CN105349215A - Coal combustion desulphurization method - Google Patents

Coal combustion desulphurization method Download PDF

Info

Publication number
CN105349215A
CN105349215A CN201510728397.0A CN201510728397A CN105349215A CN 105349215 A CN105349215 A CN 105349215A CN 201510728397 A CN201510728397 A CN 201510728397A CN 105349215 A CN105349215 A CN 105349215A
Authority
CN
China
Prior art keywords
coal
parts
desulfurized
boiler
sweetening agent
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201510728397.0A
Other languages
Chinese (zh)
Inventor
江东
黄天
梁君祚
梁承悍
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Guangxi Guisheng New Energy Science & Technology Co Ltd
Original Assignee
Guangxi Guisheng New Energy Science & Technology Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Guangxi Guisheng New Energy Science & Technology Co Ltd filed Critical Guangxi Guisheng New Energy Science & Technology Co Ltd
Priority to CN201510728397.0A priority Critical patent/CN105349215A/en
Publication of CN105349215A publication Critical patent/CN105349215A/en
Pending legal-status Critical Current

Links

Landscapes

  • Solid Fuels And Fuel-Associated Substances (AREA)
  • Incineration Of Waste (AREA)

Abstract

The invention discloses a coal combustion desulphurization method. The method comprises the following steps: 1, mixing coal dust with a desulfurizer A to obtain desulfurized coal A, injecting the desulfurized coal A to a boiler, and combusting, wherein the desulfurizer A is prepared through mixing coal slag, calcium oxide, limestone, alumina and zinc oxide in proportion; and 2, mixing the coal dust with a desulfurizer B to prepare desulfurized coal B, and injecting the desulfurized B to the main combustion zone of the boiler through a spray tube intersecting with a secondary wind tube, wherein the desulfurizer B is prepared through mixing aluminum sulfate, sodium carbonate, potassium acetate, iron carbonate, ammonium molybdate and magnesium chloride in proportion, the desulfurizer B is added to water and is mixed to prepare a suspension with the mass percentage of 12-20%, the suspension is mixed with the coal dust, and the obtained material is disposed until the water content is 3-5% to obtain the desulfurized coal B. The desulfurizers are added in a segmented manner, so the effects of a calcium base desulfurizer are fully shown, and the desulphurization efficiency is greatly improved.

Description

A kind of coal combustion sulfur method
Technical field
The present invention relates to coal combustion desulfurization, particularly relate to a kind of coal combustion sulfur method.
Background technology
Sulphur in coal comprises inorganic sulfur, organosulfur and elemental sulfur.Inorganic sulfur mainly exists with disulphide and sulphate form, and the disulphide overwhelming majority is pyrite, and small part is white pyrite, and vitriol is calcium sulfate CaSO mainly 4; Organosulfur is with mercaptan, sulfide, disulphide and be the form of fragrant epithio of representative and coal-based body Direct Bonding with thiophene.Using calcium-based desulfurizing agent desulfurization in coal combustion process, is the sulfur method that application is more at present.Due to the complicacy of desulfurization reaction process, and the decomposing again of vitriol under high temperature, make the effective rate of utilization of burning calcium-based desulfurizing agent and desulfurization efficiency general lower.For improving desulfurization efficiency, add the element compounds such as sodium Na, potassium K, iron Fe and manganese Mn as auxiliary agent, the reaction of magnesium oxide and sulfurous gas in calcium-based desulfurization product can be made easily to carry out, and easily form composite minerals, improve the high-temperature decomposition temperature of calcium-based desulfurization product calcium sulfate.But calcium-based desulfurizing agent is main sulfur-bearing ore deposit phase with calcium sulfate in reality, and it will decompose coal dust firing operating mode less than 1100 DEG C, cause desulfurization efficiency still many lower than 50%.
Summary of the invention
The defect that the object of the invention is to make up prior art provides a kind of coal combustion sulfur method.
For achieving the above object, technical scheme of the present invention is:
A kind of coal combustion sulfur method, comprises the following steps:
S1, coal dust to be mixed with sweetening agent A, grinds, then cross 100 ~ 150 mesh sieves, after screening desulfurized coal A, desulfurized coal A is sprayed in boiler and burns; Wherein, sweetening agent A is made up by weight ratio of following raw material: cinder 20 ~ 30 parts, 20 ~ 30 parts, calcium oxide, 40 ~ 52 parts, Wingdale, 4 ~ 6 parts, aluminum oxide, 1 ~ 3 part, zinc oxide;
S2, coal dust to be mixed with sweetening agent B, obtain desulfurized coal B, then by spraying into the main combustion zone of boiler with the stuff-spraying pipe of secondary air channel arranged crosswise; Wherein: sweetening agent B is made up by weight ratio of following raw material: 10 ~ 12 parts, Tai-Ace S 150,10 ~ 12 parts, sodium carbonate, Potassium ethanoate 9 ~ 11 parts, iron carbonate 9 ~ 15 parts, ammonium molybdate 5 ~ 9 parts and 2 ~ 4 parts, magnesium chloride, sweetening agent B is added water and be mixed and made into the suspension that mass percent is 12 ~ 20%, after mixing with coal dust, being placed to water content is 3 ~ 5%, obtains desulfurized coal B.
In described step S1, coal dust and the preferred weight ratio of sweetening agent A are 50 ~ 55:1.
In described step S2, coal dust and the preferred weight ratio of sweetening agent B are 70 ~ 75:1.
Described sweetening agent A is preferably made up by weight ratio of following raw material: cinder 25 parts, 25 parts, calcium oxide, 46 parts, Wingdale, 5 parts, aluminum oxide, 2 parts, zinc oxide.
Described sweetening agent B is preferably made up by weight ratio of following raw material: 11 parts, Tai-Ace S 150,11 parts, sodium carbonate, Potassium ethanoate 10 parts, iron carbonate 12 parts, ammonium molybdate 7 parts and 3 parts, magnesium chloride.
Described desulfurized coal A and the preferred weight ratio of desulfurized coal B are 8 ~ 10:1.
Further, described desulfurized coal B sprays in boiler with the form of eddy flow.
Preferably, spray in boiler after described desulfurized coal B is preheated to 75 ~ 85 DEG C.
Preferably, described is 3 ~ 4 meters with the stuff-spraying pipe of secondary air channel arranged crosswise and the transverse distance at boiler center, and the angle of stuff-spraying pipe and boiler wall is 70 ~ 80 °.
Preferably, the flame temperature of described boiler main combustion zone controls at 900 DEG C ~ 1100 DEG C.
The beneficial effect that the present invention is compared with prior art had is as follows:
(1) carry out desulfurization by calcium-based desulfurizing agent in the front end of preignition zone and main combustion zone, the front end temperature of combustion of preignition zone and main combustion zone is lower, and calcium-based desulfurizing agent can reach good desulfurization object;
(2) by spraying into desulfurized coal B with the stuff-spraying pipe of secondary air channel arranged crosswise, desulfurized coal B is made up through sweetening agent B dipping of coal dust, sweetening agent B is by Tai-Ace S 150, sodium carbonate, Potassium ethanoate, iron carbonate, ammonium molybdate and magnesium chloride composition, desulfurized coal B mixes with secondary air and brings in boiler, add the contact probability of coal dust in desulfurized coal B and boiler, thus, the temperature of control boiler main combustion zone that on the one hand can be suitable, and sodium Na, potassium K, the elements such as iron Fe and magnesium Mg add the reaction can accelerating catalysis calcium containing compound and sulfurous gas, the combustion adjuvant contained in sweetening agent B on the other hand also can promote the burning of coal dust, thus while the pyrolytic decomposition suppressing desulfurization product calcium sulfate, ensure the Thorough combustion of coal dust.
(3) the present invention adds sweetening agent by segmentation, has given full play to the effect of calcium-based desulfurizing agent, has substantially increased desulfuration efficiency.
Embodiment
Below in conjunction with specific embodiment, the invention will be further described.
Embodiment 1
A kind of coal combustion sulfur method, comprises the following steps:
S1, coal dust to be mixed with sweetening agent A, grinds, then cross 100 ~ 150 mesh sieves, after screening desulfurized coal A, desulfurized coal A is sprayed in boiler and burns; Wherein, sweetening agent A is made up by weight ratio of following raw material: cinder 25 parts, 25 parts, calcium oxide, 46 parts, Wingdale, 5 parts, aluminum oxide and 2 parts, zinc oxide, and the weight ratio of coal dust and sweetening agent A is 50:1;
S2, coal dust to be mixed with sweetening agent B, obtain desulfurized coal B, then by spraying into the main combustion zone of boiler with the stuff-spraying pipe of secondary air channel arranged crosswise; Wherein: sweetening agent B is made up by weight ratio of following raw material: 11 parts, Tai-Ace S 150,11 parts, sodium carbonate, Potassium ethanoate 10 parts, iron carbonate 12 parts, ammonium molybdate 7 parts and 3 parts, magnesium chloride, sweetening agent B is added water and be mixed and made into the suspension that mass percent is 15%, after mixing with coal dust, the weight ratio of coal dust and sweetening agent B (by dry powder) is 70:1, being placed to water content after mixing is 4%, obtains desulfurized coal B.
The desulfurized coal A added in the boiler and the weight ratio of desulfurized coal B are 9:1.
In step s 2, after desulfurized coal B is preheated to 80 DEG C, spray in boiler with the form of eddy flow, the flame temperature of boiler main combustion zone controls at 900 DEG C ~ 1100 DEG C.
The transverse distance of the stuff-spraying pipe and boiler center that spray into desulfurized coal B is preferably set to 3 ~ 3.5 meters, and the angle of stuff-spraying pipe and boiler wall is 75 °.
Simulate above-mentioned steps in laboratory conditions, desulfurization degree can reach 78.8%.
Embodiment 2
A kind of coal combustion sulfur method, comprises the following steps:
S1, coal dust to be mixed with sweetening agent A, grinds, then cross 100 ~ 150 mesh sieves, after screening desulfurized coal A, desulfurized coal A is sprayed in boiler and burns; Wherein, sweetening agent A is made up by weight ratio of following raw material: cinder 20 parts, 30 parts, calcium oxide, 52 parts, Wingdale, 4 parts, aluminum oxide and 1 part, zinc oxide, and the weight ratio of coal dust and sweetening agent A is 53:1;
S2, coal dust to be mixed with sweetening agent B, obtain desulfurized coal B, then by spraying into the main combustion zone of boiler with the stuff-spraying pipe of secondary air channel arranged crosswise; Wherein: sweetening agent B is made up by weight ratio of following raw material: 10 parts, Tai-Ace S 150,10 parts, sodium carbonate, Potassium ethanoate 9 parts, iron carbonate 15 parts, ammonium molybdate 9 parts and 4 parts, magnesium chloride, sweetening agent B is added water and be mixed and made into the suspension that mass percent is 12%, after mixing with coal dust, the weight ratio of coal dust and sweetening agent B (by dry powder) is 72:1, being placed to water content after mixing is 5%, obtains desulfurized coal B.
The desulfurized coal A added in the boiler and the weight ratio of desulfurized coal B are 8:1.
In step s 2, after desulfurized coal B is preheated to 85 DEG C, spray in boiler with the form of eddy flow, the flame temperature of boiler main combustion zone controls at 900 DEG C ~ 1100 DEG C.
The transverse distance of the stuff-spraying pipe and boiler center that spray into desulfurized coal B is preferably set to 3 ~ 4 meters, and the angle of stuff-spraying pipe and boiler wall is 80 °.
Simulate above-mentioned steps in laboratory conditions, desulfurization degree can reach 71.2%.
Embodiment 3
A kind of coal combustion sulfur method, comprises the following steps:
S1, coal dust to be mixed with sweetening agent A, grinds, then cross 100 ~ 150 mesh sieves, after screening desulfurized coal A, desulfurized coal A is sprayed in boiler and burns; Wherein, sweetening agent A is made up by weight ratio of following raw material: cinder 30 parts, 20 parts, calcium oxide, 40 parts, Wingdale, 6 parts, aluminum oxide and 3 parts, zinc oxide, and the weight ratio of coal dust and sweetening agent A is 55:1;
S2, coal dust to be mixed with sweetening agent B, obtain desulfurized coal B, then by spraying into the main combustion zone of boiler with the stuff-spraying pipe of secondary air channel arranged crosswise; Wherein: sweetening agent B is made up by weight ratio of following raw material: 12 parts, Tai-Ace S 150,12 parts, sodium carbonate, Potassium ethanoate 11 parts, iron carbonate 9 parts, ammonium molybdate 5 parts and 2 parts, magnesium chloride, sweetening agent B is added water and be mixed and made into the suspension that mass percent is 20%, after mixing with coal dust, the weight ratio of coal dust and sweetening agent B (by dry powder) is 75:1, being placed to water content after mixing is 3%, obtains desulfurized coal B.
The desulfurized coal A added in the boiler and the weight ratio of desulfurized coal B are 8:1.
In step s 2, after desulfurized coal B is preheated to 75 DEG C, spray in boiler with the form of eddy flow, the flame temperature of boiler main combustion zone controls at 900 DEG C ~ 1100 DEG C.
The transverse distance of the stuff-spraying pipe and boiler center that spray into desulfurized coal B is preferably set to 3.5 ~ 4 meters, and the angle of stuff-spraying pipe and boiler wall is 70 °.
Simulate above-mentioned steps in laboratory conditions, desulfurization degree can reach 68.3%.
Above content is in conjunction with concrete preferred implementation further description made for the present invention, can not assert that specific embodiment of the invention is confined to these explanations.For general technical staff of the technical field of the invention; make some equivalent alternative or obvious modification without departing from the inventive concept of the premise; and performance or purposes identical, all should be considered as belonging to the scope of patent protection that the present invention is determined by submitted to claims.

Claims (10)

1. a coal combustion sulfur method, is characterized in that comprising the following steps:
S1, coal dust to be mixed with sweetening agent A, grinds, then cross 100 ~ 150 mesh sieves, after screening desulfurized coal A, desulfurized coal A is sprayed in boiler and burns; Wherein, sweetening agent A is made up by weight ratio of following raw material: cinder 20 ~ 30 parts, 20 ~ 30 parts, calcium oxide, 40 ~ 52 parts, Wingdale, 4 ~ 6 parts, aluminum oxide, 1 ~ 3 part, zinc oxide;
S2, coal dust to be mixed with sweetening agent B, obtain desulfurized coal B, then by spraying into the main combustion zone of boiler with the stuff-spraying pipe of secondary air channel arranged crosswise; Wherein: sweetening agent B is made up by weight ratio of following raw material: 10 ~ 12 parts, Tai-Ace S 150,10 ~ 12 parts, sodium carbonate, Potassium ethanoate 9 ~ 11 parts, iron carbonate 9 ~ 15 parts, ammonium molybdate 5 ~ 9 parts and 2 ~ 4 parts, magnesium chloride, sweetening agent B is added water and be mixed and made into the suspension that mass percent is 12 ~ 20%, after mixing with coal dust, being placed to water content is 3 ~ 5%, obtains desulfurized coal B.
2. a kind of coal combustion sulfur method according to claim 1, is characterized in that:
In described step S1, the weight ratio of coal dust and sweetening agent A is 50 ~ 55:1.
3. a kind of coal combustion sulfur method according to claim 1, is characterized in that:
In described step S2, the weight ratio of coal dust and sweetening agent B is 70 ~ 75:1.
4. a kind of coal combustion sulfur method according to claim 1, is characterized in that:
Described sweetening agent A is made up by weight ratio of following raw material: cinder 25 parts, 25 parts, calcium oxide, 46 parts, Wingdale, 5 parts, aluminum oxide, 2 parts, zinc oxide.
5. a kind of coal combustion sulfur method according to claim 1, is characterized in that:
Described sweetening agent B is made up by weight ratio of following raw material: 11 parts, Tai-Ace S 150,11 parts, sodium carbonate, Potassium ethanoate 10 parts, iron carbonate 12 parts, ammonium molybdate 7 parts and 3 parts, magnesium chloride.
6. a kind of coal combustion sulfur method according to claim 1, is characterized in that:
The weight ratio of described desulfurized coal A and desulfurized coal B is 8 ~ 10:1.
7. a kind of coal combustion sulfur method according to claim 1, is characterized in that:
Described desulfurized coal B sprays in boiler with the form of eddy flow.
8. a kind of coal combustion sulfur method according to claim 1, is characterized in that:
Spray in boiler after described desulfurized coal B is preheated to 75 ~ 85 DEG C.
9. the sulfur method of a kind of coal combustion according to claim 1, is characterized in that:
Described is 3 ~ 4 meters with the stuff-spraying pipe of secondary air channel arranged crosswise and the transverse distance at boiler center, and the angle of stuff-spraying pipe and boiler wall is 70 ~ 80 °.
10. a kind of coal combustion sulfur method according to claim 1, is characterized in that:
The flame temperature of described boiler main combustion zone controls at 900 DEG C ~ 1100 DEG C.
CN201510728397.0A 2015-10-30 2015-10-30 Coal combustion desulphurization method Pending CN105349215A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201510728397.0A CN105349215A (en) 2015-10-30 2015-10-30 Coal combustion desulphurization method

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201510728397.0A CN105349215A (en) 2015-10-30 2015-10-30 Coal combustion desulphurization method

Publications (1)

Publication Number Publication Date
CN105349215A true CN105349215A (en) 2016-02-24

Family

ID=55325283

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201510728397.0A Pending CN105349215A (en) 2015-10-30 2015-10-30 Coal combustion desulphurization method

Country Status (1)

Country Link
CN (1) CN105349215A (en)

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1257981A (en) * 2000-02-02 2000-06-28 中国科学院工程热物理研究所 Desulfurizing process for burner system of pre-combustion chamber
CN101311628A (en) * 2008-07-13 2008-11-26 兖矿国宏化工有限责任公司 Circulating fluid bed boiler flue calcium injection and desulfurization process

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1257981A (en) * 2000-02-02 2000-06-28 中国科学院工程热物理研究所 Desulfurizing process for burner system of pre-combustion chamber
CN101311628A (en) * 2008-07-13 2008-11-26 兖矿国宏化工有限责任公司 Circulating fluid bed boiler flue calcium injection and desulfurization process

Similar Documents

Publication Publication Date Title
CN102179161B (en) Slurry for desulfuration and denitration of recirculating fluidized bed boiler
CN101249373B (en) Flue gas desulfurization agent preparation method
CN102604712B (en) Steel slag composite desulfurizer for desulfurizing pulverized coal during combustion and desulfurization method using same
CN105107373B (en) It is a kind of to be used for oxidizing simple substance mercury, the composite desulfurizing agent for removing HCl and preparation method thereof
CN103736391A (en) Composite active carbon desulfurizer and preparation method thereof
CN108525508A (en) The method for carrying out flue gas desulfurization using cement slurry
CN103243198A (en) Compound desulphurizer
CN105419904A (en) Desulfurization method for coal-fired boiler
CN102131562B (en) Process and composition for removing heavy metal from combustion gas
CN105368532A (en) Process for real-time desulfurization during coal combustion
CN105368533A (en) Process for desulfurization in coal combustion process
CN105400562A (en) Desulfurization method for coal burning process
CN108285164A (en) A method of separating calcium sulphate and calcium carbonate from waste
CN105381707A (en) Two-step desulfurization technology of coal burning process
CN105349215A (en) Coal combustion desulphurization method
CN104789286B (en) Desulphurization denitration composite carbon is starched
CN105349214A (en) Desulphurization technology used for coal-fired boiler
CN105349216A (en) Two-step desulphurization method of coal combustion process
CN105344233A (en) Two-step desulphurization method for coal-fired boiler
CN1320945C (en) Method for carrying out flue gas desulfurization by using mineral powder of magnesite
CN105400563A (en) Real-time desulfurization method for coal combustion
CN101560425B (en) Novel coal sulphur-fixing agent, preparation method and application thereof
CN109279770A (en) The desulphurization during combustion of petroleum coke and the method that reduces mirabilite content are used in a kind of glass industry
CN105771599A (en) Desulfurizer for flue of novel dry-method cement production line and preparing method thereof
CN106823772A (en) Desulfuration in furnace synergist and desulfurizing agent

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
RJ01 Rejection of invention patent application after publication

Application publication date: 20160224

RJ01 Rejection of invention patent application after publication