High Temperature Oxidation

High temperature oxidation is the chemical reaction between a material and oxygen-containing environments at elevated temperatures, a process that can determine the durability, safety, and performance of engineering components. Oxygen reacts with the surface, forming an oxide scale whose growth depends on temperature, exposure time, oxygen availability, and the diffusion of ions or electrons through the scale; protective scales can slow further attack, while porous or poorly adherent scales may accelerate degradation. Understanding oxidation kinetics helps engineers select alloys, coatings, operating conditions, and maintenance strategies for turbines, furnaces, engines, and other high-temperature systems. This knowledge supports improved efficiency, reliability, and service life.

High Temperature Oxidation - Related Videos

Research

JoVE Journal - Engineering
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Writing and Low-Temperature Characterization of Oxide Nanostructures

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Cited by 6 •

2014

Oxide nanostructures provide new opportunities for science and technology. The interfacial conductivity between LaAlO3 and SrTiO3 can be controlled with near-atomic precision using a conductive atomic force microscopy technique. The protocol for creating and measuring conductive nanostructures at LaAlO3/SrTiO3 interfaces is demonstrated.

Education

JoVE Core - Chemistry

Oxidation Numbers

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2020

In redox reactions, the transfer of electrons occurs between reacting species. Electron transfer is described by a hypothetical number called the oxidation number (or oxidation state). It represents the effective charge of an atom or element, which is assigned using a set of rules. Oxidation Number (Oxidation State) In the case of an ionic compound, oxidation numbers are assigned based on the number of electrons transferred between reacting species. For example, in the formation of calcium...

Temperature Dependence - Student Protocol

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2020

Source: Smaa Koraym at Johns Hopkins University, MD, USA Temperature Dependent Decomposition of Hydrogen PeroxideExpand We suggest that students work in pairs for this experiment. Equipment controls may vary. In this lab, you'll perform a decomposition reaction where a single compound breaks down into two or more simpler products. You will observe the decomposition of hydrogen peroxide into water and oxygen. This decomposition happens very slowly, so you will use iron (III) nitrate as a...

Synthesis and Microdiffraction at Extreme Pressures and Temperatures

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Cited by 5 •

2013

The laser heated diamond anvil cell combined with synchrotron micro-diffraction techniques allows researchers to explore the nature and properties of new phases of matter at extreme pressure and temperature (PT) conditions. Heterogeneous samples can be characterized in situ under high pressure by 2D mapping and combined powder, single-crystal and multigrain diffraction approaches.

Pyruvate Oxidation

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2019

After glycolysis, the charged pyruvate molecules enter the mitochondria via active transport and undergo three enzymatic reactions. These reactions ensure that pyruvate can enter the next metabolic pathway so that energy stored in the pyruvate molecules can be harnessed by the cells. First, the enzyme pyruvate dehydrogenase removes the carboxyl group from pyruvate and releases it as carbon dioxide. The stripped molecule is then oxidized and releases electrons, which are then picked up by NAD+...

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