Search Results - "Fruchter, J. S"

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  1. 1

    Creation of a Subsurface Permeable Treatment Zone for Aqueous Chromate Contamination Using In Situ Redox Manipulation by Fruchter, J.S., Cole, C.R., Williams, M.D., Vermeul, V.R., Amonette, J.E., Szecsody, J.E., Istok, J.D., Humphrey, M.D.

    Published in Ground water monitoring & remediation (01-05-2000)
    “…An in situ redox manipulation (ISRM) method for creating a permeable treatment zone in the subsurface has been developed at the laboratory bench and…”
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  2. 2

    Identification of solubility-controlling solid phases in a large fly ash field lysimeter by Fruchter, Jonathan S, Rai, Dhanpat, Zachara, John M

    Published in Environmental science & technology (01-08-1990)
    “…Samples of pore fluids and leachates were obtained from a large fly ash field lysimeter in central Pennsylvania. The fly ash in the lysimeter was usually only…”
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  3. 3

    In situ redox manipulation by dithionite injection: intermediate-scale laboratory experiments by Istok, J.D, Amonette, J.E, Cole, C.R, Fruchter, J.S, Humphrey, M.D, Szecsody, J.E, Teel, S.S, Vermeul, V.R, Williams, M.D, Yabusaki, S.B

    Published in Ground water (01-11-1999)
    “…The goal of in situ redox manipulation (ISRM) is to create a permeable treatment zone capable of removing redox-sensitive contaminants from ground water. The…”
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  4. 4

    In Situ Chemical Reduction of Aquifer Sediments:  Enhancement of Reactive Iron Phases and TCE Dechlorination by Szecsody, Jim E, Fruchter, Jonathan S, Williams, Mark D, Vermeul, Vince R, Sklarew, Debbie

    Published in Environmental science & technology (01-09-2004)
    “…In situ chemical reduction of aquifer sediments is currently being used for chromate and TCE remediation by forming a permeable reactive barrier. The chemical…”
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  5. 5

    Volcanic activity: a review for health professionals by NEWHALL, C. G, FRUCHTER, J. S

    Published in American journal of public health (1971) (01-03-1986)
    “…Volcanoes erupt magma (molten rock containing variable amounts of solid crystals, dissolved volatiles, and gas bubbles) along with pulverized pre-existing rock…”
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    Characterization of mercury, arsenic, and selenium in the product streams of a bench-scale, inert-gas, oil shale retort by Olsen, K. B, Evans, J. C, Sklarew, D. S, Fruchter, J. S, Girvin, D. C, Nelson, C. L

    Published in Environmental science & technology (01-02-1990)
    “…The effects of heating rates and maximum temperatures on the redistribution of mercury, arsenic, and selenium into the shale oil, retort water, and offgas of a…”
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    Mercury Emissions from Geothermal Power Plants by Robertson, D. E., Crecelius, E. A., Fruchter, J. S., Ludwick, J. D.

    “…Geothermal steam used for power production contains significant quantities of volatile mercury. Much of this mercury escapes to the atmosphere as elemental…”
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  10. 10

    Pathways of Aqueous Cr(VI) Attenuation in a Slightly Alkaline Oxic Subsurface by Qafoku, Nikolla P, Dresel, P. Evan, McKinley, James P, Liu, Chongxuan, Heald, Steve M, Ainsworth, Calvin C, Phillips, Jerry L, Fruchter, Jonathan S

    Published in Environmental science & technology (15-02-2009)
    “…Column experiments combined with geochemical modeling, microscopic inspections, spectroscopic interrogations, and wet chemical extractions were used to study…”
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    Dechlorination of Carbon Tetrachloride by Fe(II) Associated with Goethite by Amonette, James E, Workman, Darla J, Kennedy, David W, Fruchter, Jonathan S, Gorby, Yuri A

    Published in Environmental science & technology (01-11-2000)
    “…Carbon tetrachloride (CT) was dechlorinated to chloroform (CF) under anoxic conditions by Fe(II) that was sorbed to the surface of goethite (α-FeOOH). No…”
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    Pattern of Bombardment-Produced Radionuclides in Rock 10017 and in Lunar Soil by Shedlovsky, Julian P., Honda, Masatake, Reedy, Robert C., Evans, John C., Lal, Devendra, Lindstrom, Richard M., Delany, Anthony C., Arnold, James R., Loosli, Heinz-Hugo, Fruchter, Jonathan S., Finkel, Robert C.

    “…A large number of radionuclides have been measured as a function of depth in lunar rock 10017 and in bulk fines. Data are reported on $^{10}$Be, $^{22}$Na,…”
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    Identification of solubility-controlling solid phases in a large fly ash field by Fruchter, J S, Rai, D, Zachara, J M

    Published in Environmental science & technology (01-01-1990)
    “…Concentrations of major and trace inorganic ions were determined in pore water and leachate sampled from different depths in a 30.05 m high field lysimeter…”
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