Page last updated: 2024-08-21

ferrous sulfide and trichloroethylene

ferrous sulfide has been researched along with trichloroethylene in 8 studies

Research

Studies (8)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's4 (50.00)29.6817
2010's3 (37.50)24.3611
2020's1 (12.50)2.80

Authors

AuthorsStudies
Hassan, SM1
Butler, EC; Hayes, KF1
Hayes, KF; Jeong, HY1
Hayes, KF; Jeong, HY; Kim, H1
Azad, AM; Chang, YS; Kim, EJ; Kim, JH1
Hayes, KF; Hyun, SP1
Butler, EC; Elwood Madden, AS; Lan, Y1
Ali, M; Gu, X; Lyu, S; Shan, A; Sun, Y; Zhou, Y1

Other Studies

8 other study(ies) available for ferrous sulfide and trichloroethylene

ArticleYear
Reduction of halogenated hydrocarbons in aqueous media: I. Involvement of sulfur in iron catalysis.
    Chemosphere, 2000, Volume: 40, Issue:12

    Topics: Acetylene; Catalysis; Chromatography, Gas; Ferrous Compounds; Hydrocarbons, Halogenated; Hydrogen; Iron; Oxidation-Reduction; Sulfur; Tetrachloroethylene; Trichloroethylene; Water

2000
Factors influencing rates and products in the transformation of trichloroethylene by iron sulfide and iron metal.
    Environmental science & technology, 2001, Oct-01, Volume: 35, Issue:19

    Topics: Adsorption; Environmental Pollution; Ferrous Compounds; Hydrogen-Ion Concentration; Iron; Oxidation-Reduction; Solvents; Trichloroethylene

2001
Reductive dechlorination of tetrachloroethylene and trichloroethylene by mackinawite (FeS) in the presence of metals: reaction rates.
    Environmental science & technology, 2007, Sep-15, Volume: 41, Issue:18

    Topics: Ferrous Compounds; Hydrocarbons, Chlorinated; Kinetics; Metals; Oxidation-Reduction; Tetrachloroethylene; Trichloroethylene

2007
Reductive dechlorination pathways of tetrachloroethylene and trichloroethylene and subsequent transformation of their dechlorination products by mackinawite (FeS) in the presence of metals.
    Environmental science & technology, 2007, Nov-15, Volume: 41, Issue:22

    Topics: Acetylene; Biodegradation, Environmental; Chemistry, Organic; Chlorine; Ferrous Compounds; Hydrocarbons, Chlorinated; Hydrogen; Hydrogen-Ion Concentration; Iron; Kinetics; Metals; Models, Chemical; Models, Statistical; Sulfides; Tetrachloroethylene; Time Factors; Trichloroethylene

2007
Facile Synthesis and Characterization of Fe/FeS Nanoparticles for Environmental Applications.
    ACS applied materials & interfaces, 2011, Volume: 3, Issue:5

    Topics: Environmental Pollutants; Ferrous Compounds; Iron; Metal Nanoparticles; Trichloroethylene; Water Pollution, Chemical

2011
Abiotic reductive dechlorination of cis-DCE by ferrous monosulfide mackinawite.
    Environmental science and pollution research international, 2015, Volume: 22, Issue:21

    Topics: Environmental Pollutants; Ethylene Dichlorides; Ferrous Compounds; Halogenation; Oxidation-Reduction; Tetrachloroethylene; Trichloroethylene

2015
Transformation of mackinawite to greigite by trichloroethylene and tetrachloroethylene.
    Environmental science. Processes & impacts, 2016, Oct-12, Volume: 18, Issue:10

    Topics: Dichloroethylenes; Environmental Restoration and Remediation; Ferrous Compounds; Iron; Oxidation-Reduction; Sulfides; Tetrachloroethylene; Trichloroethylene; Water Pollutants, Chemical

2016
Trichloroethylene degradation by PVA-coated calcium peroxide nanoparticles in Fe(II)-based catalytic systems: enhanced performance by citric acid and nanoscale iron sulfide.
    Environmental science and pollution research international, 2021, Volume: 28, Issue:3

    Topics: Catalysis; Citric Acid; Ferrous Compounds; Groundwater; Nanoparticles; Oxidation-Reduction; Peroxides; Polyvinyl Alcohol; Trichloroethylene; Water Pollutants, Chemical

2021