A kind of volatile organic compound waste gas active adsorbent

An organic compound and active adsorbent technology, applied in the field of volatile organic compound waste gas treatment, can solve the problems of high cost, complicated process, high energy consumption, etc., achieve long replacement cycle, large adsorption capacity, and reduce environmental pollution.

Active Publication Date: 2019-05-31
苏州环源环保科技有限公司
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] Example 1 of the prior art uses zeolite and activator (catalyst) copper oxide and oxyferric chloride to be calcined in a muffle furnace to prepare an organic waste gas adsorbent, which utilizes the characteristics of large specific surface area and strong adsorption capacity of zeolite. Utilize copper oxide, oxyferric chloride activation to enhance adsorption capacity, usually muffle furnace is used for experimental analysis, and the method description is also an experimental process, that is to say, this technology is still far away from industrialization; Activated carbon is used as the raw material, and it is modified and activated. The final step is to send it into a calciner for calcination and grinding. It is similar to two activated carbon activation processes: first activate the raw material to make activated carbon, and then activate the activated carbon to make an adsorbent. General-purpose activated carbon, the process is more complicated, and twice heating, energy consumption is higher, and the cost is also much higher at the same time; The processing method of circulating fluidized bed boiler fly ash mentioned in prior art example 3 is water or water and water and A mixture of surfactants is used to modify the surface of circulating fluidized bed boiler fly ash to become raw materials such as cement, concrete, brick, ceramsite, fillers, etc., so using it sacrifices its large specific surface area and good adsorption activity. Characteristic while high value utilizes the value of active adsorbents for VOC waste gases

Method used

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  • A kind of volatile organic compound waste gas active adsorbent

Examples

Experimental program
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Effect test

Embodiment 1

[0017] This embodiment provides an active adsorbent for waste gas of volatile organic compounds. The components are calculated by weight: 100 parts of circulating fluidized bed coal-fired boiler fly ash, 5 parts of sulfur, 1 part of disulfur dichloride, sulfur heating When the temperature is above its boiling point, superheated sulfur vapor enters the prilling tower and mixes with the cooling medium disulfide dichloride and exhaust gas from the circulating fluidized bed waste heat boiler, and is rapidly cooled to below 90°C to form disulfur dichloride and sulfur gel mist. Drops, bonding circulating fluidized bed coal-fired boiler fly ash particles to form continuously growing particles, while wrapping circulating fluidized bed coal-fired boiler fly ash for surface activation, after the above particles grow to a certain diameter, their gravity is greater than The suspension force of the tail gas discharged from the circulating fluidized bed waste heat boiler falls into the recei...

Embodiment 2

[0019] This embodiment provides an active adsorbent for waste gas of volatile organic compounds. The components are calculated by weight: 100 parts of circulating fluidized bed coal-fired boiler fly ash, 10 parts of sulfur, 1 part of disulfur dichloride, sulfur heating When the temperature is above its boiling point, superheated sulfur vapor enters the prilling tower and mixes with the cooling medium disulfide dichloride and exhaust gas from the circulating fluidized bed waste heat boiler, and is rapidly cooled to below 90°C to form disulfur dichloride and sulfur gel mist. Drops, bonding circulating fluidized bed coal-fired boiler fly ash particles to form continuously growing particles, while wrapping circulating fluidized bed coal-fired boiler fly ash for surface activation, after the above particles grow to a certain diameter, their gravity is greater than The suspension force of the tail gas discharged from the circulating fluidized bed waste heat boiler falls into the rece...

Embodiment 3

[0021] This embodiment provides an active adsorbent for waste gas of volatile organic compounds. The components are calculated by weight: 100 parts of circulating fluidized bed coal-fired boiler fly ash, 5 parts of sulfur, 1.5 parts of disulfur dichloride, sulfur heating When the temperature is above its boiling point, superheated sulfur vapor enters the prilling tower and mixes with the cooling medium disulfide dichloride and exhaust gas from the circulating fluidized bed waste heat boiler, and is rapidly cooled to below 90°C to form disulfur dichloride and sulfur gel mist. Drops, bonding circulating fluidized bed coal-fired boiler fly ash particles to form continuously growing particles, while wrapping circulating fluidized bed coal-fired boiler fly ash for surface activation, after the above particles grow to a certain diameter, their gravity is greater than The suspension force of the tail gas discharged from the circulating fluidized bed waste heat boiler falls into the re...

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Abstract

The invention relates to the technical field of volatile organic chemicals waste gas treatment, and particularly relates to a volatile organic chemicals waste gas activated adsorbent, which is characterized by comprising the following components in parts by weight: 100 parts of circulating fluidized bedcoal-fired boilerfly ash, 5 to 10 parts of sulphur, and 1 to 1.5 parts of disulfur dichloride. Flue gas and emission pollutants, such as smoke dust of a boiler are high-value utilized to prepare the VOCs (Volatile Organic Chemicals) adsorbent, so that the aims of providing the cheap VOCs adsorbent, saving energy, reducing emission, recycling resources and the like are achieved.

Description

technical field [0001] The invention relates to the technical field of waste gas treatment of volatile organic compounds, in particular to an active adsorbent for waste gas of volatile organic compounds. Background technique [0002] Gaseous pollutants emitted by industry are the main source of atmospheric environmental pollutants, among which volatile organic compound waste gas (VOCs) is a gaseous pollutant that is seriously harmful to the environment, and it is also an occupational hazard that affects the health of operators in the workplace It is widely derived from chemical industries such as paints, coatings, coatings, lubricants, and rubber. Due to its huge destructive effect on the human body and the natural environment, the country has issued relevant laws and regulations to strictly control its governance and emissions. At present, the commonly used treatment methods of organic waste gas treatment technology include combustion method, chemical oxidation method, che...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): B01J20/20B01D53/02
CPCB01D53/02B01D2257/708B01J20/20
Inventor 杨松
Owner 苏州环源环保科技有限公司
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