Hydrocarbon adsorption filter for air intake system evaporative emission control
The present invention is directed to the use of an improved hydrocarbon adsorbent coating for the treatment of evaporative emissions from a motor vehicle. More specifically, one or more hydrocarbon adsorbents, in accordance with the present invention, can be coated to any surface area of an air intake system to trap hydrocarbon vapors before they can escape to the atmosphere, through said air intake system. In another embodiment, one or more hydrocarbon adsorbents can be incorporated in the air filter of an air intake system.
1. An air intake system for reducing evaporative emissions from a motor vehicle,
wherein said air intake system comprises a plastic air filter housing, wherein one or more interior surfaces of said housing comprises a hydrocarbon adsorbent coat comprising:
a) one or more hydrocarbon adsorbents for the adsorption of hydrocarbons; and
b) an organic polymer binder to improve the adhesion of said hydrocarbon adsorbent to said one or more surfaces of said air intake system,
wherein the hydrocarbon adsorbent comprises zeolite and the organic polymer binder comprises acrylic/styrene acrylic copolymer latex.
2. The air intake system of claim 1 , wherein said air intake system comprises an air filter intake duct, an air filter, and an air filter outlet duct.
3. The air intake system of claim 1 , wherein said zeolite hydrocarbon adsorbent is selected from the group consisting of faujasite, chabazite, clinoptilolite, mordenite, silicalite, zeolite X, zeolite Y, ultrastable zeolite Y, ZSM zeolite, offretite, and beta zeolite.
4. The air intake system of claim 3 , wherein said hydrocarbon adsorbent is beta zeolite.
5. The air intake system of claim 1 , wherein a hydrocarbon adsorbent washcoat slurry comprising a slurry pH from about 4 to about 10 to stabilize said slurry is coated on said one or more interior surfaces.
6. The air intake system of claim 1 , wherein said hydrocarbon adsorbent coat further comprises an anionic dispersant selected from the group consisting of sodium dodecylbenzene sulfonate and sodium dioctyl sulfosuccinate.
7. An air filter housing for reducing evaporative emissions, wherein said air filter housing is plastic and one or more interior surfaces of said housing comprises a zeolite-based hydrocarbon adsorbent coat comprising zeolite and an organic polymer binder comprising acrylic/styrene acrylic copolymer latex.
8. The air filter housing of claim 7 , wherein said zeolite-based hydrocarbon adsorbent is selected from the group consisting of faujasite, chabazite, clinoptilolite, mordenite, silicalite, zeolite X, zeolite Y, ultrastable zeolite Y, ZSM zeolite, offretite, and beta zeolite.
9. The air filter housing of claim 8 , wherein said zeolite-based hydrocarbon adsorbent is beta zeolite.
10. The air filter housing of claim 9 , wherein a zeolite-based hydrocarbon adsorbent washcoat slurry comprising a slurry pH from about 4 to about 10 to stabilize said slurry is coated on said one or more interior surfaces.
11. The air filter housing of claim 9 wherein said zeolite-based hydrocarbon adsorbent coat further comprises an anionic dispersant selected from the group consisting of sodium dodecylbenzene sulfonate and sodium dioctyl sulfosuccinate.
12. The air intake system of claim 1 , wherein said hydrocarbon adsorbent washcoat slurry further comprises a thickener selected from the group consisting of xanthan gum and carboxymethylcellulose.
13. The air intake system of claim 4 , wherein said beta zeolite is acid leached beta zeolite.
14. The air filter housing of claim 7 , wherein said hydrocarbon adsorbent washcoat slurry further comprises a thickener selected from the group consisting of xanthan gum and carboxymethylcellulose.
15. The air filter housing of claim 9 , wherein said beta zeolite is acid leached beta zeolite.