Angeles: A pilot study. Environmental Research, 173, 232–236.
Goetz, J. D., Floerchinger, C., Fortner, E. C., Wormhoudt, J., Massoli, P., & Knighton, W. B. (2015).
Atmospheric emission characterization of Marcellus shale natural gas development sites.
Environmental Science & Technology, 49, 7012–7020.
Goetz, J. D., Avery, A., Werden, B., Floerchinger, C., Fortner, E. C., Wormhoudt, J., Massoli, P.,
Herndon, S. C., Kolb, C. E., Knighton, W. B., Peischl, J., Warneke, C., de Gouw, J. A., Shaw,
S. L., & DeCarlo, P. F. (2017). Analysis of local-scale background concentrations of methane
and other gas-phase species in the Marcellus shale. Elementa Science of the Anthropocene, 5,
1. https://doi.org/10.1525/elementa.182.
HEI (Health Effects Institute). (2019). Human exposure to unconventional oil and gas development: A literature survey for research planning: Special report 2 (Draft for Public Comment):
Boston, HEI-Energy Research Committee, 108 p. www.hei-energy.org
Horwell, C. J., Williamson, B. J., Donaldson, K., Le Blond, J. S., Damby, D. E., & Bowen,
L. (2012). The structure of volcanic cristobalite in relation to its toxicity: Relevance for the
variable crystalline silica hazard. Particle and Fibre Toxicology, 9, article no. 44. https://doi.
org/10.1186/1743-8977-9-44.
Johnson, D., Heltzel, R., & Oliver, D. (2019). Temporal variations in methane emissions from an
unconventional well site. ACS Omega, 4, 3708–3715.
Jones, J. B., & Segnit, E. R. (1972). Genesis of cristobalite and tridymite at low temperatures. Journal of the Geological Society of Australia, 18(4), 419–422. https://doi.
org/10.1080/00167617208728780.
Ladd, J. H. (2001). Chapter 4: An overview and development history of the Wattenberg field. In
D. S. Anderson, J. W. Robinson, J. E. Estes-Jackson, & E. B. Coalson (Eds.), Gas in the rockies
(pp. 29–42). Denver: Rocky Mountain Association of Geologists.
Litovitz, A., Curtright, A., Abramzon, S., Burger, N., & Samaras, C. (2013). Estimation of
regional air-quality damages from Marcellus shale natural gas extraction in Pennsylvania.
Environmental Research Letters, 8, 1–8.
Luck, B., Zimmerle, D., Vaughn, T., Lauderdale, T., Keen, K., & Harrison, M. (2019). Multiday
measurements of pneumatic controller emissions reveal the frequency of abnormal emissions
behavior at natural gas gathering stations. Environmental Science & Technology Letters, 6,
348–352. https://doi.org/10.1021/acs.estlett.9b00158.
Maskrey, J. R., Insley, A. L., Hynds, E. S., & Panko, J. M. (2016). Air monitoring of volatile
organic compounds at relevant receptors during hydraulic fracturing operations in Washington
County, Pennsylvania. Environmental Monitoring and Assessment, 188, 410., 12 p. https://doi.
org/10.1007/s10661-016-5410-4.
Moore, C. W., Zielinska, B., Pétron, G., & Jackson, R. B. (2014). Air impacts of increased natural
gas acquisition, processing, and use: A critical review. Environmental Science and Technology,
48, 8349–8359. https://doi.org/10.1021/es4053472.
Moore, M. T., Vinson, D. S., Whyte, C. J., Eymold, W. K., Walsh, T. B., & Darrah, T. H. (2018).
Differentiating between biogenic and thermogenic sources of natural gas in coalbed methane
reservoirs from the Illinois Basin using noble gas and hydrocarbon geochemistry. Geological
Society, London, Special Publications, 468, 151–188. https://doi.org/10.1144/SP468.8.
Nathan, B., Golston, L., O’Brien, A., Ross, K., Harrison, W., & Tao, L. (2015). Near-field characterization of methane emission variability from a compressor station using a model aircraft.
Environmental Science & Technology, 49, 7896–7903.
Nsanzineza, R., Capps, S. L., & Milford, J. B. (2019). Modeling emissions and ozone air quality
impacts of future scenarios for energy and power production in the Rocky Mountain states.
Environmental Science & Technology, 53(13), 7893–7902.
5 Fracking and Air Quality
Franklin, M., Chau, K., Cushing, L. J., & Johnston, J. E. (2019). Characterizing flaring from unconventional oil and gas operations in south Texas using satellite observations. Environmental
Science & Technology, 53(4), 2220–2228.
Garcia-Gonzales, D. A., Shamasunder, B., & Jerrett, M. (2019). Distance decay gradients in
hazardous air pollution concentrations around oil and natural gas facilities in the city of Los
Angeles: A pilot study. Environmental Research, 173, 232–236.
Goetz, J. D., Floerchinger, C., Fortner, E. C., Wormhoudt, J., Massoli, P., & Knighton, W. B. (2015).
Atmospheric emission characterization of Marcellus shale natural gas development sites.
Environmental Science & Technology, 49, 7012–7020.
Goetz, J. D., Avery, A., Werden, B., Floerchinger, C., Fortner, E. C., Wormhoudt, J., Massoli, P.,
Herndon, S. C., Kolb, C. E., Knighton, W. B., Peischl, J., Warneke, C., de Gouw, J. A., Shaw,
S. L., & DeCarlo, P. F. (2017). Analysis of local-scale background concentrations of methane
and other gas-phase species in the Marcellus shale. Elementa Science of the Anthropocene, 5,
1. https://doi.org/10.1525/elementa.182.
HEI (Health Effects Institute). (2019). Human exposure to unconventional oil and gas development: A literature survey for research planning: Special report 2 (Draft for Public Comment):
Boston, HEI-Energy Research Committee, 108 p. www.hei-energy.org
Horwell, C. J., Williamson, B. J., Donaldson, K., Le Blond, J. S., Damby, D. E., & Bowen,
L. (2012). The structure of volcanic cristobalite in relation to its toxicity: Relevance for the
variable crystalline silica hazard. Particle and Fibre Toxicology, 9, article no. 44. https://doi.
org/10.1186/1743-8977-9-44.
Johnson, D., Heltzel, R., & Oliver, D. (2019). Temporal variations in methane emissions from an
unconventional well site. ACS Omega, 4, 3708–3715.
Jones, J. B., & Segnit, E. R. (1972). Genesis of cristobalite and tridymite at low temperatures. Journal of the Geological Society of Australia, 18(4), 419–422. https://doi.
org/10.1080/00167617208728780.
Ladd, J. H. (2001). Chapter 4: An overview and development history of the Wattenberg field. In
D. S. Anderson, J. W. Robinson, J. E. Estes-Jackson, & E. B. Coalson (Eds.), Gas in the rockies
(pp. 29–42). Denver: Rocky Mountain Association of Geologists.
Litovitz, A., Curtright, A., Abramzon, S., Burger, N., & Samaras, C. (2013). Estimation of
regional air-quality damages from Marcellus shale natural gas extraction in Pennsylvania.
Environmental Research Letters, 8, 1–8.
Luck, B., Zimmerle, D., Vaughn, T., Lauderdale, T., Keen, K., & Harrison, M. (2019). Multiday
measurements of pneumatic controller emissions reveal the frequency of abnormal emissions
behavior at natural gas gathering stations. Environmental Science & Technology Letters, 6,
348–352. https://doi.org/10.1021/acs.estlett.9b00158.
Maskrey, J. R., Insley, A. L., Hynds, E. S., & Panko, J. M. (2016). Air monitoring of volatile
organic compounds at relevant receptors during hydraulic fracturing operations in Washington
County, Pennsylvania. Environmental Monitoring and Assessment, 188, 410., 12 p. https://doi.
org/10.1007/s10661-016-5410-4.
Moore, C. W., Zielinska, B., Pétron, G., & Jackson, R. B. (2014). Air impacts of increased natural
gas acquisition, processing, and use: A critical review. Environmental Science and Technology,
48, 8349–8359. https://doi.org/10.1021/es4053472.
Moore, M. T., Vinson, D. S., Whyte, C. J., Eymold, W. K., Walsh, T. B., & Darrah, T. H. (2018).
Differentiating between biogenic and thermogenic sources of natural gas in coalbed methane
reservoirs from the Illinois Basin using noble gas and hydrocarbon geochemistry. Geological
Society, London, Special Publications, 468, 151–188. https://doi.org/10.1144/SP468.8.
Nathan, B., Golston, L., O’Brien, A., Ross, K., Harrison, W., & Tao, L. (2015). Near-field characterization of methane emission variability from a compressor station using a model aircraft.
Environmental Science & Technology, 49, 7896–7903.
Nsanzineza, R., Capps, S. L., & Milford, J. B. (2019). Modeling emissions and ozone air quality
impacts of future scenarios for energy and power production in the Rocky Mountain states.
Environmental Science & Technology, 53(13), 7893–7902.
5 Fracking and Air Quality
