Method for intensifying heavy metal trapping in desulfurization tower by using magnetic medium and application thereof

A magnetic medium and desulfurization tower technology, applied in the field of heavy metal capture, can solve the problems of high operating cost, large consumption of chemical reagents, and unsuitability for large-scale industrial production, so as to ensure long-term stable operation, reduce construction cost, and low operating cost Effect

Active Publication Date: 2020-12-22
HUAZHONG UNIV OF SCI & TECH
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Problems solved by technology

[0004] Among the existing technologies for controlling the discharge of heavy metal pollutants in coal-burning flue gas, mainly include: (1) CN103952207A discloses an arsenic-fixing agent and its preparation method and a method for using the arsenic-fixing agent to fix arsenic. The arsenic-fixing agent is composed of CaCO 3 Composed of metal salts, the preparation method is to dry calcium carbonate, place it in a metal salt solution, heat it in a water bath at a temperature of 95±5°C for 2-2.5 hours, keep stirring, and filter it under the condition of 100-110°C Drying, grinding to 180-300 mesh, and then adding to the coal at a ratio of 0.5-5% of the coal mass, this method is based on the transformation law of arsenic in the high-temperature furnace and flue gas, and uses the arsenic-fixing agent with developed gaps to reduce The concentration of arsenic in high-temperature flue gas, but the arsenic-fixing agent of this method contains alkali metal salts such as sodium and potassium, and the alkali metal vapor released at high temperature will cause contamination of the boiler heat exchange tubes, seriously affecting the operation stability of the boiler, and the The preparation process of the arsenic-fixing agent is complicated, and it is not suitable for large-scale industrial production; (2) CN109045963A discloses a method for oxidation-absorption removal of gaseous selenium dioxide in coal-fired flue gas, and the prepared oxidant and absorbent are sprayed simultaneously It is sprayed into the upper part of the shower tower, and forms a convection flow with the coal-fired flue gas introduced from the lower part of the spray absorption tow

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  • Method for intensifying heavy metal trapping in desulfurization tower by using magnetic medium and application thereof
  • Method for intensifying heavy metal trapping in desulfurization tower by using magnetic medium and application thereof
  • Method for intensifying heavy metal trapping in desulfurization tower by using magnetic medium and application thereof

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[0043] Example 1

[0044] Application object: a wet flue gas desulfurization device in a power plant, the inlet flue gas volume is 1670000m 3 / h (standard state, wet basis), the selenium concentration in the inlet flue gas is 127μg / m 3 , the flue gas temperature at the entrance is 109°C, the slurry temperature inside the desulfurization tower is 56°C, the operating liquid-gas ratio of the desulfurization tower is 15, and the desulfurization tower is equipped with three spray layers.

[0045] Operation process: Use a uniform feeder to feed γ-Fe with a particle size of 5 μm 2 o 3 The powder is fed in at a rate of 1.67kg / h from the front flue of the booster fan at the entrance of the desulfurization tower; a magnetic adsorption layer is installed in the desulfurization tower, located 2.5m above the first spray layer, and the diameter of the electromagnetic rod is 0.4m, the ratio of the tube spacing to the tube diameter of the parallel electromagnetic rod tube bundle is 8, and ...

Example Embodiment

[0047] Example 2

[0048] Application object: a wet flue gas desulfurization device in a power plant, the inlet flue gas volume is 3560000m3 3 / h (standard state, wet basis), the selenium concentration in the inlet flue gas is 71μg / m 3 , The flue gas temperature at the entrance is 112°C, the slurry temperature inside the desulfurization tower is 57°C, the operating liquid-gas ratio of the desulfurization tower is 17, and the desulfurization tower is equipped with three spray layers.

[0049] Operation process: use a uniform feeder to feed Fe with a particle size of 10 μm 3 o 4 The powder is fed in at a constant speed from the front flue of the booster fan at the entrance of the desulfurization tower at a rate of 0.71kg / h; a magnetic adsorption layer is installed in the desulfurization tower, located 2.5m above the first spray layer, and the diameter of the electromagnetic rod is 0.3m, the ratio of the tube spacing to the tube diameter of the parallel electromagnetic rod tub...

Example Embodiment

[0051] Example 3

[0052] Application object: a wet flue gas desulfurization device in a power plant, the inlet flue gas volume is 530000m 3 / h (standard state, wet basis), the selenium concentration in the inlet flue gas is 63μg / m 3 , The flue gas temperature at the entrance is 114°C, the slurry temperature inside the desulfurization tower is 56°C, the operating liquid-gas ratio of the desulfurization tower is 17, and the desulfurization tower is equipped with three spray layers.

[0053] Operation process: use a uniform feeder to feed Co with a particle size of 20 μm 3 o 4 The powder is fed at a constant speed of 0.11kg / h from the front flue of the booster fan at the entrance of the desulfurization tower; a magnetic adsorption layer is installed in the desulfurization tower, which is located 2m above the first spray layer, and the diameter of the electromagnetic rod is 0.4 m, the ratio of the tube spacing to the tube diameter of the parallel electromagnetic rod tube bundl...

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Abstract

The invention belongs to the field of pollutant removal, and particularly discloses a method for intensifying heavy metal trapping in a desulfurization tower by utilizing a magnetic medium and application of the method. The method specifically comprises the following steps: adding the magnetic medium into flue gas at an inlet of the intelligent manufacturing equipment tower, and promoting heavy metals in the flue gas to be enriched on the magnetic medium in a heterogeneous condensation or chemical adsorption manner; and then the flue gas containing the magnetic medium sequentially passes through the spraying layer and the magnetic adsorption layer and is discharged from an outlet of the desulfurization tower so that the magnetic medium enriched with the heavy metals is intercepted and trapped by utilizing the dual effects of the spraying liquid drops and the magnetic adsorption layer, and thus the enhanced trapping of the heavy metal pollutants in the flue gas is realized. According tothe method, the heavy metal pollutants in the flue gas can be intensively trapped, secondary pollution caused by powder escape is avoided, the overall removal efficiency is high, the safety is high,no environmental risk exists, the method has the advantages of being simple in technological process and low in operation cost, and meanwhile the negative influence on the working state of a desulfurization system is avoided.

Description

technical field [0001] The invention belongs to the field of pollutant removal, and more specifically relates to a method for strengthening the collection of heavy metals in a desulfurization tower by using a magnetic medium and an application thereof. Background technique [0002] my country is the world's largest energy producer and consumer, and has formed an energy supply system with comprehensive development of coal, oil, natural gas, new energy, and renewable energy. Among them, coal-fired thermal power generation occupies an irreplaceable role in my country's energy system. leading position. However, coal-fired power generation will bring a lot of flue gas emissions, which contain some toxic pollutants such as NO x , SO 2 , particulate matter and heavy metals, causing serious damage to the ecological environment. With the development of science and technology, NO x , SO 2 , particulate matter and other related pollutant control equipment have been equipped in most...

Claims

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Application Information

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IPC IPC(8): B01D53/64B01D53/83B01D53/00B01D50/00B01D7/02
CPCB01D7/02B01D50/00B01D53/002B01D53/64B01D53/83B01D2251/602B01D2258/0283
Inventor 罗光前邹仁杰方灿张浩宇吉庆钰胡红云李显姚洪
Owner HUAZHONG UNIV OF SCI & TECH
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