Technical Analysis of Freshwater Use as Part of a Responsibly Sourced Gas ESG Strategy
- 1 Colorado State University, Fort Collins, CO, USA
- 2 Colorado State University, Fort Collins, CO, USA
- 3 Colorado State University, Fort Collins, CO, USA
- 4 Project Canary, Denver, CO, USA
- 5 Colorado State University, Fort Collins, CO, USA
Abstract
The Unconventional Oil and Gas industry has seen growth over the last ten years that has drastically transformed the domestic energy outlook while bringing up increased concerns over climate and environmental issues. The rise of ESG and RSG can be seen as direct answers to these growing issues as communities and operators have both begun to demand better practices to limit the overall effects of UOG production. Few quantifiable metrics exist that holistically try to determine the overall effect UOG production has on local water resources. The FR2 metric/framework developed in this paper attempts to use commonly kept data such as water withdrawn and flowback volumes in conjunction with a new water stress index to quantify the effects operators are having on local water supplies. Testing this framework on a handful of operators from the Marcellus basin using open-source data revealed the value added by these methods as well as their use in a general RSG program.
- U.S. Energy Information Administration (2022) The Distribution of U.S. Oil and Natural Gas Wells by Production Rate. https://www.eia.gov/petroleum/wells/
- Jin, Y., Misra, S. and Han, Y. (2021) Multifrequency Electromagnetic Data Interpretation Using Stochastic Markov-Chain Monte Carlo and Simulated Annealing Methods. In: Multifrequency Electromagnetic Data Interpretation for Subsurface Characterization, Elsevier, Amsterdam, 311-330. https://doi.org/10.1016/B978-0-12-821439-8.00004-5
- Creutzig, F., Roy, J., Lamb, W.F., Azevedo, I.M., Bruine de Bruin, W., Dalkmann, H., Edelenbosch, O.Y., Geels, F.W., Grubler, A., Hepburn, C., Hertwich, E.G., Khosla, R., Mattauch, L., Minx, J.C., Ramakrishnan, A., Rao, N.D., Steinberger, J.K., Tavoni, M., ürge-Vorsatz, D. and Weber, E.U. (2018) Towards Demand-Side Solutions for Mitigating Climate Change. Nature Climate Change, 8, 260-263. https://doi.org/10.1038/s41558-018-0121-1
- Erickson, P., Lazarus, M. and Piggot, G. (2018) Limiting Fossil Fuel Production as the Next Big Step in Climate Policy. Nature Climate Change, 8, 1037-1043. https://doi.org/10.1038/s41558-018-0337-0
- Fry, M., Hoeinghaus, D.J., Ponette-González, A.G., Thompson, R. and La Point, T.W. (2012) Fracking vs Faucets: Balancing Energy Needs and Water Sustainability at Urban Frontiers. Environmental Science & Technology, 46, 7444-7445. https://doi.org/10.1021/es302472y
- Magill, B. (2015, July 1) Water Use Rises as Fracking Expands. Scientific American. https://www.scientificamerican.com/article/water-use-rises-as-fracking-expands/
- Kondash, A.J., Lauer, N.E. and Vengosh, A. (2018) The Intensification of the Water Footprint of Hydraulic Fracturing. Science Advances, 4, Article No. eaar5982. https://doi.org/10.1126/sciadv.aar5982
- Di Baldassarre, G., Wanders, N., Agha Kouchak, A., Kuil, L., Rangecroft, S., Veldkamp, T.I., Garcia, M., van Oel, P.R., Breinl, K. and Van Loon, A.F. (2018) Water Shortages Worsened by Reservoir Effects. Nature Sustainability, 1, 617-622. https://doi.org/10.1038/s41893-018-0159-0
- Drought.gov (2021) National Current Conditions. https://www.drought.gov/current-conditions
- Oh, E. and Kim, E. (2021, October 18) Responsibly Sourced Gas (RSG): A Primer. Wood Mackenzie. https://www.woodmac.com/news/opinion/responsibly-sourced-gas-rsg-a-primer/
- Wu, X., Xia, J., Guan, B., Liu, P., Ning, L., Yi, X., Yang, L. and Hu, S. (2019) Water Scarcity Assessment Based on Estimated Ultimate Energy Recovery and Water Footprint Framework during Shale Gas Production in the Changning Play. Journal of Cleaner Production, 241, Article ID: 118312. https://doi.org/10.1016/j.jclepro.2019.118312