Results 211 to 220 of about 40,374 (268)
Emerging Pollutants in the Environment: Occurrence, Fate, Risk Assessment and Degradation Methods. [PDF]
Bu Q, Ma Y.
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A Coupled Adsorption-Biodegradation (CAB) Process Employing a Polyhydroxybutyrate (PHB)-Biochar Mini Pilot-Scale Reactor for Trichloroethylene-Contaminated Groundwater Remediation. [PDF]
Lorini L +5 more
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Stereoselective palladium-catalyzed carboetherification of cyclopropenes <i>via</i> a tethering strategy. [PDF]
Brownsey DK, Schoepfer AA, Waser J.
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Evaluation of Sustained Persulfate Oxidant Release for Remediating Trichloroethylene Contaminated Low Permeability Soil in the Phreatic Zone. [PDF]
Lim-Ortega JKT +3 more
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Global, regional, and national burden of kidney cancer and attributable risk factors in adults aged 65 years and older from 1990 to 2021 and projections to 2040. [PDF]
Zhou N +6 more
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Environmental Science and Technology, 2021
The potential of oxygenating Fe(II)-bearing sediments for hydroxyl radical (·OH) production and contaminant degradation has been proposed recently. Here, we further show that specific ligands can largely enhance contaminant degradation during sediment ...
Wenjing Xie +4 more
semanticscholar +1 more source
The potential of oxygenating Fe(II)-bearing sediments for hydroxyl radical (·OH) production and contaminant degradation has been proposed recently. Here, we further show that specific ligands can largely enhance contaminant degradation during sediment ...
Wenjing Xie +4 more
semanticscholar +1 more source
Environmental Science and Technology, 2021
Sulfur amendment of zerovalent iron (ZVI) materials has been shown to improve the reactivity and selectivity of ZVI toward a select group of organohalide contaminants in groundwater, most notably trichloroethene (TCE).
Syful Islam +5 more
semanticscholar +1 more source
Sulfur amendment of zerovalent iron (ZVI) materials has been shown to improve the reactivity and selectivity of ZVI toward a select group of organohalide contaminants in groundwater, most notably trichloroethene (TCE).
Syful Islam +5 more
semanticscholar +1 more source
Environmental Science and Technology, 2020
Bimetallic Fe-Mn oxide (BFMO) has been regarded as a promising activator of peroxysulfate (PS), the sustained activity and durability of BFMO for long-term activation of PS in situ, however, is unclear for groundwater remediation. A BFMO (i.e., Mn1.5FeO6.
Xueying Yang +9 more
semanticscholar +1 more source
Bimetallic Fe-Mn oxide (BFMO) has been regarded as a promising activator of peroxysulfate (PS), the sustained activity and durability of BFMO for long-term activation of PS in situ, however, is unclear for groundwater remediation. A BFMO (i.e., Mn1.5FeO6.
Xueying Yang +9 more
semanticscholar +1 more source

