9Cu + Co(NO3)2 + 20H+ → 9Cu2+ + Co + 2NH4+ + 6H2O
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- Reaction of and cobalt(II) nitrate under acidic condition
- 9 + Co(NO3)2Cobalt(II) nitrate + 20H+Hydrogen ion9Cu2+Copper(II) ion + + 2NH4+Ammonium ion + 6H2OWater⟶
The reaction of , cobalt(II) nitrate, and hydrogen ion yields copper(II) ion, , ammonium ion, and water (Other reactions are here). This reaction is an oxidation-reduction reaction and is classified as follows:
Table of contents
Reaction data
Chemical equation
- Reaction of and cobalt(II) nitrate under acidic condition
- 9 + Co(NO3)2Cobalt(II) nitrate + 20H+Hydrogen ion9Cu2+Copper(II) ion + + 2NH4+Ammonium ion + 6H2OWater⟶
General equation
- Reaction of oxidizable species and oxidizing species under acidic condition
- Oxidizable speciesReducing agent + Oxidizing speciesOxidizing agent + H+Non-redox agent ⟶ ProductOxidation product + ProductReduction product + H2ONon-redox product
Oxidation state of each atom
- Reaction of and cobalt(II) nitrate under acidic condition
Reactants
Chemical formula | Name | Coefficient | Type | Type in general equation |
---|---|---|---|---|
9 | Reducing | Oxidizable | ||
Co(NO3)2 | Cobalt(II) nitrate | 1 | Oxidizing | Oxidizing under acidic condition |
H+ | Hydrogen ion | 20 | – | Hydrogen ion |
Products
Thermodynamic changes
Changes in standard condition
- Reaction of and cobalt(II) nitrate under acidic condition◆
ΔrG −715.1 kJ/mol K 1.91 × 10125 pK −125.28
Standard enthalpy of reaction ΔrH° kJ · mol−1 | Standard Gibbs energy of reaction ΔrG° kJ · mol−1 | Standard entropy of reaction ΔrS° J · K−1 · mol−1 | Standard heat capacity of reaction at constant pressure ΔrCp° J · K−1 · mol−1 | |
---|---|---|---|---|
per 1 mol of Equation | −924.3 | −715.1 | −698 | – |
−102.7 | −79.46 | −77.6 | – | |
per 1 mol of | −924.3 | −715.1 | −698 | – |
per 1 mol of Hydrogen ion | −46.21 | −35.76 | −34.9 | – |
per 1 mol of Copper(II) ion | −102.7 | −79.46 | −77.6 | – |
−924.3 | −715.1 | −698 | – | |
per 1 mol of Ammonium ion | −462.1 | −357.6 | −349 | – |
per 1 mol of | −154.0 | −119.2 | −116 | – |
Thermodynamic data of reactants
Chemical formula | Standard enthalpy of formation ΔfH° kJ · mol−1 | Standard Gibbs energy of formation ΔfG° kJ · mol−1 | Standard molar entropy S° J · K−1 · mol−1 | Standard molar heat capacity at constant pressure Cp° J · K−1 · mol−1 |
---|---|---|---|---|
(cr) | 0[1] | 0[1] | 33.150[1] | 24.435[1] |
(g) | 338.32[1] | 298.58[1] | 166.38[1] | 20.786[1] |
Co(NO3)2 (cr) | -420.5[1] | – | – | – |
Co(NO3)2 (ai) | -472.8[1] | -276.9[1] | 180[1] | – |
Co(NO3)2 (cr) 2 hydrate | -1021.7[1] | – | – | – |
Co(NO3)2 (cr) 3 hydrate | -1325.9[1] | – | – | – |
Co(NO3)2 (cr) 4 hydrate | -1630.5[1] | – | – | – |
Co(NO3)2 (cr) 6 hydrate | -2211.20[1] | – | – | 452[1] |
H+ (g) | 1536.202[1] | – | – | – |
H+ (ao) | 0[1] | 0[1] | 0[1] | 0[1] |
* (cr):Crystalline solid, (g):Gas, (ai):Ionized aqueous solution, (ao):Un-ionized aqueous solution
Thermodynamic data of products
Chemical formula | Standard enthalpy of formation ΔfH° kJ · mol−1 | Standard Gibbs energy of formation ΔfG° kJ · mol−1 | Standard molar entropy S° J · K−1 · mol−1 | Standard molar heat capacity at constant pressure Cp° J · K−1 · mol−1 |
---|---|---|---|---|
Cu2+ (g) | 3054.07[1] | – | – | – |
Cu2+ (ao) | 64.77[1] | 65.49[1] | -99.6[1] | – |
(cr) α, hexagonal | 0[1] | 0[1] | 30.04[1] | 24.81[1] |
(cr) β, face centered cubic | 0.46[1] | 0.25[1] | 30.71[1] | – |
(g) | 424.7[1] | 380.3[1] | 179.515[1] | 23.020[1] |
NH4+ (ao) | -132.51[1] | -79.31[1] | 113.4[1] | 79.9[1] |
H2O (cr) | – | – | – | – |
H2O (l) | -285.830[1] | -237.129[1] | 69.91[1] | 75.291[1] |
H2O (g) | -241.818[1] | -228.572[1] | 188.825[1] | 33.577[1] |
* (g):Gas, (ao):Un-ionized aqueous solution, (cr):Crystalline solid, (l):Liquid
References
List of references
- 1Janiel J. Reed (1989)The NBS Tables of Chemical Thermodynamic Properties: Selected Values for Inorganic and C1 and C2 Organic Substances in SI UnitsNational Institute of Standards and Technology (NIST)
- ^ ΔfH°, 0 kJ · mol−1
- ^ ΔfG°, 0 kJ · mol−1
- ^ S°, 33.150 J · K−1 · mol−1
- ^ Cp°, 24.435 J · K−1 · mol−1
- ^ ΔfH°, 338.32 kJ · mol−1
- ^ ΔfG°, 298.58 kJ · mol−1
- ^ S°, 166.38 J · K−1 · mol−1
- ^ Cp°, 20.786 J · K−1 · mol−1
- ^ ΔfH°, -420.5 kJ · mol−1
- ^ ΔfH°, -472.8 kJ · mol−1
- ^ ΔfG°, -276.9 kJ · mol−1
- ^ S°, 180. J · K−1 · mol−1
- ^ ΔfH°, -1021.7 kJ · mol−1
- ^ ΔfH°, -1325.9 kJ · mol−1
- ^ ΔfH°, -1630.5 kJ · mol−1
- ^ ΔfH°, -2211.20 kJ · mol−1
- ^ Cp°, 452. J · K−1 · mol−1
- ^ ΔfH°, 1536.202 kJ · mol−1
- ^ ΔfH°, 0 kJ · mol−1
- ^ ΔfG°, 0 kJ · mol−1
- ^ S°, 0 J · K−1 · mol−1
- ^ Cp°, 0 J · K−1 · mol−1
- ^ ΔfH°, 3054.07 kJ · mol−1
- ^ ΔfH°, 64.77 kJ · mol−1
- ^ ΔfG°, 65.49 kJ · mol−1
- ^ S°, -99.6 J · K−1 · mol−1
- ^ ΔfH°, 0 kJ · mol−1
- ^ ΔfG°, 0 kJ · mol−1
- ^ S°, 30.04 J · K−1 · mol−1
- ^ Cp°, 24.81 J · K−1 · mol−1
- ^ ΔfH°, 0.46 kJ · mol−1
- ^ ΔfG°, 0.25 kJ · mol−1
- ^ S°, 30.71 J · K−1 · mol−1
- ^ ΔfH°, 424.7 kJ · mol−1
- ^ ΔfG°, 380.3 kJ · mol−1
- ^ S°, 179.515 J · K−1 · mol−1
- ^ Cp°, 23.020 J · K−1 · mol−1
- ^ ΔfH°, -132.51 kJ · mol−1
- ^ ΔfG°, -79.31 kJ · mol−1
- ^ S°, 113.4 J · K−1 · mol−1
- ^ Cp°, 79.9 J · K−1 · mol−1
- ^ ΔfH°, -285.830 kJ · mol−1
- ^ ΔfG°, -237.129 kJ · mol−1
- ^ S°, 69.91 J · K−1 · mol−1
- ^ Cp°, 75.291 J · K−1 · mol−1
- ^ ΔfH°, -241.818 kJ · mol−1
- ^ ΔfG°, -228.572 kJ · mol−1
- ^ S°, 188.825 J · K−1 · mol−1
- ^ Cp°, 33.577 J · K−1 · mol−1