13
tional oil and gas extraction: Preliminary results. Journal of Occupational and Environmental
Hygiene, 11(10), D174–D184.
Fisher, K., & Warpinski, N. (2012). Hydraulic fracture height growth: Real data. SPE Production
& Operations, 27(1), 8–19.
Forde, O. M., Mayer, K. U., & Hunkeler, D. (2019). Identification, spatial extent, and distribution
of fugitive gas migration on the well pad scale. Science of the Total Environment, 652, 356–366.
Gassiat, C., Gleeson, T., Lefebvre, R. R., & McKenzie, J. (2013). Hydraulic fracturing in faulted
sedimentary basins: Numerical simulation of potential contamination of shallow aquifers over
long time scales. Water Resources Research, 49(12), 8310–8327.
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.
Hammack, R., Harbert, W., Sharma, S., Stewart, B., Capo, R., Wall, A., Wells, A., Diehl, R.,
Blaushild, D., Sams, J., & Veloski, G. (2014). An evaluation of fracture growth and gas/
fluid migration as horizontal Marcellus shale gas Wells are hydraulically fractured in Greene
County, Pennsylvania. NETL-TRS-3-2014; EPAct technical report series; U.S. Department of
Energy, National Energy Technology Laboratory: Pittsburgh, PA, 76 p.
Hayes, T. (2009). Sampling and analysis of water streams associated with the development of
Marcellus shale gas. Gas Technology Institute, Chicago; final report for Marcellus Shale
Coalition, 49 p.
Hladik, M. L., Focazio, M. J., & Engle, M. (2014). Discharges of produced waters from oil and gas
extraction via wastewater treatment plants are sources of disinfection by-products to receiving
streams. Science of the Total Environment, 466, 1085–1093.
Ingraffea, A. R., Wells, M. T., Santora, R. L., & Shonkoff, S. B. (2014). Assessment and risk
analysis of casing and cement impairment in oil and gas wells in Pennsylvania, 2000–2012.
Proceedings of the National Academy of Sciences, 11, 10955–11096.
Jackson, R. E., Gorody, A. W., Mayer, B., Roy, J. W., Ryan, M. C., & Van Stempvoort, D. R. (2013).
Groundwater protection and unconventional gas extraction: The critical need for field-based
hydrogeological research. Groundwater, 51(4), 488–510.
Kahrilas, G. A., Blotevogel, J., Corrin, E. R., & Borch, T. (2016). Downhole transformation of
the hydraulic fracturing fluid biocide glutaraldehyde: Implications for flowback and produced
water quality. Environmental Science & Technology, 50, 11414–11423.
Kell, S. (2011). State oil and gas agency groundwater investigations and their role in advancing
regulatory reforms: A two-state review. Ohio and Texas: Report prepared for the Groundwater
Protection Research and Education Foundation of the Ground Water Protection Council, 165 p.
Krupnick, A. J., & Echarte, I. (2017). Health impacts of unconventional oil and gas development.
Washington, DC: Resources for the Future (RFF). 32 p.
Lefebvre, R. (2016). Mechanisms leading to potential impacts of shale gas development on
groundwater quality. Wiley Interdisciplinary Reviews: Water, 4(1), e1188., 15 p. https://doi.
org/10.1002/wat2.1188.
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.
Llewellyn, G. T., Dorman, F., Westland, J. L., Yoxtheimer, D., Grieve, P., Sowers, T., HumstonFulmer, E., & Brantley, S. L. (2015). Evaluating a groundwater supply contamination incident attributed to Marcellus Shale gas development. Proceedings of the National Academy of
Sciences, 112(20), 6325–6330.
McMahon, P. B., Caldwell, R. R., Galloway, J. M., Valder, J. F., & Hunt, A. G. (2015). Quality and
age of shallow groundwater in the Bakken formation production area, Williston basin, Montana
and North Dakota. Groundwater, 53, 81–94.
References
tional oil and gas extraction: Preliminary results. Journal of Occupational and Environmental
Hygiene, 11(10), D174–D184.
Fisher, K., & Warpinski, N. (2012). Hydraulic fracture height growth: Real data. SPE Production
& Operations, 27(1), 8–19.
Forde, O. M., Mayer, K. U., & Hunkeler, D. (2019). Identification, spatial extent, and distribution
of fugitive gas migration on the well pad scale. Science of the Total Environment, 652, 356–366.
Gassiat, C., Gleeson, T., Lefebvre, R. R., & McKenzie, J. (2013). Hydraulic fracturing in faulted
sedimentary basins: Numerical simulation of potential contamination of shallow aquifers over
long time scales. Water Resources Research, 49(12), 8310–8327.
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.
Hammack, R., Harbert, W., Sharma, S., Stewart, B., Capo, R., Wall, A., Wells, A., Diehl, R.,
Blaushild, D., Sams, J., & Veloski, G. (2014). An evaluation of fracture growth and gas/
fluid migration as horizontal Marcellus shale gas Wells are hydraulically fractured in Greene
County, Pennsylvania. NETL-TRS-3-2014; EPAct technical report series; U.S. Department of
Energy, National Energy Technology Laboratory: Pittsburgh, PA, 76 p.
Hayes, T. (2009). Sampling and analysis of water streams associated with the development of
Marcellus shale gas. Gas Technology Institute, Chicago; final report for Marcellus Shale
Coalition, 49 p.
Hladik, M. L., Focazio, M. J., & Engle, M. (2014). Discharges of produced waters from oil and gas
extraction via wastewater treatment plants are sources of disinfection by-products to receiving
streams. Science of the Total Environment, 466, 1085–1093.
Ingraffea, A. R., Wells, M. T., Santora, R. L., & Shonkoff, S. B. (2014). Assessment and risk
analysis of casing and cement impairment in oil and gas wells in Pennsylvania, 2000–2012.
Proceedings of the National Academy of Sciences, 11, 10955–11096.
Jackson, R. E., Gorody, A. W., Mayer, B., Roy, J. W., Ryan, M. C., & Van Stempvoort, D. R. (2013).
Groundwater protection and unconventional gas extraction: The critical need for field-based
hydrogeological research. Groundwater, 51(4), 488–510.
Kahrilas, G. A., Blotevogel, J., Corrin, E. R., & Borch, T. (2016). Downhole transformation of
the hydraulic fracturing fluid biocide glutaraldehyde: Implications for flowback and produced
water quality. Environmental Science & Technology, 50, 11414–11423.
Kell, S. (2011). State oil and gas agency groundwater investigations and their role in advancing
regulatory reforms: A two-state review. Ohio and Texas: Report prepared for the Groundwater
Protection Research and Education Foundation of the Ground Water Protection Council, 165 p.
Krupnick, A. J., & Echarte, I. (2017). Health impacts of unconventional oil and gas development.
Washington, DC: Resources for the Future (RFF). 32 p.
Lefebvre, R. (2016). Mechanisms leading to potential impacts of shale gas development on
groundwater quality. Wiley Interdisciplinary Reviews: Water, 4(1), e1188., 15 p. https://doi.
org/10.1002/wat2.1188.
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.
Llewellyn, G. T., Dorman, F., Westland, J. L., Yoxtheimer, D., Grieve, P., Sowers, T., HumstonFulmer, E., & Brantley, S. L. (2015). Evaluating a groundwater supply contamination incident attributed to Marcellus Shale gas development. Proceedings of the National Academy of
Sciences, 112(20), 6325–6330.
McMahon, P. B., Caldwell, R. R., Galloway, J. M., Valder, J. F., & Hunt, A. G. (2015). Quality and
age of shallow groundwater in the Bakken formation production area, Williston basin, Montana
and North Dakota. Groundwater, 53, 81–94.
References
