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Last Updated: Apr 25, 2025 | Study Period: 2023-2030
Starch-based bioplastic packaging has a lot of potential as environmentally friendly, biodegradable food packaging solutions. Other biopolymers or additives, as well as new production methods, can be used to increase or prolong the functional performance of starch-based biodegradable products.
However, it remains difficult to produce high-performance Starch-based bioplastic packaging on an industrial scale, and additional study is still needed in this field.A current assessment of starch-based materials is provided, with a focus on how to enhance their qualities and broaden their use in food packaging.
The preparation procedures, typical additives, characterisation methods, and uses of materials based on starch that degrade over time are outlined. To encourage new avenues for future research, cutting-edge technological techniques to creating inventive starch-based biodegradable materials are also introduced.
Although synthetic plastics can be used to make a wide range of useful products, they are a very flexible and practical material whose widespread usage is harming the environment. There have been significant attempts made to create more biodegradable and environmentally friendly materials as a result.
Starch-based bioplastic packaging is regarded as a good option for synthetic polymers among other alternatives because of its plentiful availability, low cost, complete biodegradation, excellent biocompatibility, and effective film-forming capabilities. To make starch-based materials more useful for various purposes, a number of technological obstacles must be solved.
The Global Starch-based bioplastic packaging market accounted for $XX Billion in 2022 and is anticipated to reach $XX Billion by 2030, registering a CAGR of XX% from 2023 to 2030.
Starch, cellulose, chitosan, and protein are taken from renewable biomass and used to make biodegradable plastics . The majority of Starch-based bioplastic packaging are expected to minimise carbon dioxide emissions, plastic waste, and the use of fossil fuels.
The qualities of these plastics that make them biodegradable have a beneficial social impact, and awareness of biodegradable packaging also draws researchers and businesses .
When recycling plastics is promoted, compostable plastics are frequently employed in a wide range of items . Since polymers are often made from petroleum products, producing these plastics requires additional fossil fuels, which contributes to pollution. Currently, bioplastic makes up good quantity in market
Sl no | Topic |
1 | Market Segmentation |
2 | Scope of the report |
3 | Abbreviations |
4 | Research Methodology |
5 | Executive Summary |
6 | Introdauction |
7 | Insights from Industry stakeholders |
8 | Cost breakdown of Product by sub-components and average profit margin |
9 | Disruptive innovation in theIndustry |
10 | Technology trends in the Industry |
11 | Consumer trends in the industry |
12 | Recent Production Milestones |
13 | Component Manufacturing in US, EU and China |
14 | COVID-19 impact on overall market |
15 | COVID-19 impact on Production of components |
16 | COVID-19 impact on Point of sale |
17 | Market Segmentation, Dynamics and Forecast by Geography, 2023-2030 |
18 | Market Segmentation, Dynamics and Forecast by Product Type, 2023-2030 |
19 | Market Segmentation, Dynamics and Forecast by Application, 2023-2030 |
20 | Market Segmentation, Dynamics and Forecast by End use, 2023-2030 |
21 | Product installation rate by OEM, 2023 |
22 | Incline/Decline in Average B-2-B selling price in past 5 years |
23 | Competition from substitute products |
24 | Gross margin and average profitability of suppliers |
25 | New product development in past 12 months |
26 | M&A in past 12 months |
27 | Growth strategy of leading players |
28 | Market share of vendors, 2023 |
29 | Company Profiles |
30 | Unmet needs and opportunity for new suppliers |
31 | Conclusion |
32 | Appendix |