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FERROLOX®-XG

Porous iron-lignin adsorber for hydrogen sulfide and industrial gas purification

Advanced Gas Adsorption

Capture troublesome impurities from complex gas streams

FERROLOX®-XG is a porous, iron-functionalized lignin-based adsorber developed primarily for hydrogen sulfide removal and the treatment of selected contaminants in industrial gas streams.

The brochure describes FERROLOX®-XG as a lignin-based porous organic material metallized with iron(III). Its combination of internal porosity, surface functionality and iron-based reactive sites is intended to capture hydrogen sulfide and potentially selected acidic gases and volatile organic compounds. The media is positioned for petroleum production, biogas, wastewater off-gas and other industrial applications requiring gas purification before use, discharge or downstream treatment.

High internal surface / Reactive gas capture

FERROLOX-XG Introduction

One porous media.
Multiple gas-treatment environments.

FERROLOX®-XG can be considered for fixed-bed treatment of H₂S-bearing and contaminated industrial gases. Each application requires compound-specific adsorption data and professional process design.

Biogas and Digester Gas

Targeted hydrogen sulfide removal for renewable energy and combined heat and power systems.

Oil and Gas Production

Gas sweetening and treatment in upstream and midstream petroleum operations.

Petrochemical Process Gas

Removal of sulfur compounds and acidic impurities from industrial chemical streams.

Wastewater Treatment Off-Gas

Scrubbing odorous H₂S emissions from municipal and industrial sewage facilities.

Landfill and Sewage Gas

Purification of collected landfill gas before energy recovery or flaring.

Industrial VOC-Bearing Air

Adsorption support for volatile organic compounds and gaseous emissions.

Four gas-purification functions within one porous adsorber

H₂S

Reactive hydrogen sulfide removal (SULFIDE-CAPTURE™)

Iron-functionalized adsorption sites provide affinity for hydrogen sulfide, supporting H₂S reduction from biogas, petroleum gas and wastewater-related gas streams.

LP

High-surface-area porous structure (LIGNIN-PORE™)

The lignin-derived organic structure is described as providing a BET surface area of approximately 1,880–2,000 m²/g, creating extensive internal surface for gas adsorption.

AG

Potential multi-gas adsorption (ACID-GAS™)

The brochure positions FERROLOX®-XG for H₂S, CO₂ and other acidic gases. However, capacities and breakthrough results are provided only in general terms and require compound-specific validation.

O₂

Application-specific oxidative treatment (OXY-RENEW™)

The brochure proposes an OXYDES-XG process for treating loaded media. Because oxygen contact with sulfur-loaded adsorbents can generate heat or ignition, any oxidative process requires dedicated engineering and safety validation.

Iron-functionalized lignin technology

FERROLOX®-XG combines a porous organic structure with iron-based active sites to provide multiple pathways for gas adsorption and reactive contaminant capture.

  • Lignin-Derived Porous Structure – The base material is a lignin-based porous organic polymer with an extensive internal adsorption surface.
  • Iron(III) Functionalization – The porous granules are metallized with iron(III), introducing reactive sites intended to improve adsorption and catalytic activity.
  • High Internal Surface Area – A published BET surface-area range of approximately 1,880–2,000 m²/g provides extensive potential contact area (requires analytical confirmation).
  • Fixed-Bed Gas Contact – Contaminated gas passes through a packed media bed, allowing target compounds to diffuse into the pore structure and interact with surface adsorption sites.
FERROLOX-XG Science and Technology
Product Specifications

Technical Data

Key properties and operating parameters for FERROLOX®-XG gas purification media.

Physical & Operating Parameters
Parameter / Property Published Specification
Media descriptionIron-functionalized lignin-based porous adsorber
BET surface areaApproximately 1,880–2,000 m²/g
Primary stated contaminantHydrogen sulfide
Media-bed heightApproximately 0.5–12 m
Bed pressure lossLess than 1–15 mbar
Pressure rangeAtmospheric to approximately 25 bar(g)
Empty-vessel contact timeApproximately 20 seconds–3 minutes
Minimum relative gas humidity40%
Preferred relative humidity60–80% (non-condensing)
Safety & Operational Notice

The brochure proposes oxygen-based treatment using OXYDES-XG, but warns that partially regenerated sulfur-containing granules may ignite when exposed to oxygen. Oxygen must never be introduced without an engineered, monitored and approved process.

Explore FERROLOX®-XG
gas-treatment technology

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Advanced H₂S Capture
August 2026

Advanced H₂S Capture

Iron-functionalized porous adsorption for contaminated gas streams.

Lignin-Based Porous Adsorbers
August 2026

Lignin-Based Porous Adsorbers

Transforming a renewable carbon structure into a high-surface-area media.

Biogas Purification
August 2026

Biogas Purification

Reducing hydrogen sulfide before gas utilization and downstream upgrading.

Industrial Off-Gas Treatment
August 2026

Industrial Off-Gas Treatment

Fixed-bed treatment for wastewater, petroleum and process-gas applications.

Gas Adsorption and Breakthrough
August 2026

Gas Adsorption and Breakthrough

Why contact time, humidity and contaminant concentration determine bed life.

Safe Media Management
August 2026

Safe Media Management

Temperature, oxygen and toxic-gas controls for sulfur-loaded adsorbents.

Frequently
Asked Questions

Important information about FERROLOX®-XG applications, operation and safety.

Contact Support
What is FERROLOX®-XG?
FERROLOX®-XG is described as an iron-functionalized, lignin-based porous adsorber developed for hydrogen sulfide and selected industrial gas contaminants.
What is its primary application?
The strongest application described in the brochure is hydrogen sulfide removal from petroleum, biogas, sewage, wastewater and industrial gas streams.
How is FERROLOX®-XG different from FERROLOX®-G?
FERROLOX®-G is an iron hydroxide-based pelletized H₂S purification media. FERROLOX®-XG is described as a high-surface-area lignin-based porous adsorber functionalized with iron.
How is it different from FERROLOX®-X?
FERROLOX®-X is presented for water treatment, while FERROLOX®-XG is positioned for gas-phase applications.
Can FERROLOX®-XG remove carbon dioxide?
The brochure mentions CO₂ removal but provides no CO₂ isotherm, working capacity, selectivity or breakthrough results. CO₂ performance must therefore be validated before publication or system design.
Can it remove all gases listed in the brochure?
No such universal claim should be made. Every gas requires compound-specific capacity, selectivity, breakthrough and safety data under representative conditions.
Why is relative humidity important?
Moisture can influence H₂S capture and surface reactions. The brochure specifies a minimum relative humidity of 40% and a preferred range of 60–80%, although condensation should be controlled.
What contact time is recommended?
The brochure publishes a broad empty-vessel contact-time range of approximately 20 seconds to 3 minutes. The correct value depends on the contaminant and required outlet concentration.
What is the expected H₂S capacity?
The brochure does not provide a validated H₂S capacity in g/kg. Capacity must be established through current laboratory or pilot-scale breakthrough testing.
Can the media be regenerated?
The brochure proposes an OXYDES-XG oxidative process, but it does not provide a complete validated protocol or cycle-life data. Regeneration should be treated as application-specific and experimental until supporting evidence is available.
Is oxygen regeneration safe?
It can create serious fire, explosion and toxic-gas-release hazards. Oxygen must never be introduced without an engineered system, thermal monitoring, gas controls, purging and a formal process-safety review.
How should spent media be handled?
Spent media may contain sulfur compounds and adsorbed toxic gases. It must be isolated, characterized and handled according to the SDS, site safety procedures and applicable waste and dangerous-goods regulations.

Build your FERROLOX®-XG purification system

It starts with a complete gas analysis.

Send us your gas-composition data, H₂S concentration, flow rate, moisture content, temperature and operating pressure. Our specialists will help evaluate FERROLOX®-XG for your industrial gas purification system.

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