HOUSING FOR A SELECTIVE CATALYST REACTOR, A KIT OF PARTS AND A METHOD
20220235686 · 2022-07-28
Inventors
Cpc classification
F01N2470/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/1888
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N3/2066
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N2450/22
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D53/9431
PERFORMING OPERATIONS; TRANSPORTING
Y02E20/14
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
F01N13/1872
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N13/017
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F01N2590/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
The invention relates to a housing for a selective catalyst reactor for processing exhaust gas from a combustion engine of a combined heat and power system. The housing comprises an annular shaped plate structure forming an elongate accommodation wall defining an inner accommodation volume for containing a catalyst to be flown through by the exhaust gas. The annular shaped plate structure includes a set of plate elements having the same or similar geometry and dimensions.
Claims
1. A housing for a selective catalyst reactor for processing exhaust gas from a combustion engine of a combined heat and power system, the housing comprising an annular shaped plate structure forming an elongate accommodation wall defining an inner accommodation volume for containing a catalyst to be flown through by the exhaust gas, wherein the annular shaped plate structure includes a set of plate elements having the same geometry and dimensions.
2. The housing for a selective catalyst reactor according to claim 1, wherein the set of plate elements form corner elements of the annular shaped plate structure.
3. The housing for a selective catalyst reactor according to claim 2, wherein the annular shaped plate structure includes an additional set of plate elements having the same geometry and dimensions, and wherein the additional set of plate elements form intermediate plate elements located between adjacent corner elements.
4. The housing for a selective catalyst reactor according to claim 1, wherein the annular shaped plate structure includes at least one window module provided with a movable window element.
5. The housing for a selective catalyst reactor according to claim 2, wherein the corner elements are provided, along their circumferential contour, with an upstanding flange contacting a corresponding flange of an adjacent corner element or part of the annular shaped plate structure.
6. The housing for a selective catalyst reactor according to claim 2, wherein the corner elements are arranged and mounted next to each other in a circumferential direction for forming the annular shaped plate structure.
7. The housing for a selective catalyst reactor according to claim 1, comprising a multiple number of annular shaped plate structures arranged in series aligned along a common longitudinal axis so as to form the elongate accommodation wall, wherein at least two annular shaped plate structures each includes the set of plate elements having the same geometry and dimensions, wherein the at least two annular shaped plate structures have the same dimensions in the longitudinal direction.
8. The housing for a selective catalyst reactor according to claim 7, wherein the at least two annular shaped plate structures have a rectangular geometry, in cross sectional view, the structures having a width dimension and a height dimension.
9. The housing for a selective catalyst reactor according claim 8, wherein the width dimension and the height dimension, respectively, of the at least two annular shaped plate structures are the same.
10. The housing for a selective catalyst reactor according to claim 7, further comprising a stiffening intermediate plate including a frame having the same dimensions as the at least two annular shaped plate structures, in cross sectional view, the stiffening intermediate plate further including stiffening elements forming flow openings.
11. The housing for a selective catalyst reactor according to claim 10, wherein the stiffening intermediate plate is arranged between the two annular shaped plate structures, aligned along the common longitudinal axis.
12. The housing for a selective catalyst reactor according to claim 1, further comprising a gas inlet section formed as truncated cone having a proximal end with a relatively small entry opening for connection with an exhaust tube of the combustion engine, and a distal end with a relatively large exit opening for connection with an annular shaped plate structure or stiffening intermediate plate, wherein the relatively small entry opening of the truncated cone is eccentric relative to the relatively large exit opening of the truncated cone.
13. A kit of parts for constructing the housing for a selective catalyst reactor according to claim 1, the kit of parts comprising the set of plate elements having the same geometry and dimensions for being arranged and mounted in a circumferential direction for forming the annular shaped plate structure of the housing.
14. The kit of parts according to claim 13, wherein the set of plate elements form corner elements for the annular shaped plate structure, the kit of parts including intermediate plate elements to be located between adjacent corner elements in the annular shaped plate structure.
15. A method for constructing the housing for a selective catalyst reactor according to claim 1, comprising a step of providing a kit of parts for constructing the housing for a selective catalyst reactor, the kit of parts comprising the set of plate elements having the same geometry and dimensions for being arranged and mounted in a circumferential direction for forming the annular shaped plate structure of the housing, the set of plate elements configured to form corner elements for the annular shaped plate structure, and a step of arranging and mounting the corner elements next to each other in a circumferential direction for forming the annular shaped plate structure of the housing.
16. The housing for a selective catalyst reactor according to claim 2, wherein the corner elements have a folded profile.
17. The housing for a selective catalyst reactor according to claim 3, wherein the intermediate elements are generally rectangular.
18. The kit of parts according to claim 14, further including at least one window module provided with a movable window element.
19. The method according to claim 15, wherein the kit of parts includes intermediate plate elements to be located between adjacent corner elements in the annular shaped plate structure, and wherein the method further comprises a step of arranging and mounting the intermediate elements in the circumferential direction for forming the annular shaped plate structure of the housing.
20. The method according to claim 19, wherein the kit of parts further includes at least one window module provided with a movable window element, and wherein the method further comprises a step of arranging and mounting the at least one window module the circumferential direction for forming the annular shaped plate structure of the housing.
Description
[0020] The invention will now be further elucidated on the basis of a number of exemplary embodiments and an accompanying drawing. In the drawing:
[0021]
[0022]
[0023]
[0024]
[0025]
[0026]
[0027]
[0028]
[0029] It is noted that the figures show merely preferred embodiments according to the invention. In the figures, the same reference numbers refer to equal or corresponding parts.
[0030]
[0031] Typically, a selective catalyst reactor 1 is provided with a catalyst such as palladium that is exposed to the exhaust gas of the combustion engine for removing nitrogen oxides and related pollution gases thus cleaning the exhaust gas.
[0032] The housing of the SCR 1 shown in
[0033] According to an aspect of the invention, the annular shaped plates 2a-c structures each include a set of plate elements 4″ having the same, mainly the same or similar geometry and dimensions, and an additional set of plate elements 4″ having the same, mainly the same or similar geometry and dimensions. By using plate elements 4′. 4″ that have been standardized in geometry and dimensions or sizes, a large variety of SCRs can be constructed from the same standardized base units, the plate elements 4′, 4″.
[0034] Further, the annular shaped plate structures 2a-c in
[0035] The plate elements 4′ of the first set form corner elements of the annular shaped plate structures 2a-c. Typically, the corner elements 4′ are located at corners of the annular shaped plate structures 2a-c.
[0036] The plate elements 4″ of the second or additional set form intermediate elements located between adjacent corner elements 4′ of the annular shaped plate structures allowing housing designs having relatively large dimensions.
[0037] The window module 5′ forms an optional third type of element that is used for constructing the housing for the annular shaped plate structures 2a-c.
[0038] As shown in
[0039] In the shown embodiment, the plate elements 4 are generally flat. In practice, the plate elements 4 may have another shape, e.g. slightly curved. Further, in the shown embodiment, the plate elements 4 have edge portions 4a extending generally transverse to the generally flat plane wherein the plate element 4 generally extends further simplifying a reliable mounting process.
[0040] Generally, the annular shaped plate structures 2a-c form closed loops for enclosing the accommodation volume 3 sidewardly.
[0041]
[0042] Due to the use of the standardized plate elements 4′, 4″ and the window module 5, the annular shaped plate structures 2 have the same, mainly the same or similar dimensions or sizes in the longitudinal direction L. Then, the annular shaped plate structures 2 can be easily arranged in series as a concatenation of structures defining an inner accommodation volume having constant or mainly constant cross sectional dimensions.
[0043]
[0044] The corner element 4′ has a folded profile with two plate shaped elements 41, 42 mutually connected via a folding line 43. The two plate shaped elements 41, 42 are mainly transversely oriented with respect to each other. It is noted that the corner element 4′ may have another geometry.
[0045] The intermediate elements 4″ shown in
[0046] The window module 5′ has a movable window element 5″ and hinge elements 5′″ allowing the movable window 5″ element to swivel.
[0047] As shown in
[0048]
[0049] Turning back to
[0050] It is noted that, generally, a cross sectional view is to be understood as a view along the longitudinal axis L, i.e. from a section transverse to said longitudinal axis L.
[0051] The shown housing for the SCR 1 further comprises four stiffening intermediate plates 7 including a frame 8 having the same, mainly the same or similar dimensions as annular shaped plate structures 2a-c, in cross sectional view, the stiffening intermediate plate 7 further including stiffening elements 9 forming flow openings 10. The flow openings 10 serve as a flow guiding optimization structure guiding the exhaust gas G.sub.in flow through the inner accommodation volume 3 of the housing 1 in an optimized manner.
[0052] The stiffening intermediate plates 7 are generally arranged between two neighboring annular shaped plate structures 2, aligned along the common longitudinal axis L. In the shown example, a first grating intermediate plate 7a is located to the left of the first annular shaped plate structure 2a, while a fourth stiffening intermediate plate 7d is located to the right of the third annular shaped plate structure 2c.
[0053] It is noted that, in principle, the housing of the SCR 1 can also be provided without stiffening intermediate plates, e.g. if a single annular shaped plate structure 2 is applied.
[0054] It is noted that instead of three annular shaped plate structures 2a-c, another number of plate structures can be applied, such as a single annular shaped plate structure or two, four or five annular shaped plate structures. Further, all plate structures can be formed with same, mainly the same or similar dimensions using the standardized plate elements 4′, 4″. However, a subset of the annular shaped plate structures may be formed in another way, e.g. when a specific geometry or size is desired and/or dedicated material is to be used. In the shown embodiment, a third annular shaped plate structure 2a, at the right hand side in
[0055] The stiffening intermediate plates 7 are generally arranged between two neighboring annular shaped plate structures 2, aligned along the common longitudinal axis L. In the shown example, a first stiffening intermediate plate 7a is located to the left of the first annular shaped plate structure 2a, while a second stiffening intermediate plate 7b is located between the first and the second annular plate shaped plate structure 2a;b, while a third stiffening intermediate plate 7b is located between the second and the third annular plate shaped plate structure 2b;c, and a fourth stiffening intermediate plate 7d is located at the right of the third annular plate shaped plate structure 2c.
[0056]
[0057]
[0058] It is noted that the shown gas inlet section 10 is optional. In principle, another gas inlet section can be applied to conduct exhaust gas from the combustion engine to the housing 1, e.g. using a gas inlet section having an entry opening 12 that is aligned with the longitudinal axis L of the housing 1, or using a gas inlet section having a staggered profile.
[0059] According to an aspect of the invention, a kit of parts can be provided for constructing a housing for a selective catalyst reactor 1, the kit of parts comprising a set of plate elements 4 having the same, mainly the same or similar geometry and dimensions for being arranged and mounted next to each other in a circumferential direction C for forming an annular shaped plate structure 2 of the housing 1.
[0060] The set of plate elements in the kit of parts may form corner elements for the annular shaped plate structure, the kit of parts optionally including intermediate plate elements to be located between adjacent corner elements in the annular shaped plate structure, the kit of parts further optionally including at least one window module provided with a movable window element.
[0061]
[0062] The step of arranging and mounting the respective elements may include a sub-step of provisionally fixing the respective elements to each other using provisional fixation elements such as a blind rivet, a sub-step of placing the provisionally fixed annular shaped plate structure in a mould or template, and a sub-step of permanently fixing the respective elements to each other.
[0063] It is noted that other sub-steps or techniques may be applicable, replacing at least one of the above described sub-steps or in addition to the above sub-steps.
[0064] The invention is not restricted to the embodiments described above. It will be understood that many variants are possible.
[0065] These and other embodiments will be apparent for the person skilled in the art and are considered to fall within the scope of the invention as defined in the following claims. For the purpose of clarity and a concise description features are described herein as part of the same or separate embodiments. However, it will be appreciated that the scope of the invention may include embodiments having combinations of all or some of the features described.