Global Bio-Based Leather Market Forecast, Trend Analysis And Competition Tracking - Market Insights: 2015 – 2031
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May 2023
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This report was compiled by Research Team Research team of over 50 passionate professionals leverages advanced research methodologies and analytical expertise to deliver insightful, data-driven market intelligence that empowers businesses across diverse industries to make strategic, well-informed Correspondence Research Team Linkedin | Detailed Market research Methodology Our methodology involves a mix of primary research, including interviews with leading mental health experts, and secondary research from reputable medical journals and databases. View Detailed Methodology Page
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Global Bio-Based Leather Market Introduction
Bio-based leather is a biodegradable material made from natural fibers such as vegetable-tanned leather or cotton or a synthetic fiber such as polyurethane. This type of leather does not release any toxic substances into the environment and is often used for shoes, jackets, wallets, and purses. In addition to being eco-friendly, this material is also durable and flexible.
Bio-based leather is a more sustainable and eco-friendly alternative to traditional leather. Animal hides are typically processed using toxic chemicals such as formaldehyde. In contrast, bio-based leather is made of proteins from plants such as soybeans, wheat, and corn. Ethylene gas extracted from plants can also be used to process the material without the use of harmful chemicals.
Bio-based leather has many benefits in comparison to traditional leather.
Bio-based leather is a material made from renewable resources, such as wheat starch and vegetable fats. The leather is created with the use of an enzyme called Bio-zyme, which breaks down the carbohydrates in the plant to produce "acetone", a key ingredient used in many things from shoe polish to PVC plastic.
The market for bio-based leather is surging as it offers many desirable qualities.
One of the best qualities of bio-based leather is that it's made from renewable biomass like sugar cane, bamboo, and corn. For example, a typical pair of shoes can be made from 8 to 12 plastic bottles that are collected and processed into raw materials. This means that there is no need to use finite resources such as natural oil and gas and trees to produce bio-based leather.
Bio-based leather offers many benefits over traditional leather, namely its environmental impact. The world's population is ever-increasing, but the Earth's resources are not. Choosing to adopt bio-based products will allow for more efficient use of these resources for future generations. Bio-based leather is made from materials such as animal byproducts and plant fibers, which lengthens the life of the input source and reduces demand on other natural resources.
The global bio-based leather market is segregated into sources, end uses, and regions. On the basis of product source, the global bio-based leather market is sub-segmented into mushroom, pineapple, cork, leftover fruits, and other sources. Concerning the end use, the bio-based leather goods market is distributed into footwear, garments & accessories, and other end-uses. Based on region, the global Bio-Based Leather market is sub-segmented into North America, Europe, Asia Pacific, Latin America, and the Middle East and Africa.
Global Bio-Based Leather Market Drivers
Pretanning and tanning, both of which are the conventional means of the process, have the biggest impact on water pollution. Tannery effluents contain the most significant quantities of pollution, such as dirt, mud from lime digestion, sulfides, and acids. Leather is an immensely labor-intensive product that produces large quantities of water and pastureland. These resources must be cleared of trees. Tannery chemical such as arsenic has been implicated in the development of lung cancer among workers who are allegedly daily exposed to it. Studies of leather tannery workers in Sweden and Italy located cancer risks. Likewise, huge amounts of fossil fuels die in livestock production. Moreover, real leather has around three times fewer undesirable environmental effects than its synthetic replicas, including PU leather.
PU and PVC, the major raw materials used to manufacture synthetic leather, have some serious harmful effects on human and animal health and the environment. PU is an isocyanate, which can damage the lungs and trigger asthma attacks and cause pulmonary inflammation. It creates skin problems and can even cause an actual respiratory tract infection. Vinyl chloride monomer (VCM), phthalates, and dioxin are all found in PVC. The toxic effects of dioxin fluctuate considerably based on health.
The development of bio-based leather does not have any unfavorable characteristics in comparison with genuine leather or PU/PVC-based leather. The innovators are focusing on developing bio-based leather by root fibers such as flax or cotton mixed with palm, soybean, corn, and various other plants.
Pineapple leaves are valueless in making something of quality by processing them. An assortment of accessories made from pineapple fibers is currently on the marketplace. Various mycelium-based, cell-based, byproduct-based resources can be used to produce bio-based leather alternatives such as chemical peels based on yeast fermentation, mushrooms, waste from food industries, cacti, and others.
Global Bio-Based Leather Market Restraints
Plant-based leather or bio-based leather has been proven safer than plastic-based fake leathers and petroleum-based real leathers; however, they still require substantial chemical processing to give a leather-like texture and lifespan. For example, one type of vegan leather that is being used in the fashion industry is Pinatex. Pinatex is manufactured from waste materials, so it does not require additional natural resources or water. Unfortunately, it is coated with a petroleum-based material to improve its durability, which diminishes its organic integrity. Like apple lace, apple leather is being created using much apple waste mixed with 50% polyurethane coated onto a cotton/polyester canvas. This polyurethane can produce a dangerous gyre during the degradation process.' The fibers that come from pineapple leaves, a normally wasted byproduct that typically gets burned, have high tensile strength and flexibility.
COVID-19 Impact Analysis on Global Bio-Based Leather Market
The global pandemic has affected nearly every sector in the world and even the leather-based industry. The growth rate in the global bio-based leather industry fell by up to 0.1 percent due to the growing effects of the pandemic on the global supply chain and fluctuations of raw material prices. The drop in this case stems from a sharp fall in demand for the footwear, automobile, clothes & accessories industry. The fashion market is highly dependent on this.
Global Bio-Based Leather Market Regional Analysis
The global bio-based leather market is segmented into North America, Europe, the Asia Pacific, Latin America, and the Middle East and Africa.
Markets in the Europe are expected to account for the largest share during the forecast period. This growth is attributable to the implementation of stringent environmental regulations in the EU and rising demand for footwear, garments & accessories made of bio-based leather in this region.
Global Bio-Based Leather Market Competitive Landscape
- Toray Industries Inc.
- Bolt Threads Inc.
- Ananas Anam Ltd.
- Modern Meadows
- Nat-2
- Natural Fiber Welding Inc.
- Ultrafabrics
- MycoWorks
- ECCO Leather
- VEGEA
- Other players
Report Scope
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- Forecast Period: 2022-2031
- Actual Year: 2021
- Historical Data Available for: 2015-2020
Key Regions Covered
- North America
- US
- Canada
- Europe
- Germany
- UK
- France
- Italy
- Spain
- Russia
- Rest of Europe
- Asia Pacific
- China
- Japan
- South Korea
- India
- Rest of Asia Pacific
- Latin America
- Brazil
- Mexico
- Rest of Latin America
- Middle East & Africa
- GCC
- South Africa
- Israel
- Rest of MEA
Key Segments Covered
Key Segments Covered in Global Bio-Based Leather Market by Source
- Mushroom
- Pineapple
- Cork
- Leftover Fruits
- Other Sources
Key Segments Covered in Global Bio-Based Leather Market by End Use
- Footwear
- Garments & Accessories
- Other End Uses
Attribute Report Details Market Size Ask For Market Size Growth Rate Ask For Growth Rate Key Companies Ask For Companies Report Coverage Revenue analysis, Competitive landscape, Key company analysis, Market Trends, Key segments, Distribution Channel, Market Dynamics, COVID-19 Impact Analysis and more… Historical Data Period 2015-2020 Base Year 2022 Forecast Period 2022-2031 Region Scope North America, Europe, Asia-Pacific, South America, Middle East & Africa Country Scope United States, Canada and Mexico, Germany, France, UK, Russia and Italy, China, Japan, Korea, India and Southeast Asia, Brazil, Argentina, Colombia etc.Saudi Arabia, UAE, Egypt, Nigeria and South Africa Revenue in US$ Mn -
- Chapter 1 Global Bio-Based Leather Market Outlook
- 1.1 Introduction
- 1.2 Segmentation of Bio-Based Leather Market Based On Source, End Use, and Region
- 1.3 Drivers
- 1.4 Restraints
- 1.5 Opportunities
- 1.6 Trends
- 1.7 Macro-economic Factors
- 1.8 Regulatory Framework
- 1.9 Global Bio-Based Leather Market Pricing Analysis by Region, 2021
- 1.10 Opportunity Map Analysis
- 1.10.1 Optimistic Scenario
- 1.10.2 Likely Scenario
- 1.10.3 Conservative Scenario
- 1.11 Opportunity Orbits
- 1.12 Market Investment Feasibility Index
- 1.13 PEST Analysis
- 1.14 PORTER’S Five Force Analysis
- 1.15 Drivers & Restraints Impact Analysis
- 1.16 Marketing Strategy
- 1.17 Product Life Cycle Analysis
- 1.18 Value Chain Analysis
- 1.19 Cost Structure Analysis
- 1.20 Regional Market Share and BPS Analysis in Bio-Based Leather Market
- 1.21 COVID-19 Impact Analysis
- Chapter 2 Global Bio-Based Leather Market Overview
- 2.1 Global Market Value & Volume Comparison by Source (2015-2031)
- 2.1.1 Global Market Value & Volume Market Share by Source in 2021
- 2.1.2 Global Attractiveness Analysis by Source, 2015–2022
- 2.2 Global Market Value & Volume Comparison by End Use (2015-2031)
- 2.2.1 Global Market Value & Volume Market Share by End Use in 2021
- 2.2.2 Global Attractiveness Analysis by End Use, 2015–2022
- 2.3 Global Outlook by Region
- 2.3.1 Global Market Value & Volume Comparison by Region (2015-2031)
- 2.3.2 Global Market Value & Volume Market Share by Region in 2021
- 2.3.3 Global Attractiveness Analysis by Region, 2015–2022
- 2.4 Global Outlook (2015-2031)
- 2.4.1 Global Market Value & Volume (2015–2022)
- 2.4.2 Global Market Value & Volume (2023-2031)
- 2.5 Global Market Value & Volume by Regions
- 2.5.1 Global Market Value & Volume Comparison by Region (2015–2022)
- 2.5.2 Global Market Value & Volume Comparison by Region (2023-2031)
- 2.6 Global Market Value & Volume by Source
- 2.6.1 Global Market Value & Volume Comparison by Source (2015–2022)
- 2.6.2 Global Market Value & Volume Comparison by Source (2023-2031)
- 2.7 Global Market Value & Volume by End Use
- 2.7.1 Global Market Value & Volume Comparison by End Use (2015–2022)
- 2.7.2 Global Market Value & Volume Comparison by End Use (2023-2031)
- 2.8 Global Market Y-o-Y Growth Rate Comparison 2016–2031
- 2.8.1 Global Market Y-o-Y Growth Rate by Region
- 2.8.2 Global Market Y-o-Y Growth Rate by Source
- 2.8.3 Global Market Y-o-Y Growth Rate by End Use
- 2.9 Global Market Share Comparison 2015–2031
- 2.9.1 Global Market Share by Region
- 2.9.2 Global Market Share by Source
- 2.9.3 Global Market Share by End Use
- 2.1 Global Market Value & Volume Comparison by Source (2015-2031)
- Chapter 3 North America Bio-Based Leather Market Overview
- 3.1 North America by Source
- 3.1.1 North America Market Value & Volume Comparison by Source (2015-2031)
- 3.1.2 North America Market Value & Volume Market Share by Source in 2021
- 3.2 North America Market Value & Volume Comparison by End Use (2015-2031)
- 3.2.1 North America Market Value & Volume Market Share by End Use in 2021
- 3.2.2 North America Attractiveness Analysis by End Use, 2015–2022
- 3.3 North America Outlook by Region
- 3.3.1 North America Market Value & Volume Comparison by Region (2015-2031)
- 3.3.2 North America Market Value & Volume Market Share by Region in 2021
- 3.3.3 North America Attractiveness Analysis by Region, 2015–2022
- 3.4 North America Outlook (2015-2031)
- 3.4.1 North America Market Value & Volume (2015–2022)
- 3.4.2 North America Market Value & Volume (2023-2031)
- 3.5 North America Market Value & Volume by Regions
- 3.5.1 North America Market Value & Volume Comparison by Region (2015–2022)
- 3.5.2 North America Market Value & Volume Comparison by Region (2023-2031)
- 3.6 North America Market Value & Volume by Source
- 3.6.1 North America Market Value & Volume Comparison by Source (2015–2022)
- 3.6.2 North America Market Value & Volume Comparison by Source (2023-2031)
- 3.7 North America Market Value & Volume by End Use
- 3.7.1 North America Market Value & Volume Comparison by End Use (2015–2022)
- 3.7.2 North America Market Value & Volume Comparison by End Use (2023-2031)
- 3.8 North America Market Y-o-Y Growth Rate Comparison 2016–2031
- 3.8.1 North America Market Y-o-Y Growth Rate by Region
- 3.8.2 North America Market Y-o-Y Growth Rate by Source
- 3.8.3 North America Market Y-o-Y Growth Rate by End Use
- 3.9 North America Market Share Comparison 2015–2031
- 3.9.1 North America Market Share by Region
- 3.9.2 North America Market Share by Source
- 3.9.3 North America Market Share by End Use
- 3.1 North America by Source
- Chapter 4 Europe Bio-Based Leather Market Overview
- 4.1 Europe by Source
- 4.1.1 Europe Market Value & Volume Comparison by Source (2015-2031)
- 4.1.2 Europe Market Value & Volume Market Share by Source in 2021
- 4.2 Europe Market Value & Volume Comparison by End Use (2015-2031)
- 4.2.1 Europe Market Value & Volume Market Share by End Use in 2021
- 4.2.2 Europe Attractiveness Analysis by End Use, 2015–2022
- 4.3 Europe Outlook by Region
- 4.3.1 Europe Market Value & Volume Comparison by Region (2015-2031)
- 4.3.2 Europe Market Value & Volume Market Share by Region in 2021
- 4.3.3 Europe Attractiveness Analysis by Region, 2015–2022
- 4.4 Europe Outlook (2015-2031)
- 4.4.1 Europe Market Value & Volume (2015–2022)
- 4.4.2 Europe Market Value & Volume (2023-2031)
- 4.5 Europe Market Value & Volume by Regions
- 4.5.1 Europe Market Value & Volume Comparison by Region (2015–2022)
- 4.5.2 Europe Market Value & Volume Comparison by Region (2023-2031)
- 4.6 Europe Market Value & Volume by Source
- 4.6.1 Europe Market Value & Volume Comparison by Source (2015–2022)
- 4.6.2 Europe Market Value & Volume Comparison by Source (2023-2031)
- 4.7 Europe Market Value & Volume by End Use
- 4.7.1 Europe Market Value & Volume Comparison by End Use (2015–2022)
- 4.7.2 Europe Market Value & Volume Comparison by End Use (2023-2031)
- 4.8 Europe Market Y-o-Y Growth Rate Comparison 2016–2031
- 4.8.1 Europe Market Y-o-Y Growth Rate by Region
- 4.8.2 Europe Market Y-o-Y Growth Rate by Source
- 4.8.3 Europe Market Y-o-Y Growth Rate by End Use
- 4.9 Europe Market Share Comparison 2015–2031
- 4.9.1 Europe Market Share by Region
- 4.9.2 Europe Market Share by Source
- 4.9.3 Europe Market Share by End Use
- 4.1 Europe by Source
- Chapter 5 Asia-Pacific Bio-Based Leather Market Overview
- 5.1 Asia-Pacific by Source
- 5.1.1 Asia-Pacific Market Value & Volume Comparison by Source (2015-2031)
- 5.1.2 Asia-Pacific Market Value & Volume Market Share by Source in 2021
- 5.2 Asia-Pacific Market Value & Volume Comparison by End Use (2015-2031)
- 5.2.1 Asia-Pacific Market Value & Volume Market Share by End Use in 2021
- 5.2.2 Asia-Pacific Attractiveness Analysis by End Use, 2015–2022
- 5.3 Asia-Pacific Outlook by Region
- 5.3.1 Asia-Pacific Market Value & Volume Comparison by Region (2015-2031)
- 5.3.2 Asia-Pacific Market Value & Volume Market Share by Region in 2021
- 5.3.3 Asia-Pacific Attractiveness Analysis by Region, 2015–2022
- 5.4 Asia-Pacific Outlook (2015-2031)
- 5.4.1 Asia-Pacific Market Value & Volume (2015–2022)
- 5.4.2 Asia-Pacific Market Value & Volume (2023-2031)
- 5.5 Asia-Pacific Market Value & Volume by Regions
- 5.5.1 Asia-Pacific Market Value & Volume Comparison by Region (2015–2022)
- 5.5.2 Asia-Pacific Market Value & Volume Comparison by Region (2023-2031)
- 5.6 Asia-Pacific Market Value & Volume by Source
- 5.6.1 Asia-Pacific Market Value & Volume Comparison by Source (2015–2022)
- 5.6.2 Asia-Pacific Market Value & Volume Comparison by Source (2023-2031)
- 5.7 Asia-Pacific Market Value & Volume by End Use
- 5.7.1 Asia-Pacific Market Value & Volume Comparison by End Use (2015–2022)
- 5.7.2 Asia-Pacific Market Value & Volume Comparison by End Use (2023-2031)
- 5.8 Asia-Pacific Market Y-o-Y Growth Rate Comparison 2016–2031
- 5.8.1 Asia-Pacific Market Y-o-Y Growth Rate by Region
- 5.8.2 Asia-Pacific Market Y-o-Y Growth Rate by Source
- 5.8.3 Asia-Pacific Market Y-o-Y Growth Rate by End Use
- 5.9 Asia-Pacific Market Share Comparison 2015–2031
- 5.9.1 Asia-Pacific Market Share by Region
- 5.9.2 Asia-Pacific Market Share by Source
- 5.9.3 Asia-Pacific Market Share by End Use
- 5.1 Asia-Pacific by Source
- Chapter 6 Latin America Bio-Based Leather Market Overview
- 6.1 Latin America by Source
- 6.1.1 Latin America Market Value & Volume Comparison by Source (2015-2031)
- 6.1.2 Latin America Market Value & Volume Market Share by Source in 2021
- 6.2 Latin America Market Value & Volume Comparison by End Use (2015-2031)
- 6.2.1 Latin America Market Value & Volume Market Share by End Use in 2021
- 6.2.2 Latin America Attractiveness Analysis by End Use, 2015–2022
- 6.3 Latin America Outlook by Region
- 6.3.1 Latin America Market Value & Volume Comparison by Region (2015-2031)
- 6.3.2 Latin America Market Value & Volume Market Share by Region in 2021
- 6.3.3 Latin America Attractiveness Analysis by Region, 2015–2022
- 6.4 Latin America Outlook (2015-2031)
- 6.4.1 Latin America Market Value & Volume (2015–2022)
- 6.4.2 Latin America Market Value & Volume (2023-2031)
- 6.5 Latin America Market Value & Volume by Regions
- 6.5.1 Latin America Market Value & Volume Comparison by Region (2015–2022)
- 6.5.2 Latin America Market Value & Volume Comparison by Region (2023-2031)
- 6.6 Latin America Market Value & Volume by Source
- 6.6.1 Latin America Market Value & Volume Comparison by Source (2015–2022)
- 6.6.2 Latin America Market Value & Volume Comparison by Source (2023-2031)
- 6.7 Latin America Market Value & Volume by End Use
- 6.7.1 Latin America Market Value & Volume Comparison by End Use (2015–2022)
- 6.7.2 Latin America Market Value & Volume Comparison by End Use (2023-2031)
- 6.8 Latin America Market Y-o-Y Growth Rate Comparison 2016–2031
- 6.8.1 Latin America Market Y-o-Y Growth Rate by Region
- 6.8.2 Latin America Market Y-o-Y Growth Rate by Source
- 6.8.3 Latin America Market Y-o-Y Growth Rate by End Use
- 6.9 Latin America Market Share Comparison 2015–2031
- 6.9.1 Latin America Market Share by Region
- 6.9.2 Latin America Market Share by Source
- 6.9.3 Latin America Market Share by End Use
- 6.1 Latin America by Source
- Chapter 7 MEA Bio-Based Leather Market Overview
- 7.1 MEA by Source
- 7.1.1 MEA Market Value & Volume Comparison by Source (2015-2031)
- 7.1.2 MEA Market Value & Volume Market Share by Source in 2021
- 7.2 MEA Market Value & Volume Comparison by End Use (2015-2031)
- 7.2.1 MEA Market Value & Volume Market Share by End Use in 2021
- 7.2.2 MEA Attractiveness Analysis by End Use, 2015–2022
- 7.3 MEA Outlook by Region
- 7.3.1 MEA Market Value & Volume Comparison by Region (2015-2031)
- 7.3.2 MEA Market Value & Volume Market Share by Region in 2021
- 7.3.3 MEA Attractiveness Analysis by Region, 2015–2022
- 7.4 MEA Outlook (2015-2031)
- 7.4.1 MEA Market Value & Volume (2015–2022)
- 7.4.2 MEA Market Value & Volume (2023-2031)
- 7.5 MEA Market Value & Volume by Regions
- 7.5.1 MEA Market Value & Volume Comparison by Region (2015–2022)
- 7.5.2 MEA Market Value & Volume Comparison by Region (2023-2031)
- 7.6 MEA Market Value & Volume by Source
- 7.6.1 MEA Market Value & Volume Comparison by Source (2015–2022)
- 7.6.2 MEA Market Value & Volume Comparison by Source (2023-2031)
- 7.7 MEA Market Value & Volume by End Use
- 7.7.1 MEA Market Value & Volume Comparison by End Use (2015–2022)
- 7.7.2 MEA Market Value & Volume Comparison by End Use (2023-2031)
- 7.8 MEA Market Y-o-Y Growth Rate Comparison 2016–2031
- 7.8.1 MEA Market Y-o-Y Growth Rate by Region
- 7.8.2 MEA Market Y-o-Y Growth Rate by Source
- 7.8.3 MEA Market Y-o-Y Growth Rate by End Use
- 7.9 MEA Market Share Comparison 2015–2031
- 7.9.1 MEA Market Share by Region
- 7.9.2 MEA Market Share by Source
- 7.9.3 MEA Market Share by End Use
- 7.1 MEA by Source
- Chapter 8 Global Bio-Based Leather Market Company Profiles
- 8.1 Market Competition Scenario Analysis, By Company
- 8.2 Competitor Landscape
- 8.3 Company Share Analysis
- 8.4 Company Profiles
- 8.4.1 Toray Industries Inc.
- 8.4.1.1 Company Overview
- 8.4.1.2 Business Description
- 8.4.1.3 Product Portfolio
- 8.4.1.4 Key Financials
- 8.4.1.5 Key Developments
- 8.4.1.6 SWOT Analysis
- 8.4.2 Bolt Threads Inc.
- 8.4.2.1 Company Overview
- 8.4.2.2 Business Description
- 8.4.2.3 Product Portfolio
- 8.4.2.4 Key Financials
- 8.4.2.5 Key Developments
- 8.4.2.6 SWOT Analysis
- 8.4.3 Ananas Anam Ltd.
- 8.4.3.1 Company Overview
- 8.4.3.2 Business Description
- 8.4.3.3 Product Portfolio
- 8.4.3.4 Key Financials
- 8.4.3.5 Key Developments
- 8.4.3.6 SWOT Analysis
- 8.4.4 Modern Meadows
- 8.4.4.1 Company Overview
- 8.4.4.2 Business Description
- 8.4.4.3 Product Portfolio
- 8.4.4.4 Key Financials
- 8.4.4.5 Key Developments
- 8.4.4.6 SWOT Analysis
- 8.4.5 Nat-2
- 8.4.5.1 Company Overview
- 8.4.5.2 Business Description
- 8.4.5.3 Product Portfolio
- 8.4.5.4 Key Financials
- 8.4.5.5 Key Developments
- 8.4.5.6 SWOT Analysis
- 8.4.6 Natural Fiber Welding Inc.
- 8.4.6.1 Company Overview
- 8.4.6.2 Business Description
- 8.4.6.3 Product Portfolio
- 8.4.6.4 Key Financials
- 8.4.6.5 Key Developments
- 8.4.6.6 SWOT Analysis
- 8.4.7 Ultrafabrics
- 8.4.7.1 Company Overview
- 8.4.7.2 Business Description
- 8.4.7.3 Product Portfolio
- 8.4.7.4 Key Financials
- 8.4.7.5 Key Developments
- 8.4.7.6 SWOT Analysis
- 8.4.8 MycoWorks
- 8.4.8.1 Company Overview
- 8.4.8.2 Business Description
- 8.4.8.3 Product Portfolio
- 8.4.8.4 Key Financials
- 8.4.8.5 Key Developments
- 8.4.8.6 SWOT Analysis
- 8.4.9 ECCO Leather
- 8.4.9.1 Company Overview
- 8.4.9.2 Business Description
- 8.4.9.3 Product Portfolio
- 8.4.9.4 Key Financials
- 8.4.9.5 Key Developments
- 8.4.9.6 SWOT Analysis
- 8.4.10 VEGEA
- 8.4.10.1 Company Overview
- 8.4.10.2 Business Description
- 8.4.10.3 Product Portfolio
- 8.4.10.4 Key Financials
- 8.4.10.5 Key Developments
- 8.4.10.6 SWOT Analysis
- 8.4.11 Other Key Players
- 8.4.1 Toray Industries Inc.
- Chapter 9 Research Methodology
- 9.1 Research Methodology
- 9.2 Primary Research
- 9.3 Secondary Research
- 9.4 Report Scope
- Chapter 10 About Us
- 10.1 Who we are:
- Chapter 11 Disclaimer
- Chapter 1 Global Bio-Based Leather Market Outlook
-
- Toray Industries Inc.
- Bolt Threads Inc.
- Ananas Anam Ltd.
- Modern Meadows
- Nat-2
- Natural Fiber Welding Inc.
- Ultrafabrics
- MycoWorks
- ECCO Leather
- VEGEA
- Other players