Linked from
The 97 pages that link to Oxidation, each with the reason it gives.
WeatheringRelated: Oxygen reacts with iron-bearing minerals, changing their composition and weakening rock.
Chemical weatheringRelated: Oxygen transforms iron-bearing minerals into iron oxides and other altered products.
AlcoholRelated: Primary and secondary alcohols oxidize to carbonyl compounds under suitable conditions.
Galvanic cellRelated: The cell’s oxidation half-reaction sends electrons into its circuit.
VinegarRelated: Bacteria oxidize ethanol as they produce acetic acid.
Indigo dyeRelated: Air oxidizes soluble leuco indigo back into insoluble blue pigment on the fiber.
SolderingRelated: Oxide films on workpieces interfere with solder wetting and bonding.
EmissivityRelated: Oxide layers can change a material's surface emissivity, especially at high temperatures.
Shelf lifeRelated: Oxidation can cause rancidity, color changes, and nutrient loss during storage.
LimoneneRelated: Air exposure can oxidize limonene into products that affect odor and allergenicity.
Formic acidRelated: Formic acid readily oxidizes to carbon dioxide, unlike most larger carboxylic acids.
Half-reactionRelated: An oxidation half-reaction places the electrons among its products.
OxideRelated: Oxidation of an element by oxygen commonly produces its oxide.
PhotobleachingRelated: Oxidation is a common route by which light-exposed pigments lose their absorbing structure.
GoethiteRelated: Oxidation of dissolved iron can produce the ferric iron in goethite.
PreservativeRelated: Antioxidant preservatives slow oxidative changes such as rancidity and discoloration.
Thermal degradationRelated: Oxygen can combine with thermal effects to accelerate or redirect degradation.
HydroformylationRelated: Oxidation of hydroformylation aldehydes provides routes to valuable carboxylic acids.
Chemical wasteRelated: Oxidation can destroy or alter certain hazardous constituents during treatment.
Greek vase paintingRelated: Oxygen-rich firing conditions turned iron-bearing clay red.
Hydraulic fluidRelated: Oxidation can thicken hydraulic fluid and create deposits that impair system operation.
Oxygenation of Earth's atmosphereRelated: Rising oxygen changed the oxidation state of minerals and dissolved elements.
Reducing agentRelated: The reducing agent undergoes oxidation as it supplies electrons.
Thermogravimetric analysisRelated: Oxygen uptake can increase sample mass, distinguishing oxidation from simple volatilization.
Chemical RevolutionRelated: Lavoisier’s oxygen-based account recast burning and calcination as reactions with oxygen.
OsmiumRelated: Osmium tetroxide serves as a reagent for selective oxidation of organic compounds.
Dimethyl sulfoxideRelated: Industrial production commonly forms DMSO by oxidizing dimethyl sulfide.
MischmetalRelated: Freshly abraded mischmetal reacts rapidly with oxygen, releasing heat and light.
ZirconiumRelated: Zirconium readily forms oxide, including the protective surface layer that supports corrosion resistance.
Acrylic acidRelated: Industrial manufacture converts propylene first to acrolein and then to acrylic acid by oxidation.
BetalainRelated: Oxidative reactions can degrade betalains and diminish pigment intensity.
Carbonyl compoundRelated: Oxidation can convert aldehydes into carboxylic acids and alter other carbonyl compounds.
DisproportionationRelated: One fraction of the disproportionating species undergoes this change.
Iron(II) sulfateRelated: Air can oxidize dissolved Fe²⁺ toward Fe³⁺, especially under suitable conditions.
Native copperRelated: Copper’s resistance to rapid oxidation helps elemental metal persist in some geological settings.
RustRelated: Iron oxidation supplies the iron ions and electrons involved in rusting.
Vat dyeingRelated: Air or another oxidant restores the dye’s insoluble colored form after application.
CatechinRelated: Catechin can oxidize during food processing and storage.
Oxide mineralRelated: Oxidation can produce metal oxides as minerals in rocks and weathering environments.
UluruRelated: Iron-bearing minerals oxidize at the surface, contributing to Uluru’s reddish color.
UrushiolRelated: Urushiol can oxidize after exposure to air, altering its chemical reactivity.
FerroceriumRelated: Oxidation of tiny scraped particles releases the heat and light of ferrocerium sparks.
Gallic acidRelated: Oxidation of gallic acid produces colored compounds and can alter its antioxidant activity.
Sodium metabisulfiteRelated: The compound slows oxidation of susceptible ingredients by reacting with oxidants first.
ToxicodendronRelated: Urushiol compounds oxidize after exposure to air, contributing to their darkening on surfaces.
Native metalRelated: Resistance to oxidation helps elemental metals survive in Earth’s crust.
PhosphineRelated: Phosphines readily undergo oxidation at phosphorus, often yielding phosphine oxides.
GeraniolRelated: Air oxidation can alter geraniol and produce compounds with different sensory and allergenic properties.
GlycolaldehydeRelated: Oxidation of ethylene glycol can yield glycolaldehyde.
HumuleneRelated: Exposure to oxygen can alter humulene during storage and processing.