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Exercises · 7.21

Q.Describe the manufacture of H2SO4 by contact process?

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Step 1: Burning sulphur to SO2SO_2.

S(s)+O2(g)→SO2(g)S(s) + O_2(g) \rightarrow SO_2(g)

(Alternatively, SO2SO_2 can be obtained by roasting sulphide ores, e.g. 4FeS2+11O2→2Fe2O3+8SO24FeS_2 + 11O_2 \rightarrow 2Fe_2O_3 + 8SO_2.) The SO2SO_2 gas is purified by removing dust and arsenic impurities.

Step 2: Catalytic oxidation of SO2SO_2 to SO3SO_3.

2SO2(g)+O2(g)→  720 K, 2 atm    V2O5  2SO3(g)2SO_2(g) + O_2(g) \xrightarrow[\;720\ K,\ 2\ atm\;]{\; V_2O_5 \;} 2SO_3(g)

This is the key catalytic step of the Contact process, carried out over a vanadium pentoxide (V2O5V_2O_5) catalyst at about 720 K and 2 atm pressure — conditions chosen as a compromise for good yield and acceptable rate (the forward reaction is exothermic and mole-decreasing, so lower temperature/higher pressure favour yield, but a moderately high temperature and catalyst are needed for a workable rate).

Step 3: Absorption of SO3SO_3 to form oleum.

SO3SO_3 is not absorbed directly in water (this would produce a dense fog of H2SO4H_2SO_4 that is hard to condense); instead it is absorbed in concentrated H2SO4H_2SO_4 to give oleum (pyrosulphuric acid): …

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