3Ca(ClO)2 + 4HMnO4 → CaCl2 + 2Ca(MnO4)2 + 2H2O2 + 2Cl2O↑
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The reaction of calcium hypochlorite and permanganic acid yields calcium chloride, calcium permanganate, , and dichlorine monoxide (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 calcium hypochlorite and permanganic acid
General equation
- Reaction of self redoxing species and acid
- Self-redoxing speciesSelf redox agent + AcidNon-redox agent ⟶ ProductOxidation product + ProductReduction product
Oxidation state of each atom
- Reaction of calcium hypochlorite and permanganic acid
Reactants
Chemical formula | Name | Coefficient | Type | Type in general equation |
---|---|---|---|---|
Ca(ClO)2 | Calcium hypochlorite | 3 | Oxidizing | Self redoxing |
HMnO4 | Permanganic acid | 4 | – | Acid |
Products
Chemical formula | Name | Coefficient | Type | Type in general equation |
---|---|---|---|---|
CaCl2 | Calcium chloride | 1 | Reduced | – |
Ca(MnO4)2 | Calcium permanganate | 2 | – | – |
2 | – | – | ||
Cl2O | Dichlorine monoxide | 2 | – | – |
Thermodynamic changes
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 |
---|---|---|---|---|
Ca(ClO)2 (aq) | -754.4[1] | – | – | – |
HMnO4 | – | – | – | – |
* (aq):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 |
---|---|---|---|---|
CaCl2 (cr) | -795.8[1] | -748.1[1] | 104.6[1] | 72.59[1] |
CaCl2 (g) | -471.5[1] | -479.24[1] | 290.27[1] | 59.33[1] |
CaCl2 (ai) | -877.13[1] | -816.01[1] | 59.8[1] | – |
CaCl2 (cr) 1 hydrate | -1109.2[1] | – | – | – |
CaCl2 (cr) 2 hydrate | -1402.9[1] | – | – | – |
CaCl2 (cr) 4 hydrate | -2009.6[1] | – | – | – |
CaCl2 (cr) 6 hydrate | -2607.9[1] | – | – | – |
Ca(MnO4)2 | – | – | – | – |
(l) | -187.78[1] | -120.35[1] | 109.6[1] | 89.1[1] |
(g) | -136.31[1] | -105.57[1] | 232.7[1] | 43.1[1] |
(ao) | -191.17[1] | -134.03[1] | 143.9[1] | – |
Cl2O (g) | 80.3[1] | 97.9[1] | 266.21[1] | 45.40[1] |
* (cr):Crystalline solid, (g):Gas, (ai):Ionized aqueous solution, (l):Liquid, (ao):Un-ionized aqueous solution
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°, -754.4 kJ · mol−1
- ^ ΔfH°, -795.8 kJ · mol−1
- ^ ΔfG°, -748.1 kJ · mol−1
- ^ S°, 104.6 J · K−1 · mol−1
- ^ Cp°, 72.59 J · K−1 · mol−1
- ^ ΔfH°, -471.5 kJ · mol−1
- ^ ΔfG°, -479.24 kJ · mol−1
- ^ S°, 290.27 J · K−1 · mol−1
- ^ Cp°, 59.33 J · K−1 · mol−1
- ^ ΔfH°, -877.13 kJ · mol−1
- ^ ΔfG°, -816.01 kJ · mol−1
- ^ S°, 59.8 J · K−1 · mol−1
- ^ ΔfH°, -1109.2 kJ · mol−1
- ^ ΔfH°, -1402.9 kJ · mol−1
- ^ ΔfH°, -2009.6 kJ · mol−1
- ^ ΔfH°, -2607.9 kJ · mol−1
- ^ ΔfH°, -187.78 kJ · mol−1
- ^ ΔfG°, -120.35 kJ · mol−1
- ^ S°, 109.6 J · K−1 · mol−1
- ^ Cp°, 89.1 J · K−1 · mol−1
- ^ ΔfH°, -136.31 kJ · mol−1
- ^ ΔfG°, -105.57 kJ · mol−1
- ^ S°, 232.7 J · K−1 · mol−1
- ^ Cp°, 43.1 J · K−1 · mol−1
- ^ ΔfH°, -191.17 kJ · mol−1
- ^ ΔfG°, -134.03 kJ · mol−1
- ^ S°, 143.9 J · K−1 · mol−1
- ^ ΔfH°, 80.3 kJ · mol−1
- ^ ΔfG°, 97.9 kJ · mol−1
- ^ S°, 266.21 J · K−1 · mol−1
- ^ Cp°, 45.40 J · K−1 · mol−1