CN101372641B - Coal combustion catalyst for heat-engine plant and preparation thereof - Google Patents

Coal combustion catalyst for heat-engine plant and preparation thereof Download PDF

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Publication number
CN101372641B
CN101372641B CN2008100300119A CN200810030011A CN101372641B CN 101372641 B CN101372641 B CN 101372641B CN 2008100300119 A CN2008100300119 A CN 2008100300119A CN 200810030011 A CN200810030011 A CN 200810030011A CN 101372641 B CN101372641 B CN 101372641B
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CN101372641A (en
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袁柏安
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Abstract

The invention relates to the technical field of coal combustion catalysts, in particular to a coal combustion catalyst used in thermal power plants and a preparation method thereof; the catalyst is prepared by sodium chloride, sodium nitrate, magnesium chloride, potassium chlorate, potassium hyperchlorate, ferric nitrate, ammonium nitrate, calcium carbonate, barium citrate, distilled water, and the like; the catalyst not only can effectively reduce the consumption of coal, but also can raise the combustion value of coal, especially can overcome the defect of fault coal, and improve the utilization rate and combustion rate of fault coal, thus the fault coal can meet the requirements of the coal used in thermal power plants and production cost can be greatly saved.

Description

A kind of coal combustion catalyst for heat-engine plant and preparation method thereof
Technical field:
The present invention relates to the coal combustion catalyst technical field, relate in particular to a kind of coal combustion catalyst for heat-engine plant and preparation method thereof.
Background technology:
Coal not only occupies bigger proportion in the energy consumption structure in the world, and in global Economic development, also plays a part very important.Along with expanding economy, its consumption is in continuous increase, and the store content of raw coal is very limited, in the production application of reality, goes back ubiquity and the utilization ratio of coal lowlyer, waste comparatively serious problem, causes very anxiety of coal resource.
Thereby, effectively, the reasonable use existing resource, improve the thermo-efficiency of coal, alleviate the emphasis that environmental pollution etc. becomes people's research.For this reason, people improve coal-fired problem from two aspects usually: being to carry out physical modifications on the one hand, mainly is that the appliance arrangement to coal combustion improves, and the structure that is used in the equipment such as boiler of coal combustion more meets the needs of coal perfect combustion; Another side is that chemistry improves, and adds certain catalyzer in the different steps of coal combustion, carries out chemical reaction through catalyzer and coal, makes coal combustion complete thereby reach, and improves the effect that heat is imitated.At present, especially use coal to thermal power plant, ature of coal itself is had very high requirement, require coal to reach more than 5 kilocalories usually at least, coal resource is already very limited, but the coal of quality better lacks especially, thereby the research of low grade coal, and is extremely urgent especially.People have also carried out some researchs to coal combustion catalyst, are ZL 0106347.9 like the patent No., and patent documents such as ZL981007116 disclose some combustion-supporting agent for fuel coal, and are higher but they all exist cost of manufacture, and the combustion-supporting time is short, the big deficiency that waits of consumption.
Summary of the invention:
The objective of the invention is to be the deficiency described in the solution background technology, and a kind of coal combustion catalyst for heat-engine plant easy, with low cost, that thermo-efficiency is high for preparing is provided.
Another object of the present invention is to provide the preparation method who addresses coal combustion catalyst.
The objective of the invention is to be achieved through following method: a kind of coal combustion catalyst for heat-engine plant, this catalyzer comprise following weight percent raw material:
Wilkinite 10~30%, flyash 10~30%, industrial sodium-chlor 5~30%,
SODIUMNITRATE 2~4%, magnesium chloride 2~10%, Potcrate 2~15%,
Potassium perchlorate 2~12%, iron nitrate 4~10%, an ammonium nitrate 2~20%,
Lime carbonate 5~20%, barium citrate 2~10%, Wingdale 10~30%,
Distilled water surplus.
Wherein, said catalyzer comprises following weight percent raw material:
Wilkinite 20~30%, flyash 10~15%, industrial sodium-chlor 10~30%,
SODIUMNITRATE 2~3%, magnesium chloride 2~6%, Potcrate 2~5%,
Potassium perchlorate 2~10%, iron nitrate 4~8%, an ammonium nitrate 2~15%,
Lime carbonate 5~15%, barium citrate 2~8%, Wingdale 10~20%,
Distilled water surplus.
The preparation method of above-mentioned coal combustion catalyst for heat-engine plant comprises the following steps:
A, the wilkinite and the flyash thorough mixing of above-mentioned amount made mixture one;
B, elder generation place container with zero(ppm) water, slowly add Potcrate and SODIUMNITRATE again, and the speed with 80rpm stirred 20 minutes simultaneously; Add an ammonium nitrate again, the speed with 80rpm stirred 20 minutes simultaneously;
C, continuation add lime carbonate in above-mentioned solution, and are heated to 60 ℃, are forced into 0.2MP and stir 40 minutes with the speed of 100rpm simultaneously;
D, be cooled to 40 ℃ and in solution, add magnesium chloride, iron nitrate again, the speed with 100rpm stirred 40 minutes simultaneously; And then the adding barium citrate, keep temperature, pressure and stirring velocity to continue reaction 30 minutes;
E, above-mentioned solution is cooled to normal temperature and pressure after, add potassium perchlorate, stirred 20 minutes with the speed of 80rpm; Make solution two;
F, industrial sodium-chlor is mixed with saturated aqueous solution, joins in the Wingdale, question response makes material three fully and after the drying;
G, with mixture one, solution two, material three thorough mixing, and 40 ℃ of down oven dry, postcooling to normal temperature carries out ball milling, makes finished product.
The invention has the beneficial effects as follows; The present invention has added barium citrate and potassium perchlorate, not only can effectively practice thrift the coal usage quantity, and improves the coal combustion value; Particularly improved the deficiency of the low grade coal below 5000 cards; Improved the utilization ratio and the rate of combustion of low grade coal, made it to reach the requirement of thermal power plant, thereby practiced thrift production cost greatly with coal.
Embodiment:
Below in conjunction with specific embodiment the present invention is done further description, following embodiment can be used for making those skilled in the art more comprehensively to understand the present invention, but does not limit the present invention in any way.
Embodiment 1
Catalyzer comprises following raw material:
10 kilograms of wilkinites, 10 kilograms in flyash, 5 kilograms in industrial sodium-chlor,
2 kilograms in SODIUMNITRATE, 2 kilograms in magnesium chloride, 2 kilograms in Potcrate,
2 kilograms of potassium perchlorates, 4 kilograms of iron nitrates, 2 kilograms in an ammonium nitrate,
5 kilograms in lime carbonate, 2 kilograms of barium citrates, 20 kilograms in Wingdale,
34 kilograms of zero(ppm) water.
The preparation method comprises the following steps:
A, 10 kilograms of wilkinites and 10 kilograms of flyash thorough mixing are made mixture one;
B, elder generation place container with 34 kilograms of zero(ppm) water, slowly add 2 kilograms of Potcrate and 2 kilograms of SODIUMNITRATE again, and the speed with 80rpm stirred 20 minutes simultaneously; Add 2 kilograms of an ammonium nitrate again, the speed with 80rpm stirred 20 minutes simultaneously;
C, continuation add 5 kilograms of lime carbonate in above-mentioned solution, and are heated to 60 ℃, are forced into 0.2MP and stir 40 minutes with the speed of 100rpm simultaneously;
D, be cooled to 40 ℃ and add 2 kilograms of magnesium chlorides, 4 kilograms of iron nitrates again in the solution, the speed with 100rpm stirred 40 minutes simultaneously; And then add the kilogram barium citrate, keep temperature, pressure and stirring velocity to continue reaction 30 minutes;
E, above-mentioned solution is cooled to normal temperature and pressure after, add 2 kilograms of potassium perchlorates, stirred 20 minutes with the speed of 80rpm; Make solution two;
F, 5 kilograms of industrial sodium-chlor are mixed with saturated aqueous solution, join in 20 kilograms of Wingdales, question response makes material three fully and after the drying;
G, with mixture one, solution two, material three thorough mixing, and 40 ℃ of down oven dry, postcooling to normal temperature carries out ball milling, makes finished product.
Embodiment 2
Catalyzer comprises following raw material:
15 kilograms of wilkinites, 20 kilograms in flyash, 5 kilograms in industrial sodium-chlor,
2 kilograms in SODIUMNITRATE, 5 kilograms in magnesium chloride, 2 kilograms in Potcrate,
4 kilograms of potassium perchlorates, 4 kilograms of iron nitrates, 2 kilograms in an ammonium nitrate,
5 kilograms in lime carbonate, 5 kilograms of barium citrates, 10 kilograms in Wingdale,
24 kilograms of zero(ppm) water.
The preparation method comprises the following steps:
A, 15 kilograms of wilkinites and 250 kilograms of flyash thorough mixing are made mixture one;
B, elder generation place container with 24 kilograms of zero(ppm) water, slowly add 2 kilograms of Potcrate and 2 kilograms of SODIUMNITRATE again, and the speed with 80rpm stirred 20 minutes simultaneously; Add 2 kilograms of an ammonium nitrate again, the speed with 80rpm stirred 20 minutes simultaneously;
C, continuation add 5 kilograms of lime carbonate in above-mentioned solution, and are heated to 60 ℃, are forced into 0.2MP and stir 40 minutes with the speed of 100rpm simultaneously;
D, be cooled to 40 ℃ and add 5 kilograms of magnesium chlorides, 4 kilograms of iron nitrates again in the solution, the speed with 100rpm stirred 40 minutes simultaneously; And then add 5 kilograms of barium citrates, keep temperature, pressure and stirring velocity to continue reaction 30 minutes;
E, above-mentioned solution is cooled to normal temperature and pressure after, add 4 kilograms of potassium perchlorates, stirred 20 minutes with the speed of 80rpm; Make solution two;
F, 5 kilograms of industrial sodium-chlor are mixed with saturated aqueous solution, join in 10 kilograms of Wingdales, question response makes material three fully and after the drying;
G, with mixture one, solution two, material three thorough mixing, and 40 ℃ of down oven dry, postcooling to normal temperature carries out ball milling, makes finished product.
Embodiment 3
Catalyzer comprises following raw material:
20 kilograms of wilkinites, 10 kilograms in flyash, 5 kilograms in industrial sodium-chlor,
5 kilograms in SODIUMNITRATE, 2 kilograms in magnesium chloride, 8 kilograms in Potcrate,
6 kilograms of potassium perchlorates, 4 kilograms of iron nitrates, 2 kilograms in an ammonium nitrate,
10 kilograms in lime carbonate, 2 kilograms of barium citrates, 10 kilograms in Wingdale,
16 kilograms of zero(ppm) water.
The preparation method comprises the following steps:
A, 20 kilograms of wilkinites and 10 kilograms of flyash thorough mixing are made mixture one;
B, elder generation place container with 16 kilograms of zero(ppm) water, slowly add 8 kilograms of Potcrate and 5 kilograms of SODIUMNITRATE again, and the speed with 80rpm stirred 20 minutes simultaneously; Add 2 kilograms of an ammonium nitrate again, the speed with 80rpm stirred 20 minutes simultaneously;
C, continuation add 10 kilograms of lime carbonate in above-mentioned solution, and are heated to 60 ℃, are forced into 0.2MP and stir 40 minutes with the speed of 100rpm simultaneously;
D, be cooled to 40 ℃ and add 2 kilograms of magnesium chlorides, 4 kilograms of iron nitrates again in the solution, the speed with 100rpm stirred 40 minutes simultaneously; And then add 2 kilograms of barium citrates, keep temperature, pressure and stirring velocity to continue reaction 30 minutes;
E, above-mentioned solution is cooled to normal temperature and pressure after, add 6 kilograms of potassium perchlorates, stirred 20 minutes with the speed of 80rpm; Make solution two;
F, 5 kilograms of industrial sodium-chlor are mixed with saturated aqueous solution, join in 10 kilograms of Wingdales, question response makes material three fully and after the drying;
G, with mixture one, solution two, material three thorough mixing, and 40 ℃ of down oven dry, postcooling to normal temperature carries out ball milling, makes finished product.
In use the additive of 0.1~0.2% weight of Coal-fired capacity is directly dropped in the burner hearth through the prepared a kind of energy-saving discharging-reducing fire coal synergistic addition agent of the foregoing description and to get final product.Also can be or mix fire coal according to the additive of 0.05~0.2% weight of Coal-fired capacity in coal separating plant in the stokehold.

Claims (3)

1. coal combustion catalyst for heat-engine plant, it is characterized in that: this catalyzer is made up of following weight percent raw material:
Wilkinite 10~30%, flyash 10~30%, industrial sodium-chlor 5~30%,
SODIUMNITRATE 2~4%, magnesium chloride 2~10%, Potcrate 2~15%,
Potassium perchlorate 2~12%, iron nitrate 4~10%, an ammonium nitrate 2~20%,
Lime carbonate 5~20%, barium citrate 2~10%, Wingdale 10~30%,
Distilled water surplus.
2. a kind of coal combustion catalyst for heat-engine plant according to claim 1 is characterized in that: said catalyzer is made up of following weight percent raw material:
Wilkinite 20~30%, flyash 10~15%, industrial sodium-chlor 10~30%,
SODIUMNITRATE 2~3%, magnesium chloride 2~6%, Potcrate 2~5%,
Potassium perchlorate 2~10%, iron nitrate 4~8%, an ammonium nitrate 2~15%,
Lime carbonate 5~15%, barium citrate 2~8%, Wingdale 10~20%,
Distilled water surplus.
3. the preparation method of the described a kind of coal combustion catalyst for heat-engine plant of claim 1 is characterized in that: comprise the following steps:
A, the wilkinite and the flyash thorough mixing of above-mentioned amount made mixture one;
B, elder generation place container with zero(ppm) water, slowly add Potcrate and SODIUMNITRATE again, and the speed with 80rpm stirred 20 minutes simultaneously; Add an ammonium nitrate again, the speed with 80rpm stirred 20 minutes simultaneously;
C, continuation add lime carbonate in the solution of step B acquisition, and are heated to 60 ℃, are forced into 0.2MPa and stir 40 minutes with the speed of 100rpm simultaneously;
D, be cooled to 40 ℃ and in solution, add magnesium chloride, iron nitrate again, the speed with 100rpm stirred 40 minutes simultaneously; And then the adding barium citrate, keep temperature, pressure and stirring velocity to continue reaction 30 minutes;
After E, the solution that step D is obtained are cooled to normal temperature and pressure, add potassium perchlorate, stirred 20 minutes with the speed of 80rpm; Make solution two;
F, industrial sodium-chlor is mixed with saturated aqueous solution, joins in the Wingdale, question response makes material three fully and after the drying;
G, with mixture one, solution two, material three thorough mixing, and 40 ℃ of down oven dry, postcooling to normal temperature carries out ball milling, makes finished product.
CN2008100300119A 2008-08-01 2008-08-01 Coal combustion catalyst for heat-engine plant and preparation thereof Expired - Fee Related CN101372641B (en)

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Families Citing this family (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103509603B (en) * 2012-06-28 2015-06-10 新奥科技发展有限公司 Preparation method of raw material for coal catalytic gasification technique
CN103725346A (en) * 2012-10-10 2014-04-16 四平天宝水泥外加剂有限公司 Fire coal catalyst special for dry method cement kiln and preparation method thereof
CN103131507A (en) * 2013-02-07 2013-06-05 洛阳大泽节能环保科技有限公司 Cement plant coal combustion-supporting formulation method
CN103131513A (en) * 2013-02-07 2013-06-05 洛阳大泽节能环保科技有限公司 Thermal power plant fire coal combustion supporting and sulfur fixation composition method
CN113814002B (en) * 2020-06-18 2024-04-26 中国石油化工股份有限公司 Coal-fired catalyst and preparation method and application thereof
CN113980715B (en) * 2021-11-05 2023-08-22 济南大学 Preparation method of water-soluble coal-fired catalyst

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN1109096A (en) * 1994-03-25 1995-09-27 李澄 Combustion accelerator for coal
EP0785246B1 (en) * 1991-09-03 2001-03-28 STEAG encotec GmbH Method for operating a coal-fired power plant
CN1766074A (en) * 2005-11-01 2006-05-03 海城正大环保节能材料有限公司 Formulation and preparation method of desulfurization agent for assisting combustion of fire coal

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP0785246B1 (en) * 1991-09-03 2001-03-28 STEAG encotec GmbH Method for operating a coal-fired power plant
CN1109096A (en) * 1994-03-25 1995-09-27 李澄 Combustion accelerator for coal
CN1766074A (en) * 2005-11-01 2006-05-03 海城正大环保节能材料有限公司 Formulation and preparation method of desulfurization agent for assisting combustion of fire coal

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