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Gas purification technology and resource utilization
Purification and resource utilization of high-temperature waste gas from biomass/chemical/food, and efficient emission standards.
Type
Integrated system
Tags
Biology
Air pollution control
Solid particles
Gas chilling
Gas purification
Solution maturity
Early adoption / Process verification
Cooperation methods
Overall transfer
Technology licensing
Joint venture cooperation
Technology shares
Face-to-face consultation
Equity plus cash
Applicable industry
Scientific research and technology services
Applications
Waste disposal
Key innovations
The innovation of this technology lies in its integrated treatment of high-temperature complex waste gases, achieving deep purification, resource recovery and temperature compliance through rapid chilling and efficient absorption and mass transfer, with both high efficiency and low cost.
Potential economic benefits
Recovering high-value components significantly reduces operation and maintenance costs, extends the life of subsequent equipment, avoids environmental penalties, and has outstanding overall economic benefits.
Potential climate benefits
This technology reduces the need for the extraction and production of primary resources by recovering valuable carbon-based components from biomass gasification and industrial waste gases, thereby reducing related carbon emissions. The purified gas can be used safely and efficiently to replace fossil fuels and further achieve carbon reduction.
Solution supplier
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Shanghai Chemical Research Institute Co., Ltd.
Shanghai Chemical Research Institute Co., Ltd.
Shanghai Chemical Research Institute Co., Ltd. is a well-known comprehensive chemical scientific research institution in China, committed to the research and development and industrialization of new chemical materials and new technologies.
China
Solution details

Biomass gasification gas and waste gas generated by chemical and food production often contain a certain concentration of volatile chemical components and solid particles of a certain particle size. The components are also complex, and some components have extremely high recycling value. At the same time, the temperature of this type of gas is very high, generally at 200 ℃~500 ° C puts forward extremely high requirements for the temperature resistance of subsequent equipment. Direct use or discharge will reduce the performance of subsequent equipment and fail to meet atmospheric emission standards.

The gas purification technology and integrated resource utilization technology developed by the company quickly reduces the temperature of high-temperature gases to the required range through a specific chilling method. At the same time, it has a certain effect of removing solid particles and chemical components, and then passes through the absorbent on the surface of the special packing of the absorption tower. Mass transfer and heat transfer are carried out on the surface of the special packing to further reduce the gas temperature to meet the temperature requirements of subsequent equipment and meet the applicable or emissable standards.

This project technology has the characteristics of high efficiency, good treatment effect, strong operability, strong equipment blocking resistance, high degree of device automation, small floor area, no secondary pollution, and low treatment cost.


Last updated
10:54:22, Nov 04, 2025
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