Articles with "iron carbon" as a keyword



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New insights into the reinforced reduction performance of Fe0/C internal electrolysis activated by persulfate for p-nitrophenol removal.

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Published in 2020 at "Chemosphere"

DOI: 10.1016/j.chemosphere.2020.126899

Abstract: In this study, the reduction of iron-carbon internal electrolysis was reinforced by persulfate for p-nitrophenol removal. The effects of persulfate dosage, initial pH and iron-carbon mass ratio were comprehensively studied in batch experiments. In the… read more here.

Keywords: iron carbon; reduction; internal electrolysis; carbon internal ... See more keywords
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Adsorption and dissociation of carbon monoxide on iron and iron-carbon clusters: Fen + 2CO and FenC + 2CO, n = 4 and 7. A theoretical study

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Published in 2018 at "Computational and Theoretical Chemistry"

DOI: 10.1016/j.comptc.2018.02.018

Abstract: Abstract In this work is studied the adsorption and reduction of carbon monoxide, CO, catalyzed by neutral and charged iron clusters, through the Fen0, ±1 + 2CO → FenC0, ±1 + CO2 (n = 4, 7) reactions in the gas phase. It was… read more here.

Keywords: iron carbon; carbon; kcal mol; carbon clusters ... See more keywords
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Miniature iron-carbon eutectic point crucible for the calibration of thermometers

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Published in 2021 at "Measurement"

DOI: 10.1016/j.measurement.2021.109619

Abstract: Abstract The article presents the design, construction and evaluation of a miniature graphite iron-carbon eutectic point crucible for the calibration of thermometers. These are either contact such as thermocouples or non-contact such as infrared thermometers.… read more here.

Keywords: calibration; iron carbon; carbon eutectic; point crucible ... See more keywords
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Nitrogen-Coordinated Iron−Carbon as Efficient Bifunctional Electrocatalysts for the Oxygen Reduction and Oxygen Evolution Reactions in Acidic Media

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Published in 2017 at "Energy & Fuels"

DOI: 10.1021/acs.energyfuels.7b00242

Abstract: The ORR and OER performances of N-coordinated iron–carbon (FeNC), Ir/C, and Pt/C catalysts were compared using half-cell measurements. The results suggest significant ORR and OER activity for FeNC materials unlike state-of-the-art Ir/C or Pt/C which… read more here.

Keywords: nitrogen coordinated; iron carbon; carbon efficient; coordinated iron ... See more keywords
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Electronic Control of Traditional Iron-Carbon Electrodes to Regulate the Oxygen Reduction Route to Scale Up Water Purification.

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Published in 2022 at "Environmental science & technology"

DOI: 10.1021/acs.est.2c03673

Abstract: Shifting four-electron (4e-) oxygen reduction in fuel cell technology to a two-electron (2e-) pathway with traditional iron-carbon electrodes is a critical step for hydroxyl radical (HO•) generation. Here, we fabricated iron-carbon aerogels with desired dimensions… read more here.

Keywords: traditional iron; carbon; water; oxygen reduction ... See more keywords
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Mathematical Simulation of the Melting of Nitrided Ferroalloys in an Iron–Carbon Melt

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Published in 2019 at "Russian Metallurgy (Metally)"

DOI: 10.1134/s003602951909012x

Abstract: The melting of nitrided Cr–N–Fe–Si–Al ferroalloys in an iron–carbon melt under static conditions is studied by mathematical simulation. The influence of the initial ferroalloy lump sizes, the chromium content in ferroalloy, and the iron–carbon melt… read more here.

Keywords: carbon melt; melting time; carbon; iron carbon ... See more keywords
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Phosphorus removal by iron–carbon microelectrolysis: A new way to achieve phosphorus recovery

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Published in 2023 at "Green Processing and Synthesis"

DOI: 10.1515/gps-2022-8120

Abstract: Abstract Iron–carbon microelectrolysis was employed to remove phosphorus in this study. The efficiency, mechanism, influence factors, and feasibility of actual wastewater were investigated. The results showed that iron–carbon microelectrolysis had an excellent phosphorus removal ability.… read more here.

Keywords: carbon microelectrolysis; phosphorus; phosphorus removal; iron carbon ... See more keywords
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Wetting Behavior of Iron–Carbon Melt in Silicates at Mid-Mantle Pressures With Implications for Earth’s Deep Carbon Cycle

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Published in 2019 at "Frontiers in Earth Science"

DOI: 10.3389/feart.2019.00268

Abstract: Metallic melt containing iron (Fe) and carbon (C) may be present at depths greater than 250 km inside the Earth. Depending on its wetting behavior, such dense melt may be trapped locally or drain into… read more here.

Keywords: iron carbon; carbon; mid mantle; melt silicates ... See more keywords