FUEL PROCESSOR COMPONENT FOR A PROPYLENE GLYCOL FUEL PROCESSOR AND PROPYLENE GLYCOL FUEL PROCESSOR
20180236431 ยท 2018-08-23
Assignee
Inventors
- David Tiemann (Gau-Odernheim, DE)
- Jochen Schuerer (Gau-Bischofsheim, DE)
- Gunther Kolb (Neustadt/W., DE)
Cpc classification
B01J2208/00716
PERFORMING OPERATIONS; TRANSPORTING
B01J19/0093
PERFORMING OPERATIONS; TRANSPORTING
B01J2219/2497
PERFORMING OPERATIONS; TRANSPORTING
C10K3/04
CHEMISTRY; METALLURGY
B01J2219/00835
PERFORMING OPERATIONS; TRANSPORTING
B01J2219/2479
PERFORMING OPERATIONS; TRANSPORTING
B01J2219/2458
PERFORMING OPERATIONS; TRANSPORTING
C10L1/02
CHEMISTRY; METALLURGY
B01J2219/00783
PERFORMING OPERATIONS; TRANSPORTING
B01J2208/00628
PERFORMING OPERATIONS; TRANSPORTING
B01J2219/2462
PERFORMING OPERATIONS; TRANSPORTING
B01F2101/59
PERFORMING OPERATIONS; TRANSPORTING
B01J2219/2453
PERFORMING OPERATIONS; TRANSPORTING
B01J19/0013
PERFORMING OPERATIONS; TRANSPORTING
Y02E60/50
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
B01J2219/2465
PERFORMING OPERATIONS; TRANSPORTING
Y02P20/129
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
International classification
B01J19/24
PERFORMING OPERATIONS; TRANSPORTING
B01J19/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
The invention relates to a fuel processor component for a propylene glycol fuel processor, comprising at least one housing (G) having at least two inlets (E1, E2) and two outlets (A1, A2), wherein there is a multitude of first plates (P1) having a first side (S1) and a second side (S2) and second plates (P2) having a third side (S3) and a fourth side (S4) arranged as a stack in the housing (G), wherein the stacked first and second plates (P1, P2) form at least first cavities (H1) and second cavities (H2), wherein the first inlet (E1) has fluid connection to the first outlet (A1) via first cavities (H1) and the second inlet (E2) has fluid connection to the second outlet (A2) via second cavities (H2).
The invention further relates to a propylene glycol fuel processor.
Claims
1. A fuel processor component for a propylene glycol fuel processor, comprising at least one housing having at least two inlets and two outlets, wherein there is a multitude of first plates having a first side and a second side and second plates having a third side and a fourth side arranged as a stack in the housing, wherein the stacked first and second plates form at least first cavities and second cavities, wherein the first inlet has fluid connection to the first outlet via first cavities and the second inlet has fluid connection to the second outlet via second cavities.
2. The fuel processor component according to claim 1, wherein the first plates and/or the second plates have surface structuring, wherein the surface structuring comprises a pattern and/or channels having a distributor structure and a collection structure.
3. The fuel processor component according to claim 1, wherein a first number of the first and second plates is arranged in a given sequence, wherein the first number of the first and second plates forms a repeating unit.
4. The fuel processor component according to claim 3, wherein there is a multitude of third plates each having a fifth side and a sixth side arranged in the housing, wherein the third plates form an element of the repeating unit.
5. The fuel processor component according to claim 1, wherein the first side has structuring configured for a gas reaction and the second side is a cooling or evaporator side.
6. The fuel processor component according to claim 2, wherein the third side has the same surface structuring as the second side and the fourth side the same surface structuring as the first side.
7. The fuel processor component according to claim 1, wherein the fuel processor component is an evaporator, wherein at least a first side of a first plate is configured as evaporator and a second side for passage of hot gas.
8. The fuel processor component according to claim 1, wherein the fuel processor component is an evaporator and a first side and a second side of a first plate are configured as evaporator surfaces, wherein a third side is configured as a hot gas side and a fourth side of a second plate as a flat surface, wherein a fifth side is optionally configured as a hot gas side for passage of air, wherein each evaporator surface is opposite a flat surface and two hot gas sides are opposite one another.
9. The fuel processor component according to claim 8 having first to sixth sides, wherein a repeating unit has the following sequence: first side, second side, fourth side, third side, third side, fourth side, first side, second side, fourth side, third side, third side, fourth side, sixth side, fifth side, fifth side, sixth side.
10. The fuel processor component according to claim 1, wherein the fuel processor component is a heat exchanger, wherein at least one first side is configured for passage of a first gas and one second side for passage of a second gas.
11. The fuel processor component according to claim 10, wherein the fuel processor component is configured such that the first gas and the second gas can be guided through the fuel processor component in the same direction or in opposing directions.
12. The fuel processor component according to claim 1, wherein the fuel processor component is a water-gas shift reactor, wherein the first plate has a first side configured as a cooling side and a second side configured as a reaction side.
13. The fuel processor component according to claim 12, wherein every sixth side in a repeating unit is configured as a cooling side.
14. The fuel processor component according to claim 1, wherein the fuel processor component is a PrOx reactor, wherein a first plate has a first side configured as a cooling side and a second side configured as a cooling side, wherein a second plate has a third side configured as a reaction side and a fourth side configured as a gas feed side, wherein a third plate has a fifth side configured as a reaction side and a sixth side configured as an unstructured surface.
15. The fuel processor component according to claim 14, wherein a repeating unit has the following sequence: first side, second side, sixth side, fifth side, third side, fourth side, fourth side, third side, fifth side, sixth side.
16. A propylene glycol fuel processor comprising a heat exchanger and a series connection of an evaporator, a reformer, a water-gas shift reactor and a PrOx reactor, wherein at least one of the fuel processor components is a fuel processor component according to claim 1 configured as an evaporator, wherein at least a first side of a first plate is configured as evaporator and a second side for passage of hot gas, a fuel processor component according to claim 1 configured as a heat exchanger, wherein at least one first side is configured for passage of a first gas and one second side for passage of a second gas, a fuel processor component according to claim 1 configured as a water-gas shift reactor (R1), wherein the first plate has a first side configured as a cooling side and a second side configured as a reaction side and/or a fuel processor component according to claim 1 configured as a PrOx reactor (R2), wherein a first plate has a first side configured as a cooling side and a second side configured as a cooling side, wherein a second plate has a third side configured as a reaction side and a fourth side configured as a gas feed side, wherein a third plate has a fifth side configured as a reaction side and a sixth side configured as an unstructured surface.
17. The propylene glycol fuel processor according to claim 16, wherein at least two of the fuel processor components are arranged one on top of the other such that the plate stacks of the at least two fuel processor components form a superstack.
18. The propylene glycol fuel processor according to claim 17, wherein a heat exchanger, a water-gas shift reactor and a PrOx reactor are arranged one on top of the other such that the plates thereof form a superstack, wherein the water-gas shift reactor is arranged in a middle region of the superstack, wherein the propylene glycol fuel processor is configured such that a first gas can flow successively through the heat exchanger, the water-gas shift reactor and the PrOx reactor.
Description
[0034] The invention is elucidated in detail hereinafter with reference to drawings. The drawings are schematic diagrams. The figures show:
[0035]
[0036]
[0037]
[0038]
[0039]
[0040]
[0041]
[0042]
[0043]
[0044]
[0045]
[0046] The channels 11 on the first side S1, the second side S2, the third side S3 and the fourth side S4 are of identical configuration in this working example. The flow through a cooling cavity formed between a fourth side S4 and a first side S1, in the view shown in
[0047]
[0048] The evaporator side has been provided with a pattern 10 or channels (not shown). The distributor structure 12 is arranged centrally on one side; the collection structure 13 is arranged in a direction at right angles thereto.
[0049] The third side S3 is configured as a hot gas side, wherein the fourth side S4 on the reverse side of the third side S3 is configured as a flat surface. The fourth side S4 in this working example faces toward the second side S2 and thus forms the evaporator cavity with the second side S2.
[0050] Two third sides S3 are arranged opposite one another such that the hot gas is guided within channels 11 formed by the two third sides S3. Optionallyas showna third plate P3 having a fifth side S5 and a sixth side S6 is arranged, wherein the fifth side S5 is configured as a hot gas conduit for conduction of air and a sixth side S6 as a flat surface. The stack in this case has four second plates P2 and two third plates P3, wherein the second plates P2 and the third plates P3 may be identical. The stack shown, comprising the first plates P1, the second plates P2 and the third plates P3, forms a repeating unit.
[0051]
[0052]
[0053] The third inlet E3 serves as an inlet for hot gas which can be heated in another fuel processor component, for example with heat from the reformer or another burner. The hot gas is guided to the third outlet A3 by the gas collection unit 20.
[0054]
[0055] The fuel gas, especially reformate, is guided through the combined gas collection/gas distributor unit 41 into the water-gas shift reactor R1 and subsequently guided through a combined gas collection/gas distributor unit 44 into the PrOx reactor R2. Via the inlet 32 and the distributor unit 45, air can be guided in the water-gas shift reactor R1 into the cavities intended for cooling.
[0056] The PrOx reactor R2 comprises an inlet 33 having a distributor unit 46 for introduction of a gas, especially the fuel, for evaporative cooling, and a further inlet 35 with a distributor unit 47 connected thereto for introduction of air. The gas generated in the PrOx reactor R2 is guided through a gas collection unit 40 to an offgas outlet 34. A fuel cell may be connected to this offgas outlet 34. The vapour generated by the evaporative cooling is removed through a further outlet (not shown).
[0057] The reactor combination, shown in
[0058]
LIST OF REFERENCE NUMERALS
[0059] 10 pattern [0060] 11 channel [0061] 12 distributor structure [0062] 13 collection structure [0063] 14 air supply channel [0064] 20 distributor unit [0065] 21 collection unit [0066] 22 distributor unit [0067] 23 distributor unit [0068] 24 collection unit [0069] 25 collection unit [0070] 30 additional inlet [0071] 31 cooling outlet [0072] 32 inlet [0073] 33 evaporation gas inlet [0074] 34 offgas outlet [0075] 35 air inlet [0076] 40 gas collection unit [0077] 41 collection/distributor unit [0078] 42 distributor unit [0079] 43 collection unit [0080] 44 collection/distributor unit [0081] 45 distributor unit [0082] 46 distributor unit [0083] 47 distributor unit [0084] 50 first intermediate plate [0085] 51 second intermediate plate [0086] A1 first outlet [0087] A2 second outlet [0088] A3 third outlet [0089] E1 first inlet [0090] E2 second inlet [0091] E3 third inlet [0092] G housing [0093] H1 first cavity [0094] H2 second cavity [0095] P1 first plate [0096] P2 second plate [0097] P3 third plate [0098] R reformer [0099] R1 water-gas shift reactor [0100] R2 PrOx reactor [0101] R3 CO cleanup reactor unit [0102] S1 first side [0103] S2 second side [0104] S3 third side [0105] S4 fourth side [0106] S5 fifth side [0107] S6 sixth side [0108] V evaporator [0109] W heat exchanger