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Report Overview

Global demand for polyvinylidene fluoride (PVDF) is growing steadily as it has applications in various industries, including automotive, electrical, energy, and chemicals. According to the polyvinylidene fluoride procurement report, PVDF is a highly durable, thermoplastic polymer known for its excellent chemical resistance, high-temperature stability, and electrical insulating properties. Its main applications are coatings, films, membranes for water filtration, and in batteries, particularly for the production of lithium-ion battery separators. Procurement research and category management can help buyers identify reliable sourcing strategies to make optimal purchasing decisions.

2024

Base Year

2019-2024

Historical Period

2025-2030

Forecast Period

Polyvinylidene Fluoride Supply-Demand Overview

Asia-Pacific is still the largest producer and consumer of PVDF, led by China and Japan, driven by their strong manufacturing sectors, especially in automotive, electronics, and energy storage. Renewed interest in renewable energy sources and electric vehicles has further spurred demand for PVDF, particularly for battery components. Additionally, environmental issues make people pay much attention to its use in green technology-solar panels and hydrogen production. This best practice of strategic purchasing and category management must walk hand in hand with companies in a procurement market for PVDF.

Key supply side manufacturers have increased their capacity to cater to growing global demand. In supply chain disruption, it is further working on availability fluctuations of raw materials. Advanced recycling methods during the production process contribute to PVDF's sustainable aspect in industry practices. Structured polyvinylidene fluoride procurement reports offer buyers insightful value for better risk management on their supply chain.

Polyvinylidene Fluoride Cost Structure

The production cost of PVDF is influenced by several factors, with raw materials, energy consumption, and operational expenses being the primary cost drivers as mentioned in the polyvinylidene fluoride procurement report. The main monomer for making PVDF is vinylidene fluoride (VDF), most commonly manufactured with hydrofluoric acid and either acetylene or ethylene. The pricing of VDF can be particularly volatile and responds primarily to factors like fluctuations within petrochemical markets and fluctuations in feedstocks. Cost modeling techniques improve the effectiveness and efficiency of procurers in countering these spikes. 

As per polyvinylidene fluoride procurement report, energy costs play a significant role in the production process, as PVDF manufacturing involves energy-intensive steps like polymerization and extrusion. Regions with higher energy costs can face increased production expenses. Another reason is the application of specific catalysts and additives to improve PVDF properties, such as chemical resistance and stability. All these factors increase the overall cost. Strategic procurement best practices help businesses optimize their PVDF procurement and mitigate financial risks.

Polyvinylidene Fluoride Procurement Intelligence Report

Maintenance of plant, labor, and logistics fall under operational costs. As PVDF is primarily manufactured in dedicated plants, the level of operation and technology adopted would often affect cost effectiveness. The distances involved by market proximity determine transportation and distribution costs since PVDF is shipped worldwide due to high demand in diversified applications. Further, the degree of compliance toward environmental regulations, especially in emission-sensitive areas, affects the cost structure. A detailed procurement report on polyvinylidene fluoride can help businesses understand their sourcing strategy and pricing models.

Polyvinylidene Fluoride Pricing Trends

PVDF prices are largely driven by fluctuations in raw material costs, energy expenses, and global supply-demand conditions, as stated in the polyvinylidene fluoride procurement report. The price of vinylidene fluoride, a key feedstock, is the most significant factor influencing PVDF pricing. Recent years have seen price increases due to rising demand from the energy storage sector and the electric vehicle market, which has led to greater consumption of PVDF for battery components. Pricing trends and pricing strategies play a crucial role in ensuring cost-effective procurement.

Other factors increasing price volatility for PVDF are energy prices, especially natural gas and electricity. Supply chain disruption, such as what happened as a result of the COVID-19 pandemic, also increased costs. However, several improvements in production processes, such as the development of bio-based PVDF, continue to improve production efficiency and are expected to keep the prices stable in the long run.

Polyvinylidene Fluoride Procurement Best Practices

Procurement in the PVDF industry is designed to ensure consistent supply of raw materials, minimize costs, and produce high-quality output. Among the procurement strategies, long-term contracts with vinylidene fluoride and other feedstock suppliers to avoid price fluctuations are the most prominent. The companies are also diversifying their supplier base in order to minimize reliance on particular regions and have a steady supply in case of geopolitical or logistical disruptions. Market research for procurement professionals provides essential data for strategic purchasing and negotiation strategies.

Sustainability is an increasing priority in PVDF procurement, with companies seeking suppliers who adhere to environmental regulations and adopt greener manufacturing practices. The growing trend of sourcing from suppliers who use recycled materials or bio-based feedstocks is also on the rise. According to polyvinylidene fluoride procurement report, efficient logistics, inventory management, and the use of advanced procurement technologies such as digital platforms and market intelligence tools are critical to managing costs and ensuring a reliable supply chain. A well-documented polyvinylidene fluoride procurement report offers insights into industry best practices and procurement market trends.

Key Players in the Polyvinylidene Fluoride Industry

Arkema S.A.

Established in 2004 and headquartered in Colombes, France, Arkema S.A. is a global leader in the chemicals and materials industry. The company specializes in high-performance materials and coatings across various sectors, focusing on innovation and sustainability.

Dyneon LLC (3M company)

Dyneon LLC, a subsidiary of 3M founded in 1997, is renowned for its development and production of fluoropolymer-based materials, including PVDF. According to polyvinylidene fluoride procurement report, the company provides innovative solutions for industries such as automotive, aerospace, and chemicals.

Kureha Corporation

Founded in 1948 and based in Japan, Kureha Corporation specializes in high-performance plastics, specialty chemicals, and advanced materials. It holds a strong presence in the global PVDF market, serving industries like energy storage, automotive, and coatings.

Solvay S.A.

Headquartered in Brussels, Belgium, Solvay S.A. was founded in 1863 and is known for its high-performance materials. In accordance with the polyvinylidene fluoride procurement report, the company significantly contributes to the PVDF market while focusing on sustainable solutions across various sectors.

RTP Company, Inc.

RTP Company was established in 1979 and is located in Winona, Minnesota. The company specializes in custom-engineered thermoplastic compounds, including PVDF, offering high-performance materials for industries such as automotive, aerospace, electronics, and chemical processing globally.

*Please note that this is only a partial list; the complete list of key players is available in the full report. Additionally, the list of key players can be customized to better suit your needs.*

Recent Developments in the Polyvinylidene Fluoride Procurement Report

  • In May 2024, Arkema and ProLogium engaged in a collaboration for next-generation lithium ceramic battery materials for e-mobility. The collaboration will focus first on Kynar® PVDF grades and advanced high-performance materials tailored for ProLogium’s next-generation Lithium Ceramic Batteries.
  • In February 2023, Dow Chemical launched a new sustainable PVDF production method, utilizing recycled materials, contributing to its green initiative, and reducing production costs.
  • As per polyvinylidene fluoride procurement report, in June 2022, Solvay announced the expansion of its PVDF production capacity in China, aimed at increasing its supply to the growing electric vehicle and renewable energy sectors. 
  • In April 2024, Syensqo revealed plans to establish a battery-grade polyvinylidene fluoride (PVDF) facility in Augusta, Georgia. This facility, once completed, will be the largest PVDF production site in North America, supporting the growing demand for electric vehicle materials. For more details, you can read the full announcement.

*While we strive to always give you current and accurate information, the numbers depicted on the website are indicative and may differ from the actual numbers in the main report. At Expert Market Research, we aim to bring you the latest insights and trends in the market. Using our analyses and forecasts, stakeholders can understand the market dynamics, navigate challenges, and capitalize on opportunities to make data-driven strategic decisions.*

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Key Questions Answered in the Report

The polyvinylidene fluoride market is estimated to be valued at USD 1000.54 Million.

The industry is projected to grow at a CAGR of 5.35% between 2025 and 2030.

The polyvinylidene fluoride consumption is projected to grow to USD 1367.86 Million by 2030.

The global polyvinylidene fluoride consumption is experiencing significant growth, driven by its widespread applications in industries such as pipes and fittings, films and sheets, wires and semiconductor processing, coating, membranes, and Li-ion batteries.

By end-user industry, the market is divided into oil and gas, electrical and electronics, chemical processing, automotive and processing, aerospace and defence, building and construction, and others.

As per polyvinylidene fluoride procurement report, the primary raw materials used are vinylidene fluoride (VDF), Hydrofluoric Acid (HF), and acetylene.

Procurement best practices in the polyvinylidene fluoride industry include supplier qualification, regulatory compliance, quality assurance, cost optimisation, sustainable sourcing, risk management, long-term contracts, inventory control, market analysis, and supply chain resilience.

The competitive landscape consists of Arkema S.A., Dyneon LLC (3M company), Kureha Corporation, Solvay S.A., RTP Company, Inc., Shanghai Ofluorine Co. Ltd., EMCO INDUSTRIAL PLASTICS, INC., and APV Engineered Coatings, Inc., among others.

The market is broken down into North America, Europe, Middle East and Africa, Asia Pacific, and Latin America.

Report Summary

Explore our key highlights of the report and gain a concise overview of key findings, trends, and actionable insights that will empower your strategic decisions.

Key Highlights of the Report

Please note that the figures mentioned in the description serve as estimates and may vary from the actual figures presented in the final report.

REPORT FEATURES DETAILS
Base Year 2024
Historical Period 2019-2024
Forecast Period 2025-2030
Growth Rate CAGR of 5.35 from 2025 to 2030
Regional Cost Structure Key Cost Indicators, Cost Breakdown by Component
Raw Material Market Outlook Raw Material Market Analysis, Mapping of Key Raw Material Suppliers, Availability of Raw Material by Region, Pricing Outlook of Key Raw Materials
Key Sourcing Strategies Vendor/Supplier Selection, Price and Contract Model Structure, Sourcing Model, Negotiation Strategy
Supplier Analysis Supplier Selection, Key Global Players, Key Regional Players, Supplier Profiles and SWOT Analysis, Innovation and Sustainability
Companies Covered Arkema S.A., Dyneon LLC (3M company), Kureha Corporation, Solvay S.A., RTP Company, Inc., Shanghai Ofluorine Co. Ltd., EMCO INDUSTRIAL PLASTICS, INC., and APV Engineered Coatings, Inc., among others.

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