Improved after treatment system for a vehicle
US-2022127993-A1 · Apr 28, 2022 · US
US11519314B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11519314-B2 |
| Application number | US-201917274174-A |
| Country | US |
| Kind code | B2 |
| Filing date | Sep 5, 2019 |
| Priority date | Sep 6, 2018 |
| Publication date | Dec 6, 2022 |
| Grant date | Dec 6, 2022 |
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An after treatment system (ATS) for a vehicle having an ATS module includes, fluidly connected in series, an inlet, a Diesel Oxidation Catalysts (DOC), a urea mixer and a Selective Catalytic Reduction (SCR), and an outlet. The inlet is fluidly connected to an output of an engine of the vehicle and the outlet is fluidly connected to an outlet tube of the vehicle. The inlet, DOC, mixer, SCR and outlet are arranged to define a substantial rectangular path of a flow (F) of exhaust gases flowing in the ATS, with the inlet and the outlet being positioned at a same vertex of the substantial rectangular path of the flow (F).
Opening claim text (preview).
The invention claimed is: 1. An after treatment system (ATS) for a vehicle having an ATS module, the after treatment system comprising: an inlet fluidly connected to an output of an engine of the vehicle; a Diesel Oxidation Catalyst (DOC); a urea mixer; a Selective Catalytic Reduction catalyst (SCR), comprising: a Selective Catalytic Reduction on Filter module (SCRoF) comprising: an inlet fluidly connected to the urea mixer via a first fitting; and an outlet; and a Clean Up Catalyst module (SCR-CUC) comprising: an inlet fluidly connected to the SCRoF via a second fitting; and an outlet; wherein the outlet of the SCRoF is fluidly connected to the SCR-CUC via the second fitting; and an outlet fluidly connected to an outlet tube of the vehicle, wherein the outlet of the SCR-CUC is fluidly connected to the outlet of the after treatment system; wherein the inlet of the after treatment system, the DOC, the urea mixer, and the SCR are fluidly connected in series; and wherein the inlet of the after treatment system, the DOC, the urea mixer, the SCR, and the outlet of the after treatment system are arranged to define a substantially rectangular path of a flow of exhaust gases flowing in the ATS module, the inlet of the after treatment system and the outlet of the after treatment system being positioned at a same vertex of the substantially rectangular path of the flow. 2. The after treatment system according to claim 1 , wherein the urea mixer is configured to inject a urea solution into the flow of exhaust gases, perpendicular with respect to the flow. 3. The after treatment system according to claim 1 , further comprising a mechanical reversible coupling between the first fitting and the inlet of the SCRoF. 4. The after treatment system according to claim 1 , further comprising a mechanical reversible coupling between the second fitting and the outlet of the SCRoF. 5. The after treatment system according to claim 1 , further comprising a mechanical reversible coupling between the second fitting and the inlet of the SCR-CUC. 6. The after treatment system according to claim 1 , wherein the second fitting is fluidly interposed between the SCRoF and the SCR-CUC, and is configured to change a flow direction by 180°. 7. The after treatment system according to claim 1 , further comprises a housing comprising a plurality of walls defining a closed volume. 8. The after treatment system according to claim 7 , wherein a first space is defined within the closed volume between the housing and the ATS module, wherein the first space is filled with a thermal insulant. 9. The after treatment system according to claim 7 , further comprising a plurality of sensors housed inside the volume and configured to detect chemical or thermodynamic properties of the flow of exhaust gases flowing in the ATS module. 10. The after treatment system according to claim 1 , wherein a length of the ATS is less than or equal to twice a width of the ATS. 11. The after treatment system according to claim 1 , wherein the urea mixer comprises a mixing chamber having a volume that is less than 2 liters. 12. A vehicle, comprising: an after treatment system (ATS) having an ATS module, the after treatment system comprising: an inlet fluidly connected to an output of an engine of the vehicle; a Diesel Oxidation Catalyst (DOC); a urea mixer; a Selective Catalytic Reduction catalyst (SCR), a Selective Catalytic Reduction on Filter module (SCRoF) comprising: an inlet fluidly connected to the urea mixer via a first fitting; and an outlet; and a Clean Up Catalyst module (SCR-CUC) comprising: an inlet fluidly connected to the SCRoF via a second fitting; and an outlet; wherein the outlet of the SCRoF is fluidly connected to the SCR-CUC via the second fitting; and an outlet fluidly connected to an outlet tube of the vehicle, wherein the outlet of the SCR-CUC is fluidly connected to the outlet of the after treatment system; wherein the inlet of the after treatment system, the DOC, the urea mixer, and the SCR are fluidly connected in series; and wherein the inlet of the after treatment system, the DOC, the urea mixer, the SCR and the outlet of the after treatment system are arranged to define a substantially rectangular path of a flow of exhaust gases flowing in the ATS module, the inlet of the after treatment system and the outlet of the after treatment system being positioned at a same vertex of the substantially rectangular path of the flow. 13. The vehicle according to claim 12 , further comprising a mechanical reversible coupling between the first fitting and the inlet of the SCRoF. 14. An after treatment system (ATS) for a vehicle having an ATS module, the after treatment system comprising: an inlet fluidly connected to an output of an engine of the vehicle; a Diesel Oxidation Catalyst (DOC); a urea mixer; a Selective Catalytic Reduction catalyst (SCR); and an outlet fluidly connected to an outlet tube of the vehicle; wherein the inlet, the DOC, the urea mixer, and the SCR are fluidly connected in series; wherein the inlet, the DOC, the urea mixer, the SCR, and the outlet are arranged to define a substantially rectangular path of a flow of exhaust gases flowing in the ATS module, the inlet and the outlet being positioned at a same vertex of the substantially rectangular path of the flow; and wherein the substantially rectangular path of the flow of exhaust gases flowing in the ATS module has a first leg through the DOC, a second leg through a portion of the SCR, and a substantially 90-degree turn at the urea mixer from the first leg to the second leg. 15. The after treatment system according to claim 14 , wherein the urea mixer is configured to inject a urea solution into the flow of exhaust gases, perpendicular with respect to the flow. 16. The after treatment system according to claim 14 , further comprises a housing comprising a plurality of walls defining a closed volume. 17. The after treatment system according to claim 16 , wherein a first space is defined within the closed volume between the housing and the ATS module, and the first space is filled with a thermal insulant. 18. The after treatment system according to claim 14 , wherein the SCR comprises: a Selective Catalytic Reduction on Filter module (SCRoF) comprising: an inlet fluidly connected to the urea mixer via a first fitting; and an outlet; and a Clean Up Catalyst module (SCR-CUC) comprising: an inlet fluidly connected to the SCRoF via a second fitting; and an outlet; wherein the outlet of the SCRoF is fluidly connected to the SCR-CUC via the second fitting, and the outlet of the SCR-CUC is fluidly connected to the outlet of the after treatment system. 19. The after treatment system according to claim 18 , further comprising a mechanical reversible coupling between the first fitting and the inlet of the SCRoF. 20. The after treatment system according to claim 18 , further comprising a mechanical reversible coupling between the second fitting and the outlet of the SCRoF.
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the axis of inlet or outlet tubes being other than the longitudinal axis of apparatus · CPC title
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