Carbon Tetrabromide Market: Grade, Application, End-Use Industry, Region

Fire Retardant Wonder: Unveiling the Carbon Tetrabromide Market

Category: Chemicals & Materials Published Date : Feb-23 ID: CVC-44339 Format: PDF Pages: 325

Report Highlights
According to a research survey conducted by ChemView Consulting the Global Carbon Tetrabromide Market is estimated to be U$ 4.23 Bn in 2023. The market is expected to grow at a CAGR of 7.30% between 2023 and 2033 to hit US$ 8.57 Bn by 2033 end.

Key Market Trends

Industrial Applications Drive Carbon Tetrabromide Market Growth

Carbon tetrabromide is increasingly being used in industrial applications such as flame retardants, catalysts, and solvents. This is driving the growth of the carbon tetrabromide market, as manufacturers are looking for more efficient and cost-effective solutions. The growing demand for carbon tetrabromide in industrial applications is expected to continue to drive the market in the coming years.

Pharmaceuticals Drive Carbon Tetrabromide Market Expansion

Carbon tetrabromide is increasingly being used in pharmaceuticals as a reagent for the synthesis of active pharmaceutical ingredients. This is driving the growth of the carbon tetrabromide market, as pharmaceutical companies are looking for more efficient and cost-effective solutions. The increasing adoption of carbon tetrabromide in pharmaceuticals is expected to continue to drive the market in the coming years.

Market Drivers

Increasing Demand for Flame Retardants

Carbon tetrabromide is increasingly being used as a flame retardant in a variety of industries, including electronics, automotive, and aerospace. This is driving up demand for the chemical, and creating new opportunities for suppliers.

Growing Use in Pharmaceuticals

Carbon tetrabromide is being used in the production of pharmaceuticals, as it is an effective solvent for a variety of compounds. This is creating new opportunities for suppliers to capitalize on the growing demand for the chemical.

Segmentation Insights

After conducting a comprehensive analysis of the Carbon Tetrabromide Market, we have identified the top three trending segments in the industry. These segments are witnessing high demand, strong market growth, and widespread adoption.

Most Popular (Fastest Growth Rate) 

 Chemical Reagent (Powder/Granules Form)

Carbon Tetrabromide in the powder/granules form is the most popular product form in the market, with its primary application as a chemical reagent. This is due to its superior purity, high stability, and precise composition. Chemical manufacturers prefer this form of Carbon Tetrabromide as it enables them to accurately control the reaction parameters and yields.

Most Selling (Largest Market Share) 

Solvent (Suspension Form)

The suspension form of Carbon Tetrabromide has emerged as the most selling product form in the market, primarily due to its versatility as a solvent. Its ability to dissolve a wide range of organic compounds, coupled with its low toxicity, makes it a preferred choice for many solvent applications. Additionally, the suspension form provides ease of handling and storage, making it a go to choice for manufacturers.

Trending (Gaining Traction) 

Chemical Intermediate

Agrochemicals End-Use Industry Carbon Tetrabromide as a chemical intermediate is gaining significant traction in the market, particularly in the agrochemicals end-use industry. It is used as a precursor in the synthesis of several agrochemicals, including pesticides, herbicides, and insecticides. With the increasing demand for food production and the need for sustainable agricultural practices, the agrochemicals industry is poised for robust growth, and Carbon Tetrabromide as a chemical intermediate is expected to witness increasing demand in the coming years.

Regional Insights

North America: High Potential of Carbon Tetrabromide in North America from growing demand for flame retardants in various industries such as construction, electronics, and automotive

Carbon tetrabromide is a versatile chemical compound with a wide range of industrial applications. In North America, it is used in flame retardants, dyes, and pharmaceuticals, among other industries. By unlocking the potential of carbon tetrabromide, businesses in North America can benefit from its many uses and increase their productivity.

Europe: Unlock the Potential of Carbon Tetrabromide in Europe

Carbon tetrabromide is a powerful chemical compound with a variety of industrial applications. In Europe, it is used in flame retardants, dyes, and pharmaceuticals, among other industries. By unlocking the benefits of carbon tetrabromide, businesses in Europe can take advantage of its many uses and increase their efficiency.



Report Includes

Research Scope/Taxonomy

Market Analysis by Product Form:

  • Powder/Granules
  • Suspension

Market Analysis by Application:

  • Chemical Reagent
  • Solvent
  • Chemical Intermediate
  • Additive

Market Analysis by End Use Industry:

  • Chemicals
  • Agrochemicals
  • Plastics & Rubber
  • Other Industrial

Market analysis by Region:

  • North America
  • Latin America
  • Western Europe
  • Eastern Europe
  • Middle East & Africa
  • East Asia
  • South Asia & Pacific






Analyst Credentials

Key Companies Profiled

  • ACROS Organics (Fisher Scientific)
  • Tokyo Chemical Industry Co., Ltd.
  • Sigma-Aldrich Corporation
  • ChemTik
  • Toronto Research Chemicals
  • American Elements
  • Alfa Aesar
  • Angene Chemical
  • Kinbester Co., Ltd.
  • Hangzhou Dayangchem Co. Ltd.

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 & ResearchPurity

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 Product Form W.R.T. Application

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 Raw Application 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. Purity Landscape

10.1. Introduction

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

10.2.1. Powder/Granules

10.2.2. Suspension

10.3. Market Attractiveness Analysis by Product Form

11.1. Introduction

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

11.2.1. Chemical Reagent

11.2.2. Solvent

11.2.3. Chemical Intermediate

11.2.4. Additive

11.3. Market Attractiveness Analysis by Application

12.1. Introduction

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

12.2.1. Chemicals

12.2.2. Agrochemicals

12.2.3. Plastics & Rubber

12.2.4. Other Industrial

12.3. Market Attractiveness Analysis by End-Use

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 Form

14.3.3. By Application

14.3.4. By End-Use

14.4. Market Attractiveness Analysis

14.4.1. By Country

14.4.2. By Product Form

14.4.3. By Application

14.4.4. By End-Use

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 Form

15.3.3. By Application

15.3.4. By End-Use

15.4. Market Attractiveness Analysis

15.4.1. By Country

15.4.2. By Product Form

15.4.3. By Application

15.4.4. By End-Use

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. By Product Form

16.3.3. By Application

16.3.4. By End-Use

16.4. Market Attractiveness Analysis

16.4.1. By Product Form

16.4.2. By Product Form

16.4.3. By Application

16.4.4. By End-Use

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 Form

17.3.3. By Application

17.3.4. By End-Use

17.4. Market Attractiveness Analysis

17.4.1. By Country

17.4.2. By Product Form

17.4.3. By Application

17.4.4. By End-Use

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 Form

18.4.3. By Application

18.4.4. By End-Use

18.5. Market Attractiveness Analysis

18.5.1. By Country

18.5.2. By Product Form

18.5.3. By Application

18.5.4. By End-Use

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 Form

19.4.3. By Application

19.4.4. By End-Use

19.5. Market Attractiveness Analysis

19.5.1. By Country

19.5.2. By Product Form

19.5.3. By Application

19.5.4. By End-Use

20.1. Tier Structure Breakdown

20.2. Market Share Analysis

20.3. ion Capacity Analysis

20.4. Company Footprint Analysis

20.4.1. 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. ACROS Organics (Fisher Scientific).

21.1.1. Company Overview

21.1.2. & Financial Portfolio

21.1.3. Manufacturing Facilities

21.1.4. Recent Developments

21.1.5. SWOT Analysis

21.1.6. Strategy Overview

21.2. Tokyo Chemical Industry Co., Ltd.

21.3. Sigma-Aldrich Corporation

21.4. ChemTik

21.5. Toronto Research Chemicals

21.6. American Elements

21.7. Alfa Aesar

21.8. Angene Chemical

21.9. Kinbester Co., Ltd.

21.10. Hangzhou Dayangchem Co. Ltd.