IP Library › Granted Patent US 10,392,575
Granted Patent B2
US 10,392,575 · App. 15/162,904 · Granted Aug 27, 2019

Lignite drying with closed loop heat pump

Inventors: Thomas Edel (Colmar, FR); Frederic Geiger (Giromagny, FR); Thierry Pourchot (Naves Parmclan, FR); Didier Wantz (Bavilliers, FR)
Assignee: General Electric Company
C10L9/08C10F5/00C10L5/04F23K1/04F26B3/20F26B23/001F26B23/005C10L2290/06C10L2290/08C10L2290/10C10L2290/46C10L2290/48F23K2201/20F23K2900/01041F26B3/084F26B11/028F26B11/04Y02B30/52Y02P70/405
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Quick Facts
Patent No.
US 10,392,575
App. No.
15/162,904
Granted
Aug 27, 2019
Kind
B2
Abstract

The invention relates to a dryer system for drying lignite coal used in a power plant. The system comprises a dryer and a closed loop heat pump circuit that is configured and arranged to provide heat energy to the dryer. The closed loop heat pump circuit includes a working fluid, a dryer heat exchanger, an expansion device fluidly connected and downstream of the dryer heat exchanger, arranged to enable heat energy transfer from the vapor of the second outlet line to the first working fluid and a compressor for compressing the working fluid.

Claims (35)

1. A dryer system for drying lignite coal for use in a power plant, the system comprising:

a dryer, adapted to dry lignite coal, having:

an inlet line for direction lignite coal into the dryer;

a first outlet line for removing dried lignite coal from the dryer; and

a second outlet line for removing vapour from the dryer,

a closed loop heat pump circuit, configured and arranged to provide heat energy to the dryer, comprising:

a first working fluid;

a dryer heat exchanger in the dryer;

an expansion device fluidly connected and downstream of the dryer heat exchanger;

an evaporator heat exchanger fluidly connected to and downstream of the expansion device and further connected to the second outline line so as to enable heat energy transfer from the vapour of the second outlet line to the first working fluid; and

a compressor, fluidly connected to and downstream of the evaporator heat exchanger and at an upstream end of the dryer heat exchanger, for compressing the first working fluid; and

a pre-heater connected to the inlet line so as to enable preheating of the lignite coal before entry into the dryer, wherein the pre-heater is connected to the second outlet line downstream of the evaporator heat exchanger so as to enable the use of a remaining heat of the vapour and/or vapour condensate exiting the evaporator heat exchanger thereby preheating of the lignite coal before entry into the dryer.

2. The dryer system of claim 1 , wherein the dryer is a fluidised bed dryer.

3. The dryer system of claim 1 , wherein the dryer is a steam heated rotary tube dryer.

4. The dryer system of claim 1 , wherein the expansion device is a valve.

5. The dryer system of claim 1 , wherein the expansion device is a turbine.

6. The dryer system of claim 1 , further comprising a separation tank, fluidly located between the expansion device and the compressor, including:

a vapour line extending from the separation tank to a point fluidly upstream of the compressor so as to bypass the evaporator heat exchanger;

a liquid line extending from the separator to the evaporator heat exchanger.

7. The dryer system of claim 1 , further comprising a desuperheater fluidly located between the compressor and the dryer heat exchanger.

8. A dryer system for drying lignite coal for use in a power plant, the system comprising:

a dryer, adapted to dry lignite coal, having:

an inlet line for direction lignite coal into the dryer;

a first outlet line for removing dried lignite coal from the dryer; and

a second outlet line for removing vapour from the dryer,

a closed loop heat pump circuit, configured and arranged to provide heat energy to the dryer, comprising:

a first working fluid;

a dryer heat exchanger in the dryer;

an expansion device fluidly connected and downstream of the dryer heat exchanger;

an evaporator heat exchanger fluidly connected to and downstream of the expansion device and further connected to the second outline line so as to enable heat energy transfer from the vapour of the second outlet line to the first working fluid;

a compressor, fluidly connected to and downstream of the evaporator heat exchanger and at an upstream end of the dryer heat exchanger, for compressing the first working fluid; and

a closed loop lignite preheating circuit for preheating the lignite coal before entering the dryer, the closed loop lignite preheating circuit comprising:

a second working fluid;

a heat recovery heat exchanger connected to the second outlet line so as to enable thermal energy exchange from the vapour from the dryer to the second working fluid; and

a pre-heater connected to the inlet line so as to enable preheating of the lignite coal before entry into the dryer using heat energy from the second working fluid.

Assignments (2)
CHANGE OF NAME Recorded Aug 17, 2016
From: ALSTOM TECHNOLOGY LTD
To: GENERAL ELECTRIC TECHNOLOGY GMBH
Reel/Frame 039714/0578 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 17, 2016
From: EDEL, THOMAS; GEIGER, FREDERIC; POURCHOT, THIERRY; WANTZ, DIDIER
To: ALSTOM TECHNOLOGY LTD
Reel/Frame 038938/0496 →
Priority Claims (1)
EP 15290138 · May 26, 2015 · regional
Continuity (1)
Related Publication 20160348023A1 · Dec 1, 2016