IP Library Granted Patent US 10,669,494
Granted Patent B2
US 10,669,494 · App. 16/098,208 · Granted Jun 2, 2020

Slag discharge system, gasifier provided with same, and method for operating slag discharge system

Inventors: Tomoya Hayashi (Kanagawa, JP); Masato Murayama (Kanagawa, JP); Yoshinori Koyama (Tokyo, JP); Naoshige Yoshida (Kanagawa, JP); Yasuyuki Miyata (Tokyo, JP)
Assignee: MITSUBISHI HITACHI POWER SYSTEMS, LTD.
C10J3/50C10J3/08C10J3/46C10J3/52C10J3/723C10J2300/1628Y02E20/18
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Quick Facts
Patent No.
US 10,669,494
App. No.
16/098,208
Granted
Jun 2, 2020
Kind
B2
Abstract

A system is disclosed provided with: a slag bath that retains slag cooling water and receives slag; a slag cooling water feed line and a slag pump outlet via which the slag and the slag cooling water are pumped and fed to a slag separation device; a circulation pump that forms a water flow for pumping out the slag; a slag cooling water circulation line linking from the slag separation device to the slag bath; a reverse flow line that causes the slag cooling water dispensed from the circulation pump to flow in reverse in the slag cooling water feed line; a selective supply unit capable of selectively supplying the slag cooling water dispensed from the circulation pump to the slag cooling water circulation line and the reverse flow line; and a water supply line, one end of which is connected to the slag cooling water feed line.

Claims (67)

1. A slag discharge system comprising:

a slag bath which is provided at a bottom portion of a gasifier for gasifying carbonaceous feedstock to receive slag generated from the carbonaceous feedstock and store slag cooling water for rapidly cooling the slag;

a slag suction port which sucks out the slag accumulated on a bottom portion of the slag bath together with the slag cooling water;

a slag cooling water feed line for transporting the slag and the slag cooling water sucked out through the slag suction port to the outside of the slag bath;

a slag separation device which is connected to the slag cooling water feed line and separates the slag included in the slag cooling water;

a slag cooling water circulation line for circulating the slag cooling water from the slag separation device to the slag bath;

a circulation pump which is connected to the slag cooling water circulation line and forms a water stream for sucking the slag and the slag cooling water out through the slag suction port;

a reverse flow line having one end connected to the slag cooling water feed line, and the other end connected to a downstream side of the circulation pump in the slag cooling water circulation line;

a selective supply unit which makes it possible to selectively supply the slag cooling water discharged from the circulation pump to the slag cooling water circulation line and the reverse flow line;

a water supply line having one end connected to a section adjacent to the slag separation device in the slag cooling water feed line or the slag cooling water circulation line; and

a water supply valve provided in the water supply line.

2. The slag discharge system according to claim 1 ,

wherein the water supply line is supplied with the slag cooling water stored in the slag bath from the other end thereof.

3. The slag discharge system according to claim 2 ,

wherein the water supply line is connected, at the one end thereof, to a downstream side of the slag separation device.

4. The slag discharge system according to claim 2 ,

wherein the water supply line is connected, at the one end thereof, to an upstream side of the slag separation device.

5. The slag discharge system according to claim 2 ,

wherein the water supply line is connected such that the other end thereof merges with a vicinity of a connection portion to the slag bath in the slag cooling water circulation line.

6. The slag discharge system according to claim 3 ,

wherein the gasifier has a combustion part which burns the carbonaceous feedstock to gasify the carbonaceous feedstock,

the slag bath has an inner vessel having an inner space communicating with the combustion part in an interior thereof, and an outer vessel covering the inner vessel, and

the other end of the water supply line is located in an outer space between the inner vessel and the outer vessel.

7. The slag discharge system according to claim 1 ,

wherein the selective supply unit is configured to include

a water feed cutoff valve provided further toward a downstream side than a connection portion of the reverse flow line in the slag cooling water feed line, and

a reverse flow cutoff valve provided in the reverse flow line.

8. The slag discharge system according to claim 7 ,

wherein the selective supply unit further includes a circulation cutoff valve provided further toward a downstream side than the connection portion of the reverse flow line in the slag cooling water circulation line.

9. The slag discharge system according to claim 7 ,

wherein switching means for switching between sending a fluid flowing in from the reverse flow line to the slag suction port side and sending the fluid to the slag separation device side is provided in the slag cooling water feed line.

10. The slag discharge system according to claim 1 , further comprising:

a control unit which controls the selective supply unit and the water supply valve.

11. The slag discharge system according to claim 10 , further comprising:

a pressure gauge which measures pressure on the suction side of the circulation pump,

wherein the control unit controls the selective supply unit such that the slag cooling water discharged from the circulation pump flows to the slag bath via the reverse flow line, when pressure data measured by the pressure gauge exceeds a predetermined threshold value.

12. The slag discharge system according to claim 1 ,

wherein the slag bath has a plurality of slag pots provided side by side in an interior thereof,

a plurality of the slag suction ports are provided corresponding to the plurality of slag pots,

an upstream-side section of the slag cooling water feed line branches into a plurality of water feed branch lines which are respectively connected to the plurality of slag suction ports, and

the selective supply unit is able to selectively supply the slag cooling water which is supplied from the reverse flow line to the plurality of water feed branch lines.

13. The slag discharge system according to claim 1 ,

wherein a plurality of the slag suction ports are provided with respect to a single slag bath.

14. The slag discharge system according to claim 1 , further comprising:

a stirring line which branches off from the slag cooling water circulation line and is connected to the bottom portion of the slag bath; and

a stirring line valve connected to the stirring line.

15. The slag discharge system according to claim 14 ,

wherein the stirring line is provided with a plurality of connection portions to the bottom portion of the slag bath.

16. The slag discharge system according to claim 14 ,

wherein the slag bath has a plurality of slag pots provided side by side in an interior thereof,

a downstream-side section of the stirring line branches into a plurality of stirring branch lines which are respectively connected to the plurality of slag pots, and

the stirring line valve is able to selectively supply the slag cooling water which is supplied from the stirring line to the plurality of stirring branch lines.

17. The slag discharge system according to claim 14 , further comprising:

a pressure gauge which measures pressure on the suction side of the circulation pump; and

a control unit which controls the stirring line valve together with the selective supply unit such that the slag cooling water discharged from the circulation pump is supplied to the slag bath via the stirring line, when pressure data measured by the pressure gauge exceeds a predetermined threshold value.

18. A gasifier comprising:

the slag discharge system according to claim 1 .

19. A method for operating a slag discharge system which sucks out slag received in a slag bath of a bottom portion of a gasifier for gasifying carbonaceous feedstock together with slag cooling water through a slag suction port by a circulation pump and sends the slag and the slag cooling water to a slag separation device through a slag cooling water feed line, the method comprising:

a reverse flow step of sending the slag cooling water discharged from the circulation pump to the slag cooling water feed line to make the slag cooling water reversely flow from the slag suction port into the slag bath, when the slag suction port has been blocked by the slag or when there is a sign of a blockage.

20. The method for operating a slag discharge system according to claim 19 , further comprising:

a stirring step of injecting the slag cooling water discharged from the circulation pump from a bottom portion of the slag bath into the slag bath, when the slag suction port has been blocked by the slag or when there is a sign of a blockage.

21. The method for operating a slag discharge system according to claim 19 , further comprising:

a pressure measurement step of measuring pressure on a suction side of the circulation pump; and

a blockage determination step of determining a blocked state of the slag suction port, based on pressure data measured in the pressure measurement step,

wherein in the blockage determination step, when the pressure data measured in the pressure measurement step exceeds a predetermined threshold value, the reverse flow step or the stirring step is executed.

22. The method for operating a slag discharge system according to claim 19 , further comprising:

a separation device cleaning step of sending a fluid discharged from the circulation pump to the slag cooling water feed line so as to be supplied from the slag cooling water feed line to the slag separation device, when a blockage by the slag has occurred in an interior of the slag separation device or when there is a sign of the blockage.

Assignments (3)
CORRECTIVE ASSIGNMENT TO CORRECT THE REMOVING PATENT APPLICATION NUMBER 11921683 PREVIOUSLY RECORDED AT REEL: 054975 FRAME: 0438. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded May 26, 2023
From: MITSUBISHI HITACHI POWER SYSTEMS, LTD.
To: MITSUBISHI POWER, LTD.
Reel/Frame 063787/0867 →
CHANGE OF NAME Recorded Jan 13, 2021
From: MITSUBISHI HITACHI POWER SYSTEMS, LTD.
To: MITSUBISHI POWER, LTD.
Reel/Frame 054975/0438 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2018
From: HAYASHI, TOMOYA; MURAYAMA, MASATO; KOYAMA, YOSHINORI; YOSHIDA, NAOSHIGE; MIYATA, YASUYUKI
To: MITSUBISHI HITACHI POWER SYSTEMS, LTD.
Reel/Frame 047383/0989 →