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    G

    Geological Survey of Alabama

    EST. 1848
    152论文总数
    2,845引用总数

    论文量&引用量时间轴

    机构学者

    排序
    Gheorghe Ponta
    Gheorghe Ponta
    P.E. LaMoreaux and Associates 1009A, 23rd Avenue Tuscaloosa AL 35405 USA
    论文:18引用:0H-index:0
    Jun A. Ebersole
    Jun A. Ebersole
    McWane Sci Ctr
    论文:17引用:0H-index:0
    Gary L. Stringer
    Gary L. Stringer
    Univ Louisiana, Geol, Monroe, LA 71209 USA
    论文:16引用:0H-index:0
    Charles N. Ciampaglio
    Charles N. Ciampaglio
    Department of Science, Mathematics, and Engineering, Wright State University
    论文:14引用:0H-index:0
    David J. Cicimurri
    David J. Cicimurri
    Geology Museum
    论文:13引用:0H-index:0
    Jack C. Pashin
    Jack C. Pashin
    Geological Survey of Alabama
    论文:13引用:0H-index:0
    Denise J. Hills
    Denise J. Hills
    Department of Geology and Geophysics, University of Hawaii
    论文:12引用:0H-index:0
    Ea Mancini
    Ea Mancini
    GEOL SURVEY ALABAMA
    论文:10引用:0H-index:0
    David C. Kopaska-Merkel
    David C. Kopaska-Merkel
    Geological Survey of Alabama
    论文:7引用:0H-index:0

    论文(152)

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    1Geochemical Assessment of Water and Sediment Quality at an Abandoned Coal Mine Site, Alabama, USA
    Godwin Sunday, Rona J. Donahoe, Rebecca A. Bearden

    This study presents a pre-reclamation geochemical assessment of a 67-acre abandoned coal mine site in the upper Hurricane Creek watershed, eastern Tuscaloosa County, Alabama. Reclamation is planned for Fall 2024 under the USDOI/DOL Abandoned Mine Land Economic Revitalization (AMLER) Program. Over a two-year period (June 2022–May 2024), monthly surface water (SW1–SW10) and quarterly sediment samples (SS1-SS10) were collected from the same ten monitoring stations to evaluate spatial and seasonal contaminant dynamics. Upstream sites (SW1–SW6) exhibited circumneutral pH (7.0–8.3), high conductivity (600–1800 µS/cm), and elevated sulfate concentrations (100–1200mg/L), with evidence of seasonal dilution during winter months. In contrast, retention pond sites (SW8–SW10) displayed persistent acidity (pH 3.0–3.5) and elevated trace metal concentrations. Site SW7, hydrologically disconnected from acid mine drainage sources, showed lower conductivity and higher pH values. Inductively coupled plasma–optical emission spectrometry analysis revealed elevated aluminum, manganese, nickel, and iron concentrations at SW8–SW10, regularly exceeding drinking water standards with peak concentrations of >4, 29, 0.2, and 2mg/L, respectively.Sediment particle size analysis classified sediments collected at SS1–SS6 and SS8 as sand-dominated, whereas SS7, SS9, and SS10 were silt-dominated. Microwave nitric acid digestion (EPA 3051A) indicated highest total iron concentrations at SS10. Metal extractability exhibited grain-size dependence, with sand-dominated sediments showing higher extractable iron, manganese, and nickel, while silt-sized sediments showed higher extractable aluminum, due to mineralogical controls.These findings highlight chronic acid mine drainage impacts at SS8–SS10 and provide baseline geochemical data to inform targeted remediation and post-reclamation monitoring under the AMLER Program.

    2026Results in Earth Sciences(2026)
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    2Sparus? Version 1
    Jun A. Ebersole, David J. Cicimurri,Gary L. Stringer, Stephen Jacquemin, Charles N. Ciampaglio
    2026Fossil Fishes of Alabama(2026)
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    3Synodus Version 1
    Jun A. Ebersole, David J. Cicimurri,Gary L. Stringer, Stephen Jacquemin,Charles N. Ciampaglio
    2026Fossil Fishes of Alabama(2026)
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    4Hypolophities Version 1
    Jun A. Ebersole,David J. Cicimurri,Gary L. Stringer, Stephen Jacquemin,Charles N. Ciampaglio
    2026Fossil Fishes of Alabama(2026)
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    5Paleogene “rhinoptera” Version 1
    Jun A. Ebersole,David J. Cicimurri,Gary L. Stringer, Stephen Jacquemin,Charles N. Ciampaglio
    2026Fossil Fishes of Alabama(2026)
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    合作机构(100)

    阿拉巴马大学合作论文 17
    McWane Science Center合作论文 17
    赖特州立大学合作论文 15
    奥本大学合作论文 6
    Polytechnic University of Tirana合作论文 4
    Southern States Energy Board合作论文 3
    堪萨斯大学合作论文 3
    Advanced Resources International (United States)合作论文 3
    俄克拉荷马州立大学合作论文 3
    National Institute of Materials Physics合作论文 2

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