Linked from
The 21 pages that link to Flammability, each with the reason it gives.
Hydrogen sulfideRelated: H₂S burns in oxygen, producing sulfur dioxide or elemental sulfur depending on oxygen supply.
Diethyl etherRelated: Its vapor ignites easily and can travel to distant ignition sources.
Fire safetyRelated: Material flammability affects choices in construction, furnishing, and storage.
Ether anesthesiaRelated: Ether vapor can ignite, creating a distinctive operating-room hazard.
Fire triangleRelated: The triangle describes required elements, while flammability describes how readily materials burn.
NitrocelluloseRelated: Nitrocellulose’s rapid ignition makes storage and handling a central concern.
CyclopropaneRelated: Cyclopropane ignites readily and can form explosive mixtures with oxygen.
Isopropyl alcoholRelated: Isopropyl alcohol's vapors ignite readily, making ignition control essential during use and storage.
Aerosol propellantRelated: Flammable propellants impose storage, labeling, and product-design constraints.
ArsineRelated: Arsine can burn in air, adding fire and explosion hazards to its toxicity.
CyclopentaneRelated: Cyclopentane’s low flash point requires controls against sparks and open flames.
PentaneRelated: Pentane vapor can ignite easily, so leaks and confined spaces create serious fire risks.
Vinyl acetateRelated: Its vapors can ignite, making fire prevention important in storage and processing.
1-PropanolRelated: 1-Propanol is a flammable liquid, so storage and handling require ignition controls.
Allyl chlorideRelated: Its low flash point makes ignition control essential during storage and use.
ChloroethaneRelated: Chloroethane’s flammable vapor creates fire and explosion hazards during storage and use.
IsopentaneRelated: Isopentane’s vapor can ignite readily when mixed with air.
1-ButyneRelated: 1-Butyne is highly flammable and requires controls against ignition.
White spiritRelated: White spirit can ignite, so sparks, flames, and hot surfaces pose fire risks.