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  • 1
    Publication Date: 2021-03-29
    Description: research
    Keywords: 551.9 ; VJF 000 ; Umweltgeochemie insgesamt
    Language: English
    Type: article , publishedVersion
    Format: 6 S.
    Format: application/pdf
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  • 2
    Publication Date: 2021-03-29
    Description: This letter suggests possible improvements on the discussion of the adsorptive removal of triazoles by iron minerals which are possible corrosion products of elemental iron materials (Fe0) in a recent article by Jia et al. [Jia, Y., Aagaard, P., Breedveld, G.D., 2007. Sorption of triaxoles to soil and iron materials. Chemosphere 67, 250258]. Also recalled is the importance of the adsorption of organics by iron corrosion products which is not properly addressed in the iron technology literature when the contaminants are redox-sensitive.
    Description: Keywords: Adsorption; Elemental iron; Iron corrosion; Iron oxyhydroxides; Triazoles
    Description: research
    Keywords: 551.9 ; VJF 000 ; Umweltgeochemie insgesamt
    Language: English
    Type: article , publishedVersion
    Format: 12 S.
    Format: application/pdf
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  • 3
    Publication Date: 2021-03-29
    Description: The solubilization of arsenic (As) from an ore material (native Arsenic [As, trig.] with Lollingite [FeAs2, rh.]) was characterized in leaching tests lasting for ≤ 99 days. The experiments were performed with materials of different particle sizes (≤ 2 mm), in different waters and under test conditions relevant to As mobilization at near surface contaminated sites. The impact of dolomite [CaMg(CO3)2], metallic iron (Fe0), and pyrite (FeS2) on As release was accessed. Two different types of batch experiments were conducted with a constant amount of the base material and different types of water (deionised, mineral, spring, and tap water). For comparison parallel experiments were conducted with 0.1M EDTA, 0.1M Na2CO3 and 0.1M H2SO4. The results indicated no significant effect of carbonate addition on As solubilization. Fe0 and FeS2 addition essentially slowed the initial As solubilization. H2SO4 was the sole leaching agent significantly influencing As solubilization from the base material. The general trend assuming that the smaller the particle size the quicker the As release was not strictly verified because in samples of smaller particle sizes (d 〈 0.063) As was partly oxidized to more stable species.
    Description: research
    Keywords: 551,9 ; VJF 000 ; Umweltgeochemie insgesamt
    Language: English
    Type: article , publishedVersion
    Format: 23 S.
    Format: application/pdf
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  • 4
    Publication Date: 2021-03-29
    Description: research
    Keywords: VJF 000 ; Umweltgeochemie insgesamt
    Language: English
    Type: article , publishedVersion
    Format: 6 S.
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  • 5
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    Springer-Verlag, Berlin/Heidelberg | Springer, Berlin/Heidelberg
    Publication Date: 2021-03-29
    Description: The effects of carbonate concentration and the presence of in-situ generated iron oxide and hydroxide phases (iron oxyhydroxides) on arsenic (As), copper (Cu), and uranium (U) release from natural rocks were investigated under oxic conditions and in the pH range from 6 to 9. For this purpose non-disturbed batch experiments were conducted with a constant amount of each contaminant bearing rock/mineral and different types of water (deionised, mineral, spring, and tap water). For comparison parallel experiments were conducted with 0.1 M Na2CO3 and 0.1 M H2SO4. The favourable role of carbonate bearing minerals for U and Cu transport could not be confirmed by using dolomite. The presence of elemental iron and pyrite retards As, Cu and U solubilization. This study shows that using natural materials in laboratory investigations is a practical tool to investigate natural processes.
    Description: research
    Keywords: 551.9 ; VJF 000 ; Umweltgeochemie insgesamt
    Language: English
    Type: article , draft
    Format: 10 S.
    Format: application/pdf
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  • 6
    Publication Date: 2021-03-29
    Description: Zerovalent iron (ZVI) has been proposed as a reactive material in permeable in situ walls for groundwater contaminated by metal pollutants. For such pollutants that interact with corrosion products, the determination of the actual mechanism of their removal is very important to predict their stability in the long term. From a study of the effects of pyrite (FeS2) and manganese nodules (MnO2) on the uranium removal potential of a selected ZVI material, a test methodology (FeS2MnO2 method) is suggested to follow the pathway of contaminant removal by ZVI materials. An interpretation of the removal potential of ZVI for uranium in the presence of both additives corroborates coprecipitation with iron corrosion products as the initial removal mechanism for uranium.
    Description: Keywords: iron, redox reactions, uranium, water treatment
    Description: research
    Keywords: 551.9 ; VJF 000 ; Umweltgeochemie insgesamt
    Language: English
    Type: article , publishedVersion
    Format: 22 S.
    Format: application/pdf
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  • 7
    Publication Date: 2021-03-29
    Keywords: Adsorption; Contaminant removal; Mechanisms; Reduction; Zerovalent metals ; 551
    Language: English
    Type: article , submittedVersion
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  • 8
    Publication Date: 2021-03-29
    Keywords: Interdisciplinary approach; Peer-review system; Permeable reactive barrier; Water treatment; Zero-valent iron ; 551
    Language: English
    Type: article , submittedVersion
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  • 9
    Publication Date: 2021-03-29
    Keywords: Adsorption; Decontamination; Reduction; Remediation; Zerovalent iron ; 551
    Language: English
    Type: article , submittedVersion
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  • 10
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    Publication Date: 2021-03-29
    Keywords: letter; apology letter ; 551 ; Chlorine ; Iron ; Lindane ; Palladium ; Water Pollutants, Chemical ; Water Purification
    Language: English , English
    Type: article , submittedVersion
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