System and method for treating exhaust pipe
The system for treating exhaust gas comprises an exhaust duct, a catalytic converter arranged in the exhaust duct and an injector for injecting a substance into the system. The system further comprises a bypass duct bypassing a section of the exhaust duct, wherein the bypass duct is arranged such that only part of the catalytic converter is bypassed by the bypass duct.
1. System for treating exhaust gas, the system comprising:
an exhaust duct;
a catalytic converter arranged in the exhaust duct;
an injector for injecting a substance into the system;
a bypass duct comprising a bypass inlet and a bypass outlet, the bypass duct bypassing a section of the exhaust duct, wherein the bypass duct is arranged such that only part of the catalytic converter is bypassed by the bypass duct, wherein the catalytic converter comprises a diversion outlet, which is connected to the bypass inlet, and wherein the diversion outlet is arranged upstream of the downstream end of the catalytic converter.
2. The system according to claim 1 , wherein the bypass outlet is arranged downstream of the catalytic converter and upstream of a further catalytic converter.
3. The system according to claim 1 , wherein the catalytic converter comprises a reentry inlet, which is connected to the bypass outlet, and wherein the diversion outlet is arranged upstream of the reentry inlet.
4. The system according to claim 3 , wherein a portion of the catalytic converter following the reentry inlet comprises an uncoated substrate surface.
5. The system according to claim 3 , wherein a portion of the catalytic converter following the reentry inlet comprises a coated substrate surface such that the portion of the catalytic converter following the reentry inlet forms a catalyst different from an oxidation catalyst.
6. The system according to claim 1 , wherein the injector is arranged to inject the substance into the bypass duct.
7. The system according to claim 1 , wherein a size of the bypass duct relative to a size of the exhaust duct is adapted such that a maximum partial flow of about 10 percent of a total exhaust gas flow is bypassed through the bypass duct.
8. The system according to claim 1 , wherein the catalytic converter is an oxidation catalyst.
9. Method for treating exhaust gas, the method comprising the steps of:
guiding exhaust gas through a catalytic converter arranged in an exhaust duct;
adding a substance into at least a portion of the exhaust gas;
diverting a portion of the exhaust gas from the exhaust duct;
wherein the diverted portion of the exhaust gas bypasses a section of the exhaust duct and bypasses a part of the length only of the catalytic converter; wherein the step of diverting a portion of the exhaust gas from the exhaust duct comprises reinjecting the diverted portion of the exhaust gas into the catalytic converter at a location downstream of an upstream end of the catalytic converter.
10. The method according to claim 9 , wherein the step of diverting a portion of the exhaust gas from the exhaust duct comprises diverting the portion of the exhaust gas from the catalytic converter at a location upstream of a downstream end of the catalytic converter.
11. The method according to claim 9 , further comprising the step of adding the substance into the portion of the exhaust gas diverted from the exhaust duct.
12. A system for treating exhaust gas, the system comprising:
an exhaust duct;
a catalytic converter arranged in the exhaust duct;
an injector for injecting a substance into the system;
a bypass duct comprising a bypass inlet and a bypass outlet, the bypass duct bypassing a section of the exhaust duct, wherein the bypass duct is arranged such that only part of the catalytic converter is bypassed by the bypass duct, wherein the catalytic converter comprises a reentry inlet, which is connected to the bypass outlet, and wherein the reentry inlet is arranged downstream of the upstream end of the catalytic converter.
13. The system according to claim 12 , wherein the bypass inlet is arranged upstream of the catalytic converter.
14. The system according to claim 12 , wherein the injector is arranged at the bypass duct.
15. The system according to claim 12 , wherein a size of the bypass duct relative to a size of the exhaust duct is adapted such that a maximum partial flow of about 10 percent of a total exhaust gas flow is bypassed through the bypass duct.
16. The system according to claim 12 , wherein the catalytic converter is an oxidation catalyst.
17. The system according to claim 12 , wherein a portion of the catalytic converter following the reentry inlet comprises an uncoated substrate surface.
18. The system according to claim 12 , wherein a portion of the catalytic converter following the reentry inlet comprises a coated substrate surface such that the portion of the catalytic converter following the reentry inlet forms a catalyst different from an oxidation catalyst.
19. The system according to claim 12 , wherein the catalytic converter comprises a diversion outlet, which is connected to the bypass inlet, wherein the diversion outlet is arranged upstream of the reentry inlet.
20. A method for treating exhaust gas, the method comprising the steps of:
guiding exhaust gas through a catalytic converter arranged in an exhaust duct;
adding a substance into at least a portion of the exhaust gas;
diverting a portion of the exhaust gas from the exhaust duct;
wherein the diverted portion of the exhaust gas bypasses a section of the exhaust duct and bypasses a part of the length only of the catalytic converter, and wherein the step of diverting a portion of the exhaust gas from the exhaust duct comprises diverting the portion of the exhaust gas from the catalytic converter at a location upstream of a downstream end of the catalytic converter.