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Intext Questions · 2.11

Q.Suggest a list of metals that are extracted electrolytically.

Yanam CbseNCERTSubjective· 2mImportance★★★★★
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Metals that are extracted electrolytically are those too reactive to be reduced by carbon or other common chemical reducing agents — typically metals high in the electrochemical series (like Na, Mg, Al, Ca, K). The key idea: electrolysis supplies the large negative reduction potential needed to force their ions to gain electrons. The final list includes sodium, magnesium, aluminium, calcium, potassium, and a few others.

Why Electrolysis? The Concept of Standard Electrode Potentials

The method used to extract a metal from its ore depends on how tightly the metal holds onto its electrons — or, more precisely, how easily its ions can be reduced. This is quantified by the standard reduction potential (E∘E^\circ).

Metals with very negative E∘E^\circ values (like ENa+/Na∘=−2.71 VE^\circ_{\text{Na}^+/\text{Na}} = -2.71\ \text{V}) are strong reducing agents themselves — their ions are extremely reluctant to accept electrons. Carbon, the common reducing agent in pyrometallurgy, simply cannot supply enough reducing power. For example, carbon can reduce zinc oxide (EZn2+/Zn∘=−0.76 VE^\circ_{\text{Zn}^{2+}/\text{Zn}} = -0.76\ \text{V}) but fails for magnesium oxide (EMg2+/Mg∘=−2.37 VE^\circ_{\text{Mg}^{2+}/\text{Mg}} = -2.37\ \text{V}).

Electrolysis solves this by using an external voltage to force the reduction at the cathode. The applied voltage must exceed the decomposition potential of the molten or dissolved compound. This is why the most reactive metals — those at the top of the reactivity series — are extracted electrolytically.

For a metal ion Mn+\text{M}^{n+}, the minimum voltage required is Ecell=Eanode∘−Ecathode∘E_{\text{cell}} = E^\circ_{\text{anode}} - E^\circ_{\text{cathode}} (plus overpotential). The more negative Ecathode∘E^\circ_{\text{cathode}}, the larger the voltage needed.

Step-by-Step Reasoning

  1. Identify the reactivity criterion.

    Metals with E∘<−1.0 VE^\circ < -1.0\ \text{V} (roughly) are almost always extracted by electrolysis. This includes groups 1 and 2, aluminium, and a few others. Carbon reduction works for metals like Zn, Fe, Pb, Cu (moderately negative to positive E∘E^\circ).

  2. List the common electrolytically extracted metals from the NCERT/standard syllabus.

    • Sodium (Na): Extracted by electrolysis of molten NaCl (Downs process). E∘=−2.71 VE^\circ = -2.71\ \text{V}.
    • Magnesium (Mg): Electrolysis of molten MgCl2_2 (from seawater or dolomite). E∘=−2.37 VE^\circ = -2.37\ \text{V}.
    • Aluminium (Al): Hall–Héroult process — electrolysis of Al2_2O3_3 dissolved in molten cryolite (Na3_3AlF6_6). E∘=−1.66 VE^\circ = -1.66\ \text{V}.
    • Calcium (Ca): Electrolysis of molten CaCl2_2. E∘=−2.87 VE^\circ = -2.87\ \text{V}.
    • Potassium (K): Electrolysis of molten KCl (often with CaCl2_2 to lower melting point). E∘=−2.93 VE^\circ = -2.93\ \text{V}.
    • Lithium (Li): Electrolysis of molten LiCl/KCl eutectic. E∘=−3.04 VE^\circ = -3.04\ \text{V}.
  3. Consider borderline cases.

    • Beryllium (Be): E∘=−1.85 VE^\circ = -1.85\ \text{V} — extracted electrolytically from molten BeF2_2 or BeCl2_2.
    • Strontium (Sr) and Barium (Ba): E∘≈−2.9 VE^\circ \approx -2.9\ \text{V} — also electrolytic.
    • Zinc (Zn): E∘=−0.76 VE^\circ = -0.76\ \text{V} — usually extracted by carbon reduction (roasting then reduction), not electrolysis. However, electrorefining of zinc uses electrolysis, but that's purification, not extraction. The question asks for extraction, so Zn is excluded.
  4. Watch out for aluminium — a classic exam point. …

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