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Europe Polylactic Acid (PLA) Market to Notice Prominent Growth of USD 556,789.02 thousand with Excellent CAGR of 11.4% by 2029

Europe Polylactic Acid (PLA) Market to Notice Prominent Growth

Europe polylactic acid (PLA) market is expected to grow significantly in the forecast period of 2022 to 2029. Data Bridge Market Research analyses that the market is growing with a CAGR of 11.4% in the forecast period of 2022 to 2029 and is expected to reach USD 556,789.02 thousand by 2029. The major factor driving the growth of the polylactic acid (PLA) market is the increasing demand for a multi-layer packaging for preventing oxygen and water permeation, increasing demand for biodegradable packaging alternatives from the packaging industry, PLA can be an alternative to petroleum-based polymers, growing demand for bio-based plastics film in agriculture, imposition of strict regulations on environmental safety by various governments.

Polylactic acid (PLA) is a type of renewable plastic primarily derived from renewable materials like corn starch and sugarcane. Polylactic acid (PLA) possesses several beneficial mechanical properties over other biodegradable polymers. Polylactic acid (PLA) is a thermoplastic aliphatic polymer, and this bioplastic is produced from the crystallization of lactic acid. Having a chemical formula (C3H4O2) n, the polylactic acid (PLA) is a semi-crystalline and biodegradable hydrophobic polymer. Polylactic acid (PLA) can be broken down into a range of biodegradable components, which makes it ideal for application by a wide range of applications.

The Europe polylactic acid (PLA) market report provides details of market share, new developments, and the impact of domestic and localized market players, analyses opportunities in terms of emerging revenue pockets, changes in market regulations, products approvals, strategic decisions, product launches, geographic expansions, and technological innovations in the market. To understand the analysis and the market scenario, contact us for an Analyst Brief. Our team will help you create a revenue impact solution to achieve your desired goal.

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Market Definition

Increasing demand for biodegradable packaging alternatives from the packaging industry is an important driver for the Europe polylactic acid (PLA) market. PLA can be an alternative to petroleum-based polymers. The growing demand for bio-based plastics film in agriculture is expected to boost the growth of the Europe polylactic acid (PLA) market. The multi-functionalities of PLA and growing consumer inclination towards eco-friendly plastic products are accepted to bring opportunity to the Europe polylactic acid (PLA) market. However, poor performance issues compared to conventional plastic challenge Europe polylactic acid (PLA) market growth.

Some of the prominent participants operating in the Europe polylactic acid (PLA) market are BASF SE, Futerro, NatureWorks LLC, TotalEnergies Corbion,        Sulzer Ltd, Mitsubishi Chemical Corporation, TORAY INDUSTRIES, INC., Merck KGaA, Musashino Chemical Laboratory, Ltd., Evonik Industries AG, Polyvel Inc., UNITIKA LTD., Jiangxi Academy of Sciences Biological New Materials Co., Ltd., Shanghai Tong-jie-liang Biomaterials Co., Ltd., Zhejiang Hisun Biomaterials Co., Ltd., and Radici Partecipazioni SpA.

Europe Polylactic Acid (PLA) Market Dynamics
Drivers
Increasing demand for biodegradable packaging alternatives from the packaging industry

The pandemic has led to a positive impact on the growth of the packaging industry. It has resulted in high demand for plastic packaging, including eco-friendly substitutes of plastics such as packaging materials made from PLA. Food manufacturers, who initially opted for other types of packaging, had initiated using PLA-based packaging, as products are economical, safe, and enduring. Additionally, due to the increase in sustainability in the packaging industry for maintaining product quality, biopolymer packaging materials such as PLA-based materials are increasing as PLA decomposes into water and carbon dioxide in approximately 47 to 90 days. Four times faster than PET-based bags used in various packaging. Moreover, their low cost, renewable raw materials, and agro-industrial waste usage drive their demand, as polylactic acid is obtained from renewable sources.

PLA can be an alternative to petroleum-based polymers

Apart from this, polylactic acid is used in manufacturing various components used in the automotive sector. Polylactic acids are used in applications such as the interior parts and hood under components. These products are known for reducing their carbon footprint owing to their high bio content. PLA offers numerous properties such as UV resistance, impact resistance, high gloss, dimensional stability, and coloring ability. These factors make it an alternative to most traditional plastics made up of petroleum products and raw materials such as polyethylene terephthalate, polycarbonate, polybutylene terephthalate, and acrylonitrile butadiene styrene, and polyamide, which are preferred for automotive engine compartments and interiors and other uses as well.

Growing demand for bio-based plastics film in agriculture
With growing awareness regarding disposal problems of non-degradable films, applications of polylactic acid-based mulch films are expected to increase in the agriculture sector. Mulch films are extensively used in the cultivation of fruits & vegetables. The mechanical properties of PLA are comparable to the existing mulch film products and have the advantage of being completely biodegradable through a single growing season. This will positively impact the market growth and act as a driver for the Europe polylactic acid (PLA) market.

Imposition of strict regulations on environmental safety by various governments

Due to environmental concerns and fast climate-changing factors, regulatory authorities, such as EPA, FDA, and many others, are increasingly opting for biodegradable plastics such as polylactic acid (PLA) and focusing on increasing consumer awareness regarding the need for the use of biodegradable products.

Opportunities
Multi-functionalities of PLA
Multi-functionalities and extensive use of PLA in different industries and applications will provide lucrative opportunities for growth in the Europe polylactic acid (PLA) market. Bas Polylactic acid is biodegradable and industrially compostable. Among the first renewable polymers, we can compete with the existing polymers, combining their functional characteristics, such as transparency, gloss, and stiffness. Polylactic acid is currently used in many industries and applications, including packaging, single-use tableware, textiles, oil & gas, electronics, automotive, and 3D printing. Due to the various and versatile uses of polylactic acid across multiple industries and the multi-functionalities of polylactic acids, the market is projected to witness significant growth opportunities in the near future.

Growing consumer inclination towards eco-friendly plastic product
Furthermore, the richness of biomass, research-driven resources, strong downstream industry demand, material supply, and supporting government policy has created significant bioplastic business opportunities in these regions. The growth has also been supported by improving consumer awareness regarding sustainable plastic solutions and increasing efforts to eliminate the use of non-biodegradable conventional plastics PLA. Traditionally used petroleum-based plastics take decades to break down or degrade and lay in landfills for a long period. PLA breaks down faster when they are discarded and absorbed back into the natural system. In addition, the decomposition rate of biodegradable plastics such as PLA by the activities of microorganisms is much faster than that of traditional plastics.

Restraints/Challenges
Concerns over cost and specific industrial composting system
The usage of polylactic acids in small and medium enterprises has been challenging due to the lack of resources or the technology and facilities required for extracting and fermentation high-quality lactic acid and polylactic acid. Moreover, the selection of the right composition of polylactic acid is a key aspect that many companies have not figured out accurately. This increases the production cost of polylactic acid due to a lack of appropriate technology and techniques. The selection of the right composition of lactic acid for the production of polylactic acid is a complex method that requires validation at a laboratory and factory-scale level.

Unpredictable raw material prices

The production costs of polylactic acid and related products are witnessing a significant increase due to the higher costs of raw materials along with transportation, energy consumed, and chemicals, which reduces margins for manufacturers, distributors, and suppliers. Thus, resulting in high end-user application prices.

Poor performance issues as compared to conventional plastic

Low barrier properties to air, water, and oxygen and low resistance to heat are some of the major performance issues related to PLA compared to conventional plastics. This restricts its penetration in various industries, including electronics and automotive. In addition, poor mechanical properties such as low impact & tensile strength and process capabilities restrict the penetration of PLA in various applications. These performance limitations of PLA are a major challenge for the market's growth. In addition, PLA is a bio-based and biodegradable polymer built from lactic acid molecules. Being a thermoplastic polyester, it softens when heated and hardens when cooled.

Recent Development

In June 2022, The Australian food packaging manufacturer Confoil and BASF partnered to develop a certified compostable and dual ovenable food tray based on paper. The paper tray is coated inside with BASF's ecovio PS 1606, a partly bio-based and certified compostable biopolymer especially developed for coating food packaging made of paper or board. This partnership will intensify the company's operations in the Europe market.

Access Full Report: https://www.databridgemarketresearch.com/reports/europe-polylactic-acid-pla-market

Europe Polylactic Acid (PLA) Market Scope

Europe polylactic acid (PLA) market is categorized based on type, raw material, form, application, and end user. The growth amongst these segments will help you analyze major growth segments in the industries and provide the users with a valuable market overview and market insights to make strategic decisions to identify core market applications.

Type
Racemic PLLA (Poly-l-lactic acid)
PDLA (Poly-d-lactic acid)
Regular PLLA (Poly-l-lactic acid)
PDLLA (Poly-dl-lactic acid)
PLA Blends

Based on type, the Europe polylactic acid (PLA) market is classified into five segments, namely Racemic PLLA (Poly-l-lactic acid), PDLA (Poly-d-lactic acid), Regular PLLA (Poly-l-lactic acid), PDLLA (Poly-dl-lactic acid), and PLA Blends.

Raw Material
Sugarcane
Corn
Cassava
Sugar Beet
Others
Based on raw material, the Europe polylactic acid (PLA) market is classified into sugarcane, corn, cassava, sugar beet, and others.

Form
Films and Sheets
Coatings
Fibre
Others
Based on the form, the Europe polylactic acid (PLA) market is classified into films and sheets, coatings, fibre, and others.

Application
Packaging
Transport
Agriculture
Medical
Electronics
Textile
Hygiene
Others
Based on application, the Europe polylactic acid (PLA) market is segmented into packaging, transport, agriculture, medical, electronics, textile, hygiene, and others.

End User
Plastic Films
Bottles
Biodegradable Medical Devices

Europe Polylactic Acid (PLA) Market Regional Analysis/Insights

The Europe Polylactic Acid (PLA) market is analyzed and market size insights and trends are provided by country, material type, end user and application as referenced above.

The countries covered in the Europe Polylactic Acid (PLA) market report are U.S., Canada and Mexico in North America, Germany, France, U.K., Netherlands, Switzerland, Belgium, Russia, Italy, Spain, Turkey, Rest of Europe in Europe, China, Japan, India, South Korea, Singapore, Malaysia, Australia, Thailand, Indonesia, Philippines, Rest of Asia-Pacific (APAC) in the Asia-Pacific (APAC), Saudi Arabia, U.A.E, Israel, Egypt, South Africa, Rest of Middle East and Africa (MEA) as a part of Middle East and Africa (MEA), Brazil, Argentina and Rest of South America as part of South America.

North America dominates the market in terms of market share and market revenue and will continue to flourish its dominance during the forecast period of 2022-2029. The market growth over this region is attributed to the high demand for fiber cement Europe Polylactic Acid (PLA) within the region. Asia-Pacific on the other hand, is estimated to show lucrative growth over the forecast period of 2022-2029, due to the prominent presence of fiber cement Europe Polylactic Acid (PLA) market players within the region. Moreover, the high requirement for the residential and commercial building construction also boosts the regional demand.

The country section of the report also provides individual market impacting factors and changes in market regulation that impact the current and future trends of the market. Data points like down-stream and upstream value chain analysis, technical trends and porter's five forces analysis, case studies are some of the pointers used to forecast the market scenario for individual countries. Also, the presence and availability of global brands and their challenges faced due to large or scarce competition from local and domestic brands, impact of domestic tariffs and trade routes are considered while providing forecast analysis of the country data.

Quantifiable Data:

Market Data Breakdown by Key Geography, Type & Application / End-User
By type (past and forecast)
Europe Polylactic Acid (PLA) Market-Specific Applications Sales and Growth Rates (Historical & Forecast)
Europe Polylactic Acid (PLA) revenue and growth rate by market (history and forecast)
Europe Polylactic Acid (PLA) Market size and growth rate, application and type (past and forecast)
Sales revenue, volume and Y-O-Y growth rate (base year) of Europe Polylactic Acid (PLA) market
Key Research: Industry experts from the global Europe Polylactic Acid (PLA) Industry, including management organizations, processing organizations, and analytical services providers that address the value chain of industry organizations, were the main source of collection of data. To collect and certify qualitative and quantitative information and to determine future prospects, we interviewed all major sources.
Secondary Research: Critical information about the industrial value chain, core pool of people, and applications, was the primary focus of secondary research. Market segmentation based on the industry's lowest level of industry, geographical markets and key developments in market and technology-driven core development, has also been done to provide a detailed picture of the current market situation.
Qualitative data: Includes factors affecting or influencing market dynamics and market growth. To list some names in related sections

The report answers questions such as:

What is the market size and forecast of the Europe Polylactic Acid (PLA) Market?
What are the inhibiting factors and impact of COVID-19 shaping the Europe Polylactic Acid (PLA) Market during the forecast period?
Which are the products/segments/applications/areas to invest in over the forecast period in the Europe Polylactic Acid (PLA) Market?
What is the competitive strategic window for opportunities in the Europe Polylactic Acid (PLA) Market?
What are the technology trends and regulatory frameworks in the Europe Polylactic Acid (PLA) Market?
What is the market share of the leading vendors in the Europe Polylactic Acid (PLA) Market?
What modes and strategic moves are considered suitable for entering the Europe Polylactic Acid (PLA) Market?

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MarketInsightsReports has published a report titled global Bio-polylactic Acid (PLA) Films Market research report 2020 that is a detailed observation of several aspects, including the rate of growth, technological advances, and different methodologies implemented by the primary current market players. The report is based on a collective analysis of data, which is obtained through primary and secondary research. It provides a systematic approach to the current and prospective scenario of
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This Polylactic Acid (PLA) Market research report involves six major parameters namely market analysis, market definition, market segmentation, key developments in the market, competitive analysis, and research methodology. Competitive analysis is the major aspect of any market research report and by understanding this many points are covered in the report including strategic profiling of key players in the market, analyse their core competencies, and draw a competitive landscape for the
Growth of Bio-polylactic Acid (PLA) Films Market | Top Vendors- NatureWorks, Fut …
Global Bio-PLA Films Market was valued at $354 million in 2016, and is anticipated to reach $910 million by 2023, growing at a CAGR of 14.5% from 2017 to 2023. The key players profiled in the report are NatureWorks LLC, Futerro, Tale & Lyle, Total Corbion PLA, Hiusan Biosciences, Toray Industries, Inc., Taghleef Industries, Amcor Ltd. Toyobo, and Avery Dennison Corporation. The other major players (not profiled in report) in the