Non Halogenated Flame Retardants Market

Non-Halogenated Flame Retardants Market by Product Type, End-Use Industry, Application & Region – Forecast 2023-2033

Moving Beyond Halogens Key Trends and Growth Opportunities in the Non Halogenated Flame Retardants Market

Category: Chemicals & Materials Published Date : Feb-23 ID: CVC-8469 Format: PDF Pages: 300

Report Highlights
According to a research survey conducted by ChemView Consulting, in 2023, Non Halogenated Flame Retardants Market was worth US $ 4,024.98 Mn . The market is expected to grow at a CAGR of 6.20% between 2023 and 2033 to hit US $ 7,345.29 Mn by 2033 end.

Key Market Trends

The Key to Safe and Eco-friendly Fire Protection

With its eco-friendly and fire protection properties, non halogenated flame retardants are becoming a popular choice for various applications, creating a wide range of opportunities in the market.

The Future of Sustainable Fire Protection

With its sustainable properties, non halogenated flame retardants are becoming a popular choice for sustainable fire protection, making it a future-proof investment in the market.

The Essential Element in Improving Fire Safety

With its role in improving fire safety, non halogenated flame retardants are an essential element in various industries, creating a wide range of opportunities in the market.

Market Drivers:

Increasing Safety and Environmental Concerns

The growing awareness of safety and environmental concerns is driving the demand for non-halogenated flame retardants as they offer excellent fire protection properties without the use of harmful chemicals. The increase in stringent regulations and standards for flame retardants in various industries, such as electronics, construction, and automotive, is also contributing to the growth of the market.

The trend towards sustainable and eco-friendly products is creating opportunities for non-halogenated flame retardants as they are recyclable and do not pose a risk to human health or the environment.

Segmentation Insights

After conducting a thorough analysis of the Non Halogenated Flame Retardants Market, we have identified the top three trending segments in the industry. These segments are experiencing significant growth, high demand, and widespread adoption.

Most Popular (Fastest Growth Rate)

Phosphorus Based (Electrical and Electronics Application)

Phosphorus Based flame retardants are the most popular product in the Non Halogenated Flame Retardants Market due to their extensive usage in the electrical and electronics application. They are widely used in various electrical and electronic products, including printed circuit boards, cable insulation, and computer casings, providing a high level of fire safety. Phosphorus Based flame retardants’ excellent properties such as high efficiency, low toxicity, and thermal stability make them the preferred choice for the electrical and electronics application.

Most Selling (Largest Market Share)

Metal Oxide Based (Construction Application)

Metal Oxide Based flame retardants are the most selling product in the Non Halogenated Flame Retardants Market due to their extensive usage in the construction application. They are widely used in various construction materials, including insulation, roofing, and wallboard, providing a high level of fire safety. Metal Oxide Based flame retardants’ excellent properties such as good dispersibility, compatibility, and durability make them the go-to choice for the construction application.

Trending (Gaining Traction)

Nitrogen Based (Automotive & Transportation Application)

Nitrogen Based flame retardants are gaining significant traction in the Non Halogenated Flame Retardants Market due to their usage in the automotive & transportation application. They are widely used in various automotive parts, including seats, dashboards, and under-the-hood components, providing a high level of fire safety. Nitrogen Based flame retardants’ excellent properties such as good processability, thermal stability, and low smoke generation make them a trending choice in the automotive & transportation application.

Regional Insights

Europe: A Forward-Thinking Market with Strict Regulations

Europe is a prominent market for non-halogenated flame retardants, driven by its strong commitment to environmental sustainability and stringent regulations on the use of halogenated flame retardants. The region’s focus on eco-friendly solutions has spurred the demand for non-halogenated flame retardants in various applications, including construction, electronics, and transportation. Germany, France, and the United Kingdom lead the market with their advanced manufacturing capabilities and innovative technologies, making Europe a crucial player in the global non-halogenated flame retardants industry.

Africa: An Emerging Market with Vast Potential

Africa is a growing market for non-halogenated flame retardants, driven by its expanding industrial sector and increasing consumer demand for eco-friendly products. The continent’s rich resources and growing industries, such as construction and electronics, provide a solid foundation for the non-halogenated flame retardant industry. Countries like South Africa, Nigeria, and Kenya are actively investing in the development of their local production capabilities for non-halogenated flame retardants. With its untapped potential and growing demand, Africa is an attractive market for non-halogenated flame retardant manufacturers and investors seeking new opportunities.



Report Includes

Research Scope/Taxonomy
Market Analysis by Product Type:

  • Metal Oxide Based
  • Phosphorous Based
  • Nitrogen Based
  • Others

Market Analysis by End-Use Industry:

  • Electrical and Electronics
  • Construction
  • Automotive & Transportation
  • Others

Market Analysis by Application:

  • PO
  • Epoxy
  • UPE
  • Rubber
  • PVC
  • PU
  • Styrenics
  • ETP
  • Others






Analyst Credentials

Key Companies Profiled

  • Clariant International Limited
  • Albemarle Corporation
  • Israel Chemical Limited
  • Italmatch Chemicals S.p.A
  • Chemtura Corporation
  • Nabaltec AG
  • FRX polymer Inc.
  • Huber Engineered Materials
  • Amfine Chemical Corporation
  • THOR Group Limited
  • BASF SE.
  • Huber Engineered Materials
  • Lanxess AG
  • DSM
  • Delamin
  • Dupont
  • Sarex
  • Firefree Coatings, Inc.
  • Akzo Nobel N.V.
  • Dow
  • Lubrizol Corporation
  • SUZUHIRO CHEMICAL CO., LTD.
  • ADEKA CORPORATION
  • H.M. Royal
  • MPI Chemie
  • Oceanchem Group Limited,
  • Tosaf

1.1. Global Market Snapshot

1.2. Key Success Factors

1.3. Strategic Analysis and Recommendations

2.1. Market Taxonomy

2.2. Market Definitions

3.1. Preliminary Investigation & Research Design

3.2. Secondary Research & Primary Research

3.3. Data Analysis & Econometric Modelling

3.4. Expert Data Validation

4.1. Supply-Side Trends

4.2. Demand-Side Trends

5.1. Global Market Value (US$ Mn) Analysis, 2017 – 2032

5.2. Incremental $ Opportunity Index, 2022-2032

5.3. Global Market Volume (Tons) Analysis, 2017 – 2032

6.1. Regional Level Pricing Analysis and Forecast

6.1.1. Manufacturers Level Pricing

6.1.2. Distributor Level Pricing

6.2. Global Pricing Analysis Benchmark

6.3. Cost Breakdown Analysis

7.1. Cross Analysis of Application W.R.T. Product Type

8.1. Regional Supply Vs. Demand Gap Assessment

8.2. Top Producing Countries Analysis

9.1. Macroeconomic Factors

9.2. Forecast Factors

9.3. Market Dynamics

9.3.1. Driver

9.3.2. Restraint

9.3.3. Opportunity

9.4. Supply Chain Analysis

9.4.1. List Product Type Suppliers

9.4.2. List of Manufacturers

9.4.3. List of Distributors

9.4.4. List of End-Users

9.4.5. End-Users Consumption Analysis

9.4.6. Average Profitability Margin Analysis

9.5. Covid-19 Impact Assessment

9.5.1. Economy/Cluster Projections

9.5.2. Covid-19 Economic Assessment

9.5.3. Impact on Target Market

9.5.4. Recovery Scenario

9.6. Regulatory Framework

9.6.1. Regulations of Key Countries

9.6.2. Potential Impact of Regulations

9.7. Porter’s Five Forces Analysis

9.8. Technology Landscape

10.1. Introduction

10.2. Historical and Current Market (2017-2021) and Future Market Analysis (2022-2032) By Product Type [Value (US$ Mn) and Volume (Tons) Analysis]

10.2.1. Metal Oxide Based

10.2.2. Phosphorous Based

10.2.3. Nitrogen Based

10.2.4. Others

10.2.5. Market Attractiveness Analysis by Product Type

11.1. Introduction

11.2. Historical and Current Market (2017-2021) and Future Market Analysis (2022-2032) By End-Use Industry [Value (US$ Mn) and Volume (Tons) Analysis]

11.2.1. Electrical and Electronics

11.2.2. Construction

11.2.3. Automotive & Transportation

11.2.4. Others

11.2.5. Market Attractiveness Analysis by End-Use Industry

12.1. Introduction

12.2. Historical and Current Market (2017-2021) and Future Market Analysis (2022-2032) By Application [Value (US$ Mn) and Volume (Tons) Analysis]

12.2.1. PO

12.2.2. Epoxy

12.2.3. UPE

12.2.4. Rubber

12.2.5. PVC

12.2.6. PU

12.2.7. Styrenics

12.2.8. ETP

12.2.9. Others

12.3. Market Attractiveness Analysis by Application

13.1. Introduction

13.2. Key Market Trends

13.3. Historical and Current Market (2017-2021) and Future Market Analysis (2022-2032) By Region [Value (US$ Mn) and Volume (Tons) Analysis]

13.3.1. North America

13.3.2. Latin America

13.3.3. Europe

13.3.4. Asia-Pacific

13.3.5. Middle East

13.3.6. Africa

13.4. Market Attractiveness Analysis by Region

14.1. Introduction

14.2. Key Market Trends

14.3. Historical and Current Market Size (2017-2021) and Future Market Size Analysis (2022-2032) [Value (US$ Mn) and Volume (Tons) Analysis]

14.3.1. By Country

14.3.1.1. U.S.

14.3.1.2. Canada

14.3.2. By Product Type

14.3.3. By End-Use Industry

14.3.4. By Application

14.4. Market Attractiveness Analysis

14.4.1. By Country

14.4.2. By Product Type

14.4.3. By End-Use Industry

14.4.4. By Application

15.1. Introduction

15.2. Key Market Trends

15.3. Historical and Current Market Size (2017-2021) and Future Market Size Analysis (2022-2032) [Value (US$ Mn) and Volume (Tons) Analysis]

15.3.1. By Country

15.3.1.1. Brazil

15.3.1.2. Mexico

15.3.1.3. Rest of Latin America

15.3.2. By Product Type

15.3.3. By End-Use Industry

15.3.4. By Application

15.4. Market Attractiveness Analysis

15.4.1. By Country

15.4.2. By Product Type

15.4.3. By End-Use Industry

15.4.4. By Application

16.1. Introduction

16.2. Key Market Trends

16.3. Historical and Current Market Size (2017-2021) and Future Market Size Analysis (2022-2032) [Value (US$ Mn) and Volume (Tons) Analysis]

16.3.1. By Country

16.3.1.1. Germany

16.3.1.2. Italy

16.3.1.3. France

16.3.1.4. UK

16.3.1.5. Spain

16.3.1.6. Netherlands

16.3.1.7. Norway

16.3.1.8. Russia

16.3.1.9. Rest of Europe

16.3.2.

16.3.3. By Product Type

16.3.4. By End-Use Industry

16.3.5. By Application

16.4. Market Attractiveness Analysis

16.4.1. By Country

16.4.2. By Product Type

16.4.3. By End-Use Industry

16.4.4. By Application

17.1. Introduction

17.2. Key Market Trends

17.3. Historical and Current Market Size (2017-2021) and Future Market Size Analysis (2022-2032) [Value (US$ Mn) and Volume (Tons) Analysis]

17.3.1. By Country

17.3.1.1. China

17.3.1.2. Japan

17.3.1.3. South Korea

17.3.1.4. India

17.3.1.5. Indonesia

17.3.1.6. Thailand

17.3.1.7. Vietnam

17.3.1.8. Australia & New Zealand

17.3.1.9. Rest of Asia-Pacific

17.3.2. By Product Type

17.3.3. By Application

17.4. Market Attractiveness Analysis

17.4.1. By Country

17.4.2. By Product Type

17.4.3. By End-Use Industry

17.4.4. By Application

18.1. Introduction

18.2. Key Market Trends

18.3. Pricing Analysis

18.4. Historical and Current Market Size (2017-2021) and Future Market Size Analysis (2022-2032) [Value (US$ Mn) and Volume (Tons) Analysis]

18.4.1. By Country

18.4.1.1. Saudi Arabia

18.4.1.2. Turkey

18.4.1.3. U.A.E.

18.4.1.4. Rest of the Middle East

18.4.2. By Product Type

18.4.3. By End-Use Industry

18.4.4. By Application

18.5. Market Attractiveness Analysis

18.5.1. By Country

18.5.2. By Product Type

18.5.3. By End-Use Industry

18.5.4. By Application

19.1. Introduction

19.2. Key Market Trends

19.3. Pricing Analysis

19.4. Historical and Current Market Size (2017-2021) and Future Market Size Analysis (2022-2032) [Value (US$ Mn) and Volume (Tons) Analysis]

19.4.1. By Country

19.4.1.1. South Africa

19.4.1.2. Nigeria

19.4.1.3. Egypt

19.4.1.4. Rest of Africa

19.4.2. By Product Type

19.4.3. By Application

19.5. Market Attractiveness Analysis

19.5.1. By Country

19.5.2. By Product Type

19.5.3. By End-Use Industry

19.5.4. By Application

20.1. Tier Structure Breakdown

20.2. Market Share Analysis

20.3. Production Capacity Analysis

20.4. Company Footprint Analysis

20.4.1. Product Footprint of Players

20.4.2. Regional Footprint of Players

20.4.3. Channel Footprint of Players

20.5. Brand Preference Analysis

20.6. Competition Dashboard

21.1. Clariant International Limited.

21.1.1. Company Overview

21.1.2. Product & Financial Portfolio

21.1.3. Manufacturing Facilities

21.1.4. Recent Developments

21.1.5. SWOT Analysis

21.1.6. Strategy Overview

21.2. Albemarle Corporation

21.3. Israel Chemical Limited

21.4. Italmatch Chemicals S.p.A

21.5. Chemtura Corporation

21.6. Nabaltec AG

21.7. FRX polymer Inc.

21.8. Huber Engineered Materials

21.9. Amfine Chemical Corporation

21.10. THOR Group Limited

21.11. BASF SE.

21.12. Huber Engineered Materials

21.13. Lanxess AG

21.14. DSM

21.15. Delamin

21.16. Dupont

21.17. Sarex

21.18. Firefree Coatings, Inc.

21.19. Akzo Nobel N.V.

21.20. Dow

21.21. Lubrizol Corporation

21.22. SUZUHIRO CHEMICAL CO., LTD.

21.23. ADEKA CORPORATION

21.24. H.M. Royal

21.25. MPI Chemie

21.26. Oceanchem Group Limited,

21.27. Tosaf

21.28. Others