Entschwefelung Aktivkohle

Buy Desulfurization Activated Carbon

Due to its high specific surface area, abundant surface functional groups and controllable chemical properties, activated carbon has become an important material in the process of flue gas desulfurization (such as in coal-fired power plants and steel sintering).

Herausforderungen für die Industrie

Limited Adsorption Capacity

Competitive Adsorption and Poor Selectivity

Catalyst Poisoning and Short Lifespan

Dust Blockage and Mechanical Wear

By-product Treatment

verwandte Arten von Aktivkohle

颗粒活性炭(granulare Aktivkohle)
  • Jodwert: 600-1200
  • Maschenweite: 1×4/4×8/8×16/8×30/12×40/20×40/20×50/30×60/40×70 (weitere Größen auf Anfrage)
  • Scheinbare Dichte: 400-700
Säulenförmige Aktivkohle
  • Jodwert: 500-1300
  • Maschenweite:0,9-1mm/1,5-2mm/3-4mm/6mm/8mm(Weitere Größen auf Anfrage)
  • Scheinbare Dichte: 450-600
粉末活性炭(Pulver-Aktivkohle)
  • Jodwert: 500-1300
  • Maschenweite: 150/200/300/350 (weitere Maschenweiten auf Anfrage)
  • Scheinbare Dichte: 450 - 550
蜂窝活性炭(Aktivkohle mit Wabenstruktur)
  • Jodwert: 400-800
  • Maschenweite: 100×100×100mm/100×100×50mm (kundenspezifische Zelldichte auf Anfrage)
  • Scheinbare Dichte: 350-450
  • Bohrungsdurchmesser:1,5-8mm
  • Jodwert: 700-1200 mg/g
  • Oberfläche: 700-1200 m²/g
  • Scheinbare Dichte: 320-550 kg/m³
  • Jodwert: 700-1200 mg/g
  • Oberfläche: 700-1200 m²/g
  • Scheinbare Dichte: 320-550 kg/m³
Aktivkohle auf Kohlebasis
  • Jodwert: 700-1200 mg/g
  • Oberfläche: 700-1200 m²/g
  • Scheinbare Dichte: 300-650 kg/m³
  • Jodwert: 700-1200 mg/g
  • Oberfläche: 700-1200 m²/g
  • Scheinbare Dichte: 320-550 kg/m³
  • Aktivierungsverfahren: Dampf-/Gasaktivierung bei hohen Temperaturen
  • Porenstruktur: Mikroporös-dominiert, gleichmäßige Porenverteilung
  • Umweltfreundliches Profil: Chemikalienfrei, niedriger Aschegehalt
  • Primäre Anwendungen: Gasphasenadsorption, Trinkwasseraufbereitung
  • Aktivierungsverfahren: Chemische Aktivierung (z. B. H₃PO₄/ZnCl₂) bei moderaten Temperaturen
  • Porenstruktur: Mesoporös-reich, größere Oberfläche
  • Prozess-Effizienz: Kürzere Aktivierungszeit, 30-50% höhere Ausbeute
  • Nachbehandlung: Saures Waschen erforderlich, um Rückstände zu entfernen
  • Funktionalisierung: Beladen mit Wirkstoffen (z. B. I₂/Ag/KOH)
  • Gezielte Adsorption: Verbesserte Abscheidung bestimmter Schadstoffe (z. B. Hg⁰/H₂S/saure Gase)
  • Individuelle Anpassung: Chemisch optimiert für Zielkontaminanten
  • Hauptanwendungen: Industrielle Gasbehandlung, CBRN-Schutz

Warum unsere Aktivkohle verwenden?

Industry-leading Sulfur Adsorption Capacity

Ultra-high sulfur capacity: Utilizing nanometer-sized pore control technology, the sulfur capacity reaches 150-200mg/g (while that of ordinary carbon is only 50-80mg/g)

Anti-degradation Formula

When operating continuously under SO₂ > 2000ppm conditions for 3 months, the efficiency remains > 92%

Skizze

Revolutionary Regenerative Technology

Microwave-ultrasonic combined regeneration system: Regeneration energy consumption < 600 kWh/ton, loss rate of activated carbon < 3%. The SO₂ recovered during the regeneration process can be used to produce 98% concentrated sulfuric acid, with purity meeting industrial standards.

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Comprehensive Technical Support Throughout the Entire Process

We provide end-to-end technical assistance, covering everything from initial project assessment to on-site deployment and post-operation analysis. Our expert team ensures smooth system integration, operational stability, and ongoing optimization tailored to your specific chemical application needs.

Verfahren und Technologie

1. Activated Carbon Adsorption Desulfurization

Überblick über die Lösung

Activated carbon adsorption desulfurization is a technology that utilizes the physical and chemical adsorption properties of activated carbon to remove sulfur dioxide (SO₂) from flue gas or waste gas. It can efficiently capture SO₂ and convert it through catalytic oxidation into sulfuric acid (H₂SO₄) or other sulfides. Finally, sulfur removal and utilization can be achieved through regeneration or resource recovery.

Activated carbon adsorption desulfurization

Die wichtigsten Vorteile

2. Activated Carbon Catalytic Oxidation Desulfurization

Überblick über die Lösung

Activated carbon catalytic oxidation desulfurization is an advanced desulfurization technology that utilizes activated carbon as a catalyst carrier. Through chemical catalytic action, it oxidizes sulfur dioxide (SO₂) in the flue gas into sulfur trioxide (SO₃) and further converts it into sulfuric acid (H₂SO₄).

Activated carbon catalytic oxidation desulfurization

Die wichtigsten Vorteile

3. Activated Carbon Combined with Desulfurization and Denitrification

Überblick über die Lösung

The activated carbon combined with desulfurization and denitrification technology is an advanced flue gas purification technology based on the adsorption and catalytic properties of activated carbon, which can simultaneously remove SO₂ and NOₓ from flue gas through a single system.

Activated carbon combined with desulfurization and denitrification

Die wichtigsten Vorteile

4. Activated carbon - Ozone Oxidation Method

Überblick über die Lösung

The activated carbon-ozone oxidation method is an advanced flue gas purification technology that combines the strong oxidizing property of ozone (O₃) with the adsorption/catalytic characteristics of activated carbon. It can efficiently and synergistically remove SO₂ and NOₓ, and is particularly suitable for treating complex industrial flue gas.

Activated carbon - ozone oxidation method

Die wichtigsten Vorteile

5. Microwave/Ultrasonic Regeneration Method

Überblick über die Lösung

Activated carbon regeneration is a crucial step in environmental protection processes such as desulfurization, denitrification, and VOCs treatment. The microwave and ultrasonic regeneration technologies, due to their high efficiency, energy conservation, and low energy consumption, are gradually replacing the traditional thermal regeneration methods.

Microwave_Ultrasonic Regeneration Method

Die wichtigsten Vorteile

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