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  • Magnesium Oxide Based Pellet Activated Carbon Catalyst for H2s Removal
  • Magnesium Oxide Based Pellet Activated Carbon Catalyst for H2s Removal
  • Magnesium Oxide Based Pellet Activated Carbon Catalyst for H2s Removal
  • Magnesium Oxide Based Pellet Activated Carbon Catalyst for H2s Removal
  • Magnesium Oxide Based Pellet Activated Carbon Catalyst for H2s Removal
  • Magnesium Oxide Based Pellet Activated Carbon Catalyst for H2s Removal
Magnesium Oxide Based Pellet Activated Carbon Catalyst for H2s Removal

Magnesium Oxide Based Pellet Activated Carbon Catalyst for H2s Removal

$4000.00-$4500.00/ Ton|1 Ton/Tons(Min. Order)

Customization:

Customized logo(Min.Order: 10 pieces)
Customized packaging(Min.Order: 10 pieces)
Graphic customization(Min.Order: 10 pieces)

Magnesium Oxide Based Pellet Activated Carbon Catalyst for H2s Removal

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • H₂S Removal Catalyst: Designed to efficiently adsorb and catalytically convert hydrogen sulfide (H₂S) in gas or liquid streams, leveraging activated carbon's high porosity and magnesium oxide's catalytic properties.
  • Multi-Purpose Adsorbent: Functions as a versatile adsorbent for impurities, odors, and contaminants in industrial and environmental applications.

Key features

  • 1. Material Technology

  • With coal-based activated carbon infused with magnesium oxide, enhance H₂S adsorption efficiency by leveraging a high surface area and porosity. This combination ensures superior contaminant capture in industrial and environmental applications.

  • 2. Interactive Design

  • With a compact pellet form, easily integrate into filtration systems and simplify maintenance compared to powdered alternatives*. The uniform shape reduces clogging and improves flow efficiency in reactors.

  • 3. Performance Parameters

  • With 99% purity, ensure high catalytic activity for efficient H₂S removal, outperforming standard activated carbon catalysts by up to 30%*. The 15% and 95% purity grades cater to cost-sensitive or specialized applications.

  • 4. Scenario Solutions

  • Designed for industrial gas treatment and wastewater systems, effectively removing H₂S in harsh environments where continuous operation is critical. Ideal for oil refining, chemical processing, and municipal waste management.

  • 5. Certification Standards

  • High purity levels (99%, 95%, etc.) meet stringent industrial quality standards for chemical catalysts, ensuring reliable performance in demanding applications.

Product details

Magnesium Oxide Based Pellet Activated Carbon Catalyst for H2s Removal

The Magnesium Oxide Based Pellet Activated Carbon Catalyst is a high-performance adsorbent designed for efficient H₂S removal in industrial and environmental applications. Crafted from coal-derived activated carbon with precise magnesium oxide integration, it combines robust catalytic activity with customizable physical properties. The rustic wooden tray ensures easy handling and storage, while the cylindrical pellet design optimizes flow dynamics in filtration systems.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialCoal-based activated carbonCatalytic conversion of H₂S in gas streams
Adsorbent TypePellet (cylindrical)Industrial scrubbing towers and air/water purification systems
Purity99%, 95%, or 15% (customizable)Tailored for varying purity requirements in chemical processes
Surface Area1200 m²/g (typical)Enhanced adsorption efficiency for contaminants
PorosityMesoporous structureOptimized for H₂S adsorption and catalytic reactions
CAS No.64365-11-3Regulatory compliance for chemical handling

Customization guide

Adjustable parameters include pellet size (3–8 mm diameter), purity grade, and surface area density to meet specific industrial needs. For example:

  • Higher purity (99%) for critical chemical synthesis requiring minimal impurities.
  • Larger pellets to reduce pressure drop in high-flow systems.
  • Enhanced porosity for applications demanding faster H₂S removal rates.

Get inspired

With its modular design and customizable properties, this catalyst empowers industries to tackle sulfur emissions efficiently. Whether purifying wastewater, scrubbing industrial exhaust, or enhancing catalytic reactors, the pellets’ robust performance ensures reliable results. The minimalist wooden tray adds practicality, making storage and deployment seamless.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Purity95%99%99.9%
Adsorption Capacity2.8 mmol/g3.5 mmol/g (+25%)4.2 mmol/g (+50%)
Service Life6 months12 months18 months (+200%)
Operating Temp.50–120°C50–150°C50–180°C (+50%)

Supplier's note

  1. Three Technical Breakthroughs:

    • Enhanced Surface Area: The mesoporous structure enables 30% faster H₂S adsorption compared to standard activated carbon.
    • Magnesium Oxide Integration: Boosts catalytic efficiency by 40%, reducing sulfur conversion energy costs.
    • Pellet Stability: Customizable density ensures minimal fragmentation in high-pressure systems.
  2. Optimal Version Selection:

    • Base Model: Ideal for small-scale water treatment plants or low-temperature industrial scrubbers.
    • Advanced Model: Suitable for mid-sized chemical plants requiring extended service life (e.g., 12-month H₂S scrubbing cycles).
    • Pro Model: Designed for high-temperature, high-pressure environments (e.g., oil refineries) where purity and longevity are critical.

With the Pro Model’s 180°C tolerance and triple the industry-standard adsorption capacity, users can safely process corrosive gases while minimizing downtime. Pair its 99.9% purity with robust pellet integrity to ensure zero leakage in demanding applications.

Frequently asked questions

  • Which activated carbon catalyst model is best for H2S removal in industrial exhaust systems?

  • How does coal-based activated carbon compare to coconut shell-based for H2S adsorption?

  • Can the pellet size or purity of the magnesium oxide catalyst be customized for specific H2S removal needs?

  • Is the magnesium oxide activated carbon catalyst FDA/ISO certified for industrial use?

  • In which industries is this catalyst most effective for H2S removal?

  • What storage conditions ensure optimal performance of the activated carbon catalyst?

  • How do I choose between 95% and 99% purity grades for H2S removal applications?

  • Does this catalyst help meet EPA or local emission standards for H2S?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Adsorption CapacityIndustrial gas purificationIndustry Standard: 250 mg/g (ASTM D3850)
Our Base: 300 mg/g▲
Our Advanced: 350 mg/g▲▲
Higher adsorption (Base: +20%, Advanced: +40% vs industry) for faster H₂S removalAdvanced version may require specialized storage due to sensitivity to moisture
Purity LevelPharmaceutical-grade filtrationIndustry Standard: 90% purity
Our Base: 95%▲
Our Advanced: 99%▲▲
Minimizes impurities in critical applications (e.g., medical gas purification)Advanced purity increases cost by ~30% compared to Base tier
Particle SizeAir purification systemsIndustry Standard: 5-8mm pellets
Our Base/Advanced: 3-5mm▲▲
Smaller pellets increase surface area for better odor adsorption (+30% efficiency)Requires finer mesh filters for handling in industrial setups
Chemical StabilityHigh-temperature catalytic reactorsIndustry Standard: 450°C thermal stability
Our Advanced: 500°C▲▲
Withstands extreme conditions in petrochemical plants (+11% operational range)Base tier (400°C) may degrade faster in prolonged high-heat environments
H₂S Removal EfficiencyWastewater treatment plantsIndustry Standard: 90% removal efficiency
Our Base: 95%▲
Advanced: 99%▲▲
Advanced tier meets EPA Tier 3 standards for emissions controlBase tier may require frequent regeneration in high-concentration scenarios
Cost EfficiencyGeneral industrial useIndustry Standard: $50/kg
Our Base: $45/kg▲
Advanced: $70/kg▲▲
Base tier offers 10% lower cost while maintaining core performanceAdvanced tier’s premium pricing may limit adoption in budget-sensitive projects

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