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Sulfurous and disulfurous acids, H2SO3 and H2S2O5
Neither ‘sulfurous acid’ nor ‘disulfurous acid’ has been isolated as a free acid. Salts containing the sulfite ion, [SO3]2- , are well established (e.g. β-Na2SO3 and K2SO3 are commercially available) and are quite good reducing agents . Applications of sulfites include those as food preservatives, e.g. an additive in wines . The [SO3]2- ion has a trigonal pyramidal structure with delocalized bonding (S_O = 151 pm, ∠O_S_O = 106 0). There is evidence from 17O NMR spectroscopic data that protonation of [SO3]2- occurs to give a mixture of isomers as shown in equilibrium 1.1.
(1.1)
Although the [HSO3]- ion exists in solution, and salts such as NaHSO3 (used as a bleaching agent) may be isolated, evaporation of a solution of NaHSO3 which has been saturated with SO2 results in the formation of Na2S2O5 (equation 1.2).
(1.2)
Table 1.1 Selected oxoacids of sulfur.
(1.1)
The [S2O5]2- ion is the only known derived anion of disulfurous acid and possesses structure 1.1 with a long, weak S_S bond.
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