Mycelium Foam Blocks Market
Mycelium Foam Blocks Market Analysis, By Material Type (Pure Mycelium Blocks, Mycelium Composite Blocks, and Others), By Block Density (Low Density (<200 kg/m³), Medium Density (200-300 kg/m³), High Density (>300 kg/m³)), By Production Process, By Application, By End-User, and Region - Market Insights 2025 to 2035
Pure Mycelium Blocks Segment Is Projected To Grow At A CAGR Of 19.0%, Whereas Another Segment Mycelium Composite Blocks Is Likely To Grow At 18.7%. In Terms Of Countries United States Is Projected To Grow At 17.4%, Followed By Germany At 16.5% And China To Grow At 18.8%
Mycelium Foam Blocks Market Outlook 2025 to 2035
The global mycelium foam blocks market is expected to reach USD 153.5 Million by 2035, up from estimated value of USD 28.6 Million in 2025. During the forecast period 2025 to 2035, the industry is projected to expand at a CAGR of 18.3%.
The mycelium foam blocks market is driven by the increasing demand of the petroleum-free foams worldwide as eco-friendly and sustainable, spread of the foam in the packaging, construction and furniture industries, technological innovation using molding and composite formulations, and growing regulatory reinforcement in favor of environmentally-friendly materials. All these are factors that enhance faster industrial adoption and market growth all over the world.
Quick Stats for Mycelium Foam Blocks Market
- Industry Value (2025): USD 28.6 Million
- Projected Value (2035): USD 153.5 Million
- Forecast CAGR (2025 to 2035): 18.3%
- Leading Segment (2025): Mycelium Composite Blocks (30% Market Share)
- Fastest Growing Country (2025-2035): China (18.8% CAGR)
- Top Key Players: are Ecovative Design, MycoWorks, Magical Mushroom Company, Mogu Srl, Mushroom Material, Grown.bio, Roha Biotechnologies, Mykor Materials, COMU Labs Inc., and Mycotech Lab.
What are the key factors driving growth in the Mycelium Foam Blocks Market?
One of the main spurring forces of the mycelium foam blocks market is the growing concern with sustainability and minimization of adverse environmental effects at a worldwide level. Firms and consumers are moving to biodegrading and renewable materials to substitute plastics and petroleum-based foams. Expansion is facilitated by an increased understanding of the principles of the circular economy and governmental incentives to use green materials and corporate decisions to use environmentally friendly packaged and built materials.
Adoption is further increased by technological advances that offer durability, moldability and efficiency in production. Also, the versatility of the mycelium block in the packaging, insulation and furniture applications means that there will be a growing market demand leading manufacturers and innovators to operate at scale and increase product diversification.
What are the key trends driving growth in the Mycelium Foam Blocks market?
New trends in mycelium foam blocks market are mycelium composite to make it stronger, 3D printing of block design to make it customizable and modular construction solutions. Firms are now looking into better bio-engineering methods to enhance moisture resistance, density and durability. Liaisons between biotech start-ups and industrial manufacturers are encouraging fast commercialization and local production.
The supply chains are becoming sustainable, and feedstocks are being sourced locally, and certifications are being traced using digital means. There is also an experimentation within the market on the hybrid composites, environmentally friendly finishes and aesthetic finishes which allow functional, environmentally responsible and aesthetically appealing mycelium foam products in a wide range of applications.
What factors hinder the growth of the Mycelium Foam Blocks market?
The mycelium foam blocks market has challenges such as the high cost of production, the lack of scale, and the lack of awareness of the industry. Control of the manufacturing processes and extended growth periods undergo compared to conventional foams impact cost-efficiency. Inability to adopt in some regions may be caused by limited knowledge of performance and durability among end-users.
Established synthetic foam solutions, unstable supply of feedstock and regulatory obstacles of some countries can also limit growth. There is also the problem of standardization, certification, and performance benchmarking of commercial applications which still is an obstacle. These limitations need to be solved to tap the maximum potential of mycelium-based foam markets around the world.
What are the key regional trends driving the Mycelium Foam Blocks Market growth?
North America
The market of the North American mycelium foam blocks is growing because of the high sustainability, the high levels of the R&D, broadening into packaging, construction, and furniture markets. Startup-established manufacturer cooperation is a facilitator of commercialization, which makes the region a frontrunner in developing foam that are environmentally friendly.
East Asia
The development of the East Asian market is based on industrial demand of sustainable materials, government stimulations and urbanization. Countries such as China and Japan are ramping up the manufacturing of mycelium blocks to package and build, focusing on renewable feedstock and low-cost production.
Western Europe
In Western Europe, mycelium foam blocks are gradually being adopted, and it is backed by strict environmental policies, circular economy, and preference of biodegradable products by consumers. The country on the forefront of innovation and integration of sustainable bio-foam solutions is Germany, Netherlands, and France.
Country-wise Outlook
Sustainability Awareness and Industrial Innovation Drive the United States’ Mycelium Foam Blocks Market
The market of the mycelium foam blocks in the US is growing swiftly because of increasing use of the products by the consumers who are more attracted to eco-friendly and biodegradable products. It has strong R&D and high manufacturing technologies that can be used to produce mycelium blocks in large quantities to be used in packaging, construction, and furniture.
Firms are getting creative with customizable forms, enhanced durability and scalability in the manufacturing process. Joint projects with brands that emphasize sustainability and the integration of the practices of a circular economy also support the US as a top market of environmentally friendly mycelium-based foam solutions.
Environmental Regulations and Circular Economy Focus Boost Germany’s Mycelium Foam Blocks Market
The strict environmental policies and the sustainability culture have been the driving force in the growth of the market of Germany. The manufacturers are making biodegradable mycelium blocks with increased mechanical properties to be used in industries and households.
It is assisted by the partnership with environmentally friendly brands, modular and reusable block designs, and cutting-edge production methods. The interest in circular economy activities, resource-efficient production and green certifications makes Germany one of the main centers of innovation of sustainable mycelium foam solutions in Europe.
Industrial Expansion and Eco-friendly Practices Accelerate China’s Mycelium Foam Blocks Market
The mycelium foam blocks market in China is in its maturity phase because, with the growth of industrial needs in sustainable materials and the governmentally promoted innovations in this direction, the market of the Chinese foam blocks grows. Producers are increasing their manufacturing of bio-based blocks to use as packaging, construction, and furniture.
Speedy development of cities, high-volume logistics requirements, and partnerships with global sustainability-oriented businesses encourage usage. The will to use renewable feedstock, to produce the blocks cost-effectively and to make them resistant increases the demand in China as the major market of the products with environmental responsibility of the foam alternatives in the region Asia-Pacific.
Category-Wise Market Outlook
Mycelium Composite Blocks Lead Material Type Growth
The dominantly developing material is mycelium composite block because it is stronger, more durable and can be used in numerous applications than pure mycelium. With mycelium, I would mix it with agricultural waste or natural fibers to enhance structural integrity, water resistance and flexibility in application.
The characteristics render composite blocks to be very convenient in packaging, construction, and furniture and hence industrial use. The possibility to tailor both mechanical properties and shapes compounds further in their utilization making mycelium composite blocks the material of choice in the field of bio-foam solutions that are sustainable.
Medium Density Blocks Drive Density Segment Growth
Under block density, the growth of medium-density mycelium blocks is most dominating since they strike a balance between the lightweight design and adequate strength. The density used in this range is suited in the packaging of products that need protection, in modular buildings and insulation to withstand and be convenient to work with.
Medium-density blocks can be produced at any scale, provide the same performance, and can be embedded into a variety of applications, which is why manufacturers will be interested in the product as an alternative that meets the requirements of functionality and the environment.
Molded Blocks Lead Production Process Growth
Molded mycelium blocks are the swiftly expanding sub segment in the production processes. Molding allows the creation of precise forms, even density, and consistent quality at large scale and has industrial uses. It enables customizing to meet certain packaging, furniture and construction needs and minimizing wastage of material. The molded blocks also make it easier to integrate into the current manufacturing processes and foster cost-effective mass production and thus many industries interested in using less harmful foam alternatives have been inspired to embrace it.
Competitive Analysis
Competitive Outlook: Mycelium Foam Blocks Market
The mycelium foam blocks market is very competitive with such market players as Ecovative Design, MycoWorks, Magical Mushroom Company, Mogu Srl and Mushroom Material leading in the development of Sustainable bio-foam solutions. These businesses are oriented at scalable biodegradable mycelium block production, material strength, moisture resistant and packaging, construction, and furniture customization. Their well-developed research and development, existing supply chains, and patented technologies help them provide the reliable, environmentally-friendly substitutes of traditional foams based on petroleum, to satisfy the rising demand by eco-friendly brands and industries.
Simultaneously, niche innovations with Grown.bio, Roha Biotechnologies, Mykor Materials, COMU Labs Inc., and Mycotech Lab developing mycelium-block modular building, 3D-shaped bio-composites, and fast-growth production approaches. They are agile, and thus they can easily respond to the specialized market demands, pilot regional production, and cooperate with sustainable brands.
The presence of established leaders and quick innovating new entrants develops a dynamic, innovative, and competitive Mycelium Foam Blocks market that boosts the use of bio-based materials all over the world.
Key players in the Mycelium Foam Blocks market are Ecovative Design, MycoWorks, Magical Mushroom Company, Mogu Srl, Mushroom Material, Grown.bio, Roha Biotechnologies, Mykor Materials, COMU Labs Inc., Mycotech Lab.
Recent Development
- In May 2025, Czech company Myco introduced a fully biodegradable, “100% plastic-free” packaging solution made from mushroom mycelium and organic waste. This innovation offers a sustainable alternative to traditional polystyrene, reducing environmental pollution, supporting circular economy practices, and meeting growing industry and consumer demand for eco-friendly packaging materials.
- In May 2025, MycoHab implemented approximately 1,000 mycelium blocks in modular construction projects, aiming to minimize carbon emissions and reduce construction waste. The bio-based blocks provide sustainable, lightweight, and durable building solutions, demonstrating the practical application of mycelium materials in eco-friendly construction and advancing circular economy practices in the industry.
Fact.MR has provided detailed information about the price points of key manufacturers of Mycelium Foam Blocks market positioned across regions, sales growth, production capacity, and speculative technological expansion, in the recently published report.
Methodology and Industry Tracking Approach
The survey conducted by Fact.MR on Mycelium Foam Blocks Market is the part of Fact.MR 2025, where more than 10,000 people were involved into the process, with at least 250 representatives of the surveyed countries. Industry stakeholders (packaging innovators, sustainability experts, FMCG brand managers, regulatory experts, and market consultants) made up 1/3rd of the respondents, and the other 2/3rd were end users (retailers, households, and commercial construction and packaging operators). The survey, which is conducted in September 2024 and August 2025, focused on the patterns of adoption of mycelium foam technology, incorporation of sustainable materials, performance in packaging and insulation and innovations that are defining the future of bio-based foam blocks.
The study applied high-level modeling and predictive analytics, relying on more than 250 secondary sources, such as patent applications, product releases, industry requirements, sustainability reports, and market research. The information on consumer adoption, material innovations, scalability, and performance gains since 2018 were examined to inform the stakeholders. The 2025 report provides industry players with strategies that can be implemented to ensure that they enjoy the emerging opportunities, overcome the market challenges, and position themselves well to compete in the rapidly growing mycelium foam blocks market.
Segmentation of Mycelium Foam Blocks Market Research
-
By Material Type :
- Pure Mycelium Blocks
- Mycelium Composite Blocks
- Reinforced Mycelium Blocks
- Other (Hybrid Composites)
-
By Block Density :
- Low Density (<200 kg/m³)
- Medium Density (200-300 kg/m³)
- High Density (>300 kg/m³)
-
By Production Process :
- Molded Blocks
- Cut Blocks
- 3D-Printed Blocks
-
By Application :
- Protective Packaging
- Building Insulation
- Furniture Components
- Automotive Parts
- Other (Acoustics, Biomedical)
-
By End-User :
- E-commerce/Retail
- Construction Industry
- Furniture Manufacturing
- Automotive Industry
- Electronics Packaging
-
By Region :
- North America
- Latin America
- Western Europe
- Eastern Europe
- East Asia
- South Asia & Pacific
- Middle East & Africa
Table of Content
- Executive Summary
- Global Market Outlook
- Demand-side Trends
- Supply-side Trends
- Technology Roadmap Analysis
- Analysis and Recommendations
- Market Overview
- Market Coverage / Taxonomy
- Market Definition / Scope / Limitations
- Market Background
- Market Dynamics
- Drivers
- Restraints
- Opportunity
- Trends
- Scenario Forecast
- Demand in Optimistic Scenario
- Demand in Likely Scenario
- Demand in Conservative Scenario
- Opportunity Map Analysis
- Product Life Cycle Analysis
- Supply Chain Analysis
- Investment Feasibility Matrix
- Value Chain Analysis
- PESTLE and Porter’s Analysis
- Regulatory Landscape
- Regional Parent Market Outlook
- Production and Consumption Statistics
- Import and Export Statistics
- Market Dynamics
- Global Analysis 2020-2024 and Forecast, 2025-2035
- Historical Market Size Value (USD Million) & Volume (Tons) Analysis, 2020-2024
- Current and Future Market Size Value (USD Million) & Volume (Tons) Projections, 2025-2035
- Y-o-Y Growth Trend Analysis
- Absolute $ Opportunity Analysis
- Global Pricing Analysis 2020-2024 and Forecast 2025-2035
- Global Analysis 2020-2024 and Forecast 2025-2035, By Material Type
- Introduction / Key Findings
- Historical Market Size Value (USD Million) & Volume (Tons) Analysis By Material Type, 2020-2024
- Current and Future Market Size Value (USD Million) & Volume (Tons) Analysis and Forecast By Material Type, 2025-2035
- Pure Mycelium Blocks
- Mycelium Composite Blocks
- Reinforced Mycelium Blocks
- Other (Hybrid Composites)
- Y-o-Y Growth Trend Analysis By Material Type, 2020-2024
- Absolute $ Opportunity Analysis By Material Type, 2025-2035
- Global Analysis 2020-2024 and Forecast 2025-2035, By By Block Density
- Introduction / Key Findings
- Historical Market Size Value (USD Million) & Volume (Tons) Analysis By By Block Density, 2020-2024
- Current and Future Market Size Value (USD Million) & Volume (Tons) Analysis and Forecast By By Block Density, 2025-2035
- Low Density (<200 kg/m³)
- Medium Density (200-300 kg/m³)
- High Density (>300 kg/m³)
- Y-o-Y Growth Trend Analysis By By Block Density, 2020-2024
- Absolute $ Opportunity Analysis By By Block Density, 2025-2035
- Global Analysis 2020-2024 and Forecast 2025-2035, By Production Process
- Introduction / Key Findings
- Historical Market Size Value (USD Million) & Volume (Tons) Analysis By Production Process, 2020-2024
- Current and Future Market Size Value (USD Million) & Volume (Tons) Analysis and Forecast By Production Process, 2025-2035
- Molded Blocks
- Cut Blocks
- 3D-Printed Blocks
- Y-o-Y Growth Trend Analysis By Production Process, 2020-2024
- Absolute $ Opportunity Analysis By Production Process, 2025-2035
- Global Analysis 2020-2024 and Forecast 2025-2035, By Application
- Introduction / Key Findings
- Historical Market Size Value (USD Million) & Volume (Tons) Analysis By Application, 2020-2024
- Current and Future Market Size Value (USD Million) & Volume (Tons) Analysis and Forecast By Application, 2025-2035
- Protective Packaging
- Building Insulation
- Furniture Components
- Automotive Parts
- Other (Acoustics, Biomedical)
- Y-o-Y Growth Trend Analysis By Application, 2020-2024
- Absolute $ Opportunity Analysis By Application, 2025-2035
- Global Analysis 2020-2024 and Forecast 2025-2035, By End-User
- Introduction / Key Findings
- Historical Market Size Value (USD Million) & Volume (Tons) Analysis By End-User, 2020-2024
- Current and Future Market Size Value (USD Million) & Volume (Tons) Analysis and Forecast By End-User, 2025-2035
- E-commerce/Retail
- Construction Industry
- Furniture Manufacturing
- Automotive Industry
- Electronics Packaging
- Y-o-Y Growth Trend Analysis By End-User, 2020-2024
- Absolute $ Opportunity Analysis By End-User, 2025-2035
- Global Analysis 2020-2024 and Forecast 2025-2035, By Region
- Introduction
- Historical Market Size Value (USD Million) & Volume (Tons) Analysis By Region, 2020-2024
- Current Market Size Value (USD Million) & Volume (Tons) Analysis and Forecast By Region, 2025-2035
- North America
- Latin America
- Western Europe
- Eastern Europe
- East Asia
- South Asia and Pacific
- Middle East & Africa
- Market Attractiveness Analysis By Region
- North America Analysis 2020-2024 and Forecast 2025-2035, By Country
- Historical Market Size Value (USD Million) & Volume (Tons) Trend Analysis By Market Taxonomy, 2020-2024
- Market Size Value (USD Million) & Volume (Tons) Forecast By Market Taxonomy, 2025-2035
- By Country
- U.S.
- Canada
- Mexico
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- By Country
- Market Attractiveness Analysis
- By Country
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Key Takeaways
- Latin America Analysis 2020-2024 and Forecast 2025-2035, By Country
- Historical Market Size Value (USD Million) & Volume (Tons) Trend Analysis By Market Taxonomy, 2020-2024
- Market Size Value (USD Million) & Volume (Tons) Forecast By Market Taxonomy, 2025-2035
- By Country
- Brazil
- Chile
- Rest of Latin America
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- By Country
- Market Attractiveness Analysis
- By Country
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Key Takeaways
- Western Europe Analysis 2020-2024 and Forecast 2025-2035, By Country
- Historical Market Size Value (USD Million) & Volume (Tons) Trend Analysis By Market Taxonomy, 2020-2024
- Market Size Value (USD Million) & Volume (Tons) Forecast By Market Taxonomy, 2025-2035
- By Country
- Germany
- U.K.
- Italy
- Spain
- France
- Nordic
- BENELUX
- Rest of Western Europe
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- By Country
- Market Attractiveness Analysis
- By Country
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Key Takeaways
- Eastern Europe Analysis 2020-2024 and Forecast 2025-2035, By Country
- Historical Market Size Value (USD Million) & Volume (Tons) Trend Analysis By Market Taxonomy, 2020-2024
- Market Size Value (USD Million) & Volume (Tons) Forecast By Market Taxonomy, 2025-2035
- By Country
- Russia
- Poland
- Hungary
- Balkan & Baltic
- Rest of Eastern Europe
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- By Country
- Market Attractiveness Analysis
- By Country
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Key Takeaways
- East Asia Analysis 2020-2024 and Forecast 2025-2035, By Country
- Historical Market Size Value (USD Million) & Volume (Tons) Trend Analysis By Market Taxonomy, 2020-2024
- Market Size Value (USD Million) & Volume (Tons) Forecast By Market Taxonomy, 2025-2035
- By Country
- China
- Japan
- South Korea
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- By Country
- Market Attractiveness Analysis
- By Country
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Key Takeaways
- South Asia and Pacific Analysis 2020-2024 and Forecast 2025-2035, By Country
- Historical Market Size Value (USD Million) & Volume (Tons) Trend Analysis By Market Taxonomy, 2020-2024
- Market Size Value (USD Million) & Volume (Tons) Forecast By Market Taxonomy, 2025-2035
- By Country
- India
- ASEAN
- Australia & New Zealand
- Rest of South Asia and Pacific
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- By Country
- Market Attractiveness Analysis
- By Country
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Key Takeaways
- Middle East & Africa Analysis 2020-2024 and Forecast 2025-2035, By Country
- Historical Market Size Value (USD Million) & Volume (Tons) Trend Analysis By Market Taxonomy, 2020-2024
- Market Size Value (USD Million) & Volume (Tons) Forecast By Market Taxonomy, 2025-2035
- By Country
- Kingdom of Saudi Arabia
- Other GCC Countries
- Turkiye
- South Africa
- Other African Union
- Rest of Middle East & Africa
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- By Country
- Market Attractiveness Analysis
- By Country
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Key Takeaways
- Key Countries Analysis
- U.S.
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Canada
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Mexico
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Brazil
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Chile
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Germany
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- U.K.
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Italy
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Spain
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- France
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- India
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- ASEAN
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Australia & New Zealand
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- China
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Japan
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- South Korea
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Russia
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Poland
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Hungary
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Kingdom of Saudi Arabia
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Turkiye
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- South Africa
- Pricing Analysis
- Market Share Analysis, 2024
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- U.S.
- Market Structure Analysis
- Competition Dashboard
- Competition Benchmarking
- Market Share Analysis of Top Players
- By Regional
- By Material Type
- By By Block Density
- By Production Process
- By Application
- By End-User
- Competition Analysis
- Competition Deep Dive
- Ecovative Design
- Overview
- Product Portfolio
- Profitability by Market Segments (Product/Age /Sales Channel/Region)
- Sales Footprint
- Strategy Overview
- MycoWorks
- Magical Mushroom Company
- Mogu Srl
- Mushroom Material
- Grown.bio
- Roha Biotechnologies
- Mykor Materials
- COMU Labs Inc.
- Mycotech Lab
- Ecovative Design
- Competition Deep Dive
- Assumptions & Acronyms Used
- Research Methodology
List Of Table
- Table 1: Global Value (USD Million) Forecast by Region, 2020 to 2035
- Table 2: Global Volume (Tons) Forecast by Region, 2020 to 2035
- Table 3: Global Value (USD Million) Forecast by Material Type, 2020 to 2035
- Table 4: Global Volume (Tons) Forecast by Material Type, 2020 to 2035
- Table 5: Global Value (USD Million) Forecast by By Block Density, 2020 to 2035
- Table 6: Global Volume (Tons) Forecast by By Block Density, 2020 to 2035
- Table 7: Global Value (USD Million) Forecast by Production Process, 2020 to 2035
- Table 8: Global Volume (Tons) Forecast by Production Process, 2020 to 2035
- Table 9: Global Value (USD Million) Forecast by Application, 2020 to 2035
- Table 10: Global Volume (Tons) Forecast by Application, 2020 to 2035
- Table 11: Global Value (USD Million) Forecast by End-User, 2020 to 2035
- Table 12: Global Volume (Tons) Forecast by End-User, 2020 to 2035
- Table 13: North America Value (USD Million) Forecast by Country, 2020 to 2035
- Table 14: North America Volume (Tons) Forecast by Country, 2020 to 2035
- Table 15: North America Value (USD Million) Forecast by Material Type, 2020 to 2035
- Table 16: North America Volume (Tons) Forecast by Material Type, 2020 to 2035
- Table 17: North America Value (USD Million) Forecast by By Block Density, 2020 to 2035
- Table 18: North America Volume (Tons) Forecast by By Block Density, 2020 to 2035
- Table 19: North America Value (USD Million) Forecast by Production Process, 2020 to 2035
- Table 20: North America Volume (Tons) Forecast by Production Process, 2020 to 2035
- Table 21: North America Value (USD Million) Forecast by Application, 2020 to 2035
- Table 22: North America Volume (Tons) Forecast by Application, 2020 to 2035
- Table 23: North America Value (USD Million) Forecast by End-User, 2020 to 2035
- Table 24: North America Volume (Tons) Forecast by End-User, 2020 to 2035
- Table 25: Latin America Value (USD Million) Forecast by Country, 2020 to 2035
- Table 26: Latin America Volume (Tons) Forecast by Country, 2020 to 2035
- Table 27: Latin America Value (USD Million) Forecast by Material Type, 2020 to 2035
- Table 28: Latin America Volume (Tons) Forecast by Material Type, 2020 to 2035
- Table 29: Latin America Value (USD Million) Forecast by By Block Density, 2020 to 2035
- Table 30: Latin America Volume (Tons) Forecast by By Block Density, 2020 to 2035
- Table 31: Latin America Value (USD Million) Forecast by Production Process, 2020 to 2035
- Table 32: Latin America Volume (Tons) Forecast by Production Process, 2020 to 2035
- Table 33: Latin America Value (USD Million) Forecast by Application, 2020 to 2035
- Table 34: Latin America Volume (Tons) Forecast by Application, 2020 to 2035
- Table 35: Latin America Value (USD Million) Forecast by End-User, 2020 to 2035
- Table 36: Latin America Volume (Tons) Forecast by End-User, 2020 to 2035
- Table 37: Western Europe Value (USD Million) Forecast by Country, 2020 to 2035
- Table 38: Western Europe Volume (Tons) Forecast by Country, 2020 to 2035
- Table 39: Western Europe Value (USD Million) Forecast by Material Type, 2020 to 2035
- Table 40: Western Europe Volume (Tons) Forecast by Material Type, 2020 to 2035
- Table 41: Western Europe Value (USD Million) Forecast by By Block Density, 2020 to 2035
- Table 42: Western Europe Volume (Tons) Forecast by By Block Density, 2020 to 2035
- Table 43: Western Europe Value (USD Million) Forecast by Production Process, 2020 to 2035
- Table 44: Western Europe Volume (Tons) Forecast by Production Process, 2020 to 2035
- Table 45: Western Europe Value (USD Million) Forecast by Application, 2020 to 2035
- Table 46: Western Europe Volume (Tons) Forecast by Application, 2020 to 2035
- Table 47: Western Europe Value (USD Million) Forecast by End-User, 2020 to 2035
- Table 48: Western Europe Volume (Tons) Forecast by End-User, 2020 to 2035
- Table 49: Eastern Europe Value (USD Million) Forecast by Country, 2020 to 2035
- Table 50: Eastern Europe Volume (Tons) Forecast by Country, 2020 to 2035
- Table 51: Eastern Europe Value (USD Million) Forecast by Material Type, 2020 to 2035
- Table 52: Eastern Europe Volume (Tons) Forecast by Material Type, 2020 to 2035
- Table 53: Eastern Europe Value (USD Million) Forecast by By Block Density, 2020 to 2035
- Table 54: Eastern Europe Volume (Tons) Forecast by By Block Density, 2020 to 2035
- Table 55: Eastern Europe Value (USD Million) Forecast by Production Process, 2020 to 2035
- Table 56: Eastern Europe Volume (Tons) Forecast by Production Process, 2020 to 2035
- Table 57: Eastern Europe Value (USD Million) Forecast by Application, 2020 to 2035
- Table 58: Eastern Europe Volume (Tons) Forecast by Application, 2020 to 2035
- Table 59: Eastern Europe Value (USD Million) Forecast by End-User, 2020 to 2035
- Table 60: Eastern Europe Volume (Tons) Forecast by End-User, 2020 to 2035
- Table 61: East Asia Value (USD Million) Forecast by Country, 2020 to 2035
- Table 62: East Asia Volume (Tons) Forecast by Country, 2020 to 2035
- Table 63: East Asia Value (USD Million) Forecast by Material Type, 2020 to 2035
- Table 64: East Asia Volume (Tons) Forecast by Material Type, 2020 to 2035
- Table 65: East Asia Value (USD Million) Forecast by By Block Density, 2020 to 2035
- Table 66: East Asia Volume (Tons) Forecast by By Block Density, 2020 to 2035
- Table 67: East Asia Value (USD Million) Forecast by Production Process, 2020 to 2035
- Table 68: East Asia Volume (Tons) Forecast by Production Process, 2020 to 2035
- Table 69: East Asia Value (USD Million) Forecast by Application, 2020 to 2035
- Table 70: East Asia Volume (Tons) Forecast by Application, 2020 to 2035
- Table 71: East Asia Value (USD Million) Forecast by End-User, 2020 to 2035
- Table 72: East Asia Volume (Tons) Forecast by End-User, 2020 to 2035
- Table 73: South Asia and Pacific Value (USD Million) Forecast by Country, 2020 to 2035
- Table 74: South Asia and Pacific Volume (Tons) Forecast by Country, 2020 to 2035
- Table 75: South Asia and Pacific Value (USD Million) Forecast by Material Type, 2020 to 2035
- Table 76: South Asia and Pacific Volume (Tons) Forecast by Material Type, 2020 to 2035
- Table 77: South Asia and Pacific Value (USD Million) Forecast by By Block Density, 2020 to 2035
- Table 78: South Asia and Pacific Volume (Tons) Forecast by By Block Density, 2020 to 2035
- Table 79: South Asia and Pacific Value (USD Million) Forecast by Production Process, 2020 to 2035
- Table 80: South Asia and Pacific Volume (Tons) Forecast by Production Process, 2020 to 2035
- Table 81: South Asia and Pacific Value (USD Million) Forecast by Application, 2020 to 2035
- Table 82: South Asia and Pacific Volume (Tons) Forecast by Application, 2020 to 2035
- Table 83: South Asia and Pacific Value (USD Million) Forecast by End-User, 2020 to 2035
- Table 84: South Asia and Pacific Volume (Tons) Forecast by End-User, 2020 to 2035
- Table 85: Middle East & Africa Value (USD Million) Forecast by Country, 2020 to 2035
- Table 86: Middle East & Africa Volume (Tons) Forecast by Country, 2020 to 2035
- Table 87: Middle East & Africa Value (USD Million) Forecast by Material Type, 2020 to 2035
- Table 88: Middle East & Africa Volume (Tons) Forecast by Material Type, 2020 to 2035
- Table 89: Middle East & Africa Value (USD Million) Forecast by By Block Density, 2020 to 2035
- Table 90: Middle East & Africa Volume (Tons) Forecast by By Block Density, 2020 to 2035
- Table 91: Middle East & Africa Value (USD Million) Forecast by Production Process, 2020 to 2035
- Table 92: Middle East & Africa Volume (Tons) Forecast by Production Process, 2020 to 2035
- Table 93: Middle East & Africa Value (USD Million) Forecast by Application, 2020 to 2035
- Table 94: Middle East & Africa Volume (Tons) Forecast by Application, 2020 to 2035
- Table 95: Middle East & Africa Value (USD Million) Forecast by End-User, 2020 to 2035
- Table 96: Middle East & Africa Volume (Tons) Forecast by End-User, 2020 to 2035
List Of Figures
- Figure 1: Global Volume (Tons) Forecast 2020 to 2035
- Figure 2: Global Pricing Analysis
- Figure 3: Global Value (USD Million) Forecast 2020 to 2035
- Figure 4: Global Value Share and BPS Analysis by Material Type, 2025 and 2035
- Figure 5: Global Y-o-Y Growth Comparison by Material Type, 2025 to 2035
- Figure 6: Global Attractiveness Analysis by Material Type
- Figure 7: Global Value Share and BPS Analysis by By Block Density, 2025 and 2035
- Figure 8: Global Y-o-Y Growth Comparison by By Block Density, 2025 to 2035
- Figure 9: Global Attractiveness Analysis by By Block Density
- Figure 10: Global Value Share and BPS Analysis by Production Process, 2025 and 2035
- Figure 11: Global Y-o-Y Growth Comparison by Production Process, 2025 to 2035
- Figure 12: Global Attractiveness Analysis by Production Process
- Figure 13: Global Value Share and BPS Analysis by Application, 2025 and 2035
- Figure 14: Global Y-o-Y Growth Comparison by Application, 2025 to 2035
- Figure 15: Global Attractiveness Analysis by Application
- Figure 16: Global Value Share and BPS Analysis by End-User, 2025 and 2035
- Figure 17: Global Y-o-Y Growth Comparison by End-User, 2025 to 2035
- Figure 18: Global Attractiveness Analysis by End-User
- Figure 19: Global Value (USD Million) Share and BPS Analysis by Region, 2025 and 2035
- Figure 20: Global Y-o-Y Growth Comparison by Region, 2025 to 2035
- Figure 21: Global Attractiveness Analysis by Region
- Figure 22: North America Incremental $ Opportunity, 2025 to 2035
- Figure 23: Latin America Incremental $ Opportunity, 2025 to 2035
- Figure 24: Western Europe Incremental $ Opportunity, 2025 to 2035
- Figure 25: Eastern Europe Incremental $ Opportunity, 2025 to 2035
- Figure 26: East Asia Incremental $ Opportunity, 2025 to 2035
- Figure 27: South Asia and Pacific Incremental $ Opportunity, 2025 to 2035
- Figure 28: Middle East & Africa Incremental $ Opportunity, 2025 to 2035
- Figure 29: North America Value Share and BPS Analysis by Country, 2025 and 2035
- Figure 30: North America Value Share and BPS Analysis by Material Type, 2025 and 2035
- Figure 31: North America Y-o-Y Growth Comparison by Material Type, 2025 to 2035
- Figure 32: North America Attractiveness Analysis by Material Type
- Figure 33: North America Value Share and BPS Analysis by By Block Density, 2025 and 2035
- Figure 34: North America Y-o-Y Growth Comparison by By Block Density, 2025 to 2035
- Figure 35: North America Attractiveness Analysis by By Block Density
- Figure 36: North America Value Share and BPS Analysis by Production Process, 2025 and 2035
- Figure 37: North America Y-o-Y Growth Comparison by Production Process, 2025 to 2035
- Figure 38: North America Attractiveness Analysis by Production Process
- Figure 39: North America Value Share and BPS Analysis by Application, 2025 and 2035
- Figure 40: North America Y-o-Y Growth Comparison by Application, 2025 to 2035
- Figure 41: North America Attractiveness Analysis by Application
- Figure 42: North America Value Share and BPS Analysis by End-User, 2025 and 2035
- Figure 43: North America Y-o-Y Growth Comparison by End-User, 2025 to 2035
- Figure 44: North America Attractiveness Analysis by End-User
- Figure 45: Latin America Value Share and BPS Analysis by Country, 2025 and 2035
- Figure 46: Latin America Value Share and BPS Analysis by Material Type, 2025 and 2035
- Figure 47: Latin America Y-o-Y Growth Comparison by Material Type, 2025 to 2035
- Figure 48: Latin America Attractiveness Analysis by Material Type
- Figure 49: Latin America Value Share and BPS Analysis by By Block Density, 2025 and 2035
- Figure 50: Latin America Y-o-Y Growth Comparison by By Block Density, 2025 to 2035
- Figure 51: Latin America Attractiveness Analysis by By Block Density
- Figure 52: Latin America Value Share and BPS Analysis by Production Process, 2025 and 2035
- Figure 53: Latin America Y-o-Y Growth Comparison by Production Process, 2025 to 2035
- Figure 54: Latin America Attractiveness Analysis by Production Process
- Figure 55: Latin America Value Share and BPS Analysis by Application, 2025 and 2035
- Figure 56: Latin America Y-o-Y Growth Comparison by Application, 2025 to 2035
- Figure 57: Latin America Attractiveness Analysis by Application
- Figure 58: Latin America Value Share and BPS Analysis by End-User, 2025 and 2035
- Figure 59: Latin America Y-o-Y Growth Comparison by End-User, 2025 to 2035
- Figure 60: Latin America Attractiveness Analysis by End-User
- Figure 61: Western Europe Value Share and BPS Analysis by Country, 2025 and 2035
- Figure 62: Western Europe Value Share and BPS Analysis by Material Type, 2025 and 2035
- Figure 63: Western Europe Y-o-Y Growth Comparison by Material Type, 2025 to 2035
- Figure 64: Western Europe Attractiveness Analysis by Material Type
- Figure 65: Western Europe Value Share and BPS Analysis by By Block Density, 2025 and 2035
- Figure 66: Western Europe Y-o-Y Growth Comparison by By Block Density, 2025 to 2035
- Figure 67: Western Europe Attractiveness Analysis by By Block Density
- Figure 68: Western Europe Value Share and BPS Analysis by Production Process, 2025 and 2035
- Figure 69: Western Europe Y-o-Y Growth Comparison by Production Process, 2025 to 2035
- Figure 70: Western Europe Attractiveness Analysis by Production Process
- Figure 71: Western Europe Value Share and BPS Analysis by Application, 2025 and 2035
- Figure 72: Western Europe Y-o-Y Growth Comparison by Application, 2025 to 2035
- Figure 73: Western Europe Attractiveness Analysis by Application
- Figure 74: Western Europe Value Share and BPS Analysis by End-User, 2025 and 2035
- Figure 75: Western Europe Y-o-Y Growth Comparison by End-User, 2025 to 2035
- Figure 76: Western Europe Attractiveness Analysis by End-User
- Figure 77: Eastern Europe Value Share and BPS Analysis by Country, 2025 and 2035
- Figure 78: Eastern Europe Value Share and BPS Analysis by Material Type, 2025 and 2035
- Figure 79: Eastern Europe Y-o-Y Growth Comparison by Material Type, 2025 to 2035
- Figure 80: Eastern Europe Attractiveness Analysis by Material Type
- Figure 81: Eastern Europe Value Share and BPS Analysis by By Block Density, 2025 and 2035
- Figure 82: Eastern Europe Y-o-Y Growth Comparison by By Block Density, 2025 to 2035
- Figure 83: Eastern Europe Attractiveness Analysis by By Block Density
- Figure 84: Eastern Europe Value Share and BPS Analysis by Production Process, 2025 and 2035
- Figure 85: Eastern Europe Y-o-Y Growth Comparison by Production Process, 2025 to 2035
- Figure 86: Eastern Europe Attractiveness Analysis by Production Process
- Figure 87: Eastern Europe Value Share and BPS Analysis by Application, 2025 and 2035
- Figure 88: Eastern Europe Y-o-Y Growth Comparison by Application, 2025 to 2035
- Figure 89: Eastern Europe Attractiveness Analysis by Application
- Figure 90: Eastern Europe Value Share and BPS Analysis by End-User, 2025 and 2035
- Figure 91: Eastern Europe Y-o-Y Growth Comparison by End-User, 2025 to 2035
- Figure 92: Eastern Europe Attractiveness Analysis by End-User
- Figure 93: East Asia Value Share and BPS Analysis by Country, 2025 and 2035
- Figure 94: East Asia Value Share and BPS Analysis by Material Type, 2025 and 2035
- Figure 95: East Asia Y-o-Y Growth Comparison by Material Type, 2025 to 2035
- Figure 96: East Asia Attractiveness Analysis by Material Type
- Figure 97: East Asia Value Share and BPS Analysis by By Block Density, 2025 and 2035
- Figure 98: East Asia Y-o-Y Growth Comparison by By Block Density, 2025 to 2035
- Figure 99: East Asia Attractiveness Analysis by By Block Density
- Figure 100: East Asia Value Share and BPS Analysis by Production Process, 2025 and 2035
- Figure 101: East Asia Y-o-Y Growth Comparison by Production Process, 2025 to 2035
- Figure 102: East Asia Attractiveness Analysis by Production Process
- Figure 103: East Asia Value Share and BPS Analysis by Application, 2025 and 2035
- Figure 104: East Asia Y-o-Y Growth Comparison by Application, 2025 to 2035
- Figure 105: East Asia Attractiveness Analysis by Application
- Figure 106: East Asia Value Share and BPS Analysis by End-User, 2025 and 2035
- Figure 107: East Asia Y-o-Y Growth Comparison by End-User, 2025 to 2035
- Figure 108: East Asia Attractiveness Analysis by End-User
- Figure 109: South Asia and Pacific Value Share and BPS Analysis by Country, 2025 and 2035
- Figure 110: South Asia and Pacific Value Share and BPS Analysis by Material Type, 2025 and 2035
- Figure 111: South Asia and Pacific Y-o-Y Growth Comparison by Material Type, 2025 to 2035
- Figure 112: South Asia and Pacific Attractiveness Analysis by Material Type
- Figure 113: South Asia and Pacific Value Share and BPS Analysis by By Block Density, 2025 and 2035
- Figure 114: South Asia and Pacific Y-o-Y Growth Comparison by By Block Density, 2025 to 2035
- Figure 115: South Asia and Pacific Attractiveness Analysis by By Block Density
- Figure 116: South Asia and Pacific Value Share and BPS Analysis by Production Process, 2025 and 2035
- Figure 117: South Asia and Pacific Y-o-Y Growth Comparison by Production Process, 2025 to 2035
- Figure 118: South Asia and Pacific Attractiveness Analysis by Production Process
- Figure 119: South Asia and Pacific Value Share and BPS Analysis by Application, 2025 and 2035
- Figure 120: South Asia and Pacific Y-o-Y Growth Comparison by Application, 2025 to 2035
- Figure 121: South Asia and Pacific Attractiveness Analysis by Application
- Figure 122: South Asia and Pacific Value Share and BPS Analysis by End-User, 2025 and 2035
- Figure 123: South Asia and Pacific Y-o-Y Growth Comparison by End-User, 2025 to 2035
- Figure 124: South Asia and Pacific Attractiveness Analysis by End-User
- Figure 125: Middle East & Africa Value Share and BPS Analysis by Country, 2025 and 2035
- Figure 126: Middle East & Africa Value Share and BPS Analysis by Material Type, 2025 and 2035
- Figure 127: Middle East & Africa Y-o-Y Growth Comparison by Material Type, 2025 to 2035
- Figure 128: Middle East & Africa Attractiveness Analysis by Material Type
- Figure 129: Middle East & Africa Value Share and BPS Analysis by By Block Density, 2025 and 2035
- Figure 130: Middle East & Africa Y-o-Y Growth Comparison by By Block Density, 2025 to 2035
- Figure 131: Middle East & Africa Attractiveness Analysis by By Block Density
- Figure 132: Middle East & Africa Value Share and BPS Analysis by Production Process, 2025 and 2035
- Figure 133: Middle East & Africa Y-o-Y Growth Comparison by Production Process, 2025 to 2035
- Figure 134: Middle East & Africa Attractiveness Analysis by Production Process
- Figure 135: Middle East & Africa Value Share and BPS Analysis by Application, 2025 and 2035
- Figure 136: Middle East & Africa Y-o-Y Growth Comparison by Application, 2025 to 2035
- Figure 137: Middle East & Africa Attractiveness Analysis by Application
- Figure 138: Middle East & Africa Value Share and BPS Analysis by End-User, 2025 and 2035
- Figure 139: Middle East & Africa Y-o-Y Growth Comparison by End-User, 2025 to 2035
- Figure 140: Middle East & Africa Attractiveness Analysis by End-User
- Figure 141: Global - Tier Structure Analysis
- Figure 142: Global - Company Share Analysis
- FAQs -
What was the Global Mycelium Foam Blocks Market Size Reported by Fact.MR for 2025?
The global Mycelium Foam Blocks market is accounted at USD 28.6 Million in 2025.
Who are the Major Players Operating in the Mycelium Foam Blocks Market?
Prominent players in the market are Ecovative Design, MycoWorks, Magical Mushroom Company, Mogu Srl, Mushroom Material, Grown.bio, Roha Biotechnologies, Mykor Materials, COMU Labs Inc., Mycotech Lab.
What is the Estimated Valuation of the Mycelium Foam Blocks Market in 2035?
The market is expected to reach a valuation of USD 153.5 Million in 2035.
What Value CAGR did the Mycelium Foam Blocks Market Exhibit Over the Last Five Years?
The historic growth rate of the Mycelium Foam Blocks market was 18.3% from 2020-2024.