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High Capacity Double Membrane Gas Holder with Customized Size and Automatic Control for Biogas Storage

High Capacity Double Membrane Gas Holder with Customized Size and Automatic Control for Biogas Storage

MOQ: 1 SET
Price: Please contact us
Standard Packaging: Standard export wooden box
Delivery Period: 5~45 days
Payment Method: L/C,T/T,Western Union
Supply Capacity: 20 sets per month
Detail Information
Place of Origin
CHINA
Brand Name
MDS
Certification
CE, ISO9001:2015
Model Number
MDS-GMGH3000
Installation:
Easy And Fast
Process Type:
Anaerobic Reaction
Operating Temperature:
-30℃ To 70℃
Control Mode:
Automatic Control
Size:
Customized
Application:
Biogas Storage For Agricultural, Industrial, And Municipal Use
Pressure Range:
3mbar~25mbar
Support Structure:
Galvanized Steel Or Stainless Steel
Gas Storage:
High Gas Storage Efficiency
Function:
Store And Collect Biogas
Structure Type:
Double Membrane
Installation Duration:
8-15 Days
Installation Method:
On-site Assembly
Highlight:

High Capacity Double Membrane Gas Holder

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Customized Size Biogas Storage Balloon

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Automatic Control Flexible Membrane Gas Holder

Product Description
High Capacity Double Membrane Gas Holder Suitable for Large Scale Biogas Plants and Sustainable Energy Production Facilities
Double Membrane Gas Holder: The Complete Guide to Reliable Biogas Storage
Double membrane gas holder installation at industrial biogas facility

Safe, scalable, and corrosion-free gas storage for biogas plants, wastewater facilities, and landfill gas recovery — engineered for the renewable energy era.

Airtight Membrane Seams
15-20+ Year Life
Near-Atmospheric & Safe
What Is a Double Membrane Gas Holder?

A double membrane gas holder is a flexible, gas-tight storage system used to hold biogas (or other low-pressure gases) above or adjacent to an anaerobic digester or gas tank. As the name suggests, it is built from two (sometimes three) concentric membrane layers made of durable, UV- and chemical-resistant technical fabrics.

Unlike rigid steel tanks that store gas under pressure, a double membrane gas holder stores gas at near-atmospheric pressure, using the weight and shape of the membrane itself to maintain a stable, controlled gas volume. The result is a lightweight, leak-resistant, and remarkably low-maintenance storage solution.

Common names: double membrane gas storage • membrane biogas holder • biogas gas holder / biogas dome • gas storage balloon • flexible membrane gas holder.

How Does a Double Membrane Gas Holder Work?

The system uses two separate membranes, each with a distinct job:

  • Inner membrane (gas membrane): Forms the actual gas storage volume. As biogas flows in from the digester, the inner membrane inflates; as gas is drawn off, it deflates.
  • Outer membrane (weather membrane): Encloses and protects the inner membrane from wind, rain, snow, and UV. A small constant air pressure in the gap (the "air chamber") keeps the outer membrane rigid and stable.
Why this design wins
  • Gas never contacts the outside environment → minimal leakage and odor
  • The air chamber isolates stored gas from weather loads → stable pressure
  • No moving mechanical seals → fewer failure points

A pressure control system (blower + relief valves) keeps everything within a safe operating window — typically just a few millibars, perfect for sensitive downstream biogas equipment.

7 Key Benefits of a Double Membrane Gas Holder
  • Superior gas tightness: Welded seams achieve extremely low leakage rates, protecting the environment and your revenue.
  • Cost-effective vs. steel: Fabric construction is lighter and cheaper to transport and install, especially for large volumes.
  • Corrosion-free by design: Technical membrane fabrics don't rust like steel — longer life, lower upkeep.
  • Flexible capacity: Expands and contracts with daily gas production, smoothing generation vs. demand.
  • Fast, simple installation: Prefabricated lightweight panels; no heavy cranes or on-site welding of giant shells.
  • Excellent safety profile: Near-atmospheric operation means far less stored energy than a pressurized vessel.
  • Weather & UV resistance: Engineered for decades of sun, wind, and freeze-thaw; optional snow/hurricane ratings.
Double Membrane Gas Holder vs. Traditional Steel / Fixed-Roof Tanks
Feature Double Membrane Gas Holder Traditional Steel Gasholder
Weight Very light (fabric) Heavy (tons of steel)
Corrosion Immune to rust Requires coatings, repainting
Installation Fast, crane-light Slow, welding-heavy
Pressure Near-atmospheric, stable Higher, needs pressure vessels
Upfront cost Lower Higher
Maintenance Low Moderate to high
Best for Large biogas volumes High-pressure / special cases

Bottom line: For the vast majority of biogas, landfill, and agricultural applications, the double membrane gas holder wins on cost, safety, and lifespan.

Where Double Membrane Gas Holders Are Used
  • Biogas plants: Stabilizing gas from anaerobic digestion of agricultural and food waste.
  • Wastewater treatment: Covering digesters and storing digested biogas for CHP or grid injection.
  • Landfill gas recovery: Storing collected methane before flare or utilization.
  • Agriculture & dairy: On-farm digesters turning manure into energy.
  • Industrial & food: Capturing process gases for reuse.
  • Municipal waste: Integrated into waste-to-energy systems.
Materials, Selection & Maintenance
Materials & construction quality
  • Outer membrane: High-strength polyester with PVC/PVDF coating, UV-stabilized, anti-fungal treated.
  • Inner membrane: Gas-tight, biogas-resistant fabric with HF welded seams.
  • Anchoring: Steel clamping rings and concrete foundations distribute loads safely.
  • Optional 3rd membrane: Added protection layer for aggressive or high-purity gas.
How to choose the right holder
  • Storage volume (m³) — based on daily gas yield and required buffer.
  • Operating pressure (mbar) — match to downstream equipment.
  • Gas composition — H₂S and moisture drive material choice.
  • Site conditions — wind speed, snow load, seismic zone.
  • Integration — roof-mounted, tank-top, or ground-based.
Installation & maintenance

Installation: foundation → anchor ring → inner membrane → outer membrane → blower & control panel → leak-pressure test. Most systems are operational within days. Maintenance is light: periodic seam/anchor inspection, blower & sensor checks, occasional cleaning — no repainting, no rust battles.

Cost considerations

Double membrane gas holders deliver a lower total cost of ownership than steel alternatives thanks to cheaper install and minimal maintenance. Always compare lifetime cost, not just the upfront quote.

Frequently Asked Questions

What is a double membrane gas holder used for?
It stores biogas and other low-pressure gases safely at near-atmospheric pressure, commonly at biogas plants, wastewater facilities, and landfill gas sites.

How long does a double membrane gas holder last?
With quality membranes and proper maintenance, service life typically ranges from 15 to 20+ years, depending on UV exposure and gas conditions.

Is a double membrane gas holder safe?
Yes. Because it operates at near-atmospheric pressure, stored energy is minimal, and the gas is fully enclosed — making it inherently safer than pressurized steel vessels.

Double membrane gas holder vs. steel tank — which is better?
For most biogas volumes, the membrane holder is cheaper, lighter, corrosion-free, and faster to install. Steel remains relevant only for specialized high-pressure needs.

Can it handle harsh weather?
Modern membranes are engineered for high wind, snow load, and UV. Site-specific ratings (e.g., hurricane- or snow-rated) are available.