Q.Saline hydrides are known to react with water violently producing fire. Can CO2, a well known fire extinguisher, be used in this case? Explain.
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Start your 14-day free trial to unlock the full solution →Saline (ionic) hydrides, such as NaH and CaH2, react violently and exothermically with water, liberating flammable dihydrogen gas and generating enough heat to ignite it:
A normal fire would be smothered by CO2, which works by cutting off the oxygen supply and is inert towards ordinary combustible materials. However, ionic hydrides contain the hydride ion H⁻, which is a powerful reducing agent. Rather than being inert to CO2, the hydride can itself chemically react with and reduce carbon dioxide (H⁻ can reduce carbon in CO2, analogous to how strong reducing hydrides reduce many oxidising species), so CO2 does not behave as an inert blanketing gas in this situation — it participates in a further reaction with the very reactive hydride/metal system. …
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