ICSE • Class 8 • Science • Ch 15
Estimated Time: 45 Mins
Study Progress: In Progress
Hydrogen
In ICSE Class 8 Science (Chemistry), "Hydrogen" provides an authoritative, experimentally rigorous master study guide investigating the unique position, laboratory preparation, chemical reactivity, and industrial applications of the universe's most abundant chemical element. This comprehensive chapter explores Discovery & Position in the Periodic Table (Henry Cavendish's 1766 discovery of "inflammable air"; Antoine Lavoisier named it Hydrogen, meaning "water-former" [Hydro = water, Genes = producer]; Unique atomic structure: 1 proton, 1 electron, 0 neutrons; Anomalous dual nature: resembles Group 1 Alkali Metals [forms $H^+$, combines with halogens] and Group 17 Halogens [forms $H^-$, diatomic molecule $\text{H}_2$]), Occurrence (Most abundant element in the universe [$> 70\%$ of cosmic mass in stars and sun]; Free state vs Combined state [water, hydrocarbons, acids, plant tissues]), Laboratory Preparation of Hydrogen Gas (Action of dilute hydrochloric acid or dilute sulphuric acid on granulated zinc: $\text{Zn} + 2\text{HCl} \to \text{ZnCl}_2 + \text{H}_2 \uparrow$; Woulfe's bottle setup, thistle funnel, delivery tube; Why pure zinc is not used [slow reaction; impurities like copper act as catalysts]; Why nitric acid is not used [$\text{HNO}_3$ is a powerful oxidizing agent that oxidizes hydrogen to water]), Industrial Preparation: 1. Bosch Process from water gas ($\text{C} + \text{H}_2\text{O} \to \text{CO} + \text{H}_2$), 2. Electrolysis of acidified water, Physical Properties (Colorless, odorless, tasteless, lightest known gas [density $= 0.0899\text{ g/L}$], sparingly soluble in water, collection over water by downward displacement of water), Chemical Properties (Combustion: burns in air with a pale blue flame and characteristic pop sound: $2\text{H}_2 + \text{O}_2 \to 2\text{H}_2\text{O}$; Non-supporter of combustion; Powerful reducing agent: reduces heated metallic oxides: $\text{CuO} + \text{H}_2 \xrightarrow{\Delta} \text{Cu} + \text{H}_2\text{O}$, $\text{Fe}_3\text{O}_4 + 4\text{H}_2 \xrightarrow{\Delta} 3\text{Fe} + 4\text{H}_2\text{O}$), and Industrial Applications (Manufacture of ammonia by Haber process [$\text{N}_2 + 3\text{H}_2 \rightleftharpoons 2\text{NH}_3$], hydrogenation of vegetable oils to vanaspati ghee using nickel catalyst, oxy-hydrogen blowpipe torch [$2800^{\circ}\text{C}$] for cutting and welding metals, rocket fuel in liquid cryogenic engines) aligned with the 2026–27 CISCE ICSE curriculum.