RAW GAS QUENCHING SYSTEM
20190225898 ยท 2019-07-25
Assignee
Inventors
- Tino Just (Freiberg, DE)
- Friedemann Mehlhose (Freiberg, DE)
- Darek Schmauch (Brotterode-Trusetal, DE)
- Andreas Meissner (Trebsen / Mulde, DE)
- Ralph Schumann (Markkleeberg, DE)
Cpc classification
International classification
Abstract
A raw gas washing system with a high degree of deposition of dust in an entrained flow gasification device for the conversion of ash-containing fuels by a gasification device containing free oxygen into a raw gas with a high proportion of hydrogen, in which the fuel is converted in a gasification reactor at temperatures of between 1200 and 1900 C. and method pressures of up to 10 MPa into raw gas and liquid slag. A quenching space designed as a free-space quench contains an additional washing ring which causes a direct-current washing of the quenched raw gas, reducing the particle loading of the raw gas in the raw gas output, thereby reducing subsequent raw gas purification steps.
Claims
1. A raw gas quenching system in an entrained flow gasification unit for the reaction of ash-containing fuels with a free oxygen-containing gasifying composition to give a raw gas having a high hydrogen content, comprising: a gasification reactor in which fuel is converted, at temperatures of 1200 to 1900 C. and process pressures up to 10 MPa, to raw gas and liquid slag, a quencher, a gas and slag outlet through which the raw gas and the liquid slag are transferred into the quencher beneath the gasification reactor, a water bath at the lower end of the quencher, a central tube which adjoins the gas and slag outlet, wherein the central tube has an upper quenching water shell through which quenching water flows and a lower scrubbing water shell through which scrubbing water flows, quenching nozzles disposed in the quenching water shell which inject quenching water from the quenching water shell into the raw gas and slag stream, scrubbing nozzles disposed in the scrubbing water shell which inject scrubbing water from the scrubbing water shell into the raw gas and slag stream, and a raw gas outlet disposed in a pressure shell of the quencher from which the raw gas leaves the quencher.
2. The raw gas quenching system as claimed in claim 1, further comprising: scrubbing nozzles, wherein the raw gas, on its way between the surface of the water bath and the raw gas outlet, is sprayed with scrubbing water by the scrubbing nozzles.
3. The raw gas quenching system as claimed in claim 2, wherein the scrubbing nozzles are disposed above the raw gas outlet.
4. The raw gas quenching system as claimed in claim 1, wherein the lower end of the central tube is not immersed into the water bath and the raw gas above the surface of the water bath ascends deflected outside the central tube.
5. The raw gas quenching system as claimed in claim 1, wherein the lower end of the central tube is immersed into the water bath and the raw gas ascends in a bubble column outside the central tube.
6. The raw gas quenching system as claimed in claim 1, wherein the central tube is connected to the gas and slag outlet in a gastight manner.
7. The raw gas quenching system as claimed in claim 1, wherein a gap is left between the gas and slag outlet and the central tube.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0024] The invention is elucidated in detail hereinafter as a working example in a scope required for understanding with reference to figures. The figures show:
[0025]
[0026]
[0027]
[0028]
[0029]
[0030]
[0031]
[0032]
[0033]
[0034]
DETAILED DESCRIPTION OF INVENTION
[0035] Quenching in the tube with a configuration of the central tube of low complexity is described. For the execution of the tube quenching, 5 variants for a cooled central tube are shown. The quenching is followed by additional scrubbing stages.
[0036] Variant 1 is shown in
[0037] The central tube (8) is likewise cooled via the interspace, water shell. The water used for cooling is then injected into the quench zone (7) via the scrubbing nozzles of the central tube (9). Thus, sufficient purging of the central tube is ensured, in order that deposits and blockages are prevented. The fully quenched raw gas leaves the central tube (9), is deflected and flows within the outer ring space (13) in the direction of raw gas exit (16). Additional scrubbing apparatuses (illustrated here by countercurrent scrubbers, 14 and 15) may be installed in the outer ring space (13). The raw gas leaves the reactor via the raw gas exit (16). The solidified slag, the residual quenching water obtained (from 6) and the scrubbing water (10) from the central tube (8) and the scrubbing water (15) optionally injected in the ring space (13) collect in the water bath in the quencher bottom (11). This water is drawn off into the flash system (12). The slag is fed together with a portion of the water from the quencher bottom (11) via the slag exit (17) to the downstream slag outlet system.
[0038] Variant 2 is shown in
[0039] The slag together with a portion of the water (which is not drawn off into the flash system) from the quencher bottom (11) is fed via the slag exit (17) to the downstream slag discharge system.
[0040]
[0041] Variant 4 is shown in
[0042] Variant 5 is shown in
[0043] The present invention has been elucidated in detail for illustration purposes using specific working examples. Elements of the individual working examples may also be combined with one another. The invention is therefore not supposed to be limited to individual working examples, but merely to experience restriction by the appended claims.
LIST OF REFERENCE NUMERALS FOR OPEN AND CLOSED CENTRAL TUBE, VARIANTS 1 TO 3
[0044] 1 Reactor [0045] 2 Hot raw gas with molten slag [0046] 3 Slag drain body [0047] 4 Self-cooling quench tube (conical) [0048] 5 Quenching nozzles [0049] 6 Supply of self-cooling quench tube with quenching water [0050] 7 Quench zone (over the entire central tube) [0051] 8 Self-cooling central tube (immersion possible, variant 2) [0052] 9 Scrubbing nozzles of central tube [0053] 10 Supply of self-cooling central tube with scrubbing water [0054] 11 Quencher bottom [0055] 12 Black water removal [0056] 13 Outer ring space with countercurrent scrubbing [0057] 14 Washing nozzles for countercurrent scrubbing [0058] 15 Supply of scrubbing nozzles for countercurrent scrubbing [0059] 16 Crude gas exit [0060] 17 Slag exit [0061] 18 Gap between slag drain body and central tube
LIST OF REFERENCE NUMERALS FOR SELF-CONTAINED CENTRAL TUBE, VARIANT 4
[0062] 1 Reactor [0063] 2 Hot raw gas with molten slag [0064] 3 Slag drain body [0065] 4 [0066] 5 Quenching nozzles [0067] 6 Supply of self-cooling quench tube with quenching water [0068] 7 Quench zone (over the entire central tube) [0069] 8 Self-cooling central tube [0070] 9 Scrubbing nozzles of central tube [0071] 10 Supply of self-cooling central tube with scrubbing water [0072] 11 Quencher bottom [0073] 12 Black water removal [0074] 13 Outer ring space with countercurrent scrubbing [0075] 14 Washing nozzles for countercurrent scrubbing [0076] 15 Supply of scrubbing nozzles for countercurrent scrubbing [0077] 16 Crude gas exit [0078] 17 Slag exit [0079] 18 Replenishment of the central tube with cooling water [0080] 19 Drain valve
LIST OF REFERENCE NUMERALS FOR SELF-CONTAINED CENTRAL TUBE WITH COOLING CIRCUIT, VARIANT 5
[0081] 1 Reactor [0082] 2 Hot raw gas with molten slag [0083] 3 Slag drain body [0084] 4 [0085] 5 Quenching nozzles [0086] 6 Supply of self-cooling quench tube with quenching water [0087] 7 Quench zone (over the entire central tube) [0088] 8 Self-cooling central tube [0089] 9 Scrubbing nozzles of central tube [0090] 10 Supply of self-cooling central tube with scrubbing water [0091] 11 Quencher bottom [0092] 12 Black water removal [0093] 13 Outer ring space with countercurrent scrubbing [0094] 14 Washing nozzles for countercurrent scrubbing [0095] 15 Supply of scrubbing nozzles for countercurrent scrubbing [0096] 16 Crude gas exit [0097] 17 Slag exit [0098] 18 Quench water feed for cooling of the central and quench tube with quenching water [0099] 19 Quench water drain for cooling of the central and quench tube with quenching water