Ethylene Dichloride (EDC) Market By Production Process (Oxy Chlorination, Direct Chlorination), By Application (Chemical Intermediate, Agricultural Chemicals), By End-User Industry (Construction, Automotive, Packaging, Furniture, Medical), & Region For 2024-2031
Published Date: August - 2024 | Publisher: MIR | No of Pages: 320 | Industry: latest updates trending Report | Format: Report available in PDF / Excel Format
View Details Download Sample Ask for Discount Request CustomizationEthylene Dichloride (EDC) Market By Production Process (Oxy Chlorination, Direct Chlorination), By Application (Chemical Intermediate, Agricultural Chemicals), By End-User Industry (Construction, Automotive, Packaging, Furniture, Medical), & Region For 2024-2031
Ethylene Dichloride (EDC) Market Valuation – 2024-2031
The key driver of EDC demand is its importance in the production of polyvinyl chloride (PVC). PVC is one of the most frequently used plastics in the world with applications ranging from construction to automotive, healthcare, and electronics. The construction business in particular is expanding rapidly especially in emerging economies where urbanization and infrastructure development are growing. PVC is popular because of its durability, low cost, and adaptability, with applications including pipes, windows, doors, and flooring. As building activity increases, so does the need for PVC and by extension EDC by enabling the market to surpass a revenue of USD 17.58 Billion valued in 2023 and reach a valuation of around USD 25.19 Billion by 2031.
The market’s increasing demand for Ethylene Dichloride is driven by its critical role in the production of PVC, advancements in manufacturing technologies, the shift toward sustainable practices, and the growing needs of the construction, automotive, electronics, and healthcare industries. With favorable economic conditions, regulatory frameworks, and strategic industry movements, EDC’s relevance in the worldwide market is expected to grow even more. As industries advance and the demand for high-performance, cost-effective, and environmentally friendly materials rises, EDC will remain a key chemical in tackling the difficulties and opportunities of current industrial applications by enabling the market to grow at a CAGR of 4.6% from 2024 to 2031.Â
Ethylene Dichloride (EDC) MarketDefinition/ Overview
Ethylene dichloride (EDC), or 1, 2-dichloroethane is a chlorinated hydrocarbon having the chemical formula C2H4Cl2. It is a colorless liquid with a sweet odor that is principally utilized in the synthesis of vinyl chloride, a necessary precursor for polyvinyl chloride (PVC) production. Ethylene dichloride is created by chlorinating ethylene which is commonly done directly using chlorine and ethylene gas in the presence of an iron chloride catalyst. This technique is very efficient and produces a large amount of EDC.
In addition, ethylene dichloride is used as a solvent in a variety of industries. Its ability to dissolve a wide variety of compounds makes it useful in the formation of adhesives, varnishes, and coatings. EDC’s solvent qualities make it useful in the pharmaceutical industry for extraction and purification processes. Its position in these applications demonstrates its utility beyond being a mere precursor to other compounds, broadening its relevance to a variety of practical applications.
The future use of Ethylene Dichloride is inextricably tied to the PVC market’s changing demands, developments in manufacturing technology, sustainability initiatives, regulatory frameworks, and the investigation of new applications. As the world shifts toward more sustainable and efficient industrial practices, the chemical sector particularly EDC production will need to adapt by adopting new technologies, improving environmental performance, and adhering to tough laws.
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Will the Increasing Urbanization Drive the Ethylene Dichloride (EDC) Market?
Ethylene dichloride (EDC) sometimes known as dichloroethane is a key component in the commercial manufacturing of vinyl chloride monomer (VCM), the precursor to polyvinyl chloride. Despite its extensive industrial applications, EDC is known for being highly flammable, poisonous, and carcinogenic. Because of its toxic qualities, it must be handled and processed with extreme caution. However, one of the benefits of EDC is that it can be easily recycled and reused inside the same facility reducing some of the environmental and health hazards connected with its manufacture and usage.
PVC’s applications are numerous and diverse. It is utilized in the construction industry to manufacture pipes and fittings which are critical components of contemporary infrastructure. PVC pipes are praised for their durability, ease of installation, and resistance to corrosion. PVC is also used in the electrical industry to insulate wires and cables because of its strong insulating characteristics. PVC is utilized in the automobile sector for vehicle upholstery giving it a long-lasting and attractive appearance.
Ethylene dichloride (EDC) is an important raw material in the manufacturing of vinyl chloride monomer (VCM) which is then polymerized to form polyvinyl chloride (PVC). The process involves chlorinating ethane with iron (III) chloride to make EDC which is subsequently pyrolyzed to yield VCM and hydrogen chloride. PVC developed from VCM is a widely used plastic that finds employment in the construction, automotive, electrical, and packaging industries, among others.
Will Concern Regarding Harmful Inner Coatings Hamper the Ethylene Dichloride (EDC) Market?
Ethylene dichloride (EDC) a white liquid with a chloroform-like odor is widely employed as a chemical intermediary in the synthesis of vinyl chloride which is then polymerized to form polyvinyl chloride (PVC). Because of its ubiquitous industrial use, low levels of EDC may be present in the workplace or in the environment. EDC provides serious health concerns, and exposure to concentrated EDC vapor can cause a variety of negative health impacts. Acute exposure can result in respiratory distress, heart arrhythmia, nausea, and vomiting. Chronic exposure to EDC can have a negative influence on several organ systems including the nervous system, liver, and kidneys.
EDC’s neurological effects are especially troubling as the substance can cause dizziness, headaches, convulsions, and, in severe cases, coma. These symptoms result from EDC’s potential to disrupt the central nervous system. EDC exposure has also been linked to liver and kidney damage. Hepatotoxicity which is characterized by changes in enzyme levels, lipid changes, and cell necrosis can affect the liver the primary detoxifying organ. Similarly, the kidneys can undergo nephrotoxicity which manifests as tubular damage and reduced renal function.
Ethylene dichloride provides significant health concerns via a variety of ways of exposure. Acute and chronic exposures can cause serious respiratory, cardiac, neurological, hepatic, and renal consequences. While the reproductive and carcinogenic dangers of EDC are still being investigated, available information from animal research and regulatory assessments emphasizes the need for strict exposure management methods. Understanding the various effects of EDC is critical for creating appropriate safety standards and safeguarding people from its dangers.
Category-Wise Acumens
Will the Increasing Process Integration Drive the Production Process Segment?
The growing integration of processes in the chemical sector is a major driver for the production segment particularly for the manufacture of ethylene dichloride (EDC) and other essential compounds. Process integration is the systematic design and operation of chemical processes to maximize overall efficiency, eliminate waste, and minimize expenses. In the context of EDC manufacturing, process integration can be quite useful affecting both oxychlorination and direct chlorination processes.
The fundamental benefit of process integration is increased efficiency. Chemical plants can improve energy efficiency, raw material usage, and overall throughput by integrating multiple production phases. In the manufacturing of EDC, for example, combining the oxychlorination process with the production of vinyl chloride monomer (VCM) and polyvinyl chloride (PVC) allows for the efficient reuse of hydrogen chloride (HCl), a byproduct of VCM and PVC production. This not only eliminates the demand for external raw materials but also lowers the expenses of waste treatment and disposal.
The chemical industry’s rising process integration is a major driver for the production process segment particularly in ethylene dichloride manufacturing. Manufacturers profit significantly from integrated processes because they improve efficiency, reduce costs, improve sustainability, and ensure product quality. Technological improvements and innovations further enable this integration giving businesses a competitive advantage in the market.
Will the Increasing Use of Coatings and Cleaning Agents Drive the Application Segment?
Ethylene dichloride (EDC) is an important chemical intermediate that is used in a variety of industries. While its primary application is in the synthesis of vinyl chloride monomer (VCM) and polyvinyl chloride (PVC) raw materials, EDC is widely used in a variety of industries including pharmaceuticals and agriculture. This article dives into EDC’s many applications highlighting its importance as a precursor, solvent, and critical component in the synthesis of various molecules and chemicals.
Ethylene dichloride (EDC) plays an important role in many industries acting as a chemical intermediary, solvent, and raw material. Its function in the creation of vinyl chloride monomer (VCM) and polyvinyl chloride (PVC) highlights its importance in the plastics industry but it is also used in pharmaceuticals, agriculture, and other industries. EDC as a precursor in the synthesis of ethylene amines and other chlorinated compounds makes it possible to produce a wide range of products with numerous applications. Furthermore, its solvent qualities make it an essential ingredient in paints, varnishes, adhesives, and cleaning agents. Overall, EDC’s diverse uses demonstrate its value as a key component in current industrial processes and products.
Gain Access into Ethylene Dichloride (EDC) Market Report Methodology
Country/Region-wise Acumens
Will the Increasing Expansion and Urbanization Drive the Asia Pacific Region?
The Asia Pacific region is in the forefront of Ethylene Dichloride (EDC) usage, thanks to a confluence of factors driving economic progress, population growth, urban expansion, and infrastructure development. This combination drives strong demand for Polyvinyl Chloride (PVC) and a variety of other goods containing EDC as a key raw material.
The region’s economic trajectory marked by rising GDPs and middle-class populations fuels an increase in construction activity and consumer goods production. This, in turn, increases the need for PVC, a versatile polymer used in a variety of industries including building, healthcare, and automobiles. EDC is a key component in the PVC production cycle and as a result demand has increased proportionally.
The Asia Pacific region clearly dominates EDC usage, the global landscape highlights the complex nature of EDC utilization. Regional market dynamics, industrial activity, and socioeconomic factors all influence the global trajectory of EDC usage. As economies and industries grow, so will EDC’s significance as a crucial raw material reflecting the dynamic interplay of global markets and industrial processes.
Will Increasing Demand for Environment-Friendly Caustic Soda Drive the North American Region?
North America is expected to dominate the global market for ethylene dichloride (EDC) throughout the projected period with the United States emerging as the leading producer and exporter. The United States known for its advantageous industrial economics and boosted by strong demand for caustic soda is the world’s largest producer of EDC. This production supremacy is underlined by its standing as the world’s biggest exporter of EDC. Demand for EDC in the region is predicted to rise owing mostly to the widespread usage of plastic items and a significant increase in home remodeling activities.
The North American EDC market is characterized by a dynamic and changing landscape impacted by a variety of economic, social, and regulatory issues. The region’s strategic placement as a worldwide chemical powerhouse emphasizes its importance in the international arena. Using its technological strength and innovative capacities, North America continues to lead innovations in chemical production fueling unprecedented growth and prosperity in the sector.
North America emerges as a global market leader for ethylene dichloride (EDC) owing to its position as the largest producer and exporter of this critical chemical component. The region’s supremacy is supported by strong industrial economics, high demand for caustic soda and a growing market for plastic products and construction materials. Furthermore, the constant pursuit of innovation and the adoption of environmentally responsible techniques strengthen North America’s position as a major player in the chemical sector.
Competitive Landscape
The ethylene dichloride market is a dynamic and competitive space, characterized by a diverse range of players vying for market share. These players are on the run for solidifying their presence through the adoption of strategic plans such as collaborations, mergers, acquisitions, and political support. The organizations are focusing on innovating their product line to serve the vast population in diverse regions.
Some of the prominent players operating in the Ethylene Dichloride (EDC) Market include
Olin Corporation, Formosa Plastics Corporation, Westlake Chemical Corporation, Axiall Corporation, Occidental Petroleum Corporation, PPG Industries, The Dow Chemical Company, PT Asahimas Chemical, Horizon Chemical Industry Co. Ltd, Punjab Chemicals & Crop Protection Limited.
Latest Developments
- In March 2023, Westlake Epoxy launched the AZURESâ„¢ product line, which includes epoxy resins, modifiers, and curing agents without SVHC- and CMR-labeled chemicals. These sustainable coatings, civil engineering, and adhesives provide improved environmental concerns without sacrificing performance.
- In September 2023, Westlake debuted a new line of single-pellet solutions designed to include post-consumer resin (PCR) content into flexible packaging. This polyethylene resin containing PCR provides a more sustainable material appropriate for non-FDA uses, helping to promote environmentally responsible packaging production processes.
Report Scope
REPORT ATTRIBUTES | DETAILS |
---|---|
STUDY PERIOD | 2018-2031 |
Growth Rate | CAGR of ~4.6% from 2024 to 2031 |
Base Year for Valuation | 2023 |
HISTORICAL PERIOD | 2018-2022 |
Forecast Period | 2024-2031 |
Quantitative Units | Value in USD Billion |
Report Coverage | Historical and Forecast Revenue Forecast, Historical and Forecast Volume, Growth Factors, Trends, Competitive Landscape, Key Players, Segmentation Analysis |
Segments Covered |
|
Regions Covered |
|
Key Players | Olin Corporation, Formosa Plastics Corporation, Westlake Chemical Corporation, Axiall Corporation, Occidental Petroleum Corporation, PPG Industries, The Dow Chemical Company, PT Asahimas Chemical. |
Customization | Report customization along with purchase available upon request |
Ethylene Dichloride (EDC) Market, By Category
Production Process
- Oxy Chlorination
- Direct Chlorination
Application
- Chemical Intermediate
- Agricultural Chemicals
- Chemical Solvents
- VCM/PVC Raw Materials Production
End-User Industry
- Construction
- Automotive
- Packaging
- Furniture
- Medical
Region
- North America
- Europe
- Asia-Pacific
- South America
- Middle East & Africa
Research Methodology of Market Research
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