Global Bioplastic Textiles Market Is Expected To Grow At A CAGR Of 8.8% To Reach US$ 2,128.1 Million By The End Of 2033

PRESS RELEASE
Published April 18, 2023

The bioplastic textiles market refers to the market for textiles that are made from biodegradable or compostable materials, such as plant-based fibers or bioplastics. These materials offer an alternative to traditional synthetic textiles, which are typically made from petroleum-based materials and are not biodegradable. The bioplastic textiles market is growing rapidly, driven by increasing consumer demand for sustainable and eco-friendly products. Bioplastic textiles offer several benefits over traditional textiles, including a lower carbon footprint, reduced reliance on fossil fuels, and the ability to biodegrade naturally at the end of their useful life.

The market for bioplastic textiles is expected to continue to grow in the coming years, as consumers become more aware of the environmental impact of traditional textiles and demand more sustainable alternatives. Major players in the bioplastic textiles market include Patagonia, Inc., Stella McCartney, and Nike, Inc., all of whom have made significant investments in developing sustainable textiles and incorporating them into their products.

Other factors driving the growth of the bioplastic textiles market include government regulations aimed at reducing the use of single-use plastics, increasing consumer awareness of the environmental impact of textiles, and the development of new and innovative bioplastics that offer improved performance and durability.

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Key findings of the Bioplastic Textiles market study:

  • The report provides a present market outlook on Bioplastic Textiles. Additionally, the Bioplastic Textiles market share is anticipated to grow with a CAGR of 8.8% in the forecast period.
  • Regional breakdown of the Bioplastic Textiles market based on predefined taxonomy.
  • Innovative manufacturing processes implemented by Bioplastic Textiles vendors in detail.
  • Region-wise and country-wise fragmentation of the Bioplastic Textiles market to grasp the revenue, and growth outlook in these areas.
  • Changing preferences among consumers across various regions and countries.
  • Factors (Positive and Negative) impacting the growth of the global Bioplastic Textiles market.
  • Bioplastic Textiles price, market share, and Trends forecast for assessment period 2023-2033

Why is the use of PLA Increased for the Production of Medical Implants?

Polylactic Acid (PLA) is a biodegradable and biocompatible polymer that has gained significant attention for its use in medical implants. PLA is a natural and renewable resource, derived from corn starch, sugarcane, or other biomass. The use of PLA for the production of medical implants has increased for several reasons:

  1. Biocompatibility: PLA is a biocompatible material that does not trigger an adverse immune response in the body. This makes it an ideal material for medical implants, as it reduces the risk of rejection and inflammation.
  2. Biodegradability: PLA is a biodegradable material that naturally breaks down in the body over time, eliminating the need for implant removal surgeries. This reduces the risk of infection and complications associated with implant removal procedures.
  3. Strength and Durability: PLA has good mechanical properties, which allow it to withstand the rigors of the body’s natural movement and wear and tear. It is also resistant to corrosion, making it a durable material for long-term use.
  4. Versatility: PLA can be molded into various shapes and sizes, making it a versatile material for different types of implants. Its unique properties also make it suitable for use in a range of medical devices, including sutures, drug delivery systems, and tissue engineering scaffolds.
  5. Environmental Sustainability: PLA is a sustainable and renewable material, making it an attractive option for medical device manufacturers who are committed to reducing their environmental impact.

Overall, the use of PLA for the production of medical implants has increased due to its biocompatibility, biodegradability, strength, versatility, and environmental sustainability. As research and development continue in this area, we may see further advancements in the use of PLA and other biodegradable materials for medical applications.

Competitive landscape analysis

Market players are investing in the development of cost-effective production processes. This helps to increase long-term profit, satisfy customer demand, and reduce harmful environmental consequences. In order to create products that promote the use of bioplastic fabrics, market participants are concentrating on collaborations with end users.

  • In order to provide packaging options that are sustainable and lengthen the shelf life of fresh fruit, BASF SE teamed up with StePac in December 2022.
  • The goal of the German government-funded research project BioTexFuture is to employ bioplastics more often in the textile sector. The research is being led by RWTH Aachen University and sportswear juggernaut Adidas. The goal of the research project is to improve sustainability in the textile industry, where currently 73% of fibres come from petroleum.

Some of the leading companies operating in the market are :

  • BASF SE
  • Braskem
  • Bio-on SpA
  • Biome Bioplastics
  • Corbion
  • DuPont de Nemours
  • Ercros S.A
  • FKuR
  • GALATEA BIOTECH
  • Natureworks LLC
  • NaturePlast
  • Orbion

 What insights does the Bioplastic Textiles report provide to the readers?

  • Bioplastic Textiles fragmentation on the basis of product type, end use, and region.
  • Comprehensive assessment of upstream starting materials, downstream demand, and present market landscape.
  • Collaborations, R&D projects, acquisitions, and product launches of each Bioplastic Textiles
  • Various regulations imposed by the governments on the consumption of Bioplastic Textiles in detail.

Segmentation of Bioplastic Textiles Industry Research

·         By Material :

    • Polytrimethylene Terephthalate (PTT)
    • Polyamide (PA)
    • Polyethylene Terephthalate (PET)
    • Polylactic Acid (PLA) or Polylactide
    • Others

·         By Source :

    • Sugarcane
    • Beet
    • Corn Starch
    • Cassava
    • Others
      • Including Wheat
      • Potatoes

·         By Application :

    • Packaging
    • Home Textiles
    • Clothing
    • Footwear
    • Others

·         By Region :

    • North America
    • Latin America
    • Europe
    • East Asia
    • South Asia & Oceania
    • MEA

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