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Alumina Trihydrate Market, Forecast to 2033

Alumina Trihydrate Market By Type (Ground ATH, Dry ATH, Wet ATH, Precipitate ATH), By Grade (Powder, Granules, Pellets), By Application (Flame Retardant, Filler, Antacid, Smoke Suppressant, Others) and By End-Use Industry (Plastics & Polymers, Building & Construction, Paints & Coatings, Pharmaceuticals & Personal Care, Automotive & Aerospace, Electronics & Electrical Equipment, Glass, Rubber, & Others), By Industry Analysis, Size, Share, Growth, Trends, and Forecasts 2026-2033

Report ID : 3413 | Publisher ID : Transpire | Published : 2026-02-03 | Pages : 255

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Market Summary

The global Alumina Trihydrate market size was valued at USD 10.90 billion in 2025 and is projected to reach USD 18.90 billion by 2033, growing at a CAGR of 6.90% from 2026 to 2033. The global ATH market is expected to register steady CAGR growth with the increasing demand for flame retardant materials in the plastics, construction, and electronics sectors. The standards set by the regulations regarding fire safety and smoke reduction are also propelling the adoption of ATH. The increasing demand for specialty grades and fine particle ATH in the automotive, aerospace, and electronics industries is further fueling the demand for ATH.

Market Size & Forecast

  • 2025 Market Size: USD 10.90 Billion
  • 2033 Projected Market Size: USD 18.90 Billion
  • CAGR (2026-2033): 6.90%
  • North America: Largest Market in 2026
  • Asia Pacific: Fastest Growing Marketalumina-trihydrate-market-size

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Key Market Trends Analysis

  • Strong fire safety laws, widespread use of flame-retardant polymers and steady consumption in the construction, electronics and automotive industries all bolstered by well-established ATH manufacturers and sophisticated industrial supply chain all contribute to North America's steady demand.
  • The United States dominates regional demand due to strong usage of alumina trihydrate in plastics, coatings and electrical components, reinforced by regulatory compliance requirements, infrastructure renovation activities and ongoing investments in specialty and non-halogenated fire-retardant materials.
  • While local manufacturing capacity, cost advantages, and tightening safety standards accelerate adoption across multiple end-use industries, Asia Pacific continues to be the fastest growing region due to rapid urbanization, expanding construction activity and rising electronics and automotive production.
  • Owing to its affordability, uniform particle size, and appropriateness for high-volume industrial applications particularly in polymers and building materials where scalability and predictable performance are crucial ground alumina trihydrate continues to dominate the type sector.
  • Because manufacturers value facile dispersion, consistent flame-retardant performance, and formulation flexibility, powder grade dominates the market and is widely used in coatings, plastics, electronics housings, and pharmaceutical applications that need regulated particle properties.
  • As the world's focus on fire safety, smoke suppression, and non-toxic additives boosts the use of ATH in construction materials, electrical equipment, transportation components, and polymer-based consumer and industrial products, flame-retardant applications continue to be the main driver of demand.
  • Plastics & polymers is the foremost end-use industry because of the combined properties of flame retardancy and filler offered by ATH, which helps in optimizing, complying, and improving in construction plastics, automotive parts, and electronic enclosures.

So, the worldwide market for alumina trihydrate is made up of a vital substance that is utilized in many different industrial applications, mainly as an antacid, filler, smoke suppressor and flame retardant in medicines. It is essential to plastics, coatings, building materials and composites because of its fire resistance and thermal stability. Stricter laws, more fire safety awareness and the use of sustainable building techniques are major factors propelling market expansion. The demand for high-purity and precipitated ATH grades, which offer better performance in flame retardant and filler applications, is further supported by rising use in the automotive, aerospace and electronics sectors. The demand for ATH in building materials and coatings has also increased due to industrial growth in emerging economies and rising investments in infrastructure development. Furthermore, manufacturers are able to effectively meet a variety of end-use requirements thanks to innovation in powder, granular, and pelletized forms.Research and development in specialist ATH grades to satisfy changing demands for chemical stability, mechanical reinforcement, and smoke suppression in modern composites further boosts market growth. ATH is positioned as a growth-driven material in international industrial and construction applications due to a mix of legislative backing, technological developments and growing demand from various industrial sectors.

Alumina Trihydrate Market Segmentation

By Type

  • Ground ATH

Ground ATH dominates due to its uniform particle size and economic effectiveness making it perfect for bulk applications in plastics, paints and construction materials. Its consistency guarantees consistent performance which is essential for filler and flame retardant applications.

  • Dry ATH

Due to its ease of handling and precise dosing dry ATH is favored in the pharmaceutical and personal care industries. It is appropriate for accurate formulas and superior coatings because to its low moisture content.

  • Wet ATH

Because of its greater moisture content wet ATH is mostly utilized in industrial processes that call for regulated reactivity such the manufacturing of aluminum and some specialty coatings.

  • Precipitated ATH

Precipitated ATH's tiny particle size and excellent purity allow it to perform very well in advanced composites, premium flame retardants, and niche applications where reactivity and surface area are crucial.

By Grade

  • Powder

Because of its surface reactivity and ease of dispersion, powder ATH is used extensively in plastics, coatings, and medicines. Superior flame retardancy and filler qualities are supported by its delicate shape.

  • Granules

In large-scale manufacturing, granular ATH is simpler to manage and lessens dust-related problems. In industrial formulations where bulk processing and flowability are crucial, it is frequently chosen.

  • Pellets

Pelletized ATH is appropriate for automated processing in plastics and composites as well as transport-sensitive applications due to its improved storage stability and less agglomeration.alumina-trihydrate-market-grade

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By Application

  • Flame Retardant

This segment dominates due to rising safety regulations across construction, electronics, and automotive sectors. ATH is used in polymers and coatings because of its endothermic breakdown and water release, which aid in preventing the spread of fire.

  • Filler

ATH is an affordable filler that lowers production costs while enhancing mechanical qualities. Its compatibility with various resins and paints makes it an essential component for functional and structural materials.

  • Antacid

The pharmaceutical-grade versions of ATH are used to counteract gastric acidity. Growing knowledge of digestive health and advancements in personal care products are advantageous to this market.

  • Smoke Suppressant

ATH helps meet safety requirements in building and transportation applications by reducing smoke density during burning in plastics and textiles.

  • Others

ATH's chemical stability and purity facilitate sophisticated industrial applications in catalysts, filtration, and ceramics.

By End‑Use Industry

  • Plastics & Polymers

Plastics & Polymers is a dominant end use industry due to ATH’s dual function as a flame retardant and filler. Demand is fueled by growth in electronics, automotive plastics, and construction.

  • Building & Construction

Applications include coatings, insulation, and fireproof panels. Adoption of ATH is influenced by laws pertaining to sustainable construction and fire safety.

  • Paints and Coatings

Fine particle ATH enhances texture, opacity, and fire resistance in ornamental and industrial coatings while acting as an extender and flame retardant.

  • Pharmaceuticals & Personal Care

ATH's neutral pH and biocompatibility are advantageous for antacid formulas and personal care items.

  • Automotive & Aerospace

Lightweight composites and fire-resistant materials are used in the automotive and aerospace industries. The manufacture of electric vehicles and aerospace safety regulations increase demand.

  • Electronics and Electrical Equipment

ATH is essential for thermal control and fire safety in flame retardant additives and insulation materials.

  • Glass, Rubber & Others

Specialty formulations exploit ATH for mechanical strength, filling functions and fire resistance especially in rubber and fiberglass applications.

Regional Insights

North America, which is dominated by the US, is a developed market with strict regulations that allow the widespread use of flame-retardant materials in electronics, automotive, and construction applications. With its growing infrastructure and industrial development Canada and Mexico also contribute to modest growth. Due to stringent fire safety laws, an increase in building and construction activities and the use of flame retardant plastics and coatings, Europe is a sizable market with Germany, the United Kingdom, France, Spain and Italy driving demand. As industrial modernization boosts the use of ATH in functional materials the rest of Europe shows consistent growth. With China, India, Japan, South Korea, and Australia driving demand in electronics, automobiles and construction Asia Pacific is the fastest-growing area. The main forces are the rapid urbanization, industrial growth and regulatory focus on fire safety. ATH is being more widely used in coatings, plastics and industrial applications throughout the rest of Asia Pacific, especially emerging nations.

South America, which includes Brazil and Argentina, is seeing moderate growth due to the expansion of the construction and automotive industries as well as the building of infrastructure. Similar patterns are seen throughout the remainder of South America, where building materials are the main source of demand. Due to urbanization, adherence to fire safety regulations, and government investment in major infrastructure projects, the Middle East and Africa led by Saudi Arabia, the United Arab Emirates and South Africa saw an increase in construction and industrial applications.alumina-trihydrate-market-region

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Recent Development News

  • June 2025, Huber Corporation (Huber Engineered Materials) formally stated that it has purchased The R.J. Marshall Company’s alumina trihydrate (ATH) flame retardant, antimony‑free retardant, and molybdate‑based smoke suppressant assets. By incorporating these resources into Huber's Advanced Materials division, the company is expanding its line of non-halogenated fire safety products and solidifying its place in the specialist ATH market in North America.

(Source:https://wirenet.org/event/2025-cable-connectivity-industry-forum/)

  • In June 2025, On June 24, 2025, Hindalco Industries Ltd. declared that it would pay USD 125 million to purchase 100% of the specialty alumina manufacturer AluChem Companies, Inc. By strengthening its position in the North American market with cutting-edge facilities and well-established client contacts, this strategic purchase increases Hindalco's foothold in specialty alumina, including premium grades utilized in precision industrial applications.

(Source:https://www.hindalco.com/media/press-releases/hindalco-to-acquire-us-based-aluchem-companies-inc)

Report Metrics

Details

Market size value in 2025

USD 10.90 Billion

Market size value in 2026

USD 11.80 Billion

Revenue forecast in 2033

USD 18.90 Billion

Growth rate

CAGR of 6.90% from 2026 to 2033

Base year

2025

Historical data

2021 – 2024

Forecast period

2026 – 2033

Report coverage

Revenue forecast, competitive landscape, growth factors, and trends

Regional scope

North America; Europe; Asia Pacific; Latin America; Middle East & Africa

Country scope

United States; Canada; Mexico; United Kingdom; Germany; France; Italy; Spain; Denmark; Sweden; Norway; China; Japan; India; Australia; South Korea; Thailand; Brazil; Argentina; South Africa; Saudi Arabia; United Arab Emirates

Key company profiled

Huber Engineered Materials, Nabaltec AG, Aluminium Corporation of China Limited (CHALCO), Sumitomo Chemical Co., Ltd., Almatis GmbH, Albemarle Corporation, Alcoa Corporation, SCR Sibelco NV, Hindalco Industries Ltd., TOR Minerals International, The R.J. Marshall Company, MAL Magyar Aluminium, Nippon Light Metal Company, Ltd., Sibelco (Ath products), Alumina Chemicals & Castables

Customization scope

Free report customization (country, regional & segment scope). Avail customized purchase options to meet your exact research needs.

Report Segmentation

By Type (Ground ATH, Dry ATH, Wet ATH, Precipitate ATH), By Grade (Powder, Granules, Pellets), By Application (Flame Retardant, Filler, Antacid, Smoke Suppressant, Others) and By End-Use Industry (Plastics & Polymers, Building & Construction, Paints & Coatings, Pharmaceuticals & Personal Care, Automotive & Aerospace, Electronics & Electrical Equipment, Glass, Rubber, & Others)

Key Alumina Trihydrate Company Insights

Huber Engineered Materials is well-known as a market leader in alumina trihydrate, supported by a wide range of ATH products developed for flame retardancy, fillers, and performance additives across plastics, coatings, and construction sectors. The company's superior technical services and vertically integrated production capabilities underpin its significant global presence, especially in North America and Europe. Huber stands out from rivals thanks to its investment in specialist ATH grades with regulated particle size distribution and surface treatments, which improve performance in end-use applications. In the face of growing regulatory attention on fire safety and material performance, its strategy focus on innovation and sustainability in formulations helps protect competitive positioning.

Key Alumina Trihydrate Companies:

Global Alumina Trihydrate Market Report Segmentation

By Type

  • Surface Mount / SMD Alumina Trihydrate
  • Through-Hole Alumina Trihydrate
  • Other Form Factors

By Grade

  • Signal Line Chokes
  • Power Line Chokes
  • Multi-line / Toroidal Chokes

By Application

  • Ferrite
  • Nanocrystalline
  • Iron Powder
  • Other Specialty Materials

By End‑Use Industry

  • Power Electronics
  • Automotive Electronics
  • Industrial Equipment
  • Telecommunications
  • Consumer Electronics
  • Others

Regional Outlook

  • North America
    • United States
    • Canada
    • Mexico
  • Europe
    • Germany
    • United Kingdom
    • France
    • Spain
    • Italy
    • Rest of Europe
  • Asia Pacific
    • Japan
    • China
    • Australia & New Zealand
    • South Korea
    • India
    • Rest of Asia Pacific
  • South America
    • Brazil
    • Argentina
    • Rest of South America
  • Middle East & Africa
    • Saudi Arabia
    • United Arab Emirates
    • South Africa
    • Rest of the Middle East & Africa

1. Introduction
1.1. Report Description
1.2. Overview of the Alumina Trihydrate Market: Definition
1.3. Market Research Scope
1.4. Market Covered: Regional Scope
1.5. Years Considered for The Study
1.6. Currency and Pricing
2. Research Methodology
2.1. Description
2.1.1. Market Research Process
2.1.2. Information Procurement
2.1.3. Data Analysis
2.1.4. Market Formulation & Validation
3. Executive Summary
3.1. Key Insight of the Study
3.2. Segmentation Outlook By Type
3.3. Segmentation Outlook By Grade
3.4. Segmentation Outlook By Application
3.5. Segmentation Outlook By End‑Use Industry
3.6. Segmentation Outlook by Region
4. Alumina Trihydrate Market – Industry Outlook
4.1. Impact of COVID-19 on the Market
4.2. Market Attractiveness Analysis
4.2.1. Market Attractiveness Analysis By Type
4.2.2. Market Attractiveness Analysis by Region
4.3. Industry Swot Analysis
4.3.1. Strength
4.3.2. Weakness
4.3.3. Opportunities
4.3.4. Threats
4.4. Porter's Five Forces Analysis
4.4.1. Threat of New Entrants
4.4.2. Bargaining Power of Suppliers
4.4.3. Bargaining Power of Buyers
4.4.4. Threat of Substitutes
4.4.5. Industry Rivalry
4.5. Pointers Covered at the Micro Level
4.5.1. Customers
4.5.2. The Supply and Demand Side
4.5.3. Shareholders and Investors
4.5.4. Media, Advertising, and Marketing
4.6. Pointers Covered at the Macro Level
4.6.1. Economic Factors
4.6.2. Technological Advancements
4.6.3. Regulatory Environment
4.6.4. Societal and Cultural Trends
4.7. Value Chain
4.7.1. Raw Material Sourcing
4.7.2. Manufacturing/Processing
4.7.3. Quality Control and Testing
4.7.4. Packaging and Distribution
4.7.5. End-Use Segment 4S
4.8. Impact of AI Across Leading Economies
5. Market Overview and Key Dynamics
5.1. Market Dynamics
5.2. Drivers
5.2.1. Technological advancement in high‑performance ATH grades.
5.2.2. Increasing regulatory demand for flame retardant materials.
5.3. Restraints and Challenges
5.3.1. Availability of alternative flame retardants like magnesium hydroxide.
5.3.2. Price volatility in raw materials and production costs.
5.4. Opportunities
5.4.1. Growth in emerging market infrastructure and construction demand.
5.4.2. Expansion into sustainable and low‑carbon ATH production.
6. Global Alumina Trihydrate Market Insights and Forecast Analysis
6.1.1. Global Alumina Trihydrate Market Analysis and Forecast
7. Alumina Trihydrate Market Insights & Forecast Analysis, By Type – 2021 to 2033
7.1. Alumina Trihydrate Market Analysis and Forecast, By Type
7.1.1. Ground ATH
7.1.2. Dry ATH
7.1.3. Wet ATH
7.1.4. Precipitate ATH
8. Alumina Trihydrate Market Insights & Forecast Analysis, By Grade – 2021 to 2033
8.1. Alumina Trihydrate Market Analysis and Forecast, By Grade
8.1.1. Powder
8.1.2. Granules
8.1.3. Pellets
9. Alumina Trihydrate Market Insights & Forecast Analysis, By Application – 2021 to 2033
9.1. Alumina Trihydrate Market Analysis and Forecast, By Application
9.1.1. Flame Retardant
9.1.2. Filler
9.1.3. Antacid
9.1.4. Smoke Suppressant
9.1.5. Others
10. Alumina Trihydrate Market Insights & Forecast Analysis, By End‑Use Industry – 2021 to 2033
10.1. Alumina Trihydrate Market Analysis and Forecast, By End‑Use Industry
10.1.1. Plastics & Polymers
10.1.2. Building & Construction
10.1.3. Paints & Coatings
10.1.4. Pharmaceuticals & Personal Care
10.1.5. Automotive & Aerospace
10.1.6. Electronics & Electrical Equipment
10.1.7. Glass, Rubber, & Others
11. Alumina Trihydrate Market Insights & Forecast Analysis, By Region – 2021 to 2033
11.1. Alumina Trihydrate Market, By Region
11.2. North America Alumina Trihydrate Market, By Type
11.2.1. North America Alumina Trihydrate Market, By Type, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.3. North America Alumina Trihydrate Market, By Grade
11.3.1. North America Alumina Trihydrate Market, By Grade, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.4. North America Alumina Trihydrate Market, By Application
11.4.1. North America Alumina Trihydrate Market, By Application, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.5. North America Alumina Trihydrate Market, By End‑Use Industry
11.5.1. North America Alumina Trihydrate Market, By End‑Use Industry, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.6. North America Alumina Trihydrate Market Insights & Forecast Analysis, BY Segmentation and Country – 2021 - 2033
11.7. North America Alumina Trihydrate Market, By Country
11.7.1. United States
11.7.2. Canada
11.7.3. Mexico
11.8. Europe Alumina Trihydrate Market, By Type
11.8.1. Europe Alumina Trihydrate Market, By Type, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.9. Europe Alumina Trihydrate Market, By Grade
11.9.1. North America Alumina Trihydrate Market, By Grade, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.10. Europe Alumina Trihydrate Market, By Application
11.10.1. Europe Alumina Trihydrate Market, By Application, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.11. Europe Alumina Trihydrate Market, By End‑Use Industry
11.11.1. Europe Alumina Trihydrate Market, By End‑Use Industry, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.12. Europe Alumina Trihydrate Market Insights & Forecast Analysis, BY Segmentation and Country – 2021 - 2033
11.13. Europe Alumina Trihydrate Market, By Country
11.13.1. Germany
11.13.2. United Kingdom
11.13.3. France
11.13.4. Italy
11.13.5. Spain
11.13.6. Rest of Europe
11.14. Asia Pacific Alumina Trihydrate Market, By Type
11.14.1. Asia Pacific Alumina Trihydrate Market, By Type, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.15. Asia Pacific Alumina Trihydrate Market, By Grade
11.15.1. Asia Pacific Alumina Trihydrate Market, By Grade, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.16. Asia Pacific Alumina Trihydrate Market, By Application
11.16.1. Asia Pacific Alumina Trihydrate Market, By Application, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.17. Asia Pacific Alumina Trihydrate Market, By End‑Use Industry
11.17.1. Asia Pacific Alumina Trihydrate Market, By End‑Use Industry, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.18. Asia Pacific Alumina Trihydrate Market Insights & Forecast Analysis, BY Segmentation and Country – 2021 - 2033
11.19. Asia Pacific Alumina Trihydrate Market, By Country
11.19.1. China
11.19.2. India
11.19.3. Japan
11.19.4. Australia
11.19.5. South Korea
11.19.6. Rest of Asia
11.20. South America Alumina Trihydrate Market, By Type
11.20.1. South America Alumina Trihydrate Market, By Type, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.21. South America Alumina Trihydrate Market, By Grade
11.21.1. South America Alumina Trihydrate Market, By Grade, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.22. South America Alumina Trihydrate Market, By Application
11.22.1. South America Alumina Trihydrate Market, By Application, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.23. South America Alumina Trihydrate Market, By End‑Use Industry
11.23.1. South America Alumina Trihydrate Market, By End‑Use Industry, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.24. South America Alumina Trihydrate Market Insights & Forecast Analysis, BY Segmentation and Country – 2021 - 2033
11.25. South America Alumina Trihydrate Market, By Country
11.25.1. Brazil
11.25.2. Argentina
11.25.3. Rest of South America
11.26. Middle East and Africa Alumina Trihydrate Market, By Type
11.26.1. Middle East and Africa Alumina Trihydrate Market, By Type, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.27. Middle East and Africa Alumina Trihydrate Market, By Grade
11.27.1. Middle East and Africa Alumina Trihydrate Market, By Grade, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.28. Middle East and Africa Alumina Trihydrate Market, By Application
11.28.1. Middle East and Africa Alumina Trihydrate Market, By Application, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.29. Middle East and Africa Alumina Trihydrate Market, By End‑Use Industry
11.29.1. Middle East and Africa Alumina Trihydrate Market, By End‑Use Industry, Revenue (USD Billion), (2021 -2033), CAGR (%) (2026-2033)
11.30. Middle East and Africa Alumina Trihydrate Market Insights & Forecast Analysis, By Segmentation and Country – 2021 - 2033
11.31. Middle East and Africa Alumina Trihydrate Market, By Country
11.31.1. Saudi Arabia
11.31.2. United Arab Emirates
11.31.3. South Africa
11.31.4. Rest of Middle East and Africa
12. Alumina Trihydrate Market: Competitive Landscape
12.1. Competitive Rivalry and Division
12.2. Company Market Share Analysis
12.3. Alumina Trihydrate Market: Top Winning Strategies
12.4. Alumina Trihydrate Market: Competitive Heatmap Analysis
13. Alumina Trihydrate Market: Company Profiles
13.1. Huber Engineered Materials
13.1.1. Overview of Business
13.1.2. Economic Performance of the Company
13.1.3. Key Executives
13.1.4. Portfolio of Products
13.1.5. Company Strategy Mapping
13.2. Nabaltec AG
13.3. Aluminium Corporation of China Limited (CHALCO)
13.4. Sumitomo Chemical Co., Ltd.
13.5. Almatis GmbH
13.6. Albemarle Corporation
13.7. Alcoa Corporation
13.8. SCR Sibelco NV
13.9. Hindalco Industries Ltd.
13.10. TOR Minerals International
13.11. The R.J. Marshall Company
13.12. MAL Magyar Aluminium
13.13. Nippon Light Metal Company, Ltd.
13.14. Sibelco (Ath products)
13.15. Alumina Chemicals & Castables

  • Huber Engineered Materials
  • Nabaltec AG
  • Aluminium Corporation of China Limited (CHALCO)
  • Sumitomo Chemical Co., Ltd.
  • Almatis GmbH
  • Albemarle Corporation
  • Alcoa Corporation
  • SCR Sibelco NV
  • Hindalco Industries Ltd.
  • TOR Minerals International
  • The R.J. Marshall Company
  • MAL Magyar Aluminium
  • Nippon Light Metal Company, Ltd.
  • Sibelco (Ath products)
  • Alumina Chemicals & Castables

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Frequently Asked Questions

Find quick answers to the most common questions

The approximate Alumina Trihydrate Market size for the market will be USD 18.90 billion in 2033.

Key segments for the Alumina Trihydrate Market are By Type (Ground ATH, Dry ATH, Wet ATH, Precipitate ATH), By Grade (Powder, Granules, Pellets), By Application (Flame Retardant, Filler, Antacid, Smoke Suppressant, Others) and By End-Use Industry (Plastics & Polymers, Building & Construction, Paints & Coatings, Pharmaceuticals & Personal Care, Automotive & Aerospace, Electronics & Electrical Equipment, Glass, Rubber, & Others).

Major Alumina Trihydrate Market players are Huber Engineered Materials, Nabaltec AG, Aluminium Corporation of China Limited (CHALCO), Sumitomo Chemical Co., Ltd., Almatis GmbH.

The North America region is leading the Alumina Trihydrate Market.

The CAGR of the Alumina Trihydrate Market is 6.90%.