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Bridgend, United Kingdom
1-10 Employees
We have two separate businesses (agricultural contracting and farming) filled with innovative and experienced professionals who can provide high-quality products and services at very competitive prices. Established in 1997, R & L Anthony is a family-run farming enterprise based in South Wales. With over 20 years of experience in both farming and the use of machinery, you can have the confidence that we will fulfil your requirements to the highest standard.
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Featured
Agricultural Contractors | Farming & Contracting | R & L Anthony Ltd
... Biomass Drying ...
East Hertfordshire, United Kingdom
51-100 Employees
2000
Stronga is a family-owned international business whose name is synonymous with quality in the design of innovative transport and energy systems. We have the experience to deliver high quality products and comprehensive business solutions for our customers. We strive for continuous improvement in our long life structures and the services we provide, building trust with customers by adding real value to their businesses.
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Featured
Continuous Biomass Drying Equipment | Stronga FlowDrya
... Continuous Biomass Drying Equipment | Stronga ...
Gurnee, United States
11-50 Employees
1891
Chicago Boiler was established in 1891 and from our humble beginnings our focus has been on quality and a desire to constantly improve. We are proud to have all of our product lines made in the USA. We are able to test every tank we make at our onsite lab, ensuring that your tank will perform exactly as designed. All our products are made right here in the United States and come with a 1 year warran-tee. Our media grinding mills are used by leading companies in industries including ink, paint, agro-chemical, electronics, and mineral processing. Our manufacturing facility is particularly well suited for both large and small projects, with multiple bays, portable welding equipment, in house CNC machining and water jet cutting and cranes thru-out the facility up to 25 tons. Since 1891, Chicago Boiler Company has taken pride in making sure all of our products meet our clients quality standards. We believe in helping our customers, no matter how big or small the job may be.
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Featured
Biomass Processing Systems
... At CB Mills the Biomass Drying System is a closed system used for drying the spent fibers and recovering the last remaining solvent to less than 0.04%. To know more contact us now. ...
Leiria, Portugal
51-100 Employees
1981
We are confident that a bright future awaits us. Leirimetal places great importance on its relationships with customers. Leirimetal takes this commitment seriously, and bases it on 4 cornerstones that we consider essential, at least, to our interpretation of QUALITY: 1) Accuracy in Engineering/Study; 2) Strict professionalism required of our Operatives; 3) Full Testing and Experimentation of the Solutions; 4) Direct and proactive After Sales Technical Assistance;. Later (1981), the founding of Leirimetal, with design and construction of machines and complete solutions for the structural ceramics industry. Different traditions, different products, raw materials with different characteristics, different climates, different labour costs and different energy costs call for a flexible business structure and engineering that is capable of reinventing itself every day. It is a commonplace to speak of quality in relation to any company in the twenty-first century.
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Featured
BIOMASS FUEL FOR DRYING AND FIRING
... LeiriMetal | Solutions | BIOMASS FUEL FOR DRYING AND ...
Duns, United Kingdom
1-10 Employees
2012
At Topling, we are passionate about renewable energy, and we are dedicated to providing our customers with exceptional service and support throughout their energy transition journey. We are committed to delivering high-quality, reliable, and affordable renewable energy solutions that meet the needs of our customers. Our goal is to empower individuals and businesses to make the switch to clean energy and reduce their reliance on fossil fuels. We strive to be a leader in the agriculture industry for providing cutting-edge renewable energy solutions through solar panel and battery installations.
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Featured
Topling - Biomass energy systems
... Biomass Boiler systems, Grain Drying Equipment, District, Commercial and Industrial Heating - Topling Limited are suppliers of biomass energy systems in the UK and Ireland. ...
Stoke-on-Trent, United Kingdom
11-50 Employees
2009
At IEC Solutions we are a company that have Agriculture at our heart and renewable energy at our finger tips. The IEC Foundation was established in 2023 to give back to those we care passionately about. IEC will always go over and beyond to meet our customers expectations, We are farmers and engineers at heart, so tight stringent deadlines our turnkey packages demand, are normal practice and are achieved with dedication & long hours. IEC Agriculture and IEC Energy continue to operate alongside each other to provide solutions which work and grow in their unique areas of expertise.
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Featured
IEC Solutions - IEC Solutions
... Biomass for drying ...
Oeiras, Portugal
51-100 Employees
1989
For over 30 years, iBET has been excelling in R&D in Biotechnology and Life Sciences. At iBET, we work at the interface between academia and industry in the fields of Biopharma and Food & Health. We develop processes and platforms for advanced gene and cell therapies, human and veterinary vaccines, and clinically relevant proteins, from R&D to Analytics and Tech-Transfer to GMP. In Food & Health, we develop innovative solutions to detect food fraud, pathologies originating from water and food, and the identification of new bioactive food supplements.
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Featured
Biomass Processing | R&D Services - iBET
... Biomass Drying & ...
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Featured
Colak Group: Leading in Construction, Plant Engineering & Trade - Diverse Sectors Expertise
... BIMACO - Drying Biomass ...
Fort Lauderdale, United States
11-50 Employees
2016
David Hasenauer is the Chief Executive Officer of Green Point Hemp. David is a cannabis policy expert and real estate development professional. Matthew “Matt” Turner is the Chief Science Officer for Green Point Hemp, overseeing the technology, design, construction, and operation of Green Point’s extraction and refining operations. Michael “Mike” Dukes is the Director of Agricultural Operations for Green Point Hemp, leading Green Point’s cultivation and processing design and operations. In addition to owning and operating a seed bank and production facility in Colorado and hemp farms in Colorado and New York, Mike has consulted and established numerous licensed cultivation and extraction facilities across the country and internationally, including in Florida, Colorado, New York, Washington, Oregon, California, Arizona, New Mexico, Colombia, the Caribbean, and Spain. Vicente Thrower is the Vice President of Government and Community Affairs for Green Point Hemp, overseeing Green Point’s local government and community outreach. By focusing on these three pillars, our goal is for all of Green Point’s operations to function in a manner that is carbon negative in its footprint, by aiming for the following:. Green Point Hemp’s world-class science and innovative crop solutions transform how crops are grown in a nascent hemp industry.
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Featured
Hemp Dryers to Hemp Processing | Green Point Hemp Services
... Biomass Drying ...
Aalten, Netherlands
51-100 Employees
1984
The Dorset Group as a whole, is known for its thrive for innovation and for operating strongly international. Our products are divided over three divisions: Green Machines, Identification and Farm Systems. Dorset Group consists of three divisions with products ranging from RFID electronics to industrial drying machines. Next week Dorset Group will be at the IPPE show in Atlanta. We are happy to announce they have closed their first project with a Dorset dryer and that there are. Dorset Green Machines has renewed their status as Fachbrieb (Expert Company) for Wasserhaushaltgesetz in Germany. In late eighties and early nineties more divisions were founded that started the development and production of a variety of machinery and electronic products. Today the group consists of three divisions, each with their own development and production.
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Featured
Drying biomass - Dorset Group
... Drying biomass - Dorset ...
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Some interesting numbers and facts about the results you have just received for Biomass Drying
Country with most fitting companies | United Kingdom |
Amount of fitting manufacturers | 11 |
Amount of suitable service providers | 9 |
Average amount of employees | 11-50 |
Oldest suiting company | 1891 |
Youngest suiting company | 2016 |
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Biomass drying refers to the process of reducing the moisture content in biological materials derived from living, or recently living organisms, to enhance their suitability for energy production, storage, and transportation. This method involves the application of heat, either directly or indirectly, to evaporate water from the biomass, thereby decreasing its overall weight and volume. The significance of this process within the bioenergy sector cannot be overstated. By lowering the moisture content, the energy density of the biomass is increased, making it a more efficient fuel for combustion and gasification processes. Dry biomass burns more cleanly, reducing emissions of pollutants and improving air quality. Additionally, the reduction in volume and weight through drying translates to lower transportation and storage costs, making bioenergy projects more economically viable. Furthermore, drying biomass extends its shelf life by inhibiting the growth of molds and fungi, ensuring that the quality of the biomass does not degrade over time. This process, therefore, plays a pivotal role in optimizing biomass for energy production, contributing significantly to the sustainability and efficiency of renewable energy initiatives.
1. Increased Energy Efficiency
Biomass drying significantly enhances the energy efficiency of biomass fuels by reducing moisture content. This process increases the calorific value, allowing for more efficient combustion and energy production. Dry biomass can be easily converted into various forms of renewable energy, such as biofuels or biomass pellets, making it a versatile resource for sustainable energy generation.
2. Reduced Storage and Transportation Costs
The removal of moisture through biomass drying decreases the overall weight and volume of the biomass material. This reduction translates into lower costs and logistical challenges associated with storage and transportation. Dry biomass is less prone to decomposition and fungal growth, which extends its shelf life and reduces the need for expensive, climate-controlled storage solutions.
3. Environmental Benefits
Drying biomass before its use or conversion into energy products significantly lowers greenhouse gas emissions compared to traditional fossil fuels. By improving the efficiency of biomass as a fuel source, drying processes contribute to a reduction in carbon footprint, supporting global efforts towards cleaner, more sustainable energy alternatives.
1. Technology Efficiency
Evaluate the thermal efficiency and fuel consumption of the biomass dryer to ensure it meets your energy use and sustainability goals.
2. Capacity and Scalability
Consider the drying capacity of the equipment and its ability to scale up to meet future demand increases.
3. Material Compatibility
Ensure the dryer technology is compatible with the specific type of biomass you plan to process, as different materials may require different drying technologies.
4. Operational Costs
Assess the total operational costs, including maintenance, energy consumption, and any required consumables.
5. Environmental Compliance
Check that the supplier’s equipment complies with local environmental regulations regarding emissions and energy use.
6. After-Sales Support
Consider the level of after-sales support and service agreements offered by the supplier to ensure long-term operational reliability.
7. Customization Options
Determine if the supplier offers customization options to tailor the drying system to your specific needs and constraints.
Biomass drying plays a critical role in the energy sector, where it is employed to reduce moisture in biomass fuels before combustion, gasification, or pyrolysis. This process significantly improves the efficiency of energy conversion, making biomass a more viable and sustainable alternative to fossil fuels. By enhancing the calorific value of the biomass, industries can achieve more efficient energy production with reduced emissions, aligning with global sustainability goals. In the agricultural industry, biomass drying is essential for preparing crops and by-products for storage, transport, and further processing. Drying agricultural residues such as straw, husks, and shells reduces spoilage risks and preserves the material's quality. This pre-treatment step is crucial for producing biofuels, animal feed, and other value-added products, contributing to the circular economy by minimizing waste and maximizing resource use. The forestry sector utilizes biomass drying to manage wood residues efficiently. Drying wood chips, sawdust, and bark enhances their utility for producing wood pellets, engineered woods, and biofuels. Lower moisture content in these materials facilitates easier handling, reduces transportation costs, and improves the overall efficiency of the biomass conversion process. This application not only supports renewable energy initiatives but also promotes sustainable forest management practices by valorizing waste products.
Biomass drying technology, essential for enhancing the efficiency and effectiveness of biomass energy production, is presently considered to be at a high Technology Readiness Level (TRL), typically between TRL 7 to TRL 9. This classification indicates that biomass drying methods have been validated in operational environments, are near or at the final stages of product development, and are ready for commercial deployment. The advanced TRL is attributed to significant technical advancements and extensive research and development efforts that have led to innovative drying techniques, such as rotary dryers, flash dryers, and superheated steam dryers. These technologies have demonstrated the capability to reduce moisture content in biomass efficiently, which is crucial for improving the calorific value and reducing transportation costs. Furthermore, advancements in thermal efficiency, energy recovery systems, and the integration of renewable energy sources for drying processes have addressed previous limitations regarding energy consumption and environmental impact. The progression to higher TRLs reflects the maturation of biomass drying technologies, driven by a growing demand for renewable energy sources and the necessity to optimize biomass fuel properties for various energy production applications.
In the short-term, advancements in biomass drying technology are expected to focus on improving energy efficiency and reducing carbon emissions. Innovations such as integrated heat recovery systems and the optimization of dryer operational parameters through AI and machine learning are anticipated. These enhancements aim to decrease the energy consumption of biomass drying processes, making them more sustainable and cost-effective. Mid-term developments are likely to introduce more significant technological shifts, including the implementation of solar and hybrid drying systems. These systems will harness renewable energy sources, further reducing the reliance on fossil fuels and decreasing operational costs. Additionally, the development of advanced biomass pre-treatment methods will enhance the efficiency of drying processes, enabling the handling of a broader range of biomass types with varying moisture contents. Looking into the long-term, the focus will shift towards the commercialization of cutting-edge drying technologies that incorporate nanotechnology and smart materials. These innovations will offer unprecedented control over the drying process, allowing for precise moisture content regulation and the preservation of biomass quality. Moreover, the integration of Internet of Things (IoT) devices within biomass drying systems is expected to facilitate real-time monitoring and optimization of drying operations, paving the way for fully automated, energy-neutral drying facilities.
Some interesting questions that has been asked about the results you have just received for Biomass Drying
What are related technologies to Biomass Drying?
Based on our calculations related technologies to Biomass Drying are Industrial Electroplating, Industrial Filtration, Industrial Sintering, Industrial Extrusion, Industrial Handling
Which industries are mostly working on Biomass Drying?
The most represented industries which are working in Biomass Drying are Manufacturing, Science and Engineering, Biotechnology, Agriculture and Farming, Energy
How does ensun find these Biomass Drying Companies?
ensun uses an advanced search and ranking system capable of sifting through millions of companies and hundreds of millions of products and services to identify suitable matches. This is achieved by leveraging cutting-edge technologies, including Artificial Intelligence.