SMALL AIR-COOLED ENGINE WITH CATALYTIC CONVERTER WITH RUTHENIUM CATALYST
A small-air cooled internal combustion engine includes an engine block including a cylinder, a piston within the cylinder, a crankshaft configured to be driven by the piston, a blower system including a fan that is configured to pull air over the engine block, a fuel system for supplying an air-fuel mixture to the cylinder, and an exhaust system for removing exhaust from the cylinder. The exhaust system comprises an exhaust inlet, a muffler and, a catalytic converter including a catalyst. The catalyst comprises a precious metal loading having ruthenium as a primary element by mass.
1 . A small air-cooled internal combustion engine comprising:
an engine block including a cylinder;
a piston within the cylinder;
a crankshaft configured to be driven by the piston;
a blower system including a fan, the fan configured to direct cooling air over the engine block;
an air-fuel mixing device for supplying an air-fuel mixture to the cylinder for combustion; and
an exhaust system for removing exhaust from the cylinder, the exhaust system comprising:
an exhaust port formed in the cylinder to allow exhaust to exit the cylinder following combustion; and
a catalytic converter fluidly coupled to the exhaust port and configured to receive exhaust from the exhaust port, the catalytic converter including a catalyst, wherein the catalyst comprises a precious metal loading having ruthenium as a primary element by mass.
2 . The small air-cooled internal combustion engine of claim 1 , wherein the catalyst comprises precious metal loading of at least 40% ruthenium by mass.
3 . The small air-cooled internal combustion engine of claim 2 , wherein the catalyst comprises precious metal loading of at least 50% ruthenium by mass.
4 . The small air-cooled internal combustion engine of claim 3 , wherein the catalyst comprises precious metal loading of about 50% ruthenium by mass and about 50% platinum by mass.
5 . The small air-cooled internal combustion engine of claim 2 , wherein the catalyst comprises precious metal loading of about 40% platinum by mass.
6 . The small air-cooled internal combustion engine of claim 5 , wherein the catalyst comprises precious metal loading of about 20% iridium by mass.
7 . The small air-cooled internal combustion engine of claim 1 , wherein the fuel system is configured to provide an air-fuel mixture to the cylinder at an air-to-fuel ratio below a stoichiometric ratio.
8 . The small-air cooled internal combustion engine of claim 1 , wherein the engine operates below an air to fuel ratio of 14.7 at stead-state operation.
9 . The small air-cooled internal combustion engine of claim 1 , wherein in operation, the engine produces a gross power output at or below 40 horsepower.
10 . The small air-cooled internal combustion engine of claim 1 , wherein the air-fuel mixing device comprises an electronic fuel injector for providing fuel to produce the air-fuel mixture.
11 . The small air-cooled internal combustion engine of claim 1 , wherein the catalytic converter is configured to reduce a concentration of nitric oxide within exhaust gas exposed to the catalyst by at least 90%.
12 . (canceled)
13 . The small air-cooled internal combustion engine of claim 1 , wherein the engine displacement is 1000 cc or less.
14 - 20 . (canceled)
21 . A catalytic converter for a small air-cooled internal combustion engine having a displacement of one thousand cubic centimeters or less, the catalytic converter comprising:
an inlet;
a chamber fluidly coupled with the inlet, the chamber supporting a substrate having a catalyst disposed thereon, wherein the catalyst comprises a precious metal loading having ruthenium as a primary element by mass; and
an outlet fluidly coupled with the chamber and configured to direct gas outwardly away from the chamber.
22 . The catalytic converter of claim 21 , wherein the catalyst comprises a precious metal loading of at least 40% ruthenium by mass.
23 . The catalytic converter of claim 22 , wherein the catalyst comprises a precious metal loading of at least 50% ruthenium by mass.
24 . The catalytic converter of claim 23 , wherein the catalyst comprises a precious metal loading of about 50% ruthenium by mass and about 50% platinum by mass.
25 . The catalytic converter of claim 22 , wherein the catalyst comprises a precious metal loading of about 40% platinum by mass.
26 . The catalytic converter of claim 25 , wherein the catalyst comprises a precious metal loading of about 20% iridium by mass.
27 . The catalytic converter of claim 21 , wherein the catalytic converter is configured to reduce a concentration of nitric oxide in exhaust gas exposed to the catalyst by at least 90% as the exhaust gas passes from the inlet to the outlet.
28 . The catalytic converter of claim 21 , wherein the catalytic converter is configured to reduce a concentration of hydrocarbons in exhaust gas exposed to the catalyst by at least 20% as the exhaust gas passes from the inlet to the outlet.