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France Plastic Recycling Market Overview, 2030

Published Oct 06, 2025
Length 81 Pages
SKU # BORM20449672

Description

The agriculture films market in Australia has evolved significantly over the past four decades, driven by the country’s need to improve crop productivity, water-use efficiency, and sustainable farming practices. Initial adoption in the 1980s and 1990s primarily involved low-density polyethylene (LDPE) films for mulching in open-field vegetable and fruit cultivation, particularly in regions such as Victoria, New South Wales, Queensland, and South Australia. These films helped conserve soil moisture, regulate temperature, and suppress weed growth, leading to higher yields for crops such as tomatoes, cucumbers, lettuce, strawberries, and melons. During the early 2000s, greenhouse farming expanded to meet the growing demand for year-round cultivation of high-value vegetables and fruits, with EVA/EBA copolymers and multilayer polyethylene films improving light diffusion, thermal insulation, and durability, enabling consistent quality production for domestic and export markets. Simultaneously, the livestock and dairy sectors, especially in Victoria, New South Wales, and Tasmania, increased demand for silage films to preserve forage quality and reduce feed losses during extended storage periods. Technological advancements including UV stabilization, multilayer extrusion, and enhanced mechanical properties have further extended film life and performance under Australia’s diverse climatic conditions, ranging from temperate regions to arid zones. Environmental considerations and government programs promoting biodegradable and recyclable films have influenced recent market trends, encouraging the adoption of sustainable alternatives. Today, Australia’s agriculture films market reflects a mature, innovation-driven segment, balancing traditional polyethylene use for cost-effective applications with advanced greenhouse and silage solutions, supporting agricultural productivity, export-oriented horticulture, and alignment with national sustainability and environmental standards.

According to the research report ""Australia Agriculture Films Market Overview, 2030,”published by Bonafide Research, the Australia Agriculture Films market is expected to reach a market size of more than USD 630 Million by 2030. The competitive landscape of the Australia agriculture films market is moderately consolidated, comprising a mix of international leaders, domestic manufacturers, and regional suppliers catering to greenhouse, mulching, and silage applications. Leading global companies, including Berry Global, BASF, Dow, Armando Alvarez, Novamont, and RKW Group, dominate premium segments by offering multilayer, UV-stabilized, and EVA/EBA copolymer films widely used in greenhouse operations across Victoria, New South Wales, Queensland, and South Australia, where year-round cultivation of high-value vegetables and fruits supports both domestic consumption and exports. Domestic manufacturers and regional players supply cost-effective LDPE and LLDPE films for open-field mulching and silage applications, particularly in smaller farms and livestock-intensive areas, addressing price-sensitive segments while maintaining reliable quality. Key competitive strategies among leading players include mergers and acquisitions to expand distribution networks, continuous investment in research and development for biodegradable and compostable films, regional expansion to emerging agricultural zones, and partnerships with cooperatives to increase market penetration. Market share analysis indicates that global players dominate greenhouse applications, while domestic producers retain substantial shares in mulching and silage segments. SWOT analysis highlights strengths such as advanced technological capabilities, strong brand recognition, and wide distribution channels, with weaknesses including dependence on raw material prices and operational costs. Opportunities exist in the adoption of biodegradable films, smart agriculture integration, and expansion in emerging regions, whereas threats include regulatory pressures, fluctuating input costs, and competition from low-cost imports.

In Australia, the agriculture films market is largely dominated by polyethylene-based materials, with low-density polyethylene (LDPE) and linear low-density polyethylene (LLDPE) accounting for the majority of usage due to their cost-effectiveness, flexibility, and suitability across greenhouse, mulching, and silage applications. LDPE is extensively used for open-field mulching in regions such as Victoria, New South Wales, Queensland, and South Australia, where it helps retain soil moisture, regulate soil temperature, and suppress weeds, enhancing crop yields for vegetables like tomatoes, cucumbers, lettuce, strawberries, and melons. LLDPE is widely adopted for greenhouse coverings and silage films due to its higher tensile strength, puncture resistance, and durability under Australia’s diverse climatic conditions, which range from temperate zones to arid regions. High-density polyethylene (HDPE) is employed in specialized applications requiring rigidity and chemical resistance, such as heavy-duty silage wraps, protective covers, and irrigation-related infrastructure. EVA (ethylene vinyl acetate) and EBA (ethylene-butyl acrylate) copolymers are increasingly used in premium greenhouse films, offering superior light transmission, elasticity, thermal insulation, and UV stability, supporting year-round cultivation of high-value crops. Reclaims, or recycled polyethylene films, are gradually gaining adoption in cost-sensitive mulching and silage applications, supported by growing recycling initiatives, though their use in high-performance applications remains limited. Other specialty materials, including biodegradable and compostable films, are being slowly introduced due to government sustainability programs and increasing environmental awareness. Overall, material usage in Australia reflects a balance between performance, cost-efficiency, and sustainability to support modern, environmentally responsible agriculture.

In Australia, agriculture films are widely applied across greenhouse, mulching, and silage segments, reflecting the country’s focus on improving crop productivity, supporting livestock farming, and modernizing agricultural practices. Greenhouse films account for a major portion of demand, particularly in regions such as Victoria, New South Wales, Queensland, and South Australia, where controlled-environment agriculture enables year-round cultivation of high-value vegetables, fruits, and flowers for domestic consumption and export. Advanced multilayer polyethylene and EVA/EBA copolymer films are widely used in greenhouses, offering superior light transmission, thermal insulation, UV resistance, and mechanical strength, optimizing growing conditions and improving energy efficiency in commercial operations. Mulching films are extensively applied in open-field cultivation across temperate and semi-arid regions, helping conserve soil moisture, regulate temperature, and suppress weed growth, thereby enhancing yields and reducing irrigation requirements for crops such as tomatoes, cucumbers, lettuce, strawberries, and melons. The adoption of biodegradable mulching films is gradually increasing, driven by government incentives, environmental policies, and rising awareness among farmers, though conventional polyethylene films remain dominant due to cost considerations. Silage films are critical in livestock-intensive regions, including Victoria, New South Wales, and Tasmania, where preserving forage quality, minimizing spoilage, and maintaining livestock nutrition during storage are essential. Farmers increasingly use multilayer silage wraps and oxygen barrier films to improve durability and storage performance. Overall, Australia’s agriculture films application landscape demonstrates a balanced approach: greenhouse films support high-value, technologically advanced cultivation; mulching films enhance open-field productivity and water-use efficiency; and silage films ensure feed preservation, collectively sustaining agricultural productivity, efficiency, and regulatory compliance.

Considered in this report
• Historic Year: 2019
• Base year: 2024
• Estimated year: 2025
• Forecast year: 2030

Aspects covered in this report
• Agriculture Films Market with its value and forecast along with its segments
• Various drivers and challenges
• On-going trends and developments
• Top profiled companies
• Strategic recommendation

By Material
• LDPE
• LLDPE
• HDPE
• EVA/EBA
• Reclaims
• Others

BY Application
• Green house
• Mulching
• Silage

Considered in this report
• Historic Year: 2019
• Base year: 2024
• Estimated year: 2025
• Forecast year: 2030

Aspects covered in this report
• Plastic Recycling Market with its value and forecast along with its segments
• Various drivers and challenges
• On-going trends and developments
• Top profiled companies
• Strategic recommendation

By Product Types
• Polyethylene Terephthalate (PET)
• High-Density Polyethylene (HDPE)
• Polypropylene (PP)
• Low-Density Polyethylene (LDPE)
• Polyvinyl Chloride (PVC)
• Polystyrene (PS)
• Others (ABS, Polycarbonate, Nylon, ETC.)

By Source
• Post-Consumer Plastic Waste
• Post-Industrial Plastic Waste

By Recycling Process
• Mechanical Recycling market
• Chemical recycling
• By End User Industries
• Packaging
• Electronics & Electrical
• Automotive
• Building & Construction
• Others 

Table of Contents

81 Pages
1. Executive Summary
2. Market Structure
2.1. Market Considerate
2.2. Assumptions
2.3. Limitations
2.4. Abbreviations
2.5. Sources
2.6. Definitions
3. Research Methodology
3.1. Secondary Research
3.2. Primary Data Collection
3.3. Market Formation & Validation
3.4. Report Writing, Quality Check & Delivery
4. France Geography
4.1. Population Distribution Table
4.2. France Macro Economic Indicators
5. Market Dynamics
5.1. Key Insights
5.2. Recent Developments
5.3. Market Drivers & Opportunities
5.4. Market Restraints & Challenges
5.5. Market Trends
5.6. Supply chain Analysis
5.7. Policy & Regulatory Framework
5.8. Industry Experts Views
6. France Plastic Recycling Market Overview
6.1. Market Size By Value
6.2. Market Size and Forecast, By Product types
6.3. Market Size and Forecast, By Source
6.4. Market Size and Forecast, By Recycling Process
6.5. Market Size and Forecast, By End User Industries
6.6. Market Size and Forecast, By Region
7. France Plastic Recycling Market Segmentations
7.1. France Plastic Recycling Market, By Product types
7.1.1. France Plastic Recycling Market Size, By Polyethylene Terephthalate (PET), 2019-2030
7.1.2. France Plastic Recycling Market Size, By High-Density Polyethylene (HDPE), 2019-2030
7.1.3. France Plastic Recycling Market Size, By Polypropylene (PP), 2019-2030
7.1.4. France Plastic Recycling Market Size, By Low-Density Polyethylene (LDPE), 2019-2030
7.1.5. France Plastic Recycling Market Size, By Polyvinyl Chloride (PVC), 2019-2030
7.1.6. France Plastic Recycling Market Size, By Polystyrene (PS), 2019-2030
7.1.7. France Plastic Recycling Market Size, By Others, 2019-2030
7.2. France Plastic Recycling Market, By Source
7.2.1. France Plastic Recycling Market Size, By Post-Consumer Plastic Waste, 2019-2030
7.2.2. France Plastic Recycling Market Size, By Post-Industrial Plastic Waste, 2019-2030
7.3. France Plastic Recycling Market, By Recycling Process
7.3.1. France Plastic Recycling Market Size, By Mechanical Recycling market, 2019-2030
7.3.2. France Plastic Recycling Market Size, By Chemical recycling, 2019-2030
7.4. France Plastic Recycling Market, By End User Industries
7.4.1. France Plastic Recycling Market Size, By Packaging, 2019-2030
7.4.2. France Plastic Recycling Market Size, By Electronics & Electrical, 2019-2030
7.4.3. France Plastic Recycling Market Size, By Automotive, 2019-2030
7.4.4. France Plastic Recycling Market Size, By Building & Construction, 2019-2030
7.4.5. France Plastic Recycling Market Size, By Others, 2019-2030
7.5. France Plastic Recycling Market, By Region
7.5.1. France Plastic Recycling Market Size, By North, 2019-2030
7.5.2. France Plastic Recycling Market Size, By East, 2019-2030
7.5.3. France Plastic Recycling Market Size, By West, 2019-2030
7.5.4. France Plastic Recycling Market Size, By South, 2019-2030
8. France Plastic Recycling Market Opportunity Assessment
8.1. By Product types, 2025 to 2030
8.2. By Source, 2025 to 2030
8.3. By Recycling Process, 2025 to 2030
8.4. By End User Industries, 2025 to 2030
8.5. By Region, 2025 to 2030
9. Competitive Landscape
9.1. Porter's Five Forces
9.2. Company Profile
9.2.1. Company 1
9.2.1.1. Company Snapshot
9.2.1.2. Company Overview
9.2.1.3. Financial Highlights
9.2.1.4. Geographic Insights
9.2.1.5. Business Segment & Performance
9.2.1.6. Product Portfolio
9.2.1.7. Key Executives
9.2.1.8. Strategic Moves & Developments
9.2.2. Company 2
9.2.3. Company 3
9.2.4. Company 4
9.2.5. Company 5
9.2.6. Company 6
9.2.7. Company 7
9.2.8. Company 8
10. Strategic Recommendations
11. Disclaimer
List of Tables
Figure 1: France Plastic Recycling Market Size By Value (2019, 2024 & 2030F) (in USD Million)
Figure 2: Market Attractiveness Index, By Product types
Figure 3: Market Attractiveness Index, By Source
Figure 4: Market Attractiveness Index, By Recycling Process
Figure 5: Market Attractiveness Index, By End User Industries
Figure 6: Market Attractiveness Index, By Region
Figure 7: Porter's Five Forces of France Plastic Recycling Market
List of Figures
Table 1: Influencing Factors for Plastic Recycling Market, 2024
Table 2: France Plastic Recycling Market Size and Forecast, By Product types (2019 to 2030F) (In USD Million)
Table 3: France Plastic Recycling Market Size and Forecast, By Source (2019 to 2030F) (In USD Million)
Table 4: France Plastic Recycling Market Size and Forecast, By Recycling Process (2019 to 2030F) (In USD Million)
Table 5: France Plastic Recycling Market Size and Forecast, By End User Industries (2019 to 2030F) (In USD Million)
Table 6: France Plastic Recycling Market Size and Forecast, By Region (2019 to 2030F) (In USD Million)
Table 7: France Plastic Recycling Market Size of Polyethylene Terephthalate (PET) (2019 to 2030) in USD Million
Table 8: France Plastic Recycling Market Size of High-Density Polyethylene (HDPE) (2019 to 2030) in USD Million
Table 9: France Plastic Recycling Market Size of Polypropylene (PP) (2019 to 2030) in USD Million
Table 10: France Plastic Recycling Market Size of Low-Density Polyethylene (LDPE) (2019 to 2030) in USD Million
Table 11: France Plastic Recycling Market Size of Polyvinyl Chloride (PVC) (2019 to 2030) in USD Million
Table 12: France Plastic Recycling Market Size of Polystyrene (PS) (2019 to 2030) in USD Million
Table 13: France Plastic Recycling Market Size of Others (2019 to 2030) in USD Million
Table 14: France Plastic Recycling Market Size of Post-Consumer Plastic Waste (2019 to 2030) in USD Million
Table 15: France Plastic Recycling Market Size of Post-Industrial Plastic Waste (2019 to 2030) in USD Million
Table 16: France Plastic Recycling Market Size of Mechanical Recycling market (2019 to 2030) in USD Million
Table 17: France Plastic Recycling Market Size of Chemical recycling (2019 to 2030) in USD Million
Table 18: France Plastic Recycling Market Size of Packaging (2019 to 2030) in USD Million
Table 19: France Plastic Recycling Market Size of Electronics & Electrical (2019 to 2030) in USD Million
Table 20: France Plastic Recycling Market Size of Automotive (2019 to 2030) in USD Million
Table 21: France Plastic Recycling Market Size of Building & Construction (2019 to 2030) in USD Million
Table 22: France Plastic Recycling Market Size of Others (2019 to 2030) in USD Million
Table 23: France Plastic Recycling Market Size of North (2019 to 2030) in USD Million
Table 24: France Plastic Recycling Market Size of East (2019 to 2030) in USD Million
Table 25: France Plastic Recycling Market Size of West (2019 to 2030) in USD Million
Table 26: France Plastic Recycling Market Size of South (2019 to 2030) in USD Million
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