Compressed Bio Gas (CBG) is a renewable energy source that can be produced through the anaerobic digestion of a wide range of organic materials including plant materials, food waste and various agricultural by-products. Micro-organisms in anoxic condition decompose organic matter and produce a biogas that contains a heavy concentration of methane and carbon dioxide. This biogas can then be upgraded to remove the carbon dioxide and other biogas impurities and contaminants to produce a biogas that is much more enriched in methane. The processed gas can then be compressed to make it more convenient and efficient to store and transport. Compressed Biogas (CBG) is much more aligned with clean energy resources as compared to conventional fossil fuels. The greenhouse gas emissions produced from the burning of CBG in vehicles, generators, and heaters is substantially lower as compared to fossil fuels. It is much more sustainable than fossil fuels and contributes to energy systems that are more sustainable than conventional fossil fuel energy systems. CBG is a clean fuel alternative that we utilize to produce an energy resource that is sustainable from organic waste to improve the ecosystem.
Production Process of Compressed Bio Gas (CBG) Using Napier Grass
1. Grow Napier Grass: Step one involves growing Napier grass in agricultural fields and leaving it to mature.
2. Harvest Napier Grass: Napier grass should then be harvested when it matures.
3. Napier Grass Pre-Treatment to Pulpy Biomass: Chopping the Napier grass into smaller sections assists in converting grass into a pulpy biomass. During this step, the fibrous structure of the biomass is reduced using either mechanized or chemical means in order to facilitate easier digestion.
4. Biomass Introduced to CSTR Digesters: The pulpy biomass is inserted into a Continuous Stirred-Tank Reactor (CSTR) digester. Inside the digester, the biomass is degraded by anaerobic microorganisms, which generates the byproduct raw biogas.
5. PSA Applied for Raw Biogas Purification: Raw biogas produced in the digester is comprised of a multitude of other gases, such as carbon dioxide, that need to be removed to leave a cleaner biogas. This is accomplished using Pressure Swing Adsorption (PSA) for biogas purification, allowing biomethane to be separated from biogas.
6. Biomethane Compression to 200-250 bar: After purification, the biomethane is compressed to a typical range of 200 – 250 bar.
7. CBG Storage in Pressurized Tanks: The last step of the biomethane process, also referred to as Compressed Bio Gas (CBG), entails CBG storage in high-pressure storage tanks. The tanks are designed specifically to contain the high-pressure gas for a set period of time, allowing for safe transportation of the biomethane as a renewable energy source.
This process makes the conversion of Napier grass for use as a renewable energy source to promote sustainable energy solutions.
Napier Grass: The Best for CBG
Of all the grass types suited for energy crops, Napier Grass is the most ideal for making Compressed Bio Gas (CBG). Napier Grass is extremely fast-growing, hardy, and resilient. Napier Grass can be cultivated in all types of climates, including those seen as marginal and even unsuited for normal crops. Easily seen, Napier Grass can be cultivated in unused patches of land and marginal and unsuited for conventional agriculture. Napier Grass does not compete for arable land with traditional crops. One of the biggest advantages of Napier Grass is that it can be harvested multiple times a growing season, often resulting in 4 or more cuttings a year per plot. Napier Grass can be cultivated and harvested for use in CBG year-round. The grass has a high biomass that is commonly suited for making CBG. The grass is also high in Hemicellulose and Cellulose making it exceptionally suited for anaerobic digestion. The grass also has a high Biomethane Potential. Growing Napier Grass for the production of CBG is the most efficient way of achieving the CBG production target. This positivity extends beyond the CBG production facility as it improves the overall sustainability of the bioenergy source Napier Grass.
Environmental Advantages of Using Napier Grass for CBG
There are several clear benefits of the use of Napier grass as Class I feedstock for CBG (Compressed Bio Gas) Productions. It provides a more sustainable and cost effective feedstock than cane and provides a methane gas diversion from the atmosphere and a valuable feedstock from the agricultural waste. Using CBG (Compressed Bio Gas) to transit Napier Grass provides a pathway for the greatest reduction in fossil fuel usage (therefore lowering the earth's carbon footprint) than any other feedstock used for conversion from a fossil fuel to a biofuels. Demonstrating the significant and creative potential of foregoing traditional greenhouse gas mitigation scenarios for the implementation of regenerative agriculture practices, Napier as CBG (Compressed Bio Gas) transforms otherwise unproductive land into 'energy crops' and minimizes the competition for food, thus improving global food security and energy production as a whole.
Global CBG Market Outlook
The CBG market has had tremendous growth over the past few years as a result of evolving environmental and technological concerns as well as government support for biogas production and compression.
- Market Size: According to market estimations, the global Compressed Biogas market's worth in 2023 is over 4.1 billion USD.
- Growth Rate: The market is expected to grow over a 2023-2030 period expending at 12% annually.
The current market for Compressed Biogas (CBG) remains prosperous with rapid advancements in renewable energy technologies and sustainable practices. As countries around the world develop means to achieve their climate goals to reduce harmful greenhouse gases, CBG is emerging as a leader in the renewable energy space. Because CBG can supplant fossil fuels and reduce the carbon footprint, markets for CBG are rapidly expanding to cover the transportation and power generation of industrial markets.
Europe and Asia-Pacific are currently leading the world with their policies and investment for the production and utilization of biogas. With improving technology for anaerobic digestion and biogas, market growth for CBG becomes even more attractive with efficient and cost-effective production. The boon is further improved with the introduction of a more favorable regulatory system, financial incentives, and subsidies.
Recently, with a focus on the growing demand for green energy, work has also focused on attracting private investors and energy companies. With the growing infrastructure for the collection, processing, and distribution of biogas, the availability and demand for CBG will also increase. With the world focus on the development and production of a more sustainable energy system, the expectation is that the CBG market will experience increased growth.
Conclusion
Constructing a Condensed Bio Gas (CBG) plant with Napier Grass, is a significant step toward enhancing energy sustainability and resilience. This initiative harnesses the underutilized potential of a high-energy yielding crop while supporting the world’s endeavors to reduce dependence on non-renewable energy. Stakeholders who build such a plant will benefit from the economic and environmental advantages of meeting the market’s need for more sustainable energy. This plant showcases a resilient business approach with the conversion of a waste product into an economically and environmentally valuable product. It will also create a new value for the waste product, improve employment, and boost the local economy.
Key Players
- Aerzen
- Air Liquide Energies
- Atlas Copco AB
- EnviTec Biogas AG
- Gazpack
- Mehrer Compression GmbH
- Reliance Industries Limited
- Wartsila
- NEUMAN & ESSER GROUP
| Plant capacity | Plant & machinery | Working capital | Cost of Project | T.C.I | Return | Break even |
|---|---|---|---|---|---|---|
| Compressed Bio Gas 750 MT Per Annum By Product Liquid Fertilizer 7,800 MT Per Annum By Product Dry Solid Fertilizer 3,000 MT Per Annum | 421 | N/A | 950 | 28 | 56 |