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Commission Delegated Regulation (EU) 2017/654 of 19 December 2016 supplementing Regulation (EU) 2016/1628 of the European Parliament and of the Council with regard to technical and general requirements relating to emission limits and type-approval for internal combustion engines for non-road mobile machinery
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There are currently no known outstanding effects by UK legislation for Commission Delegated Regulation (EU) 2017/654, Division 2..![]()
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Example 1: G25: CH4 = 86 %, N2 = 14 % (by volume)
Example 2: GR: CH4 = 87 %, C2H6 = 13 % (by vol)
Example 3: USA: CH4 = 89 %, C2H6 = 4,5 %, C3H8 = 2,3 %, C6H14 = 0,2 %, O2 = 0,6 %, N2 = 4 %
As an alternative to the above equation, Sλ may be calculated from the ratio of the stoichiometric air demand of pure methane to the stoichiometric air demand of the fuel blend supplied to the engine, as specified below.
Lambda-shift factor (Sλ) expresses the oxygen demand of any fuel blend in relation to oxygen demand of pure methane. Oxygen demand means the amount of oxygen to oxidise methane in a stoichiometric composition of reaction partners to products of complete combustion (i.e. carbon-dioxide and water).
For the combustion of pure methane the reaction is as set out in equation (9-4):
| 1 · CH 4 + 2 · O 2 → 1 · CO 2 + 2 · H 2 O | (9-4) | 
In this case the ratio of molecules in stoichiometric composition of reaction partners is exactly 2:
Where:
=
number of molecules of oxygen
=
number of molecules of methane
The oxygen demand for pure methane is therefore:
=
2 ·nCH 4 with a reference value of [nCH4 ]= 1 kmol
[F1The value of S λ may be determined from the ratio of the ratio of the stoichiometric composition of oxygen and methane to the ratio of the stoichiometric composition of oxygen and the fuel blend supplied to the engine, as set out in equation (9-5):]
Textual Amendments
F1 Substituted by Commission Delegated Regulation (EU) 2018/989 of 18 May 2018 amending and correcting Delegated Regulation (EU) 2017/654 supplementing Regulation (EU) 2016/1628 of the European Parliament and of the Council with regard to technical and general requirements relating to emission limits and type-approval for internal combustion engines for non-road mobile machinery (Text with EEA relevance).
Where:
=
number of molecules of the fuel blend
=
the ratio of the molecules in the stoichiometric composition of oxygen and the fuel blend supplied to the engine
Because air contains 21 % oxygen the stoichiometric air demand Lst of any fuel shall be calculated by means of equation (9-6):
Where:
=
the stoichiometric air demand for the fuel
=
the stoichiometric oxygen demand for the fuel
Consequently the value of Sλ may also be determined from the ratio of the stoichiometric composition of air and methane to the ratio of the stoichiometric composition of air and the fuel blend supplied to the engine, i.e. the ratio of the stoichiometric air demand of methane to that of the fuel blend supplied to the engine, as set out in equation (9-7):
Therefore, any calculation that specifies the stoichiometric air demand may be used to express the Lambda-shift factor.
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