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Chemistry · Ch 13 — General Principles and Processes of Isolation of Elements

Leaching

13.2.4

Leaching

Leaching is used whenever the desired compound in an ore is soluble in some suitable solvent, while the gangue is not. The ore is dissolved out selectively, leaving the unwanted material behind as an insoluble residue.

(a) Leaching alumina out of bauxite

Bauxite — the chief ore of aluminium — is never pure; it typically carries SiO2SiO_2, iron oxides, and TiO2TiO_2 as impurities. Concentration proceeds as follows:

Digestion. The powdered ore is heated with a concentrated NaOH solution at 473–523 K and 35–36 bar pressure. This step, called digestion, dissolves the aluminium oxide as soluble sodium aluminate:

Al2O3(s)+2NaOH(aq)+3H2O(l)→2Na[Al(OH)4](aq)(6.1)Al_2O_3(s) + 2NaOH(aq) + 3H_2O(l) \rightarrow 2Na[Al(OH)_4](aq) \qquad(6.1)

The SiO2SiO_2 impurity is also soluble under these conditions — it dissolves as sodium silicate — while the other impurities (mainly iron oxides and titania) are insoluble and are simply filtered off.

Neutralisation and seeding. CO2CO_2 gas is then passed through the sodium aluminate solution. This neutralises it and precipitates hydrated alumina:

2Na[Al(OH)4](aq)+2CO2(g)→Al2O3.xH2O(s)+2NaHCO3(aq)(6.2)2Na[Al(OH)_4](aq) + 2CO_2(g) \rightarrow Al_2O_3.xH_2O(s) + 2NaHCO_3(aq) \qquad(6.2)

A small amount of freshly prepared hydrated Al2O3Al_2O_3 is added to the solution just before this step to induce the precipitation — a trick called seeding, essentially giving the precipitate nucleation sites to grow from. The sodium silicate impurity, unlike the aluminate, stays dissolved and doesn't precipitate alongside it.

Calcination. The filtered, dried hydrated alumina is finally heated strongly (around 1470 K) to drive off the water of hydration and recover pure Al2O3Al_2O_3:

Al2O3.xH2O(s)→1470 KAl2O3(s)+xH2O(g)(6.3)Al_2O_3.xH_2O(s) \xrightarrow{1470\,K} Al_2O_3(s) + xH_2O(g) \qquad(6.3)

(b) Leaching in the metallurgy of silver and gold

Silver and gold ores are leached with a dilute solution of NaCN or KCN in the presence of air (which supplies the O2O_2 needed). The metal dissolves as a soluble cyanide complex:

4M(s)+8CN−(aq)+2H2O(aq)+O2(g)→4[M(CN)2]−(aq)+4OH−(aq)(M=Ag or Au)(6.4)4M(s) + 8CN^-(aq) + 2H_2O(aq) + O_2(g) \rightarrow 4[M(CN)_2]^-(aq) + 4OH^-(aq) \qquad (M = Ag\ \text{or}\ Au) \qquad(6.4) …