Chemical Behaviour
Water participates in a wide range of chemical reactions. The main categories are outlined below.
1. Amphoteric nature. Water can act as either an acid or a base depending on what it reacts with — a Brønsted acid toward NH3, and a Brønsted base toward H2S:
H2O(l)+NH3(aq)⇌OH−(aq)+NH4+(aq)
H2O(l)+H2S(aq)⇌H3O+(aq)+HS−(aq)
Water even reacts with itself this way, in auto-protolysis (self-ionisation):
H2O(l)+H2O(l)⇌H3O+(aq)+OH−(aq)
with one molecule acting as the acid (donating a proton to become its conjugate base, OH−) and the other as the base (accepting a proton to become its conjugate acid, H3O+).
2. Redox reactions. Water is readily reduced to dihydrogen by strongly electropositive metals:
2H2O(l)+2Na(s)→2NaOH(aq)+H2(g)
making it a valuable source of hydrogen gas. Conversely, water is oxidised to O2 during photosynthesis:
6CO2(g)+12H2O(l)→C6H12O6(aq)+6H2O(l)+6O2(g)
and also by fluorine, one of the very few substances reactive enough to oxidise water directly:
2F2(g)+2H2O(l)→4H+(aq)+4F−(aq)+O2(g)
3. Hydrolysis. Water's high dielectric constant gives it a strong hydrating tendency, and it dissolves many ionic compounds outright. It also chemically hydrolyses certain covalent and ionic compounds:
P4O10(s)+6H2O(l)→4H3PO4(aq)
SiCl4(l)+2H2O(l)→SiO2(s)+4HCl(aq)
N3−(s)+3H2O(l)→NH3(g)+3OH−(aq) …