Author:
Gordan Alexander,Carter David,Liese Christopher
Abstract
AbstractGovernments responded to the Covid-19 pandemic with different policies to curtail the spread of the virus. We show how sportfishing levels are related to the stringency of Covid-19 policies. Specifically, we relate the total number of resident sportfishing trips taken each month in each of 16 U.S. states to a state-level index of COVID policy stringency. We model the number of recreational fishing trips taken in each state-month using a fixed effect Poisson regression model with state-specific seasonality and time trends. We estimate separate models for different fishing modes, and find that for fishing trips taken on private boats the number of trips may have increased by approximately 20% at moderate levels of stringency, while at high levels of stringency like those experienced in many states in March and April of 2020, trips may have stayed constant or declined by 10–20%. Similar inverse-U shaped relationships between trips and stringency are found for fishing trips from the shore and from charter boats.
Publisher
Springer Science and Business Media LLC
Reference28 articles.
1. Lovell, S.J., Hilger, J., Rollins, E., Olsen, N.A., Steinback, S. The Economic Contribution of Marine Angler Expenditures on Fishing Trips in the United States, 2017. NOAA Technical Memorandum NMFS-F/SPO-201, National Marine Fisheries Service, (March 2020).
2. Foundation, Outdoor. 2019 Outdoor Participation Report (Technical report, Outdoor Foundation, 2019).
3. Lewin, W.-C. et al. Potential environmental impacts of recreational fishing on marine fish stocks and ecosystems. Rev. Fisher. Sci. Aquacult. 27(3), 287–330 (2019).
4. Landry, Craig E., Bergstrom, John, Salazar, John & Turner, Dylan. How has the covid-19 pandemic affected outdoor recreation in the us? a revealed preference approach. Appl. Econ. Perspect. Policy 43(1), 443–457 (2021).
5. Pita, P. et al. First assessment of the impacts of the COVID-19 pandemic on global marine recreational fisheries. Front. Mar. Sci. 8, 2296–7745. https://doi.org/10.3389/fmars.2021.735741 (2021).