脱硝活性炭

Buy DeNOx Activated Carbon

It mainly removes nitrogen oxides (NOₓ) through adsorption, catalysis and synergistic effects. Its porous structure and surface functional groups can directly adsorb NO₂, or catalyze the reaction of NOₓ with reducing agents (such as NH₃) at low temperatures to generate N₂; it can also be combined with the desulfurization process to simultaneously adsorb SO₂ and NOₓ and regenerate and recover sulfur resources.

業界の課題

Adsorption Capacity Limitation

Catalyst Poisoning

Reproduction Challenge

Economic and Scale-related Obstacles

By-product Management

活性炭の種類

颗粒活性炭(粒状活性炭)
  • ヨウ素価:600-1200
  • メッシュサイズ:1×4/4×8/8×16/8×30/12×40/20×40/20×50/30×60/40×70 (その他のサイズはお問い合わせください)
  • 見かけ密度400-700
柱状活性炭
  • ヨウ素価:500~1300
  • 網のサイズ: 0.9-1mm/1.5-2mm/3-4mm/6mm/8mm (より多くのサイズは要求あり次第)
  • 見かけ密度450-600
粉末活性炭(粉末活性炭)
  • ヨウ素価:500~1300
  • メッシュサイズ:150/200/300/350 (ご要望によりその他のサイズも可能)
  • 見かけ密度450 - 550
蜂窝活性炭(ハニカム活性炭)
  • ヨウ素価400-800
  • メッシュサイズ: 100×100×100mm/100×100×50mm (セル密度はご要望に応じます)
  • 見かけ密度350-450
  • ボア径:1.5-8mm
  • ヨウ素価:700~1200mg/g
  • 表面積700-1200 m²/g
  • 見かけ密度320-550 kg/m³
  • ヨウ素価:700~1200mg/g
  • 表面積700-1200 m²/g
  • 見かけ密度320-550 kg/m³
石炭系活性炭
  • ヨウ素価:700~1200mg/g
  • 表面積700-1200 m²/g
  • 見かけ密度300-650 kg/m³
  • ヨウ素価:700~1200mg/g
  • 表面積700-1200 m²/g
  • 見かけ密度320-550 kg/m³
  • 活性化方法高温でのスチーム/ガス活性化
  • 細孔構造:マイクロポーラス支配、均一な細孔分布
  • 環境プロフィール化学薬品不使用、低灰分
  • 主な用途気相吸着、飲料水浄化
  • 活性化方法:適度な温度での化学的活性化(例:H₃PO₄/ZnCl₂)
  • 細孔構造:メソポーラスリッチ、高表面積
  • プロセス効率:より短い活性化時間、30-50% より高い収率
  • 後処理:残留物を除去するために酸洗いが必要
  • 官能基化:活性剤を添加(例:I₂/Ag/KOH)
  • ターゲット吸着:特定の汚染物質(例:Hg⁰/H₂S/ 酸性ガス)の捕獲強化
  • カスタマイズ対象汚染物質に化学的に最適化
  • コアアプリケーション工業用ガス処理、CBRN防護

当社の活性炭を使用する理由

advanced

Outstanding Material Properties:

1. High specific surface area (1200 - 1500 m²/g): The pore structure is well-developed, and the adsorption capacity is increased by more than 30% compared to ordinary activated carbon, significantly extending the regeneration cycle.

2. Customized modification for NOₓ removal: Loaded with Cu/Fe nanoparticles, the catalytic efficiency at low temperatures (100 - 200℃) is over 90%. For the co-processing of SO₂: The surface with basic functional groups is modified, and the sulfur content exceeds 300 mg/g.

3. High mechanical strength: The wear resistance is enhanced by 50%, reducing the pulverization loss in the moving bed process.

recycle

Environmental Protection and Sustainability:

1. Green production: Utilizing coconut shell/biomass raw materials, the carbon footprint is reduced by 50%.

2. Resource recovery output: The desulfurization by-product can be recycled to 98% concentrated sulfuric acid (in line with industrial standards). The waste activated carbon can be incinerated for high calorific value, which may be utilized for resource recovery.

sketch

Adaptability of Innovative Processes:

1. Multi-scenario solution, integrating desulfurization and denitrification, biological activated carbon method, oxidation absorption method, and intelligent regeneration technology. This comprehensive approach ensures high-efficiency pollutant removal across various industrial emissions, adapting to fluctuating loads and stringent environmental standards.

2. Intelligent regeneration technology: Equipped with microwave regeneration equipment, the system reduces energy consumption by 60% compared to traditional thermal regeneration, while maintaining an activity recovery rate > 95%. This sustainable regeneration process minimizes operational costs and extends the lifespan of activated carbon, ensuring long-term economic and environmental benefits.

プロセスと技術

1. Activated Carbon Adsorption Method

ソリューションの概要

The denitrification by activated carbon adsorption mainly relies on its porous structure for physical adsorption of nitrogen oxides (the adsorption effect of NO₂ is better than that of NO). At the same time, it utilizes surface functional groups or loaded metal catalysts to oxidize NO into NO₂ and convert it into nitrate, or reduce NOₓ to nitrogen gas (N₂) under the action of a reducing agent (such as NH₃).

Activated carbon adsorption method

主な利点

2. Activated Carbon Catalytic Reduction Method

ソリューションの概要

The activated carbon oxidation absorption method for denitrification is a two-step process that combines catalytic oxidation and chemical absorption. Through the catalytic action of activated carbon, the insoluble NO is converted into the more manageable NO₂, and then this substance is converted into nitrate or nitrite by the absorption liquid.

Activated Carbon Catalytic Reduction Method

主な利点

3. Activated Carbon Oxidation Absorption Method

ソリューションの概要

The activated carbon oxidation absorption method for denitrification is a two-step process that combines catalytic oxidation and chemical absorption. Through the catalytic action of activated carbon, the insoluble NO is converted into the more manageable NO₂, and then this substance is converted into nitrate or nitrite by the absorption liquid.

Activated carbon oxidation absorption method

主な利点

4. Combined Desulfurization and Denitrification Process

ソリューションの概要

The combined desulfurization and denitrification process is an integrated flue gas purification technology that simultaneously removes SO₂ and NOₓ through a single system. Among them, activated carbon serves as the core medium to achieve efficient denitrification.

Combined desulfurization and denitrification process

主な利点

5. Biological Activated Carbon Method

ソリューションの概要

The biological activated carbon method for denitrification is a green technology that combines activated carbon adsorption with microbial degradation. Through the dual effects of "physical enrichment and biological transformation", nitrogen oxides (NOₓ) are ultimately converted into harmless nitrogen gas (N₂).

生物活性炭法

主な利点

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