Competitive Adsortion  

Competitive Adsorption 

Competitive Adsorption 

A quantitative understanding of competitive sorption between water and organic compounds is becoming increasingly important given the impact of contaminants on human health and industrial processes. 


Dynamic Vapor Sorption (DVS) is a highly sensitive analytical technique capable of precisely analyzing binary sorption and competition phenomena under both vapor- and gas-phase conditions, making it a valuable tool for systematically investigating sorption characteristics and interaction mechanisms under diverse environmental conditions.


VOC Capture 


Volatile Organic Compounds (VOCs) originate from a wide range of environmental and industrial sources and are recognized as a major cause of respiratory and pulmonary diseases. 


Porous materials such as zeolites can capture VOCs within their pore structures, and Dynamic Vapor Sorption (DVS) enables quantitative evaluation of the performance of these sorbents under real-world conditions by simultaneously measuring the sorption of two vapor components.

DVS is a powerful characterization tool that analyzes competitive sorption phenomena between vapors in real time, providing detailed insight into the behavior of VOC capture materials. Such characterization delivers essential foundational data for the development and optimization of improved VOC capture materials.


Note: DVS Application Note 65: Impact of Relative Humidity on the Adsorption of Volatile Organic Compounds by Porous Materials – Two Component Sorption Study. [Request a copy]


Vapor & Gas Separation 


Microporous materials such as Metal-Organic Frameworks (MOFs) and zeolites are regarded as ideal candidates for separation processes due to their ability to selectively separate specific compounds. 


Gas separation plays a central role in industrial processes for manufacturing chemicals, polymers, plastics, and fuels — and is typically highly energy-intensive. MOFs can perform these separation functions based on their intrinsic pore structures, making them a promising energy-efficient alternative.


DVS can be used to characterize the gas separation performance of MOFs. In particular, DVS Vacuum enables gas sorption measurements under various relative humidity conditions, allowing precise analysis of material selectivity and sorption behavior in environments that closely replicate real-world process conditions.


Note: DVS Application Note 51: Gas Capture and Vapour Separation by Microporous Materials. [Request a copy]

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Company Name : SNT    CEO: Lee Woo-jong

Address:  W 1013, The Front Misa, 11 Misagang-byeonjungang-ro, Hanam-si, Gyeonggi-do 

Business Registration Number: 314-24-80398   

Phone: 031-794-7980   Consultation Hours: Weekdays 09:00–18:00 (Closed on weekends and public holidays) 


Privacy Policy    Terms of Service    

COPYRIGHTS (C) 2026. ALL RIGHTS RESERVED.

Competitive Adsortion 

A quantitative understanding of competitive sorption between water and organic compounds is becoming increasingly important given the impact of contaminants on human health and industrial processes. Dynamic Vapor Sorption (DVS) is a highly sensitive analytical technique capable of precisely analyzing binary sorption and competition phenomena under both vapor- and gas-phase conditions, making it a valuable tool for systematically investigating sorption characteristics and interaction mechanisms under diverse environmental conditions. 


VOC Capture 


Volatile Organic Compounds (VOCs) originate from a wide range of environmental and industrial sources and are recognized as a major cause of respiratory and pulmonary diseases. Porous materials such as zeolites can capture VOCs within their pore structures, and Dynamic Vapor Sorption (DVS) enables quantitative evaluation of the performance of these sorbents under real-world conditions by simultaneously measuring the sorption of two vapor components.


DVS is a powerful characterization tool that analyzes competitive sorption phenomena between vapors in real time, providing detailed insight into the behavior of VOC capture materials. Such characterization delivers essential foundational data for the development and optimization of improved VOC capture materials.


Note: DVS Application Note 65: Impact of Relative Humidity on the Adsorption of Volatile Organic Compounds by Porous Materials – Two Component Sorption Study. [Request a copy]


Vapor & Gas Separation 


Microporous materials such as Metal-Organic Frameworks (MOFs) and zeolites are regarded as ideal candidates for separation processes due to their ability to selectively separate specific compounds. Gas separation plays a central role in industrial processes for manufacturing chemicals, polymers, plastics, and fuels — and is typically highly energy-intensive. MOFs can perform these separation functions based on their intrinsic pore structures, making them a promising energy-efficient alternative.


DVS can be used to characterize the gas separation performance of MOFs. In particular, DVS Vacuum enables gas sorption measurements under various relative humidity conditions, allowing precise analysis of material selectivity and sorption behavior in environments that closely replicate real-world process conditions.


Note: DVS Application Note 51: Gas Capture and Vapour Separation by Microporous Materials. [Request a copy]

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Company Name : SNT     Address:  W 1013, The Front Misa, 11 Misagang-byeonjungang-ro, Hanam-si, Gyeonggi-do 

Business Registration Number: 314-24-80398    CEO: Lee Woo-jong    Phone: 031-794-7980    Consultation Hours: Weekdays 09:00–18:00 (Closed on weekends and public holidays) 


Privacy Policy    Terms of Service    COPYRIGHTS (C) 2026. ALL RIGHTS RESERVED.