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Mechanisms proposed to explain precipitation of the iron component of iron formation include photosynthetic oxygen production, anoxygenic photosynthesis, abiotic photochemistry, and chemoautotrophy using Fe(II) as an electron donor.
The iron component must be an iron dominant plasma which is a fossil of the iron ejecta of the SN Ia explosion.
The iron component of the hemoglobin of the red blood cells must be in the reduced (deoxidized) state to bind with oxygen; methemoglobin contains the oxidized form of iron and is useless for oxygen transport.
Hereditary methemoglobinemia occurs when there is an inborn defect in this enzyme system or when the hemoglobin molecule is abnormally structured (hemoglobin M) and is thereby more susceptible to oxidation of the iron component.
Therefore, this study proposes that the iron component of authigenic chlorite was mainly derived from flocculent precipitates formed when rivers flow into the ocean.
The iron component of the waterline armored belt ranged in thickness from 76 mm in the stern to 124 mm amidships and 114 mm toward the bow.
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The special composite materials employed at the leading edge of brake technology withstand heat better than the iron components commonly used in road vehicles — and at the same time weigh less.
The Fe-K line emission is well produced by the additional iron component.
(ii) Results suggest that the oxidations of the sulfur and iron component of pyrite proceed relatively independently of each other.
Activation energies based on proton release rate, sulfate release rate, and total iron release rate vary by as much as 40 kJ mol-1, suggesting that the oxidation mechanism of the sulfur and iron component of pyrite are largely independent of each other.
The sudden appearance of the metallic iron components at 650°C in the XRD patterns of the HB-FePc catalysts can be explained by reduction of the iron moieties, mostly iron oxide (Fe2O3).
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