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Biodegradable Polymers Market for Extrusion Coating, By Type (PLA, Starch, PBS, PHA), Substrate (Paper & Paperboard, Cellulose Films), Application (Rigid Packaging, Flexible Packaging, Liquid Packaging) Country - Forecast to 2024

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    Report

  • 95 Pages
  • January 2020
  • Region: Global
  • Markets and Markets
  • ID: 4912458

Increasing demand from various packaging applications is expected to drive the biodegradable polymers market for extrusion coating.

The European biodegradable polymers market for extrusion coating size is expected to grow from USD 403 million in 2019 to USD 829 million by 2024, at a CAGR of 15.5% during the forecast period. The biodegradable polymers market for extrusion coating is driven by various factors, such as high demand from various packaging applications, such as rigid packaging, flexible packaging, and liquid packaging. The growth of these applications is likely to propel the market. However, the high cost of biodegradable polymers as compared to other polymers is likely to hinder the growth of the market.

The PLA segment is estimated to drive the European market during the forecast period.

The biodegradable polymers market for extrusion coating has been segmented based on type into PLA, starch, PBS, PHA and others. Among these types, the PLA segment accounted for the largest share of the market in 2018 and is likely to witness significant growth during the forecast period. PLA can be safely used for the packaging of hot soup, coffee, and other hot beverages. It is often blended with starch to increase its biodegradability and reduce its cost. The key applications of PLA used for extrusion coating are dairy containers, disposable tableware, agricultural mulch films, milk & juice cartons, and planter boxes. PLA is being adopted rapidly as it is easily available and economical to manufacture as compared with other biodegradable polymers.

The paper & paperboard substrate segment is estimated to drive the market during the forecast period.

The biodegradable polymers market for extrusion coating has been segmented based on substrate into paper & paperboard, cellulose films, and others. Among these, the paper & paperboard segment accounted for the largest share of the market in 2018 and is likely to witness significant growth during the forecast period. Paper & paperboard is lightweight, recyclable, low-cost, and has an added advantage of improving the visual appearance of a product. The market in this segment is expected to grow in the coming years due to the increasing demand from the packaging industry.

The flexible packaging application is projected to register the highest CAGR during the forecast period.

The flexible packaging segment of the biodegradable polymers market for extrusion coating is the fastest-growing application.  It is used in various industrial and consumer products. Many brands are shifting from rigid packaging to flexible packaging as it offers various advantages, such as longer shelf-life, low cost, consumer-friendliness, the capability of retaining the freshness of products, requirement of less energy, eco-friendliness, and others. In Europe, the demand for flexible packaging is expected to be driven by the food industry, specifically bakery and cereals segments of the industry.
 
The biodegradable polymers market for extrusion coating in Italy is expected to record the highest growth during the forecast period.

Italy is projected to be the fastest-growing country for biodegradable polymers market for extrusion coating and is expected to offer significant growth opportunities to the overall market during the forecast period. The demand in the country is driven by the use of flexible packaging for various products, such as biscuits, snacks, noodles, and pasta, among others. In addition, Italy also provided expansion opportunities for the major players in the market. Bio-On (Italy) has started a new biodegradable and bioplastic production facility at Castel San Pietro Terme, Bologna (Italy). The new plant has been established to produce 100% natural and biodegradable special PHA bioplastics to be used in niche applications. In addition, Novamont S.P.A. (Italy) has started manufacturing compostable biopolymers in the Mater-Biopolymer plant (Italy), which will increase the production capacity by 40,000 tons to cater to the growth in demand for compostable and biodegradable products.

In-depth interviews were conducted with chief executive officers (CEOs), marketing directors, other innovation and technology directors, and executives from various key organizations operating in the biodegradable polymers market for extrusion coating market.


  • By Company Type - Tier 1: 55%, Tier 2: 30%, and Tier 3: 15%
  • By Designation - C Level: 21%, Director level: 23%, Others: 56%

The biodegradable polymers market for extrusion coating comprises major solution providers, such as NatureWorks LLC (US), BASF SE (Germany), Total Corbion PLA (Netherlands), Mitsubishi Chemical Holdings Corporation (Japan), Biotech (Germany), Novamont S.P.A. (Italy), Biome Bioplastics (UK), Toray Industries (Japan), Bio-On (Italy), and Plantic Technologies (Australia). The study includes an in-depth competitive analysis of these key players in the biodegradable polymers market for extrusion coating, with their company profiles, recent developments, and key market strategies.

Research Coverage:

The report covers the European biodegradable polymers market for extrusion coating based on type, substrate, application, and region. This study aims at estimating the size and future growth potential of the market across various segmentation types. It also includes an in-depth competitive analysis of the key market players, along with their profiles and key growth strategies.

Key Benefits of Buying the Report:


  • The report will help the market leaders/new entrants in this market with information on the closest approximations of the revenue numbers for the European biodegradable polymers market for extrusion coating and the sub-segments.
  • This report will help stakeholders understand the competitive landscape and gain more insights to position their businesses in a better way and plan suitable go-to-market strategies.
  • The report will also help stakeholders understand the pulse of the market and provide them with information on key market drivers, restraints, challenges, and opportunities.

Table of Contents

1 Introduction
1.1 Objectives of the Study
1.2 Market Definition
1.3 Market Scope
1.4 Years Considered for the Study
1.5 Currency
1.6 Unit Considered
1.7 Limitations
1.8 Stakeholders
2 Research Methodology
2.1 Research Data
2.1.1 Secondary Data
2.1.1.1 Key Data From Secondary Sources
2.1.2 Primary Data
2.1.2.1 Key Industry Insights
2.1.2.2 Key Data From Primary Sources
2.1.2.3 Breakdown of Primary Interviews
2.2 Market Size Estimation
2.2.1 Supply Side Analysis
2.2.2 Forecast
2.3 Data Triangulation
2.4 Assumptions
2.5 Limitations
3 Executive Summary
4 Premium Insights
4.1 Attractive Opportunities in the Biodegradable Polymers Market for Extrusion Coating
4.2 Biodegradable Polymers Market for Extrusion Coating, By Type
4.3 Biodegradable Polymers Market for Extrusion Coating, By Substrate and Country, 2018
4.4 Biodegradable Polymers Market for Extrusion Coating, By Application
5 Market Overview
5.1 Introduction
5.2 Market Dynamics
5.2.1 Drivers
5.2.1.1 Increasing Use in Food Packaging and Compostable Bags
5.2.1.2 Shift in Consumer Preference to Eco-Friendly Products
5.2.2 Restraints
5.2.2.1 High Cost of Biodegradable Polymers as Compared to Other Polymers
5.2.3 Opportunities
5.2.3.1 Emerging Applications of Biodegradable Polymers for Extrusion Coating
5.2.3.2 Growing Market in the Developing Countries
5.2.4 Challenges
5.2.4.1 Performance Issues Related to Biodegradable Polymers
5.3 Biodegradable Polymers Market: Pricing Analysis
5.3.1 Introduction
5.3.2 PLA (Polylactic Acid)
5.3.3 Starch
5.3.4 PBS (Polybutylene Succinate)
5.3.5 PHA (Polyhydroxyalkanoates)
5.3.6 Others
6 Biodegradable Polymers Market for Extrusion Coating, By Type
6.1 Introduction
6.2 PLA (Polylactic Acid)
6.2.1 The Largest Use of PLA is in the Packaging Industry
6.3 Starch
6.3.1 Starch Blends Offer Tensile Strength and Elongation, and These Properties are Boosting Their Demand
6.4 PBS (Polybutylene Succinate)
6.4.1 The Excellent Processability Capacity of PBS is Driving the Demand in the Market
6.5 PHA (Polyhydroxyalkanoates)
6.5.1 The Market in This Segment is Projected to Grow Rapidly as It Fully Complies With Bio-Based, Biodegradable, Compostable, Or Biocompatible Requirements
6.6 Others
7 Biodegradable Polymers Market for Extrusion Coating, By Substrate
7.1 Introduction
7.2 Paper & Paperboard
7.2.1 Craft Paper, Bleached Paper, and Glassine Paper are Used in Extrusion Coating
7.3 Cellulose Films
7.3.1 Low Permeability to Greases, Air, Bacteria, and Oils are Driving the Demand for Cellulose Films as A Substrate for Extrusion Coating of Biodegradable Polymers
7.4 Others
8 Biodegradable Polymers Market for Extrusion Coating, By Application
8.1 Introduction
8.2 Rigid Packaging
8.2.1 The Medical Industry is the Largest Consumer of Rigid Packaging
8.3 Flexible Packaging
8.3.1 The Food & Beverage Industry is Expected to Drive the Market in This Segment
8.4 Liquid Packaging
8.4.1 Dairy Food Products, Seasoning, Dressings, Sauces, and Beer & Soft Drinks Segments are Propelling the Demand for Liquid Packaging
8.5 Others
9 Biodegradable Polymers Market for Extrusion Coating, By Region (Europe)
9.1 Introduction
9.2 Italy
9.2.1 The Reviving Economy is Favorable for the Market in the Country
9.3 France
9.3.1 Government Initiatives are Encouraging the Use of Bio-Based and Biodegradable Polymers in the Country
9.4 Spain
9.4.1 The Market is Gaining Traction in the Country With the Growth of the Packaging Industry
9.5 UK
9.5.1 Stringent Regulations Regarding the Use of Non-Biodegradable Polymers are Driving the Market
9.6 Germany
9.6.1 Flexible Packaging Application is Expected to Drive the Market for Biodegradable Polymers Used in Extrusion Coating
9.7 Rest of Europe
10 Competitive Landscape
10.1 Overview
10.2 Market Ranking Analysis
10.3 Competitive Scenario
10.3.1 Expansion
10.3.2 Merger & Acquisition
10.3.3 Joint Venture
10.3.4 New Product Launch
11 Company Profiles
11.1 Natureworks LLC
11.2 BASF SE
11.3 Total Corbion PLA
11.4 Mitsubishi Chemical Holdings Corporation
11.5 Biome Bioplastics
11.6 Biotec
11.7 Toray Industries
11.8 Novamont S.P.A.
11.9 Plantic Technologies LTD.
11.10 Bio-On S.P.A.
11.11 Additional Company Profiles
11.11.1 Succinity GmbH
11.11.2 Perstorp
11.11.3 The Mondi Group
11.11.4 Synbra Technology Bv
11.11.5 Bio-Fed
11.11.6 Futerro
11.11.7 Aquapak Hydropolymers LTD.
11.11.8 Clondalkin
11.11.9 Galactic S.A.
11.11.10 Kompuestos
12 Appendix
12.1 Discussion Guide
12.2 Knowledge Store
12.3 Available Customizations
12.4 Related Reports
12.5 Author Details
List of Tables (37 Tables)
Table 1 Biodegradable Polymers for Extrusion Coating: Pricing Analysis, By Type
Table 2 Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (Kiloton)
Table 3 Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (USD Million)
Table 4 Biodegradable Polymers Market Size for Extrusion Coating, By Substrate, 2017–2024 (Kiloton)
Table 5 Biodegradable Polymers Market Size for Extrusion Coating, By Substrate, 2017–2024 (USD Million)
Table 6 Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (Kiloton)
Table 7 Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (USD Million)
Table 8 Europe: Biodegradable Polymers Market Size for Extrusion Coating, By Country, 2017–2024 (Kiloton)
Table 9 Europe: Biodegradable Polymers Market Size for Extrusion Coating, By Country, 2017–2024 (USD Million)
Table 10 Italy: Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (Kiloton)
Table 11 Italy: Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (USD Million)
Table 12 Italy: Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (Kiloton)
Table 13 Italy: Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (USD Million)
Table 14 France: Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (Kiloton)
Table 15 France: Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (USD Million)
Table 16 France: Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (Kiloton)
Table 17 France: Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (USD Million)
Table 18 Spain: Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (Kiloton)
Table 19 Spain: Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (USD Million)
Table 20 Spain: Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (Kiloton)
Table 21 Spain: Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (USD Million)
Table 22 UK: Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (Kiloton)
Table 23 UK: Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (USD Million)
Table 24 UK: Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (Kiloton)
Table 25 UK: Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (USD Million)
Table 26 Germany: Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (Kiloton)
Table 27 Germany: Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (USD Million)
Table 28 Germany: Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (Kiloton)
Table 29 Germany: Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (USD Million)
Table 30 Rest of Europe: Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (Kiloton)
Table 31 Rest of Europe: Biodegradable Polymers Market Size for Extrusion Coating, By Type, 2017–2024 (USD Million)
Table 32 Rest of Europe: Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (Kiloton)
Table 33 Rest of Europe: Biodegradable Polymers Market Size for Extrusion Coating, By Application, 2017–2024 (USD Million)
Table 34 Expansion, 2013–2019
Table 35 Merger & Acquisition, 2013–2019
Table 36 Joint Venture, 2013–2019
Table 37 New Product Launch, 2013–2019
List of Figures (28 Figures)
Figure 1 Biodegradable Polymers Market for Extrusion Coating: Segmentation
Figure 2 Biodegradable Polymers Market for Extrusion Coating: Research Design
Figure 3 Market Number Estimation
Figure 4 Biodegradable Polymers Market for Extrusion Coating: Data Triangulation
Figure 5 PLA to Be the Largest Biodegradable Polymer for Extrusion Coating
Figure 6 Paper & Paperboard to Be the Largest Substrate Used for Extrusion Coating of Biodegradable Polymers Between 2019 and 2024
Figure 7 Rigid Packaging to Be the Largest Application of Biodegradable Polymers Used for Extrusion Coating Between 2019 and 2024
Figure 8 Italy to Register the Highest CAGR in the European Market
Figure 9 Packaging Applications to Drive the Demand for Biodegradable Polymers in Extrusion Coating Between 2019 and 2024
Figure 10 PLA to Be the Largest Segment of the Market
Figure 11 Paper & Paperboard and Italy Accounted for the Largest Shares
Figure 12 Rigid Packaging to Be the Largest Application Segment of the Market
Figure 13 Drivers, Restraints, Opportunities, and Challenges in the Biodegradable Polymers Market for Extrusion Coating
Figure 14 PLA to Be the Largest Segment of the Market
Figure 15 Paper & Paperboard to Be the Largest Segment of the Market
Figure 16 Flexible Packaging to Be the Fastest-Growing Application Segment
Figure 17 Europe: Snapshot for Biodegradable Polymers Market for Extrusion Coating
Figure 18 Companies Primarily Adopted New Product Launch as the Key Growth Strategy Between 2013 and 2019
Figure 19 Biodegradable Polymers Market for Extrusion Coating, 2018
Figure 20 Natureworks LLC: SWOT Analysis
Figure 21 BASF SE: Company Snapshot
Figure 22 BASF SE: SWOT Analysis
Figure 23 Total Corbion PLA: SWOT Analysis
Figure 24 Mitsubishi Chemical Holdings Corporation: Company Snapshot
Figure 25 Mitsubishi Chemical Holdings Corporation: SWOT Analysis
Figure 26 Biome Bioplastics: Company Snapshot
Figure 27 Biome Bioplastics: SWOT Analysis
Figure 28 Toray Industries: Company Snapshot

Companies Mentioned

  • Natureworks LLC
  • BASF SE
  • Total Corbion PLA
  • Mitsubishi Chemical Holdings Corporation
  • Biome Bioplastics
  • Biotec
  • Toray Industries
  • Novamont SPA
  • Plantic Technologies LTD
  • Bio-On SPA
  • Additional Company Profiles
  • Succinity GmbH
  • Perstorp
  • The Mondi Group
  • Synbra Technology Bv
  • Bio-Fed
  • Futerro
  • Aquapak Hydropolymers LTD
  • Clondalkin
  • Galactic SA
  • Kompuestos

Table Information