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Isocyanates Market by Type (MDI, TDI, Aliphatic), Application (Foams, Adhesives & Sealants, Coatings), End-use Industry (Automotive, Building & Construction, Furniture & Bedding, Consumer Goods, Industrial Coatings), and Region - Global Forecast to 2030

Publisher MarketsandMarkets
Published Feb 26, 2026
Length 312 Pages
SKU # MKMK21001436

Description

The global isocyanates market is projected to grow from USD 32.23 billion in 2025 to USD 39.68 billion by 2030, registering a CAGR of 4.2% during the forecast period (2025-2030), in terms of value.

Isocyanates have experienced steady growth in recent years and are expected to continue at a moderate pace, driven by rising demand for polyurethane. Urbanization, infrastructure development, and growth in the automotive sector (including lightweight and electric vehicles) are significant contributors to the increased use of rigid polyurethane foams for building insulation and cold storage. This demand is also driven by the growing use of flexible polyurethane foams in the furniture and bedding manufacturing industries. In addition, the Asia Pacific region remains a key driver of overall isocyanate volume growth, supported by strong manufacturing activity and added capacity. Lastly, regulatory initiatives promoting energy efficiency and the use of sustainable materials will support this upward trend in the isocyanates market. There are several obstacles to expanding isocyanate production, including fluctuating raw material prices and increasingly stringent environmental regulations; however, ongoing innovation and the growing use of isocyanates in industrial applications will support continued market expansion.

“By type, the MDI segment is anticipated to account for the largest market share during the forecast period (2025-2030).”

By type, MDI (methylene diphenyl diisocyanate) is estimated to dominate the isocyanates market. The primary use of MDI is in the production of rigid polyurethane foam, which offers excellent thermal efficiency and a very high strength-to-weight ratio, making it widely used for building insulation, refrigeration, and cold chain infrastructure. In addition, MDI is used in numerous other applications, such as flexible foams, binders, elastomers, adhesives, and sealants, further increasing demand from automotive, furniture, footwear, and industrial markets. Compared to TDI (toluene diisocyanate), MDI provides better mechanical properties, improved dimensional stability, and lower volatility, making it more favorable for construction and industrial applications. Furthermore, due to the emphasis on energy-efficient buildings and global infrastructure development, demand for insulation using MDI-based products has increased dramatically. MDI’s dominant position in the market is also enhanced by large-scale production facilities typically located in the Asia Pacific region and ongoing improvements in technology.

By end-use industry, the building & construction segment is anticipated to account for the largest market share during the forecast period (2025-2030).

The building & construction sector is by far the largest end-use market for isocyanates, owing to their essential role in the polyurethanes used to manufacture them. Isocyanates, mainly the MDI variety, are critical in producing rigid polyurethane foams, which are extensively used for insulation of walls, roofs, floors, pipes, and cold storage, thanks to their superior structural performance and thermal properties. Furthermore, with increased regulations imposed on energy efficiency by governments around the world, there has been a continual increase in demand for insulation materials with high energy performance. In addition, population growth, rapid urbanization, and the expansion of residential and commercial construction activities in developing economies, along with additional renovation and retrofit projects, have driven the consumption of isocyanate-based products at a very rapid pace. As polyurethane-based coatings, sealants, adhesives, and waterproofing systems improve mechanical properties, increase durability, enhance weather resistance, and strengthen structural integrity, they further increase the market share of isocyanates in the construction industry.

“Asia Pacific is anticipated to account for the largest market share during the forecast period (2025-2030).”

Large-scale isocyanate consumption is primarily driven by the Asia Pacific region, the largest regional market, due to the large number of construction projects underway across the continent, strong manufacturing capabilities in Asia, and the rapid pace of urban growth. Major countries with high construction activity, such as China, India, Japan, and South Korea, drive significant demand for rigid polyurethane foam products for insulation and energy efficiency in new buildings. Furthermore, the Asia Pacific region is a major hub for automotive, furniture, electronics, and appliance manufacturing. These industries consume significant amounts of polyurethane-based materials produced from isocyanates. Continued population growth, rising disposable incomes, and the expansion of the middle class have led to rising demand for housing and consumer goods across the Asia Pacific region. In addition, there are many large-scale isocyanate production facilities in the Asia Pacific region, with a concentration in China, that offer highly competitive pricing for isocyanate products and a strong supply for international exports. Government support for industrial development, through both industrial development policies and infrastructure investment, is contributing to the continued growth of the isocyanate market in the Asia Pacific region. The combination of heavy consumption, growing end-use markets, and production capabilities in Asia Pacific is establishing the region as the dominant market for isocyanates.

In-depth interviews were conducted with Chief Executive Officers (CEOs), marketing directors, other innovation and technology directors, and executives from key organizations operating in the isocyanates market, and secondary research was used to determine and verify the market sizes of several segments.
  • By Company Type: Tier 1 – 50%, Tier 2 – 30%, and Tier 3 – 20%
  • By Designation: Managers– 15%, Directors – 20%, and Others – 65%
  • By Region: North America – 30%, Europe – 25%, Asia Pacific – 35%, the Middle East & Africa –5%, and South America- 5%
The isocyanates market comprises of major companies such as BASF (Germany), Covestro AG (Germany), Wanhua (China), Huntsman International LLC (US), Tosoh Corporation (Japan), SABIC (Saudi Arabia), Mitsui Chemicals Inc. (Japan), Hanwha Solutions (South Korea), Cangzhou Dahua Group Co., Ltd. (China) and Dow (US). The study includes in-depth competitive analysis of these key players in the isocyanates market, with their company profiles, recent developments, and key market strategies.

Research Coverage

This report segments the isocyanates market by type, end-use industry, application, and region, and provides estimates of the overall market value across various regions. A detailed analysis of key industry players has been conducted to provide insights into their business overviews, products & services, key strategies, and expansions associated with the isocyanates market.

Key benefits of buying this report

This research report focuses on multiple levels of analysis — industry analysis (industry trends), market ranking analysis of top players, and company profiles, which together provide an overall view of the competitive landscape; emerging and high-growth segments of the isocyanates market; high-growth regions; and market drivers, restraints, opportunities, and challenges.

The report provides insights into the following:
  • Analysis of drivers: Surging demand for polyurethane foams in insulation & lightweight materials, automotive industry electrification & weight reduction, shift to advanced coatings with enhanced durability and low VOC compliances), restraints (stringent regulatory environment for isocyanate handling and substitution risks from emerging polymer technologies), opportunities (development of bio-based & greener isocyanate routes, rapid growth of footwear & technical textile applications, increasing demand in renewable energy sectors), and challenges (technical formulation complexity at end user, feedstock supply chain disruptions) influencing the growth of isocyanates market.
  • Market Penetration: Comprehensive information on the isocyanates offered by top players in the global market
  • Product Development/Innovation: Detailed insights on upcoming technologies, product launches, expansions, and acquisitions in the isocyanates market
  • Market Development: Comprehensive information about lucrative emerging markets, the report analyzes the markets for isocyanates market across regions
  • Market Capacity: Production capacity of the companies is provided, wherever available, with upcoming capacities for the isocyanates market
  • Competitive Assessment: In-depth assessment of market share, strategies, products, and manufacturing capabilities of leading players in the isocyanates market

Table of Contents

312 Pages
1 Introduction
1.1 Study Objectives
1.2 Market Definition
1.3 Study Scope
1.3.1 Markets Covered And Regional Scope
1.3.2 Inclusions And Exclusions
1.3.3 Years Considered
1.3.4 Currency Considered
1.3.5 Unit Considered
1.4 Stakeholders
2 Executive Summary
2.1 Key Insights And Market Highlights
2.2 Key Market Participants: Share Insights And Strategic Developments
2.3 Disruptive Trends Shaping Market
2.4 High-growth Segments & Emerging Frontiers
2.5 Snapshot: Global Market Size, Growth Rate, And Forecast
3 Premium Insights
3.1 Attractive Opportunities For Players In Isocyanates Market
3.2 Isocyanates Market, By Type And Region
3.3 Isocyanates Market, By Application
3.4 Isocyanates Market, By End-use Industry
3.5 Isocyanates Market, By Country
4 Market Overview
4.1 Introduction
4.2 Market Dynamics
4.2.1 Drivers
4.2.1.1 Surging Demand For Polyurethane Foams In Insulation & Lightweight Materials
4.2.1.2 Automotive Industry Electrification & Weight Reduction
4.2.1.3 Shift To Advanced Coatings With Enhanced Durability And Low Voc Compliance
4.2.2 Restraints
4.2.2.1 Stringent Regulatory Environment For Isocyanate Handling
4.2.2.2 Substitution Risks From Emerging Polymer Technologies
4.2.3 Opportunities
4.2.3.1 Development Of Bio-based & Greener Isocyanate Routes
4.2.3.2 Rapid Growth Of Footwear & Technical Textile Applications
4.2.3.3 Increasing Demand In Renewable Energy Sectors
4.2.4 Challenges
4.2.4.1 Technical Formulation Complexity At End Users
4.2.4.2 Feedstock Supply Chain Disruptions
4.3 Unmet Needs And White Spaces
4.3.1 Unmet Needs In Isocyanates Market
4.3.2 White Space Opportunities
4.4 Interconnected Markets And Cross-sector Opportunities
4.4.1 Interconnected Markets
4.4.2 Cross-sector Opportunities
4.5 Strategic Moves By Tier-1/2/3 Players
4.5.1 Key Moves And Strategic Focus
5 Industry Trends
5.1 Porter’s Five Forces Analysis
5.1.1 Threat Of New Entrants
5.1.2 Threat Of Substitutes
5.1.3 Bargaining Power Of Suppliers
5.1.4 Bargaining Power Of Buyers
5.1.5 Intensity Of Competitive Rivalry
5.2 Macroeconomic Indicators
5.2.1 Introduction
5.2.2 Gdp Trends And Forecast
5.2.3 Trends In Global Automotive Industry
5.3 Supply Chain Analysis
5.4 Pricing Analysis (2021–2024)
5.4.1 Average Selling Price Trend, By Region (2021–2024)
5.4.2 Average Selling Price Trend, By Type (2021–2024)
5.4.3 Average Selling Price Trend, By Application (2021–2024)
5.4.4 Average Selling Price Trend, By End-use Industry (2021–2024)
5.4.5 Average Selling Price Of Isocyanate Types Among Key Players, 2024
5.5 Ecosystem Analysis
5.6 Trade Analysis
5.6.1 Import Scenario (Hs Code 292910)
5.6.2 Export Scenario (Hs Code 292910)
5.7 Key Conferences And Events, 2026
5.8 Trends/Disruptions Impacting Customer Business
5.9 Investment And Funding Scenario
5.10 Case Study Analysis
5.10.1 Advancing Automotive Lightweighting Through Isocyanate-based Polyurethane Systems
5.10.2 Energy-efficient Buildings With Isocyanate-based Polyurethane Insulation Systems
5.10.3 Strengthened Electronics Durability And Thermal Management Through Isocyanate Technologies
5.11 Impact Of 2025 Us Tariff – Isocyanates Market
5.11.1 Introduction
5.11.2 Key Tariff Rates
5.11.3 Price Impact Analysis
5.11.4 Impact On Countries/Regions
5.11.4.1 North America
5.11.4.2 Europe
5.11.4.3 Asia Pacific
5.11.5 Impact On End-use Industries
6 Technological Advancements, Ai-driven Impact, Patents, Innovations, And Future Applications
6.1 Key Emerging Technologies
6.1.1 Phosgenation Process Optimization
6.1.2 Non-phosgene Isocyanate Production Routes
6.1.3 Integrated Mdi/Tdi Complexes With Upstream Aniline
6.1.4 Low-carbon And Electrified Isocyanate Production
6.2 Complementary Technologies
6.2.1 Polyol Formulation And Reactive Blending
6.2.2 Continuous Foaming, Coating, And Casting Process
6.2.3 Digital Process Control And Smart Manufacturing
6.3 Adjacent Technologies
6.3.1 Non-isocyanate Polyurethanes And Bio-based Polymer Systems
6.3.2 Alternative Thermoset And Thermoplastic Material Systems
6.4 Technology/Product Roadmap
6.4.1 Short-term Roadmap: Process Optimization And Cost Rationalization
6.4.2 Mid-term Roadmap: Customization, Application-specific Grades, And Sustainability Integration
6.4.3 Long-term Roadmap: Advanced Functionalization And Circular Material Enablement
6.5 Patent Analysis
6.5.1 Methodology
6.5.2 Granted Patents, 2016–2025
6.5.2.1 Publication Trends, 2016–2025
6.5.3 Insights
6.5.4 Legal Status
6.5.5 Jurisdiction Analysis
6.5.6 Top Applicants
6.5.7 List Of Major Patents
6.6 Future Applications
6.6.1 Electric Vehicle (Ev) Battery Systems And E-mobility Materials
6.6.2 High-performance Building Insulation For Net-zero Construction
6.6.3 Lightweight Structural Composites For Automotive, Rail,
And Aerospace
6.6.4 Advanced Electronics Encapsulation And Thermal Management Materials
6.7 Impact Of Ai/Gen Ai On Isocyanates Market
6.7.1 Top Use Cases And Market Potential
6.7.2 Best Practices In Isocyanates Manufacturing
6.7.3 Case Studies Of Ai Implementation In Isocyanates Market
6.7.4 Interconnected Adjacent Ecosystem And Impact
On Market Players
6.7.5 Clients’ Readiness To Adopt Generative Ai In Isocyanates Market
6.8 Success Stories And Real-world Applications
6.8.1 Basf (Germany): Integrated Isocyanate And Polyurethane Solutions
6.8.2 Covestro Ag (Germany): High-performance Polyurethane
Material Solutions
6.8.3 Huntsman (Us): Specialty Isocyanates And Polyurethane Systems
7 Sustainability And Regulatory Landscape
7.1 Regional Regulations And Compliance
7.1.1 Regulatory Bodies, Government Agencies, And Other Organizations
7.1.2 Industry Standards
7.2 Sustainability Initiatives
7.2.1 Carbon Impact And Eco-applications Of Isocyanates
7.3 Sustainability Impact And Regulatory Policy Initiatives
7.4 Certifications, Labeling, And Eco-standards
8 Customer Landscape & Buyer Behavior
8.1 Decision-making Process
8.2 Buyer Stakeholders And Buying Evaluation Criteria
8.2.1 Key Stakeholders In Buying Process
8.2.2 Buying Criteria
8.3 Adoption Barriers & Internal Challenges
8.4 Unmet Needs From Various End-use Industry
8.5 Market Profitability
8.5.1 Value Addition And Functional Premiums
8.5.2 Feedstock And Cost Structure Sensitivity
8.5.3 Scale, Customization, And Operating Leverage
8.5.4 Customer Lock-in And Switching Costs
9 Isocyanates Market, By Application
9.1 Introduction
9.2 Foams
9.2.1 Rigid Foams
9.2.1.1 Segment Growth Driven By Global Building Construction Activity And Sustainability-driven Insulation Requirements
9.2.2 Flexible Foams
9.2.2.1 Growth In Consumer Goods And Automotive Interiors Requirements For Comfort And Vibration Damping To Drive Segment
9.3 Adhesives & Sealants
9.3.1 Driven By Increasing Use In Construction Joints,
Automotive Lightweighting, And Structural Bonding
9.4 Coatings
9.4.1 Growth In Automotive Refinish, Industrial Protection,
And Architectural Coating Demand
9.5 Elastomers And Cast Systems
9.5.1 Leveraged By Expansion Of Mining, Construction,
And Heavy Industrial Equipment Markets.
9.6 Others
10 Isocyanates Market, By End-use Industry
10.1 Introduction
10.2 Automotive
10.2.1 Demand For Automotive Lightweighting And Comfort
To Drive Demand
10.3 Building & Construction
10.3.1 Rising Demand For Isocyanates In Medical Packaging
To Drive Market
10.4 Furniture & Bedding
10.4.1 Rising Demand For Insulation And Structural Materials
To Boost Consumption
10.5 Industrial Coatings
10.5.1 Growing Use Of Durable And Protective Coatings To Drive Demand
10.6 Electricals & Electronics
10.6.1 Increase In Electronics Protection And Insulation
Applications To Support Market Growth
10.7 Consumer Goods
10.7.1 Expanding Applications Support Market Growth
10.8 Others
11 Isocyanates Market, By Type
11.1 Introduction
11.2 Aromatic Isocyanates
11.2.1 Tdi
11.2.1.1 Segment Driven By Large-scale Consumption In Flexible Foams For Furniture, Bedding, And Automotive Seating Applications
11.2.2 Mdi
11.2.2.1 Growth Supported By Strong Demand For Rigid Insulation Foams And Structural Polyurethane Materials In Construction And Appliances
11.3 Aliphatic Isocyanates
11.3.1 Hdi
11.3.1.1 Segment Driven By Demand For Uv-stable And Durable Coatings In Automotive And Industrial Applications
11.3.2 Ipdi
11.3.2.1 Rising Use In Non-yellowing, Weather-resistant Coatings And Specialty Polyurethane Systems To Boost Segment
11.3.3 Hmdi
11.3.3.1 Use In High-performance Elastomers And Coatings For Superior Mechanical Strength And Uv Stability To Drive Growth
11.4 Other Types
12 Isocyanates Market, By Region
12.1 Introduction
12.2 Asia Pacific
12.2.1 China
12.2.1.1 Rising Consumer Goods Production And Retail Sales Increase Polyurethane-based Product Usage
12.2.2 Japan
12.2.2.1 Sustained Automotive Production And Advanced Manufacturing Sectors To Drive Specialty Polyurethane Demand
12.2.3 India
12.2.3.1 Rapid Expansion Of Automotive Production And Government-backed Infrastructure Investment To Drive Demand
12.2.4 South Korea
12.2.4.1 Strong Automotive And Electronics Manufacturing To Drive Consistent Demand
12.2.5 Rest Of Asia Pacific
12.3 North America
12.3.1 Us
12.3.1.1 Strong Construction And Expanding Ev Manufacturing Drives Demand
12.3.2 Canada
12.3.2.1 Climate-driven Insulation Demand And Infrastructure Upgrades Support Steady Growth
12.3.3 Mexico
12.3.3.1 Expanding Automotive And Nearshoring-led Manufacturing Growth To Fuel Consumption
12.4 Europe
12.4.1 Germany
12.4.1.1 Robust Automotive And Advanced Manufacturing Sectors Sustain Isocyanates Demand
12.4.2 Italy
12.4.2.1 Diverse Manufacturing And Construction Activities Underpin Stable Isocyanate Demand Across Multiple Applications
12.4.3 France
12.4.3.1 Industrial Diversification Enables Steady Isocyanates Consumption Across Automotive, Construction, And Specialty Sectors.
12.4.4 Uk
12.4.4.1 Construction And Diversified Manufacturing Sectors To Boost Market
12.4.5 Spain
12.4.5.1 Robust Automotive Production Supports Expansive Downstream Applications
12.4.6 Rest Of Europe
12.5 Middle East & Africa
12.5.1 Gcc Countries
12.5.1.1 Saudi Arabia
12.5.1.1.1 Expansion Of Automotive Manufacturing And Large Construction Projects To Fuel Growth
12.5.1.2 Uae
12.5.1.2.1 Strategic Industrial Diversification And Manufacturing Expansion To Boost Demand
12.5.1.3 Other Gcc Countries
12.5.1.4 South Africa
12.5.1.4.1 Strong Automotive Manufacturing Base Supports Sustained Demand For Polyurethane Materials
12.5.1.5 Rest Of Middle East & Africa
12.6 South America
12.6.1 Argentina
12.6.1.1 Resilient Automotive And Construction Sectors Support Incremental Growth In Isocyanate Applications
12.6.2 Brazil
12.6.2.1 Strong Automotive Production Coupled With Expanding Construction And Furniture Industries To Drive Demand
12.6.3 Rest Of South America
13 Competitive Landscape
13.1 Introduction
13.2 Key Players’ Strategies/Right To Win
13.3 Market Share Analysis, 2024
13.3.1 Basf
13.3.2 Wanhua
13.3.3 Covestro Ag
13.3.4 Dow
13.3.5 Huntsman International Llc
13.4 Revenue Analysis
13.5 Company Evaluation Matrix: Key Players, 2024
13.5.1 Stars
13.5.2 Emerging Leaders
13.5.3 Pervasive Players
13.5.4 Participants
13.5.5 Company Footprint: Key Players, 2024
13.5.5.1 Company Footprint
13.5.5.2 Region Footprint
13.5.5.3 Type Footprint
13.5.5.4 Application Footprint
13.5.5.5 End-use Industry Footprint
13.6 Company Evaluation Matrix: Startups/Smes, 2024
13.6.1 Progressive Companies
13.6.2 Responsive Companies
13.6.3 Dynamic Companies
13.6.4 Starting Blocks
13.6.5 Competitive Benchmarking
13.6.5.1 Detailed List Of Key Startups/Smes
13.6.5.2 Competitive Benchmarking Of Key Startups/Smes
13.7 Brand/Product Comparison
13.8 Company Valuation And Financial Metrics
13.9 Competitive Scenario
13.9.1 Deals
13.9.2 Expansions
14 Company Profiles
14.1 Key Players
14.1.1 Basf
14.1.1.1 Business Overview
14.1.1.2 Products/Solutions/Services Offered
14.1.1.3 Recent Developments
14.1.1.3.1 Product Launches
14.1.1.3.2 Deals
14.1.1.3.3 Expansions
14.1.1.4 Mnm View
14.1.1.4.1 Right To Win
14.1.1.4.2 Strategic Choices
14.1.1.4.3 Weaknesses And Competitive Threats
14.1.2 Covestro Ag
14.1.2.1 Business Overview
14.1.2.2 Products/Solutions/Services Offered
14.1.2.3 Recent Developments
14.1.2.3.1 Product Launches
14.1.2.3.2 Deals
14.1.2.3.3 Expansions
14.1.2.4 Mnm View
14.1.2.4.1 Right To Win
14.1.2.4.2 Strategic Choices
14.1.2.4.3 Weaknesses And Competitive Threats
14.1.3 Tosoh Corporation
14.1.3.1 Business Overview
14.1.3.2 Products/Solutions/Services Offered
14.1.3.3 Recent Developments
14.1.3.3.1 Expansions
14.1.3.4 Mnm View
14.1.3.4.1 Right To Win
14.1.3.4.2 Strategic Choices
14.1.3.4.3 Weaknesses And Competitive Threats
14.1.4 Wanhua
14.1.4.1 Business Overview
14.1.4.2 Products/Solutions/Services Offered
14.1.4.3 Recent Developments
14.1.4.3.1 Expansions
14.1.4.4 Mnm View
14.1.4.4.1 Right To Win
14.1.4.4.2 Strategic Choices
14.1.4.4.3 Weaknesses And Competitive Threats
14.1.5 Sabic
14.1.5.1 Business Overview
14.1.5.2 Products/Solutions/Services Offered
14.1.5.3 Mnm View
14.1.5.3.1 Right To Win
14.1.5.3.2 Strategic Choices
14.1.5.3.3 Weaknesses And Competitive Threats
14.1.6 Hanwha Solutions
14.1.6.1 Business Overview
14.1.6.2 Products/Solutions/Services Offered
14.1.6.3 Mnm View
14.1.6.3.1 Right To Win
14.1.6.3.2 Strategic Choices
14.1.6.3.3 Weaknesses And Competitive Threats
14.1.7 Huntsman International Llc
14.1.7.1 Business Overview
14.1.7.2 Products/Solutions/Services Offered
14.1.7.3 Recent Developments
14.1.7.3.1 Expansions
14.1.7.4 Mnm View
14.1.7.4.1 Right To Win
14.1.7.4.2 Strategic Choices
14.1.7.4.3 Weaknesses And Competitive Threats
14.1.8 Dow
14.1.8.1 Business Overview
14.1.8.2 Products/Solutions/Services Offered
14.1.8.3 Recent Developments
14.1.8.3.1 Expansions
14.1.8.4 Mnm View
14.1.8.4.1 Right To Win
14.1.8.4.2 Strategic Choices
14.1.8.4.3 Weaknesses And Competitive Threats
14.1.9 Mitsui Chemicals Inc
14.1.9.1 Business Overview
14.1.9.2 Products/Solutions/Services Offered
14.1.9.3 Recent Developments
14.1.9.3.1 Expansions
14.1.9.4 Mnm View
14.1.9.4.1 Right To Win
14.1.9.4.2 Strategic Choices
14.1.9.4.3 Weaknesses And Competitive Threats
14.1.10 Cangzhou Dahua Group Co. Ltd.
14.1.10.1 Business Overview
14.1.10.2 Products/Solutions/Services Offered
14.1.10.3 Mnm View
14.1.10.3.1 Right To Win
14.1.10.3.2 Strategic Choices
14.1.10.3.3 Weaknesses And Competitive Threats
14.2 Other Players
14.2.1 Oci Company Ltd.
14.2.2 Sapici S.P.A.
14.2.3 Karoon Petrochemical Company
14.2.4 Gansu Yinguang Chemical Industry Group Co., Ltd.
14.2.5 Asahi Kasei Corporation
14.2.6 Evonik Industries Ag
14.2.7 Arkem Kimya San. Tic. A.Ş
14.2.8 Shandong Inov Polyurethane Co. Ltd
14.2.9 Gujarat Narmada Valley Fertilizers & Chemicals Limited
14.2.10 Sadara
15 Research Methodology
15.1 Research Data
15.1.1 Secondary Data
15.1.1.1 Key Data From Secondary Sources
15.1.2 Primary Data
15.1.2.1 Key Data From Primary Sources
15.1.2.2 Key Primary Interview Participants
15.1.2.3 Breakdown Of Primary Interviews
15.1.2.4 Key Industry Insights
15.2 Market Size Estimation
15.2.1 Bottom-up Approach
15.2.2 Top-down Approach
15.3 Base Number Calculation
15.3.1 Approach 1: Supply-side Analysis
15.3.2 Approach 2: Demand-side Analysis
15.4 Market Forecast Approach
15.4.1 Supply Side
15.4.2 Demand Side
15.5 Data Triangulation
15.6 Factor Analysis
15.7 Research Assumptions
15.8 Research Limitations And Risk Assessment
16 Appendix
16.1 Discussion Guide
16.2 Knowledgestore: Marketsandmarkets’ Subscription Portal
16.3 Customization Options
16.4 Related Reports
16.5 Author Details

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