EcoKeeper spherical porous particles are composed of various chemical compounds, including activated alumina, activated carbon, zeolite, sodium permanganate, potassium permanganate, and phosphoric acid.EcoKeeper employs dry molecular media to remove harmful gases from the air through continuous absorption and adsorption: harmful gases are first adsorbed onto the surface of the molecular media, then decomposed through chemical reactions within the molecular media into harmless solids that are retained inside the molecular media — ensuring that removed pollutant gases do not undergo secondary release.
CP5K Molecular Media
CP5K Molecular Media is used for the adsorption, absorption, and neutralization of various corrosive, oxidative, irritating, and other harmful gaseous chemical molecular contaminants.
Formed into spherical or cylindrical porous particles from a combination of powdered activated alumina and other binders, it is suitably impregnated with potassium permanganate (KMnO₄) to provide enhanced capacity for the adsorption, absorption, and oxidation of various gaseous chemical molecular contaminants.
Formed into spherical or cylindrical porous particles from a combination of powdered activated alumina and other binders, it is suitably impregnated with potassium permanganate (KMnO₄) to provide enhanced capacity for the adsorption, absorption, and oxidation of various gaseous chemical molecular contaminants.
CP8K Molecular Media
CP8K Molecular Media adsorbs, absorbs, and neutralizes various corrosive gases, oxidative gases, irritating odors, and other harmful gaseous molecular contaminants.
This filtration media is made from a combination of powdered activated alumina and other binders, formed into spherical or cylindrical porous particles, and impregnated with an appropriate amount of potassium permanganate (KMnO₄), providing high-efficiency capacity for the adsorption, absorption, and oxidation of various gaseous contaminants.
This filtration media is made from a combination of powdered activated alumina and other binders, formed into spherical or cylindrical porous particles, and impregnated with an appropriate amount of potassium permanganate (KMnO₄), providing high-efficiency capacity for the adsorption, absorption, and oxidation of various gaseous contaminants.
SP12N Molecular Media
SP12N Molecular Media adsorbs, absorbs, and neutralizes various corrosive gases, oxidative gases, irritating odors, and other harmful gaseous molecular contaminants.
This molecular media is made from a combination of powdered activated alumina and other binders, formed into spherical or cylindrical porous particles, and impregnated with an appropriate amount of sodium permanganate (NaMnO₄), providing high-efficiency capacity for the adsorption, absorption, and oxidation of various gaseous contaminants.
This molecular media is made from a combination of powdered activated alumina and other binders, formed into spherical or cylindrical porous particles, and impregnated with an appropriate amount of sodium permanganate (NaMnO₄), providing high-efficiency capacity for the adsorption, absorption, and oxidation of various gaseous contaminants.
ACB Activated Carbon Adsorption Media
ACB Activated Carbon Adsorption Media is composed of high-quality coal-based or wood-based activated carbon, formed into porous cylindrical particles without the use of binders. It features high activity, facilitating the absorption of target gases by the carbon. Through physical adsorption, it efficiently removes pollutant gases and effectively filters medium to high molecular weight compounds, as well as low-volatility chemical contaminants.
ACB Activated Carbon Adsorption Media offers enhanced broad-spectrum control capability for odor control in water/wastewater treatment applications, removing various pollutant gases such as hydrocarbons, mercaptans, chlorine, and nitrogen dioxide (NO₂).
ACB Activated Carbon Adsorption Media offers enhanced broad-spectrum control capability for odor control in water/wastewater treatment applications, removing various pollutant gases such as hydrocarbons, mercaptans, chlorine, and nitrogen dioxide (NO₂).
ACC Coconut Shell Activated Carbon Adsorption Media
ACC Coconut Shell Activated Carbon is made from high-quality coconut shells as raw material, processed through production steps including drying, carbonization, and high-temperature steam activation.
It has a black cylindrical appearance with a porous, interstitial texture, and features excellent adsorption performance, high strength, easy regeneration, and economic durability.
Compared with other types of activated carbon, ACC produces less dust and has higher hardness; its pore structure is predominantly microporous, enabling efficient adsorption of impurities with microporous molecular structures.
It has a black cylindrical appearance with a porous, interstitial texture, and features excellent adsorption performance, high strength, easy regeneration, and economic durability.
Compared with other types of activated carbon, ACC produces less dust and has higher hardness; its pore structure is predominantly microporous, enabling efficient adsorption of impurities with microporous molecular structures.
Amsorb Molecular Media
Amsorb Ammonia/Amine Molecular Media is made from high-quality porous cylindrical coal-based pitch activated carbon combined with other binders, featuring a hard texture, pressure and wear resistance, and impact resistance.
After appropriate impregnation treatment, it enhances the removal capacity for ammonia and amine gaseous molecular contaminants, making it an ideal molecular media for efficiently adsorbing and removing ammonia and amine substances.
After appropriate impregnation treatment, it enhances the removal capacity for ammonia and amine gaseous molecular contaminants, making it an ideal molecular media for efficiently adsorbing and removing ammonia and amine substances.
Clsorb Molecular Media
Clsorb Chlorine Molecular Media is specifically designed for emergency response to chlorine gas leaks.
This molecular media consists of porous spherical particles made from powdered activated alumina and binders. After appropriate impregnation treatment, it significantly enhances the removal capacity for chlorine gas.
The impregnating agent is added during the particle formation process, ensuring uniform distribution within the particles. It can fully react with chlorine gas, producing solid salts after the reaction, which can be disposed of as harmless solid waste.
This molecular media consists of porous spherical particles made from powdered activated alumina and binders. After appropriate impregnation treatment, it significantly enhances the removal capacity for chlorine gas.
The impregnating agent is added during the particle formation process, ensuring uniform distribution within the particles. It can fully react with chlorine gas, producing solid salts after the reaction, which can be disposed of as harmless solid waste.
Sulfusorb-430K Molecular Media
Sulfusorb-430K is a coal-based granular molecular media, primarily used for removing acidic gases and odorous compounds from the air. Manufactured through high-temperature steam activation and chemical impregnation processes, it is a proven, mature product widely used for odor control in various applications including industrial processes, municipal treatment plants, paper mills, and indoor air filtration.This molecular media has extremely high adsorption capacity for compounds that are difficult for standard carbon to effectively adsorb, including hydrogen sulfide (H₂S), mercaptans, sulfur dioxide (SO₂), chlorine (Cl₂), and hydrogen chloride (HCl).
According to the ASTM D-6646 test standard, its hydrogen sulfide (H₂S) adsorption capacity specification is 0.187 g/cc, equivalent to approximately 30.11% by weight.
According to the ASTM D-6646 test standard, its hydrogen sulfide (H₂S) adsorption capacity specification is 0.187 g/cc, equivalent to approximately 30.11% by weight.
CUOC Molecular Media
CUOC Molecular Media uses high-quality cylindrical activated carbon or granular activated carbon as a carrier, and is refined through impregnation with copper oxide (CuO). It combines three core characteristics — activity, selectivity, and stability — with excellent adsorption and catalytic performance, enabling efficient adsorption and purification of various target gases.
As an impregnated activated carbon product, it offers the advantages of large specific surface area, suitable pore structure, and high mechanical strength. It can withstand high-temperature and high-pressure operating conditions, is not easily crushed, has a long service life, and can adapt to various complex usage environments.
CUOC Molecular Media is primarily used for removing acidic gases such as hydrogen sulfide (H₂S), sulfur dioxide (SO₂), and sulfur trioxide (SO₃), while also providing effective protection against various toxic gases such as chlorides and arsenides.
As an impregnated activated carbon product, it offers the advantages of large specific surface area, suitable pore structure, and high mechanical strength. It can withstand high-temperature and high-pressure operating conditions, is not easily crushed, has a long service life, and can adapt to various complex usage environments.
CUOC Molecular Media is primarily used for removing acidic gases such as hydrogen sulfide (H₂S), sulfur dioxide (SO₂), and sulfur trioxide (SO₃), while also providing effective protection against various toxic gases such as chlorides and arsenides.
MGOC Molecular Media
MGOC is a coal-based granular molecular media, primarily used for removing acidic gases and odorous compounds from the air. Its manufacturing process employs high-temperature steam activation combined with chemical impregnation for refinement.This coal-based activated carbon is a proven, mature product that can be widely applied to various odor control scenarios, covering industrial processes, municipal treatment plants, paper mills, and indoor air filtration.Compared with standard activated carbon, MGOC offers significant advantages, providing extremely high adsorption capacity for compounds that are difficult for standard activated carbon to strongly adsorb. It specifically targets efficient adsorption of substances such as hydrogen sulfide (H₂S), mercaptans, sulfur dioxide (SO₂), chlorine (Cl₂), and hydrogen chloride (HCl).
Hydrogen Sulfide Capacity:
According to ASTM D-6646 standard testing, MGOC's hydrogen sulfide (H₂S) capacity specification is 0.253 g/cc (59.55% by weight).
Hydrogen Sulfide Capacity:
According to ASTM D-6646 standard testing, MGOC's hydrogen sulfide (H₂S) capacity specification is 0.253 g/cc (59.55% by weight).
CP5K Blend Molecular Media
CP5K Blend Molecular Media is a 50:50 mixture of CP5K Molecular Media and ACB460 Activated Carbon Adsorption Media, designed for maximum capacity removal of corrosive, oxidative, irritating, or toxic gaseous contaminants. CP5K Blend offers enhanced broad-spectrum control efficacy for malodorous and corrosive gases, removing mercaptans, hydrocarbons, hydrogen sulfide (H₂S), and oxides of sulfur and nitrogen (SOₓ/NOₓ), among others.
CP8K Blend Molecular Media
CP8K Blend Molecular Media is a 50:50 mixture of CP8K Molecular Media and ACB460 Activated Carbon Adsorption Media, designed for maximum capacity removal of corrosive, oxidative, irritating, or toxic gaseous contaminants.
CP8K Blend offers enhanced broad-spectrum control efficacy for malodorous and corrosive gases, removing mercaptans, hydrocarbons, hydrogen sulfide (H₂S), and oxides of sulfur and nitrogen (SOₓ/NOₓ), among others.
CP8K Blend offers enhanced broad-spectrum control efficacy for malodorous and corrosive gases, removing mercaptans, hydrocarbons, hydrogen sulfide (H₂S), and oxides of sulfur and nitrogen (SOₓ/NOₓ), among others.
SP12N Blend Molecular Media
SP12N Blend Molecular Media is a 50:50 mixture of SP12N Molecular Media and ACB460 Activated Carbon Adsorption Media, designed for maximum capacity removal of corrosive, oxidative, irritating, or toxic gaseous contaminants.
SP12N Blend offers enhanced broad-spectrum control efficacy for malodorous and corrosive gases, removing mercaptans, hydrocarbons, hydrogen sulfide (H₂S), and oxides of sulfur and nitrogen (SOₓ/NOₓ), among others.
SP12N Blend offers enhanced broad-spectrum control efficacy for malodorous and corrosive gases, removing mercaptans, hydrocarbons, hydrogen sulfide (H₂S), and oxides of sulfur and nitrogen (SOₓ/NOₓ), among others.
Tri Blend Clean Air Molecular Media
Tri Blend Clean Air Molecular Media is made by mixing CP8K, Sulfusorb, and ACB460 molecular media at a 50:25:25 (by volume) ratio, efficiently removing various gaseous molecular contaminants and effectively eliminating exhaust emissions from fossil fuel combustion and polluted air from other sources.
The three molecular media have clear division of labor and synergistic effects, targeting the removal of various gaseous contaminants:Sulfusorb primarily removes sulfur oxides (SOₓ), reactive sulfur compounds, and organic acids;CP8K focuses on removing nitrogen oxides (NOₓ) and formaldehyde;ACB460 activated carbon adsorption media, in coordination with the other two, further removes most remaining contaminants, including ozone (O₃), volatile organic compounds (VOCs), and hydrocarbons, among others.
The three molecular media have clear division of labor and synergistic effects, targeting the removal of various gaseous contaminants:Sulfusorb primarily removes sulfur oxides (SOₓ), reactive sulfur compounds, and organic acids;CP8K focuses on removing nitrogen oxides (NOₓ) and formaldehyde;ACB460 activated carbon adsorption media, in coordination with the other two, further removes most remaining contaminants, including ozone (O₃), volatile organic compounds (VOCs), and hydrocarbons, among others.
CP8K Blend Pro Molecular Media
CP8K Blend Pro Molecular Media is a 50:50 mixture of CP8K Molecular Media and Sulfusorb Molecular Media. CP8K Blend Pro combines the comprehensive characteristics and advantages of both CP8K and Sulfusorb, and is designed for removing corrosive gases commonly found in the pulp and paper, petrochemical, and oil refining industries.
SP12N Blend Pro Molecular Media
SP12N Blend Pro Molecular Media is a 50:50 mixture of SP12N Molecular Media and Sulfusorb Molecular Media. SP12N Blend Pro combines the comprehensive characteristics and advantages of both SP12N and Sulfusorb, and is designed for removing corrosive gases commonly found in the pulp and paper, petrochemical, and oil refining industries.
PP Blend Molecular Media
PP Blend Molecular Media is a 50:50 mixture of Sulfusorb Molecular Media and ACB-460 Activated Carbon Adsorption Media, offering enhanced broad-spectrum control efficacy for malodorous and corrosive gases, removing mercaptans, hydrocarbons, VOCs, hydrogen sulfide (H₂S), and oxides of sulfur and nitrogen (SOₓ/NOₓ), among others.
Radsorb Molecular Media
Radsorb Molecular Media uses high-quality coconut shell granular activated carbon as a carrier, refined through impregnation with potassium iodide (KI). It combines three core characteristics — activity, selectivity, and stability — with excellent adsorption and catalytic performance, enabling efficient adsorption and purification of radioactive gases.This molecular media features a large specific surface area, rich pore structure, and high mechanical strength. It can withstand high-temperature and high-pressure operating conditions, is not easily crushed, and has a long service life.
Radsorb is rich in iodine, which can neutralize radioactive substances. It is particularly effective against radionuclides that emit high-dose α, β, and γ radiation, converting them into non-toxic stable compounds.As a halogen element, iodine has an active extranuclear electron shell structure, readily undergoing electron gain and loss, and exhibits certain absorption and retardation effects on radiation. The iodine contained in potassium iodide can also inhibit the absorption of radionuclides such as radioactive iodine and radioactive cesium by living organisms, further enhancing the protective effect.
Radsorb is rich in iodine, which can neutralize radioactive substances. It is particularly effective against radionuclides that emit high-dose α, β, and γ radiation, converting them into non-toxic stable compounds.As a halogen element, iodine has an active extranuclear electron shell structure, readily undergoing electron gain and loss, and exhibits certain absorption and retardation effects on radiation. The iodine contained in potassium iodide can also inhibit the absorption of radionuclides such as radioactive iodine and radioactive cesium by living organisms, further enhancing the protective effect.
Coasorb Molecular Media
Coasorb Molecular Media is an ambient-temperature granular catalyst media with a particle size of 4-8 mesh. Its core function is to convert carbon monoxide (CO) into carbon dioxide (CO₂), thereby removing carbon monoxide from the gas stream.
Its core media is in granular form, with particle mesh sizes ranging from 0.84 mm to 1.68 mm (12 to 20 mesh). The active components are uniformly coated on a porous amorphous carbon particle carrier.
This material is suitable for high-humidity process scenarios, featuring excellent moisture resistance. It is the preferred catalyst for carbon monoxide removal in humid environments, and is particularly suitable for applications such as breathable air treatment.
Its core media is in granular form, with particle mesh sizes ranging from 0.84 mm to 1.68 mm (12 to 20 mesh). The active components are uniformly coated on a porous amorphous carbon particle carrier.
This material is suitable for high-humidity process scenarios, featuring excellent moisture resistance. It is the preferred catalyst for carbon monoxide removal in humid environments, and is particularly suitable for applications such as breathable air treatment.
Codsorb Molecular Media
Codsorb is a molded spherical soda lime absorbent specifically designed for carbon dioxide removal, with a particle size of 4-8 mesh.Its unique spherical structure and proprietary formulation offer advantages over standard products: the combination of spherical morphology and reasonable particle size distribution results in superior packing performance in scrubber devices, featuring not only low dust content but also effective reduction of airflow resistance.
Codsorb is available in two types: non-indicating (NI) and indicating (WV). The indicating type (WV) features a distinct color change characteristic: when carbon dioxide is absorbed, it changes from white to purple, allowing intuitive assessment of absorption effectiveness.
Codsorb is available in two types: non-indicating (NI) and indicating (WV). The indicating type (WV) features a distinct color change characteristic: when carbon dioxide is absorbed, it changes from white to purple, allowing intuitive assessment of absorption effectiveness.
CP5K/CP8K 2040 Molecular Media
CP5K/CP8K 2040 Molecular Media is a special particulate molecular media made using activated alumina and pseudo-boehmite as carriers, loaded with potassium permanganate (KMnO₄).The product is exclusively designed with unique microporous structure and adsorption performance, featuring high-quality formulation, flexible adsorption, high volumetric activity, and excellent dirt-holding capacity. By adjusting activation conditions, it forms a distinctive internal pore structure and adsorption characteristics.
Carbon-impregnated cloth composited through a specific process using this material as raw material features excellent adsorption, high strength, easy formability, low resistance, and long service life. It can efficiently remove oxidative AMC such as nitrogen oxides (NOₓ) and ozone (O₃) in high-end cleanrooms for chips, LCD panels, etc., and is also suitable for the filtration and purification of acidic gases (MA, Molecular Acids) such as low-concentration sulfur dioxide (SO₂) and formaldehyde.
Carbon-impregnated cloth composited through a specific process using this material as raw material features excellent adsorption, high strength, easy formability, low resistance, and long service life. It can efficiently remove oxidative AMC such as nitrogen oxides (NOₓ) and ozone (O₃) in high-end cleanrooms for chips, LCD panels, etc., and is also suitable for the filtration and purification of acidic gases (MA, Molecular Acids) such as low-concentration sulfur dioxide (SO₂) and formaldehyde.
Sulfusorb 2040/3060 Molecular Media
Sulfusorb 2040/3060 Molecular Media is made from high-quality coconut shells originating from Sri Lanka, the Philippines, Indonesia, and other origins, refined through processes including carbonization, activation, crushing, and chemical loading with potassium hydroxide (KOH).Its appearance is black irregular crushed particles, featuring the advantages of high mechanical strength, well-developed porosity, large specific surface area, and fast adsorption speed, with excellent removal capability for various acidic gases and malodors (odors).
This product is widely applied and field-proven, commonly used in high-grade cleanrooms for chips, LCD panels, photovoltaic panels, precision optics, vaccine pharmaceuticals, and healthcare. It can effectively filter and purify acidic contaminants (MA, Molecular Acids) such as sulfur dioxide (SO₂), sulfur trioxide (SO₃), hydrogen sulfide (H₂S), hydrogen chloride (HCl), and chlorine (Cl₂), achieving precise concentration control.
This product is widely applied and field-proven, commonly used in high-grade cleanrooms for chips, LCD panels, photovoltaic panels, precision optics, vaccine pharmaceuticals, and healthcare. It can effectively filter and purify acidic contaminants (MA, Molecular Acids) such as sulfur dioxide (SO₂), sulfur trioxide (SO₃), hydrogen sulfide (H₂S), hydrogen chloride (HCl), and chlorine (Cl₂), achieving precise concentration control.
ACC 2040/3060 Chemical Filtration Media
ACC 2040/3060 Coconut Shell Activated Carbon Adsorbent is made from high-quality coconut shells originating from the Philippines, Sri Lanka, or other origins, refined through processes including carbonization, activation, and washing.It is deep black irregular crushed particles, featuring high mechanical strength, well-developed porosity, large specific surface area, and fast adsorption speed, with good adsorption capability for various free gases.This adsorbent is treated through a special pore size adjustment process, featuring abundant micropore, mesopore, and macropore structures, enabling automatic matching based on harmful gas molecular size to achieve targeted adsorption.
The product is commonly used in high-grade cleanrooms for chips, LCD panels, photovoltaics, precision optics, biopharmaceuticals, genetic engineering, and healthcare. It can effectively filter and purify VOCs and MC (Molecular Condensables) such as benzene, formaldehyde, and acetone, achieving precise concentration control.
The product is commonly used in high-grade cleanrooms for chips, LCD panels, photovoltaics, precision optics, biopharmaceuticals, genetic engineering, and healthcare. It can effectively filter and purify VOCs and MC (Molecular Condensables) such as benzene, formaldehyde, and acetone, achieving precise concentration control.
FluorAsorb 2040/3060 Fluoride Ion Adsorbent
FluorAsorb 2040/3060 is a white spherical chemisorption material specifically designed for fluoride ion removal in high-precision cleanrooms for LCD, chips, and photovoltaics. Refined from high-quality alumina as the base material, it is available in two specifications, 2040 and 3060, adapted to workshop ventilation and purification needs.This material is white inert spherical particles with well-developed porosity and large specific surface area. It can efficiently and selectively adsorb fluoride ions, controlling their concentration within the ≤10 ppb standard. It is dust-free and free of secondary pollution, suitable for Class 100 to Class 1000 cleanrooms, and compatible with existing HVAC purification systems.
FluorAsorb 2040/3060 effectively adsorbs fluoride ions in electronic cleanrooms, preventing corrosion of core components and precision equipment, safeguarding personnel health, supporting compliant production, and reducing product defect rates.
FluorAsorb 2040/3060 effectively adsorbs fluoride ions in electronic cleanrooms, preventing corrosion of core components and precision equipment, safeguarding personnel health, supporting compliant production, and reducing product defect rates.
Ozabsorb 2040/3060 Ambient-Temperature Catalyst
Ozabsorb 2040/3060 is a manganese-copper system ambient-temperature ozone decomposition catalyst with a particle size of 20–60 mesh, developed for ozone gas catalytic degradation applications.
This material features the advantages of high catalytic capacity and long service life; it is used in combination with high-CTC coconut shell activated carbon for synergistic performance.
The high-CTC coconut shell activated carbon achieves efficient ozone adsorption and enrichment, while Ozabsorb 2040/3060 performs continuous catalytic decomposition of ozone, constructing an integrated purification system of adsorption-enrichment + catalytic degradation.
This material features the advantages of high catalytic capacity and long service life; it is used in combination with high-CTC coconut shell activated carbon for synergistic performance.
The high-CTC coconut shell activated carbon achieves efficient ozone adsorption and enrichment, while Ozabsorb 2040/3060 performs continuous catalytic decomposition of ozone, constructing an integrated purification system of adsorption-enrichment + catalytic degradation.