11 research outputs found

    Fish Consumption and Mercury Exposure among Louisiana Recreational Anglers

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    Ba c k g r o u n d: Methylmercury (MeHg) exposure assessments among average fish consumers in the United States may underestimate exposures among U.S. subpopulations with high intakes of region-ally specific fish. obj e c t i v e s: We examined relationships among fish consumption, estimated mercury (Hg) intake, and measured Hg exposure within one such potentially highlyexposed group, recreational anglers in the state of Louisiana, USA. Me t h o d s: We surveyed 534 anglers in 2006 using interviews at boat launches and fishing tourna-ments combined with an Internet-based survey method. Hair samples from 402 of these anglers were collected and analyzed for total Hg. Questionnaires provided information on species-specific fish consumption during the 3 months before the survey. re s u l t s: Anglers’ median hairHg concentration was 0.81 μg/g (n = 398; range, 0.02–10.7 μg/g);40% of participants had levels >1 μg/g, which approximately corresponds to the U.S. Environmental Protection Agency’s reference dose. Fish consumption and Hg intake were significantly positively associated with hairHg. Participants reported consuming nearly 80 different fish types, many of which are specific to the region. Unlike the general U.S. population, which acquires most of its Hg from commercial seafood sources, approximately 64% of participants’ fish meals and 74% of their estimated Hg intake came from recreationally caught seafood. co n c l u s i o n s: Study participants had relatively elevated hairHg concentrations and reported con-sumption of a wide variety of fish, particularly locally caught fish. This group represents a highlyexposed subpopulation with an exposure profile that differs from fish consumers in other regions of the United States, suggesting a need for more regionallyspecific exposure estimates and public health advisories.ISSN:1552-9924ISSN:0091-676

    Environmental risks and opportunities of orphaned oil and gas wells in the United States

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    Hundreds of thousands of documented and undocumented orphaned oil and gas wells exist in the United States (U.S.). These wells have the potential to contaminate water supplies, degrade ecosystems, and emit methane and other air pollutants. Thus, orphaned wells present risks to climate stability and to environmental and human health, which can be reduced by plugging. To quantify environmental risks and opportunities of well plugging at the national level, we analyze data on 81 857 documented orphaned wells across the U.S. We find that >\gt 4.6 million people live within 1 km of a documented orphaned well. 35% of the documented orphaned wells are located within 1 km of a domestic groundwater well, yet only 8% of the wells have groundwater quality data within a 1 km radius. Methane emissions from the documented orphaned wells represent approximately 3%–6% of total U.S. methane emissions from abandoned oil and gas wells, but this estimate is based on measurements at <\lt 0.03% of U.S. abandoned wells. 91% of the documented orphaned wells overlie formations favorable for geologic storage of carbon dioxide and hydrogen, meaning that orphaned well plugging can reduce leakage risks from future storage projects. Finally, we estimate plugging costs for documented orphaned wells to exceed the $4.7 billion federal funding by 30%–80%, emphasizing the importance of prioritizing federal spending on wells with large remediation benefits. Overall, environmental monitoring data are not extensive enough to quantify risks, especially those related to air and water quality and human health. Plugging orphaned wells can provide opportunities for geologic storage of carbon dioxide and hydrogen and geothermal energy development, thereby facilitating efforts to transition to net-zero energy systems. Our analysis on environmental risks and opportunities of orphaned wells provides a framework that can be used to manage the millions of documented and undocumented orphaned wells in the U.S. and abroad
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