Press release
Bioplastics for Packaging Market to Reach US$ 30.9 Billion by 2033: 10.3% CAGR Propels Lucrative Investment Opportunities for Manufacturers
The global bioplastics for packaging market is expected to grow at a CAGR of 10.3% from 2023 to 2033. Bioplastics are plastics that are made from renewable resources, such as plants or microorganisms. They are a sustainable alternative to traditional plastics, which are made from fossil fuels. Bioplastics can be used to make a variety of packaging products, including bags, bottles, and containers.The growth of the market is being driven by a number of factors, including:
Increased awareness of the environmental impact of traditional plastics.
Government regulations that promote the use of sustainable materials.
Growing demand for food and beverage products that are packaged in sustainable materials.
The bioplastics for packaging market is segmented by type, application, and region. By type, the market is segmented into biodegradable and non-biodegradable bioplastics. By application, the market is segmented into food and beverage, personal care, and household products. By region, the market is segmented into North America, Europe, Asia Pacific, and Rest of the World.
The biodegradable bioplastics segment is expected to be the fastest-growing segment of the market. This is due to the increasing demand for sustainable packaging materials from food and beverage companies. The personal care and household products segments are also expected to grow at a significant rate due to the increasing demand for sustainable packaging materials from these industries.
The bioplastics for packaging market is a rapidly growing market that is expected to continue to grow in the coming years. The market is being driven by a number of factors, including increased awareness of the environmental impact of traditional plastics, government regulations that promote the use of sustainable materials, and growing demand for food and beverage products that are packaged in sustainable materials.
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The report titled 'Bioplastics for Packaging Market: Global Industry Analysis 2012 - 2016 and Opportunity Assessment 2017 - 2027', the global bioplastics for packaging market recorded a market valuation of over US$ 4,000 Mn in 2017 and is expected to reach a value of US$ 15,600 Mn by the end of 2027. According to the forecast, the global bioplastics for packaging market is expected to witness a robust CAGR of 14.4% during the projected period 2017-2027.
Global Bioplastics Packaging Market: Dynamics
More than 200 mn tonnes of waste is created by plastics causing major landfill issues. Manufacturers of packaging products are focussing on increasing the use of use of bioplastic packaging, which can reduce this plastic waste to a great extent. PLA, which is a biodegradable plastic developed by NatureWorks LLC., is highly supported by the U.S department of energy. Government organizations across the globe are working in partnership with private sector companies that focus on manufacturing bioplastics packaging products. The government has also exempted tax on bioplastic resin manufacturing. This move is anticipated to promote the growth of the packaging market across many regions. The U.S government is passing new bills such as the Federal Farm Bill Energy title 9, which encourages sale of bioplastics items.
However, a lack of proper compositing grounds is expected to hinder revenue growth of the market. Bioplastics do not get the required environment for their degradation everywhere. Bioplastics require the presence of microorganisms at a high temperature for degradation. Microbes break down bioplastics into CO2, H2o, and CH4. There are different types of decomposition based on bioplastic composites, such as soil biodegradable, marine biodegradable, anaerobically digestible, and home compostable.
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Bioplastics For Packaging Market By Category
By material, bioplastics for packaging market is segmented as:
-Bio PET
-Bio PA
-Bio PE
-Bio-PP
-Bio-PS
-PLA
-PHA
-Starch Blends
-Others (PCL, PBAT etc.)
By application, bioplastics for the packaging market is segmented as:
Bottles
-Cups
-Trays
-Clamshell
-Films
-Bags
-Pouch & Sachet
-Others (Jars, Cans, etc.)
By end use, bioplastics for packaging market is segmented as:
-Food & Beverages
-Cosmetics & Personal Care
-Pharmaceuticals
-Consumer Goods
-Industrial Goods
Global Bioplastics for Packaging Market: Segmental Analysis
Based on region, North America is expected to lead the market with the highest market value and the fastest market growth of 14.6% during the forecast period. However APEJ is also progressing and is expected to project a high CAGR during the period of assessment.
Based on material type, Bio PET is expected to exhibit the highest market value of over US$ 4,600 Mn by the end of 2027. However, the starch blends segment is expected to witness the fastest growth rate during the forecast period.
Based on application type, the films segment is anticipated to dominate the global market with the maximum market size of over US$ 6,300 Mn by the end of 2027.
Based on end use, the food and beverage industry is projected to witness the fastest growth and highest market value during the forecast period. In terms of growth, the consumer goods segment is behind the food and beverage segment.
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Global Bioplastics for Packaging Market: Competitive Landscape
This research report on the global bioplastics for packaging market includes a brief profile of all the major players in the industry. Some of these key players mentioned in the report are Amcor Limited, Berry Global, Inc., BARBIER GROUP, Jolybar GROUP, Virent, Inc., Biome Bioplastics Limited, Plastipak Holdings, Inc, Toray Industries Inc., SECOS Group Limited etc.
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Future Market Insights (ESOMAR certified market research organization and a member of Greater New York Chamber of Commerce) provides in-depth insights into governing factors elevating the demand in the market. It discloses opportunities that will favor the market growth in various segments on the basis of Source, Application, Sales Channel and End Use over the next 10-years.
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