Top Mounted Double Membrane Biogas Storage Tanks for Anaerobic Digestion Plants
Product Description
The anaerobic reactor, in conjunction with the double membrane gas holder positioned atop the reactor, forms a comprehensive Gas Production and Gas Storage System. This integrated biogas system is increasingly recognized as the prevailing construction model across European countries, where it has garnered extensive successful implementation experience.
In recent years, approximately 98% of newly established biogas projects have adopted a cogeneration approach that simultaneously produces heat, electricity, and fertilizer. This method not only maximizes resource utilization but also enhances overall energy efficiency by converting organic waste into valuable products. Among these projects, around 80% utilize an integrated anaerobic reactor design due to its effectiveness in optimizing biogas production while minimizing operational complexities.
The integration of these components allows for efficient digestion of organic materials under anaerobic conditions—where microorganisms break down biodegradable material without oxygen—resulting in the generation of biogas primarily composed of methane and carbon dioxide. The Top mounted Double Membrane Biogas Storage Tanks for Anaerobic Digestion Plants plays a crucial role in this system by safely storing the produced biogas until it is needed for energy generation or other applications.
The Top mounted Double Membrane Biogas Storage Tanks for Anaerobic Digestion Plants offers several advantages over traditional methods. It reduces greenhouse gas emissions by capturing methane that would otherwise be released into the atmosphere during decomposition processes. Additionally, it provides a sustainable solution for managing agricultural waste and other organic materials while contributing to local energy needs through renewable sources.
As Europe continues to advance its commitment to sustainability and renewable energy solutions, integrated systems like this are expected to play an essential role in achieving climate goals and promoting circular economy practices within various sectors including agriculture, waste management, and energy production. The success stories from existing installations serve as valuable references for future developments worldwide.
Main Technical Parameters
S/N | Items | Parameter Values |
1 | Capacity | Customized |
2 | Design pressure | 3mbar~20mbar |
3 | Operating pressure | 3mbar~15mbar |
4 | Outer membrane thickness | 0.74-1.20mm |
5 | Inner membrane thickness | 0.74~1.20mm |
6 | Max. wind load | 32.6m/s |
7 | Max. snow load | 30kg/m² |
8 | Applied temperature | -30℃ to +70℃ |
9 | Design service life | ≥20 years |
10 | Weld seam width | ≥70mm |
11 | Methane permeability | ≤200cm³ /m²·d·0.1MPa (23℃, 65% R.H.) |
12 | Flame retardancy | B1 |
13 | Warranty | 10 years |
14 | Country of Origin | China |
Advantages
- Light weight
- Conservation and environmental
- Easily repair & remove
- Advantageous anti-corrosion property
- Better shockproof and shock resistant ability than Enamel tank
- Free equipment operation training
- Standardization, serialization, wide range of selection
- Modern method of production
- Certificate of originate, ISO 9001
- Design Life time: 25 years
Information Needed for Pricing
Pricing varies depending on capacity required, operating pressure and gas production and utilization rates. Quotations are provided within 48 hours of request when accompanied by minimum required specification data.
Minimum specification data required in order to provide a quote:
1. Required Gas Storage Capacity (m³)
2. Operating Pressure (Kpa or mBar)
3. Gas Production & Utilization rates (m³/hr)
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