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Zn3P2 + 22HNO3 → 3Zn(NO3)2 + 2H3PO4 + 16NO2↑ + 8H2O

The reaction of zinc phosphide and nitric acid yields zinc nitrate, phosphoric acid, nitrogen dioxide, and water (Other reactions are here). This reaction is an oxidation-reduction reaction and is classified as follows:

Table of contents
  1. 1Reaction data
  2. 2Thermodynamic changes
  3. 3References
  4. 4Related reactions
  5. 5Related categories

Reaction data

Chemical equation

General equation

Reaction of reducing species and oxidizing species
Reducing speciesReducing agent + Oxidizing speciesOxidizing agent
ProductOxidation product + ProductReduction product

Oxidation state of each atom

Reaction of zinc phosphide and nitric acid

Reactants

Chemical formulaNameCoefficientTypeType in general
equation
Zn3P2Zinc phosphide1
Reducing
Reducing
HNO3Nitric acid22
Oxidizing
Oxidizing

Products

Chemical formulaNameCoefficientTypeType in general
equation
Zn(NO3)2Zinc nitrate3
H3PO4Phosphoric acid2
Oxidized
NO2Nitrogen dioxide16
Reduced
H2OWater8

Thermodynamic changes

Changes in standard condition

Reaction of zinc phosphide and nitric acid
Zn3P2Crystalline solid + 22HNO3Liquid
3Zn(NO3)2Crystalline solid + 2H3PO4Crystalline solid + 16NO2Gas + 8H2OLiquid
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
−1462
per 1 mol of
−1462
per 1 mol of
−66.45
per 1 mol of
−487.3
per 1 mol of
−731.0
per 1 mol of
−91.38
per 1 mol of
−182.8

Changes in aqueous solution (1)

Reaction of zinc phosphide and nitric acid
Zn3P2Crystalline solid + 22HNO3Ionized aqueous solution
3Zn(NO3)2Ionized aqueous solution + 2H3PO4Un-ionized aqueous solution + 16NO2Gas + 8H2OLiquid
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
−1003
per 1 mol of
−1003
per 1 mol of
−45.59
per 1 mol of
−334.3
per 1 mol of
−501.5
per 1 mol of
−62.69
per 1 mol of
−125.4

Changes in aqueous solution (2)

Reaction of zinc phosphide and nitric acid
Zn3P2Crystalline solid + 22HNO3Ionized aqueous solution
3Zn(NO3)2Ionized aqueous solution + 2H3PO4Un-ionized aqueous solution + 16NO2Gas + 8H2OLiquid
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
−1003
per 1 mol of
−1003
per 1 mol of
−45.59
per 1 mol of
−334.3
per 1 mol of
−501.5
per 1 mol of
−62.69
per 1 mol of
−125.4

Changes in aqueous solution (3)

Reaction of zinc phosphide and nitric acid
Zn3P2Crystalline solid + 22HNO3Ionized aqueous solution
3Zn(NO3)2Ionized aqueous solution + 2H3PO4Ionized aqueous solution + 16NO2Gas + 8H2OLiquid
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
−981
per 1 mol of
−981
per 1 mol of
−44.6
per 1 mol of
−327
per 1 mol of
−491
per 1 mol of
−61.3
per 1 mol of
−123

Thermodynamic data of reactants

Chemical formulaStandard 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
Zn3P2 (cr)-473[1]
HNO3 (l)-174.10[1]-80.71[1]155.60[1]109.87[1]
HNO3 (g)-135.06[1]-74.72[1]266.38[1]53.35[1]
HNO3 (ai)-207.36[1]-111.25[1]146.4[1]-86.6[1]
HNO3 (l)
1 hydrate
-473.46[1]-328.77[1]216.90[1]182.46[1]
HNO3 (l)
3 hydrate
-1056.04[1]-811.09[1]346.98[1]325.14[1]
* (cr):Crystalline solid, (l):Liquid, (g):Gas, (ai):Ionized aqueous solution

Thermodynamic data of products

Chemical formulaStandard 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
Zn(NO3)2 (cr)-483.7[1]
Zn(NO3)2 (ai)-568.61[1]-369.57[1]180.7[1]-126[1]
Zn(NO3)2 (cr)
1 hydrate
-805.0[1]
Zn(NO3)2 (cr)
2 hydrate
-1110.27[1]
Zn(NO3)2 (cr)
4 hydrate
-1699.12[1]
Zn(NO3)2 (cr)
6 hydrate
-2306.64[1]-1772.71[1]456.9[1]323.0[1]
H3PO4 (cr)-1279.0[1]-1119.1[1]110.50[1]106.06[1]
H3PO4 (l)-1266.9[1]
H3PO4 (ai)-1277.4[1]-1018.7[1]-220.3[1]
H3PO4 (ao)-1288.34[1]-1142.54[1]158.2[1]
H3PO4 (cr)
0.5 hydrate
-1431.3[1]-1242.1[1]129.16[1]126.02[1]
H3PO4 (cr)
1 hydrate
-1568.83[1]
NO2 (g)33.18[1]51.31[1]240.06[1]37.20[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]
* (cr):Crystalline solid, (ai):Ionized aqueous solution, (l):Liquid, (ao):Un-ionized aqueous solution, (g):Gas

References

List of references

  1. 1
    Janiel J. Reed (1989)
    The NBS Tables of Chemical Thermodynamic Properties: Selected Values for Inorganic and C1 and C2 Organic Substances in SI Units
    National Institute of Standards and Technology (NIST)