نتایج جستجو برای: reduction of hematite

تعداد نتایج: 21188099  

2017
B. Wickman A. Bastos Fanta A. Burrows A. Hellman J. B. Wagner B. Iandolo

Hematite is a promising and extensively investigated material for various photoelectrochemical (PEC) processes for energy conversion and storage, in particular for oxidation reactions. Thermal treatments during synthesis of hematite are found to affect the performance of hematite electrodes considerably. Herein, we present hematite thin films fabricated via one-step oxidation of Fe by rapid the...

2006
Timothy D. Glotch Philip R. Christensen Thomas G. Sharp

The gray crystalline hematite at Meridiani Planum first discovered by the Mars Global Surveyor Thermal Emission Spectrometer (MGS-TES) instrument occurs as spherules that have been interpreted as concretions. Analysis of the TES and mini-TES spectra shows that no 390 cm−1 feature is present in the characteristic martian hematite spectrum. Here, we incorporate the mid-IR optical constants of hem...

Journal: :Minerals 2022

The most frequent crystallographic preferred orientations developed during the progressive phase transformation of magnetite-hematite-goethite are described and analyzed in two natural samples banded iron formations from Carajás Mineral Province. Microtextures martitized grains containing three phases microplaty matrix were a scanning electron microscope equipped with detector for backscatter d...

Journal: :Transactions of the Iron and Steel Institute of Japan 1978

2006
U. SCHWERTMANN

Abstraet~Storage of ferrihydrite in aqueous suspensions at 24~ and pHs between 2.5 and 12 for as long as three years resulted in the formation of goethite and hematite. The proportions and crystallinity of these products varied widely with the pH. Maximum hematite was formed between pH 7 and 8, and maximum goethite at pH 4 and at pH 12. The crystallinity of both products, as indicated by X-ray ...

2014
Timothy A. Marshall Katherine Morris Gareth T. W. Law Francis R. Livens J. Frederick W. Mosselmans Pieter Bots Samuel Shaw

Ferrihydrite was exposed to U(VI)-containing cement leachate (pH 10.5) and aged to induce crystallization of hematite. A combination of chemical extractions, TEM, and XAS techniques provided the first evidence that adsorbed U(VI) (≈3000 ppm) was incorporated into hematite during ferrihydrite aggregation and the early stages of crystallization, with continued uptake occurring during hematite rip...

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