Flame Retardant Chemicals Market 2018 Global Trend, Segmentation and Opportunities Forecast To 2023

“Flame Retardant Chemicals”
Flame Retardant Chemicals -Market Demand, Growth, Opportunities and Analysis Of Top Key Player Forecast To 2023

Flame Retardant Chemicals Industry

Description

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According to a 2017 study published by the Center for Fire Statistics (CTIF, www.ctif.org), there were 3.5 fires reported per 1,000 inhabitants in the world for 2015, the most recent year for which data are available from this source. Thousands of people died worldwide as a result of these fires. Of the 31 countries covered in the CTIF report, the U.S. reported the most fires. The U.S. National Fire Protection Association (NFPA) reported more than 1.3 million fires in the U.S. in 2016. In the U.S., fires resulted in 3,390 civilian deaths, 14,650 civilian injuries and $10.6 billion in property damage.

These statistics do not include the loss of life associated with fire personnel and the secondary loss to businesses due to downtime and inconvenience, and the impact these fires have on insurance premiums to all consumers. The loss of life, injuries and property damage would increase dramatically if products were not manufactured with flame retardant chemicals.

BCC Research estimates the global consumption of flame retardant chemicals for 2017 at nearly REDACTED. Consumption is expected to approach REDACTED in 2018 and exceed REDACTED by 2023, representing a compound annual growth rate (CAGR) of REDACTED from 2018 through 2023.

Reasons for Doing This Study

Flame retardants have been used since Roman times for applications such as textiles and wood. The flame retardant industry expanded in the 1970s when synthetic materials became popular in the manufacture of products. The demand for and the use of these flammable synthetic-based products led to governments around the world requiring companies producing these synthetic products to make them safer from fire. Therefore, in most countries, flame retardant chemicals are required and/or driven by government regulations.

Over the last 40 years, as flame retardant chemicals became widely used in furniture, electronics, textiles, construction and many other items in use daily, the negative side effects of exposure to these chemicals have become apparent. These negative effects occurred directly by causing illness, or indirectly by causing damage to the environment, resulting in illness.

Today, many organizations and governments are reassessing the benefits of flame retardants against the negative side effects that cause harm to human health or the environment. Therefore, the flame retardant chemicals industry is in a state of transition, as some widely used flame retardant chemicals are being phased out. At the same time, emerging technology provides promise for continued flame retardant protection while reducing or eliminating the toxic effects. Additionally, some states are allowing the complete removal of flame retardant chemicals in some applications in an effort to give consumers the choice of avoiding exposure to their toxic effects. Although this will have immediate 
health benefits to these consumers, they will be at risk should they experience a fire as they may not have the necessary protection.Report Scope

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This study is an in-depth evaluation of flame retardant chemicals by type and by end-use application between the years 2017 and 2023. This report deals with flame retardant chemical additives, and not with products such as Nafion that are inherently flame retardant.

The forecast will cover worldwide demand and be broken down by chemical type and application. Because electronics are so widely used in the world today and they are housed most often in plastics, this segment will be emphasized.

Report Includes

– 39 data tables and 25 additional tables 
– An overview and in-depth analysis of the global market for flame retardant chemicals 
– Analyses of global market trends, with data from 2017, estimates for 2018, and projections of compound annual growth rates (CAGRs) through 2023 
– Characterization and quantification of market potential for flame retardant chemicals segmented by chemical type, application and industry 
– Reviews of government regulations and their impact on the market, as they obligate manufacturers to add flame retardant chemicals to a range of products used daily 
– Identification of key drivers and constraints that will shape the market for these materials as the basis for projecting demand over the next five years 
– A relevant patent analysis and new developments in the flame retardant chemicals industry 
– Profiles of major players in the market including Albemarle Corp., Lanxess AG, Israel Chemicals Ltd. (ICL), Akzo Nobel N.V., and Dover Chemical Corp.AKZO NOBEL N.V. 

ALBEMARLE CORP. 
ALMATIS GMBH 
Ampacet Corp. 
AMSPEC CHEMICAL CORP. 
APEXICAL INC. 
ARKEMA SA 
AZONETWORK UK LTD. 
BARRICADE INTERNATIONAL INC. 
BASF SE 
BAYER AG 
BUREAU OF ELECTRONIC AND APPLIANCE REPAIR, HOME FURNISHINGS AND THERMAL INSULATION 
CENTERS FOR DISEASE CONTROL AND PREVENTION 
CLARIANT AG 
CLARIANT SPECIALTY CHEMICALS 
CLIMAX MOLYBDENUM CO. 
DAIHACHI CHEMICAL INDUSTRY 
DAIHACHI CHEMICAL INDUSTRY CO. LTD. 
DOVER CHEMICAL CORP. 
DOW CHEMICAL CO. 
E.I. DUPONT DE NEMOURS AND CO. 
FLAME RETARDANTS-ONLINE 
FREEPORT-MCMORAN COPPER AND GOLD INC. 
HUBER ENGINEERED MATERIALS 
ICC INDUSTRIES INC. 
INTERNATIONAL ORGANIZATION OF FIRE AND RESCUE SERVICES 
INTERNATIONAL PROTECTIVE COATINGS CORP. 
INTERPLASTIC CORP. 
ISRAEL CHEMICALS LTD. 
ITALMATCH CHEMICALS SPA 
J.M. HUBER CORP. 
JAPAN FIRE RETARDANT ASSOCIATION (JFRA) 
KYOWA CHEMICAL INDUSTRY CO. LTD. 
LANXESS AG 
LHOIST SA 
MARTIN MARIETTA MAGNESIA SPECIALTIES LLC 
MARTIN MARIETTA MATERIALS INC. 
MINERALS TECHNOLOGIES 
NABALTEC 
NIHON SEIKO LTD. 
NYACOL NANO TECHNOLOGIES INC. 
OCCIDENTAL CHEMICAL CORP. 
R.J. MARSHALL CO. 
RIO TINTO ALCAN CANADA LTD. 
RIO TINTO BORATES 
ROCKWOOD CLAY ADDITIVES LTD./SOUTHERN CLAY PRODUCTS 
SAKAMOTO YAKUHIN KOGYO CO. LTD. 
SHERWIN-WILLIAMS CO. 
SOLVAY GROUP 
SPARTAN FLAME RETARDANTS 
TATEHO CHEMICAL INDUSTRIES CO. Ltd. 
TOR MINERALS INTERNATIONAL INC. 
TOSOH CORP. 
TOSOH USA INC. 
U.S. ANTIMONY SALES CORP. 
VELSICOL CHEMICAL LLC

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Table of Contents 

Chapter 1 Introduction 
Study Goals and Objectives 
Reasons for Doing This Study 
Scope of Report 
Information Sources 
Methodology 
Geographic Breakdown 
Analyst’s Credentials 
Related BCC Research Reports 
Chapter 2 Summary and Highlights 
Chapter 3 Market and Technology Background 
Chapter 4 Market Breakdown by Type of Flame Retardant Chemical 
Chemicals That Are Flame Retardant 
Aluminum Trihydrate 
Bauxite/Aluminum Trihydrate Sources 
Aluminum Trihydrate Grades 
Market for Aluminum Trihydrate Flame Retardants 
Antimony Oxide 
Sources of Antimony Oxide 
Bromine-Based Compounds 
Types of Bromine-Based Flame Retardants 
Market for Bromine-Based Flame Retardants 
Chlorine-Based Flame Retardant Compounds 
Chlorine-Based Flame Retardant Properties 
Sources of Chlorine 
Chlorine-Based Flame Retardant Types 
Dechlorane Plus 
Market for Chlorine-Based Flame Retardants 
Magnesium Hydroxide 
Magnesium Hydroxide Properties 
Sources of Magnesium Hydroxide 
Magnesium Hydroxide Grades 
Market for Magnesium Hydroxide as a Flame Retardant 
Melamine-Based Flame Retardants 
Melamine Homologues 
Market for Melamine Fire Retardants 
Phosphorus-Based Flame Retardants 
Phosphates 
Phosphonates and Phosphinates 
Red Phosphorus 
Ammonium Polyphosphate 
Market for Phosphorus-Based Flame Retardants 
Other Flame Retardants 
Boron-Based Fire Retardants 
Molybdenum-Based Fire Retardants 
Nanocomposite Flame Retardant Chemicals 
In Situ Polymerization 
Graphite-Based Flame Retardant Chemicals 
Dust-Free Sustainable Polymeric Flame Retardant Systems 
Market for Other Flame Retardant Chemicals 
Chapter 5 Market Breakdown by Application 
Chapter 6 Patent Review/New Developments 
Patent Activity 
Other Recent Developments 
Dow PolyFR 
LANXESS 
Albemarle 
ICL 
BASF 
Fire Retardant Gels 
Carbon Nanotubes (CNTs) 
Nanocoating Comprised of Positively Charged Chitosan (CH) and Anionic Poly (Vinyl Sulfonic Acid Sodium Salt) 
Clay, Crab Shells and DNA-Based “Green” Fire Retardants 
Bio-inspired Coatings on Flexible Polyurethane Foam 
Ocean Bacteria Produce Flame Retardants 
BASF Ultramid A3U42G6 Halogen-Free Flame Retardant 
Sony Launches Outside Sales of SORPLAS Flame Retardant Recycled Plastic Material 
Researchers Create Dairy-Based Flame Retardant 
U.S. Navy’s Introduction of Flame Retardant Uniforms 
Nontoxic Synthetic Polydopamine Fire Retardant 
Graphene Fire Retardant 
New Fire-Resistant Coating to Prevent Failure in Steel Building Fires 
Chapter 7 Company Profiles 

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