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Sodium Dithionite Market: Comprehensive Analysis of Industrial Applications, Key Players, and Growth Forecast to 2031

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    Report

  • 120 Pages
  • February 2026
  • Region: Global
  • Prof Research
  • ID: 6223315
Sodium Dithionite (Na_2 S_2 O_4), also widely recognized as Sodium Hydrosulphite, is a powerful and highly reactive inorganic compound that serves as a cornerstone reducing agent across various industrial landscapes. Characterized as a white crystalline powder, it possesses an exceptional ability to release sulfoxylate ions in aqueous solutions, making it a potent chemical for reduction processes. Its inherent reactivity, however, necessitates specialized handling, packaging, and stabilization to prevent premature oxidation or spontaneous combustion, particularly when exposed to moisture or air.

Historically, Sodium Dithionite found its primary utility in the textile industry, where its unique property of reducing water-insoluble dyes, such as indigo and vat dyes, into their soluble leuco forms revolutionized dyeing processes. This application remains critical, especially in the global denim and garment manufacturing sectors. Beyond textiles, the compound is indispensable in the pulp and paper industry for bleaching mechanical and recycled pulps, effectively achieving high brightness levels without significantly compromising fiber strength.

In recent years, the market for Sodium Dithionite has diversified considerably. It has transitioned into a key chemical intermediate for various syntheses, an oxygen scavenger in water treatment, and a vital component in the manufacturing of specialty polymers. The pharmaceutical and personal care industries increasingly demand ultra-high purity grades for use as antioxidants and stabilizers. This evolution reflects a broader trend in industrial chemistry toward specialized, high-performance additives that meet stringent quality and environmental standards. The industry continues to innovate, with a growing emphasis on more environmentally friendly production methods, such as the formate process, which helps mitigate the environmental impact associated with older, heavy-metal-dependent synthesis routes.

Market Scale and Growth Projections

The global Sodium Dithionite market is positioned for sustained expansion, driven by the ongoing demands of core industrial sectors and the emergence of new high-value applications. By 2026, the market size is estimated to reach between 1.3 billion USD and 2.4 billion USD. This valuation encompasses the broad spectrum of product grades, from high-volume industrial grades to niche, high-purity variants, and accounts for regional differences in production costs and market dynamics.

Looking ahead, the market is projected to demonstrate consistent growth, with a Compound Annual Growth Rate (CAGR) expected to fall within the range of 4.0% to 6.0% from 2026 to 2031. This growth trajectory is supported by several factors: the continued demand for textiles and paper products globally, the expansion of the mining industry, and the increasing sophistication of polymer production. While environmental regulations regarding sulfur-containing compounds present challenges, the lack of readily available, cost-effective, and equally potent alternatives ensures Sodium Dithionite’s enduring market presence.

Analysis by Application

The diverse utility of Sodium Dithionite allows it to penetrate various industrial sectors, each benefiting from its powerful reducing capabilities.

Textile: This remains the most significant and historically dominant application. Sodium Dithionite is crucial for the reduction of vat dyes and indigo dyes, enabling them to penetrate fabric fibers before re-oxidation to their insoluble, colored form. It is also extensively used in textile printing as a discharge agent, selectively removing existing dyes to create patterns, and as a stripping agent for correcting dyeing errors. The global demand for denim and dyed fabrics ensures a consistent consumption in this sector.

Pulp and Paper: In the pulp and paper industry, Sodium Dithionite is employed as an effective bleaching agent, particularly for mechanical pulps, thermo-mechanical pulps (TMP), and recycled fibers (de-inking). Unlike chlorine-based bleaches, it offers a more environmentally friendly alternative, preserving fiber strength and achieving desired brightness levels efficiently, which is vital for newsprint, tissue, and packaging grades.

Mining: This is an expanding high-value application. Sodium Dithionite is used as a depressant and reducing agent in mineral flotation processes, aiding in the selective separation of valuable metal ores from gangue. It is particularly effective in the processing of kaolin clay for brightness enhancement and in certain sulfide ore beneficiation circuits. Its ability to modify the surface chemistry of minerals enhances recovery rates.

Chemical Intermediates: Sodium Dithionite acts as a versatile reducing and sulfonating agent in the synthesis of various specialty chemicals. These intermediates find use in diverse downstream applications, including the production of certain agricultural chemicals, dyes, and polymer additives, where precise chemical reduction is required.

Polymer Production & Processing: In the manufacturing of certain polymers and synthetic rubbers, Sodium Dithionite functions as an oxygen scavenger or a chain-stopping agent. It helps control the polymerization reaction, prevents oxidative degradation during processing, and contributes to the stability and performance characteristics of the final polymer product.

Personal Care: High-purity grades of Sodium Dithionite are utilized in the personal care industry, notably in hair care products. It serves as a bleaching agent in hair dyes and as a reducing agent in permanent waving solutions, where it helps break and reform disulfide bonds in hair keratin. It can also be found in some specialized cosmetic formulations as an antioxidant.

Water Treatment: Sodium Dithionite is employed in industrial water treatment for dechlorination purposes and as a reducing agent to remove heavy metal ions, such as chromium (VI), from wastewater streams. This application supports industrial compliance with environmental discharge regulations and promotes cleaner effluent.

Others: Additional niche applications include its use as a photographic chemical (for toning solutions), as a preservative in specific food processing applications (subject to strict regional regulations), and in the leather tanning industry for reducing chromium salts.

Regional Market Dynamics and Trends

The global market for Sodium Dithionite exhibits distinct regional consumption and production patterns, largely mirroring the geographic distribution of textile and paper manufacturing bases.

Asia-Pacific: This region is the dominant force in the Sodium Dithionite market, estimated to hold a share ranging from 55% to 65%. China is the world's largest producer and consumer, driven by its unparalleled textile and garment manufacturing industry, as well as significant growth in its pulp and paper sector. India also represents a massive market, particularly for textile chemicals and, increasingly, pharmaceuticals. The rapid industrial expansion and growing domestic consumption in Southeast Asian countries like Vietnam and Indonesia further fuel regional demand. This region experiences strong growth due to robust manufacturing output.

Europe: Accounting for an estimated 15% to 22% of the global market, Europe is characterized by a mature industrial base and stringent environmental regulations (e.g., REACH). The demand here is focused on high-purity, environmentally compliant grades for specialty textile applications, advanced paper bleaching, and the expanding pharmaceutical sector. Leading European chemical companies are at the forefront of developing sustainable production processes for Sodium Dithionite.

North America: North America holds a market share estimated between 12% and 18%. The market is driven by its well-established pulp and paper industry, the growing mining sector, and strong demand from pharmaceutical manufacturers. While the textile industry has seen some contraction, the need for Sodium Dithionite in water treatment and other industrial chemical processes remains consistent. Key players leverage strong distribution networks in this mature market.

South America: This region represents an estimated 5% to 10% of the market. Brazil is a key consumer, with significant textile and pulp & paper industries. The growing mining sector, especially in countries like Chile and Peru, also contributes to the demand for Sodium Dithionite in mineral processing.

Middle East & Africa (MEA): With an estimated share of 3% to 7%, the MEA market is primarily driven by the textile industries in Turkey and Egypt, as well as the mining and water treatment sectors in South Africa and the Gulf Cooperation Council (GCC) countries. Infrastructure development and industrialization efforts are expected to drive gradual growth in this region.

Value Chain and Manufacturing Analysis

The value chain for Sodium Dithionite is deeply integrated within the broader inorganic chemical industry, with multiple production technologies defining its manufacturing landscape.

Upstream (Raw Materials): The primary raw materials vary depending on the synthesis route.

Formate Process: This increasingly favored method requires sodium formate, sulfur dioxide (

SO_2

), and caustic soda (

NaOH

). The availability and pricing of methanol (which yields formaldehyde for sodium formate) and sulfur are key cost drivers.
Zinc Process: This older method utilizes zinc dust, sulfur dioxide, and caustic soda. Zinc prices and environmental regulations regarding zinc byproducts significantly influence its viability.

Amalgam Process: This process, which uses sodium amalgam (a product of chlor-alkali electrolysis) and sulfur dioxide, is becoming less common due to the global shift away from mercury-based chlor-alkali production.

Midstream (Production and Stabilization): This segment involves the chemical synthesis of Sodium Dithionite. The technological challenge lies in precisely controlling the reaction conditions to maximize yield, achieve desired purity levels, and minimize byproduct formation. Due to its inherent instability and reactivity, a critical step involves stabilization, often by adding carbonates or other inert compounds, and packaging in specialized vacuum-sealed containers. Some manufacturers also offer stabilized liquid forms, reducing handling risks for end-users.

Downstream (Distribution and End-Use): Sodium Dithionite is distributed globally through a network of chemical distributors and directly sold to large-scale industrial consumers. Polymer manufacturers, textile mills, pulp and paper facilities, mining operations, and pharmaceutical companies integrate the product into their respective processes as a key chemical reagent or additive.

Competitive Landscape: Key Market Players

The Sodium Dithionite market is characterized by a mix of multinational chemical giants and specialized regional manufacturers, with a strong presence from Asian producers.

BASF: A global chemical leader based in Germany, BASF maintains a significant presence in the Sodium Dithionite market. The company is renowned for its high-quality products, robust R&D, and global distribution network, supplying various industries, including textiles and paper, with an emphasis on sustainable production processes.

Nouryon: Headquartered in the Netherlands, Nouryon is a major supplier of essential chemicals, particularly to the pulp and paper industry. Their expertise in bleaching chemicals and integrated solutions makes them a key player in this sector, focusing on efficiency and environmental performance.

Chemtrade Logistics: A prominent North American company specializing in industrial chemicals and services. Chemtrade Logistics provides reliable supply chain solutions for Sodium Dithionite, serving the pulp and paper, water treatment, and industrial sectors across the region.

Bruggemann: Based in Germany, Bruggemann is a specialist in reducing agents and sulfur chemicals. The company focuses on high-performance and specialty grades of Sodium Dithionite, catering to demanding applications in textiles, polymers, and pharmaceuticals with custom formulations.

Silox India: As part of the global Silox Group, Silox India is a significant producer in the Asian market. Leveraging its expertise in zinc and sulfur chemistry, it supplies a wide range of Sodium Dithionite products primarily to the Indian textile and mining sectors.

Nagao & Co. Ltd.: A Japanese company contributing to the supply of Sodium Dithionite in the East Asian market, often serving specialized industrial applications requiring high-quality and consistent product.

Guangdi Maoming Chemical & TCP Limited: These companies, along with other Chinese manufacturers, are crucial players in the massive Asian market, contributing to the region's substantial production and consumption volumes across diverse industrial applications.

MGC (Mitsubishi Gas Chemical): A Japanese chemical conglomerate that provides high-purity Sodium Dithionite, particularly for the electronics and chemical intermediate industries in East Asia, where strict quality control is paramount.

Hansol Chemical: Based in South Korea, Hansol Chemical is a key supplier to the regional pulp, paper, and textile industries, known for its large-scale production and competitive offerings.

Cathay Chemical Works: A notable player in the Western market, offering Sodium Dithionite for North American and European industries, with a focus on consistent quality for technical and pharmaceutical grades.

Chinese Producers (Guangdong Zhongcheng, Zhejiang Runtu, Hubei Yihua, Shandong Jinhe, Jiang Xi Hongan Chemical): These companies collectively form the backbone of China's Sodium Dithionite production, catering to the vast domestic and export markets for textiles, paper, and polymer industries. Their scale allows for competitive pricing and substantial global supply.

Kutch Chemical Industries Ltd: An Indian chemical manufacturer that has a significant presence in the Sodium Dithionite market, contributing to India's robust domestic supply for its large textile and chemical industries.

Market Opportunities

Growth in Sustainable Textile Processing: The increasing global emphasis on sustainable manufacturing practices in the textile industry creates opportunities for Sodium Dithionite. Innovations in more efficient dyeing and discharge printing processes that reduce chemical consumption and wastewater generation will drive demand for optimized grades.

Expansion of the Mining Sector: The global demand for critical minerals (e.g., copper, lithium) for electric vehicles and renewable energy technologies is surging. Sodium Dithionite's role in improving mineral recovery rates through flotation processes presents a significant growth avenue, especially as lower-grade ores are increasingly processed.

Pharmaceutical and Personal Care Market Growth: As pharmaceutical manufacturing expands in emerging economies and the personal care sector continues to innovate, the demand for ultra-high purity Sodium Dithionite as a stabilizer and antioxidant in sensitive formulations is expected to increase, offering high-margin opportunities.

Circular Economy for Paper: The global push for increased paper recycling fuels the demand for Sodium Dithionite in de-inking processes. Its effectiveness in maintaining fiber quality during recycling makes it crucial for the production of recycled paper products and packaging.

Market Challenges

Safety and Handling Risks: Sodium Dithionite is classified as a hazardous material due to its flammability and reactivity with air and moisture. This necessitates strict adherence to safety protocols during storage, transportation, and use, leading to higher operational costs for both producers and end-users.

Environmental Regulations on Sulfur Emissions: The production and use of Sodium Dithionite generate sulfur-containing byproducts and emissions. Increasing global environmental regulations, particularly concerning sulfur dioxide emissions and wastewater discharge, compel manufacturers to invest in costly abatement technologies and greener production processes.

Volatility in Raw Material Prices: The cost of Sodium Dithionite is highly sensitive to the prices of its key raw materials, especially sulfur and zinc (depending on the production process). Fluctuations in global commodity markets can directly impact production costs and profit margins for manufacturers.

Competition from Alternative Reducing/Bleaching Agents: While Sodium Dithionite offers unique advantages, it faces competition from other reducing and bleaching agents like hydrogen peroxide, sodium hypochlorite, or even enzymatic alternatives in certain applications. Lower costs or easier handling of alternatives can lead to substitution in less demanding processes.

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Table of Contents

Chapter 1: Report Overview
1.1 Study Scope
1.2 Research Methodology
1.2.1 Data Sources
1.2.2 Assumptions
1.3 Abbreviations and Acronyms
Chapter 2: Executive Summary
2.1 Global Sodium Dithionite Market Size Estimates and Forecasts
2.2 Global Sodium Dithionite Capacity and Production Outlook (2021-2031)
2.3 Key Market Trends and Emerging Technologies
2.4 Regional Market Summary
Chapter 3: Market Environment Analysis
3.1 Market Drivers
3.1.1 Recovery of the Global Textile Industry and Vat Dyeing Demand
3.1.2 Increasing Usage in Pulp and Paper Bleaching Processes
3.1.3 Growth in Mineral Processing (Kaolin Clay Bleaching)
3.2 Market Restraints and Challenges
3.2.1 Hazardous Material Transport Regulations (Class 4.2 Spontaneously Combustible)
3.2.2 Environmental Pressure on Chemical Manufacturing Emissions
3.3 Market Opportunities
3.3.1 Development of Stabilized and Liquid Grade Formulations
3.4 Porter’s Five Forces Analysis
Chapter 4: Technology and Value Chain Analysis
4.1 Manufacturing Process Analysis
4.1.1 Sodium Formate Process (Mainstream Technology)
4.1.2 Zinc Dust Process (Traditional Method)
4.1.3 Sodium Borohydride Process
4.2 Value Chain Analysis
4.2.1 Raw Materials (Sodium Formate, Sulfur Dioxide, Caustic Soda, Zinc)
4.2.2 Manufacturers
4.2.3 Distributors and Logistics Providers
4.2.4 End-Users
4.3 Manufacturing Cost Structure Analysis
Chapter 5: Global Sodium Dithionite Market Size and Supply Analysis
5.1 Global Sodium Dithionite Capacity and Production (2021-2031)
5.2 Global Sodium Dithionite Revenue and Market Share (2021-2031)
5.3 Global Sodium Dithionite Pricing Trends (2021-2031)
5.4 Global Sodium Dithionite Capacity Utilization Rates
Chapter 6: Market Analysis by Application
6.1 Global Sodium Dithionite Consumption by Application (2021-2031)
6.2 Textile (Reducing Agent for Vat Dyes, Reduction Clearing)
6.3 Pulp and Paper (Brightening Agent)
6.4 Mining (Kaolin Clay Bleaching)
6.5 Polymer Production & Processing
6.6 Chemical Intermediates
6.7 Personal Care (Cosmetics)
6.8 Water Treatment
6.9 Others (Food Additives, Gas Purification, etc.)
Chapter 7: Regional Market Analysis
7.1 Global Sodium Dithionite Production and Consumption by Region
7.2 North America
7.2.1 United States
7.2.2 Canada
7.3 Europe
7.3.1 Germany
7.3.2 Belgium
7.4 Asia-Pacific
7.4.1 China
7.4.2 Japan
7.4.3 India
7.4.4 South Korea
7.4.5 Taiwan (China)
7.4.6 Southeast Asia
7.5 South America
7.5.1 Brazil
7.6 Middle East & Africa
Chapter 8: Import and Export Analysis
8.1 Global Sodium Dithionite Trade Overview
8.2 Major Importing Regions
8.3 Major Exporting Regions
Chapter 9: Competitive Landscape
9.1 Global Sodium Dithionite Market Share by Manufacturer (2026)
9.2 Market Concentration Ratio (CR3 and CR5)
9.3 Mergers, Acquisitions, and Capacity Expansions
Chapter 10: Key Market Players
10.1 BASF
10.1.1 Company Introduction
10.1.2 SWOT Analysis
10.1.3 BASF Sodium Dithionite Business Performance
10.1.4 BASF Sodium Dithionite Operating Data (2021-2026)
10.2 Nouryon
10.2.1 Company Introduction
10.2.2 SWOT Analysis
10.2.3 Nouryon Sodium Dithionite Business Performance
10.2.4 Nouryon Sodium Dithionite Operating Data (2021-2026)
10.3 Chemtrade Logistics
10.3.1 Company Introduction
10.3.2 SWOT Analysis
10.3.3 Chemtrade Logistics Sodium Dithionite Operating Data (2021-2026)
10.4 Bruggemann
10.4.1 Company Introduction
10.4.2 SWOT Analysis
10.4.3 Bruggemann Sodium Dithionite Operating Data (2021-2026)
10.5 Silox India
10.5.1 Company Introduction
10.5.2 SWOT Analysis
10.5.3 Silox India Sodium Dithionite Operating Data (2021-2026)
10.6 Nagao & Co. Ltd.
10.6.1 Company Introduction
10.6.2 SWOT Analysis
10.6.3 Nagao & Co. Ltd. Sodium Dithionite Operating Data (2021-2026)
10.7 Guangdi Maoming Chemical
10.7.1 Company Introduction
10.7.2 SWOT Analysis
10.7.3 Guangdi Maoming Chemical Sodium Dithionite Operating Data (2021-2026)
10.8 TCP Limited
10.8.1 Company Introduction
10.8.2 SWOT Analysis
10.8.3 TCP Limited Sodium Dithionite Operating Data (2021-2026)
10.9 MGC (Mitsubishi Gas Chemical)
10.9.1 Company Introduction
10.9.2 SWOT Analysis
10.9.3 MGC Sodium Dithionite Operating Data (2021-2026)
10.10 Hansol Chemical
10.10.1 Company Introduction
10.10.2 SWOT Analysis
10.10.3 Hansol Chemical Sodium Dithionite Operating Data (2021-2026)
10.11 Cathay Chemical Works
10.11.1 Company Introduction
10.11.2 SWOT Analysis
10.11.3 Cathay Chemical Works Sodium Dithionite Operating Data (2021-2026)
10.12 Guangdong Zhongcheng
10.12.1 Company Introduction
10.12.2 SWOT Analysis
10.12.3 Guangdong Zhongcheng Sodium Dithionite Operating Data (2021-2026)
10.13 Zhejiang Runtu
10.13.1 Company Introduction
10.13.2 SWOT Analysis
10.13.3 Zhejiang Runtu Sodium Dithionite Operating Data (2021-2026)
10.14 Hubei Yihua
10.14.1 Company Introduction
10.14.2 SWOT Analysis
10.14.3 Hubei Yihua Sodium Dithionite Operating Data (2021-2026)
10.15 Shandong Jinhe
10.15.1 Company Introduction
10.15.2 SWOT Analysis
10.15.3 Shandong Jinhe Sodium Dithionite Operating Data (2021-2026)
10.16 Kutch Chemical Industries Ltd
10.16.1 Company Introduction
10.16.2 SWOT Analysis
10.16.3 Kutch Chemical Industries Ltd Sodium Dithionite Operating Data (2021-2026)
10.17 Jiang Xi Hongan Chemical
10.17.1 Company Introduction
10.17.2 SWOT Analysis
10.17.3 Jiang Xi Hongan Chemical Sodium Dithionite Operating Data (2021-2026)
Chapter 11: Research Findings and Conclusion
11.1 Key Findings
11.2 Market Outlook
List of Figures
Figure 1 Global Sodium Dithionite Market Size (Million USD) and Growth Rate (2021-2031)
Figure 2 Global Sodium Dithionite Capacity (Tons) and Production (Tons) Forecast (2021-2031)
Figure 3 Global Sodium Dithionite Market Share by Region (2026)
Figure 4 Porter’s Five Forces Analysis of Sodium Dithionite Industry
Figure 5 Sodium Dithionite Manufacturing Process Flow (Sodium Formate Route)
Figure 6 Sodium Dithionite Industry Value Chain
Figure 7 Global Sodium Dithionite Capacity Market Share by Key Players (2021-2026)
Figure 8 Global Sodium Dithionite Production Value (Million USD) Forecast (2027-2031)
Figure 9 Global Sodium Dithionite Average Price Trend (USD/Ton) (2021-2031)
Figure 10 Global Sodium Dithionite Consumption Market Share by Application (2026)
Figure 11 Textile Application Market Size (2021-2031)
Figure 12 Pulp and Paper Application Market Size (2021-2031)
Figure 13 Mining Application Market Size (2021-2031)
Figure 14 Polymer Production Application Market Size (2021-2031)
Figure 15 Global Sodium Dithionite Production Market Share by Region (2026)
Figure 16 North America Sodium Dithionite Consumption Growth Rate (2021-2031)
Figure 17 Europe Sodium Dithionite Consumption Growth Rate (2021-2031)
Figure 18 Asia-Pacific Sodium Dithionite Consumption Growth Rate (2021-2031)
Figure 19 China Sodium Dithionite Market Size (2021-2031)
Figure 20 India Sodium Dithionite Market Size (2021-2031)
Figure 21 Global Sodium Dithionite Market Concentration Ratio (CR3) (2021 vs 2026)
Figure 22 BASF Sodium Dithionite Market Share (2021-2026)
Figure 23 Nouryon Sodium Dithionite Market Share (2021-2026)
Figure 24 Chemtrade Logistics Sodium Dithionite Market Share (2021-2026)
Figure 25 Bruggemann Sodium Dithionite Market Share (2021-2026)
Figure 26 Silox India Sodium Dithionite Market Share (2021-2026)
Figure 27 Nagao & Co. Ltd. Sodium Dithionite Market Share (2021-2026)
Figure 28 Guangdi Maoming Chemical Sodium Dithionite Market Share (2021-2026)
Figure 29 TCP Limited Sodium Dithionite Market Share (2021-2026)
Figure 30 MGC Sodium Dithionite Market Share (2021-2026)
Figure 31 Hansol Chemical Sodium Dithionite Market Share (2021-2026)
Figure 32 Cathay Chemical Works Sodium Dithionite Market Share (2021-2026)
Figure 33 Guangdong Zhongcheng Sodium Dithionite Market Share (2021-2026)
Figure 34 Zhejiang Runtu Sodium Dithionite Market Share (2021-2026)
Figure 35 Hubei Yihua Sodium Dithionite Market Share (2021-2026)
Figure 36 Shandong Jinhe Sodium Dithionite Market Share (2021-2026)
Figure 37 Kutch Chemical Industries Ltd Sodium Dithionite Market Share (2021-2026)
Figure 38 Jiang Xi Hongan Chemical Sodium Dithionite Market Share (2021-2026)
List of Tables
Table 1 Global Sodium Dithionite Market Size (Million USD) (2021-2031)
Table 2 Global Sodium Dithionite Capacity (Tons) and Production (Tons) (2021-2031)
Table 3 Key Drivers for Sodium Dithionite Market Adoption
Table 4 Major Restraints and Challenges (Safety & Regulatory)
Table 5 Manufacturing Cost Structure of Sodium Dithionite
Table 6 Global Sodium Dithionite Revenue (Million USD) by Manufacturers (2021-2026)
Table 7 Global Sodium Dithionite Capacity (Tons) by Manufacturers (2021-2026)
Table 8 Global Sodium Dithionite Production (Tons) by Manufacturers (2021-2026)
Table 9 Global Sodium Dithionite Consumption (Tons) by Application (2021-2031)
Table 10 Global Sodium Dithionite Market Size (Million USD) by Application (2021-2031)
Table 11 Global Sodium Dithionite Production (Tons) by Region (2021-2031)
Table 12 Global Sodium Dithionite Consumption (Tons) by Region (2021-2031)
Table 13 Global Sodium Dithionite Market Size (Million USD) by Region (2021-2031)
Table 14 North America Sodium Dithionite Market Data (Capacity, Production, Revenue) (2021-2031)
Table 15 Europe Sodium Dithionite Market Data (Capacity, Production, Revenue) (2021-2031)
Table 16 Asia-Pacific Sodium Dithionite Market Data (Capacity, Production, Revenue) (2021-2031)
Table 17 Global Sodium Dithionite Trade Volume (Import/Export) (2021-2026)
Table 18 Global Sodium Dithionite Competitive Situation and Trends
Table 19 BASF Basic Information, Manufacturing Base and Competitors
Table 20 BASF Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 21 Nouryon Basic Information, Manufacturing Base and Competitors
Table 22 Nouryon Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 23 Chemtrade Logistics Basic Information, Manufacturing Base and Competitors
Table 24 Chemtrade Logistics Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 25 Bruggemann Basic Information, Manufacturing Base and Competitors
Table 26 Bruggemann Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 27 Silox India Basic Information, Manufacturing Base and Competitors
Table 28 Silox India Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 29 Nagao & Co. Ltd. Basic Information, Manufacturing Base and Competitors
Table 30 Nagao & Co. Ltd. Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 31 Guangdi Maoming Chemical Basic Information, Manufacturing Base and Competitors
Table 32 Guangdi Maoming Chemical Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 33 TCP Limited Basic Information, Manufacturing Base and Competitors
Table 34 TCP Limited Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 35 MGC Basic Information, Manufacturing Base and Competitors
Table 36 MGC Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 37 Hansol Chemical Basic Information, Manufacturing Base and Competitors
Table 38 Hansol Chemical Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 39 Cathay Chemical Works Basic Information, Manufacturing Base and Competitors
Table 40 Cathay Chemical Works Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 41 Guangdong Zhongcheng Basic Information, Manufacturing Base and Competitors
Table 42 Guangdong Zhongcheng Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 43 Zhejiang Runtu Basic Information, Manufacturing Base and Competitors
Table 44 Zhejiang Runtu Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 45 Hubei Yihua Basic Information, Manufacturing Base and Competitors
Table 46 Hubei Yihua Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 47 Shandong Jinhe Basic Information, Manufacturing Base and Competitors
Table 48 Shandong Jinhe Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 49 Kutch Chemical Industries Ltd Basic Information, Manufacturing Base and Competitors
Table 50 Kutch Chemical Industries Ltd Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)
Table 51 Jiang Xi Hongan Chemical Basic Information, Manufacturing Base and Competitors
Table 52 Jiang Xi Hongan Chemical Sodium Dithionite Capacity, Production, Price, Cost and Gross Profit Margin (2021-2026)

Companies Mentioned

  • BASF
  • Nouryon
  • Chemtrade Logistics
  • Bruggemann
  • Silox India
  • Nagao & Co. Ltd.
  • Guangdi Maoming Chemical
  • TCP Limited
  • MGC
  • Hansol Chemical
  • Cathay Chemical Works
  • Guangdong Zhongcheng
  • Zhejiang Runtu
  • Hubei Yihua
  • Shandong Jinhe
  • Kutch Chemical Industries Ltd
  • Jiang Xi Hongan Chemical