촉매 활성탄
Catalytic activated carbon is engineered to go beyond standard adsorption, enabling it to achieve simultaneous contaminant capture and chemical decomposition. It breaks down hydrogen sulfide, NOₓ, and chloramines on the carbon surface without the need for chemical additives, thus becoming the preferred solution for advanced water treatment and gas purification applications.
What Is Catalytic Activated Carbon?
Catalyst Active Carbon is one of the most advanced types of active carbon engineered to carry out both sorption and catalytic degradation in one substance – a combination of traditional active carbon’s high-surface and porosities with improved surface chemistry, which allows for a direct chemical reaction on the carbon surface, with no additional chemical agents added.
Instead of conventional active carbon, which collects pollutants by means of physical absorption and holds them in their pores, PAC is active in decomposition of the target substance – by breaking the molecules and turning the pollutants into benign by-products on the carbon surface. This catalyst function can be obtained by means of a controlled surface oxidation, a special thermal treatment method, or by introducing catalysts in the course of production to produce a material that has a significantly greater reaction rate to oxidant, chlorine, and sulfur containing gases as compared to traditional carbon classes.
FCC active carbon has a wide range of applications in urban potable water processing, where it can break down chloramines and chlorine while not consuming the carbon structure. In addition, it is used in industrial waste water treatment, the ozone degradation system, the removal of hydrogen sulphide from biogas and process gas flow, and the use of Advanced Oxidation Process (AOP) in which the conventional active carbon does not offer sufficient contamination destroying properties.
This material is provided in the form of Granular Active Carbon (GAC), which enables it to be readily compatible with the current fixed bed filtration container and the Touch Absorbent Systems, with no need to modify the device.
This is Catalytic Activated Carbon’s Modified Key Benefits section, which has been re-formatted as a reference.
Key Advantages of Catalytic Activated Carbon
- Simultaneous Adsorption and Catalytic Decomposition in a Single Treatment Step: Catalytic activated carbon is capable of capturing and chemically decomposing target contaminants directly on its surface in a single treatment stage. This avoids the need for separate chemical dosing systems, extra reaction vessels, or additional reagent injection, and effectively achieves chloramine decomposition, ozone destruction, and hydrogen sulfide removal in both municipal and industrial treatment processes.
- Significantly Extended Service Life Compared to Standard Activated Carbon Grades: Due to the fact that it does not take up an adsorber or a degradation of the pore structure, it is possible to maintain the function of the carbon bed significantly beyond that of the traditional active carbon - to reduce the rate of substitution of the bed, to reduce the cost of carbon use, and to reduce the down time of the system in the potable water and process water treatment plant.
- Dry Catalytic Operation Without External Chemical Reagent Requirements: Catalytic activated carbon can capture target contaminants and conduct chemical decomposition directly on its surface during a single treatment process. It eliminates the requirement for independent chemical dosing systems, extra reaction vessels, and additional reagent injection, while effectively realizing chloramine decomposition, ozone destruction, and hydrogen sulfide removal in both municipal and industrial treatment processes.
- Consistent Catalytic Performance Across Variable Influent Water Chemistry: Engineered to maintain catalytic activity over a range of pH levels, temperatures, dissolved oxygen concentrations, and competitive ion loads — providing stable chloramine degradation and contamination destruction properties in the volatile inlet quality conditions typically associated with urban and commercial process water systems operating in varying feed water conditions.
- Direct Drop-In Compatibility with Existing GAC Filter Infrastructure: FCC Active Carbon can be installed directly into an existing filter container, a contact absorber, and a fixed bed system, as well as in a standard grain form and grain size, allowing it to be upgraded from a normal to a catalytic one without investing in a new device, a re-design of a system or a failure in operation.
업계의 과제
Chloramine resistance to standard activated carbon adsorption
Accelerated carbon bed exhaustion from oxidant exposure:
Stricter drinking water disinfection byproduct regulations
제품 개요
활성탄
IND-GC-1240AG
Specific Use Scenarios — Catalytic Activated Carbon
Municipal Drinking Water Chloramine Removal
Point-of-Use and Point-of-Entry Water Filtration Systems
Industrial Wastewater Treatment and Advanced Oxidation Processes
Biogas and Landfill Gas Hydrogen Sulfide Removal
식품 가공 시설, 폐수 처리장, 동물 사체 처리 시설, 화학 제품 생산 업체 및 폐기물 처리장에서는 모두 황화수소, 암모니아, 머캅탄, 아민 및 다양한 복합 유기 악취 물질을 함유한 악취가 나는 배출물을 방출합니다. 이러한 오염 물질은 대기 중으로 배출되기 전에 적절한 처리를 거쳐야 하며, 이는 대기 질 관련 환경 기준을 충족할 뿐만 아니라 인근 주거 지역에 미치는 영향을 최소화하기 위함이기도 합니다.
일반적으로 사용되는 처리 시스템으로는 고정층 활성탄 흡착기, 충진탑 스크러버, 화학 물질을 함침시킨 탄소로 구성된 여과 매체 등이 있습니다. 이러한 기술은 산업 배기가스에서 악취 유발 성분을 효율적으로 포집 및 제거하여, 시설이 배출 허가 기준을 준수하고 지역사회와의 긍정적인 관계를 유지하면서, 규정을 준수하는 지속적인 운영을 보장할 수 있게 해줍니다.
Ozone Decomposition in Water and Air Treatment Systems
Industrial Process Gas Purification and Odor Control
Our Catalytic Activated Carbon Advantages
Catalytic Decomposition Beyond Standard Adsorption
Compared to traditional active carbon which only absorbs pollutants, FCC active carbon chemically destroys chloramines, ozone, and sulfides on the carbon surface — providing deeper purification performance with no additional chemical dosage or supplementary processing phases.
Extended Service Life That Reduces Replacement Costs
Catalyst degradation can turn oxidizing agents into benign by-products with no loss of absorption capability or degradation of pore structure – enabling a carbon bed to remain at its peak for much longer than a standard class, decreasing the substitution rate and reducing overall processing operation costs.
Drop-In Compatibility with Existing GAC Filter Systems
Provided in a standardized particle format compatible with the usual GAC requirements, FCC Active Carbon is installed straight into an existing filter container and a touch absorber – providing significant improvements in performance with no need to invest in the new facility or to disrupt operations in the course of the conversion.
모든 활성탄 카테고리 보기
모든 산업용 솔루션 보기
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신뢰할 수 있는 물류 파트너사와 협력하여 해상, 항공 및 육상 화물에 대한 유연한 배송 시스템을 제공합니다. 전 세계 목적지까지 신속하고 안전한 운송을 보장합니다.
주문 및 지원 전담 조정
당사는 주문 확정부터 최종 출하에 이르기까지의 전 과정을 추적하고 기록할 수 있도록 특별한 지원을 제공합니다. 공급망 운영의 성공을 보장하기 위해 기술 및 물류 지원을 제공합니다.
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