촉매 활성탄

Buy Catalytic Activated Carbon

Catalytic Activated Carbon (CAC) is a porous material that possesses both adsorption function and catalytic activity. It is widely applied in various fields such as environmental treatment (desulfurization, denitrification, VOCs treatment), chemical synthesis (catalytic hydrogenation, oxidation reactions), and energy conversion (fuel cells, energy storage).

업계 과제

Technical Performance Bottleneck

Engineering Application Challenges

Control of By-products

Challenges of Cutting-edge Technologies

관련 활성탄 유형

颗粒活性炭(입상 활성탄)
  • 요오드 값: 600-1200
  • 메시 크기: 1×4/4×8/8×16/8×30/12×40/20×40/20×50/30×60/40×70(요청 시 추가 크기 제공)
  • 겉보기 밀도: 400-700
알약형 활성탄
  • 요오드 값: 500-1300
  • 메쉬 크기: 0.9-1mm/1.5-2mm/3-4mm/6mm/8mm(요청 시 추가 크기 제공)
  • 겉보기 밀도: 450-600
粉末活性炭(분말 활성탄)
  • 요오드 값: 500-1300
  • 메시 크기: 150/200/300/350 (요청 시 추가 크기 제공)
  • 겉보기 밀도: 450 - 550
蜂窝活性炭(벌집 활성탄)
  • 요오드 값: 400-800
  • 메시 크기: 100×100×100mm/100×100×50mm(요청 시 맞춤형 셀 밀도)
  • 겉보기 밀도: 350-450
  • 보어 직경: 1.5-8mm
  • 요오드 값: 700-1200 mg/g
  • 표면적: 700-1200 m²/g
  • 겉보기 밀도: 320-550kg/m³
  • 요오드 값: 700-1200 mg/g
  • 표면적: 700-1200 m²/g
  • 겉보기 밀도: 320-550kg/m³
석탄 기반 활성탄
  • 요오드 값: 700-1200 mg/g
  • 표면적: 700-1200 m²/g
  • 겉보기 밀도: 300-650kg/m³
  • 요오드 값: 700-1200 mg/g
  • 표면적: 700-1200 m²/g
  • 겉보기 밀도: 320-550kg/m³
  • 활성화 방법: 고온에서 증기/가스 활성화
  • 기공 구조: 미세 다공성 위주의 균일한 기공 분포
  • 환경 프로필: 화학물질 무첨가, 낮은 회분 함량
  • 주요 응용 분야: 기체상 흡착, 식수 정화
  • 활성화 방법: 중간 온도에서 화학적 활성화(예: H₃PO₄/ZnCl₂)
  • 기공 구조: 메조다공성이 풍부하고 표면적이 높음
  • 공정 효율성: 활성화 시간 단축, 30-50% 더 높은 수율
  • 후처리: 잔여물 제거를 위한 산 세척 필요
  • 기능화: 활성제(예: I₂/Ag/KOH) 탑재
  • 표적 흡착: 특정 오염 물질(예: Hg⁰/H₂S/산성 가스)의 포집 강화
  • 맞춤화: 표적 오염 물질에 화학적으로 최적화
  • 핵심 애플리케이션: 산업용 가스 처리, 화생방 보호

활성탄을 사용해야 하는 이유

sketch

Precisely Customized Carrier Solutions:

1. Regarding environmental governance: Develop ultra-large mesoporous AC (with pore diameters ranging from 20 to 100 nm), which perfectly matches large-molecule enzymes such as laccase and peroxidase (enzyme loading > 400mg/g).

2. For medical applications: Ultra-pure medical-grade AC (ash content < 0.1%, no detection of heavy metals), certified by FDA/GMP.

3.For the food industry: Surface inert modification AC prevents the migration of impurities during the enzymatic catalysis process.

advanced (5)

Intelligent Production Control System:

1. AI-driven pore structure optimization: Using machine learning to predict the optimal pore size distribution, ensuring that the fluctuation in enzyme loading is less than ±3%.

2. Digital Twin Factory: The virtual simulation can predict the decline in catalyst performance 48 hours in advance, allowing customers to adjust production parameters in real time.

프로세스 및 기술

1. Metal-supported Catalytic Method

솔루션 개요

The metal-supported catalytic method involves loading active metal components (such as Pd, Pt, Cu, Fe, etc.) onto the surface of activated carbon. By leveraging the high specific surface area and abundant pore structure of activated carbon, combined with the catalytic activity of the metals, this technique enables efficient catalytic reactions.

Metal-supported catalytic method

주요 이점

2. Non-metallic Modified Catalytic Method

솔루션 개요

The non-metallic modified catalytic method is a technology that endows the surface of activated carbon with catalytic functions through chemical modification or element doping, without relying on precious metals.

Non-metallic modified catalytic method

주요 이점

3. Acid-base Catalysis Method

솔루션 개요

The acid-base catalysis method is a technology that utilizes the acidic or basic functional groups on the surface of activated carbon as catalytic active sites to facilitate chemical reactions.

Acid-base catalysis method

주요 이점

4. Light/Electro-catalytic Method

솔루션 개요

The photo/electro-catalysis method is a cutting-edge technology that combines activated carbon with photosensitive or conductive materials to drive catalytic reactions using external light energy or electrical energy.

Light_Electro-catalytic method

주요 이점

5. Biological Enzyme Immobilization Method

솔루션 개요

The immobilization of biological enzymes involves fixing free enzymes onto activated carbon through physical or chemical methods, thereby creating stable and reusable biological catalysts.

Biological enzyme immobilization method

주요 이점

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