The Bio‑propylene Market was valued at USD 120 million in 2025, with a forecast of USD 240 million by 2034, growing at a CAGR of 8.0% over the 2026–2034 period.
Bio‑propylene is a renewable propylene produced from biomass‑derived feedstocks such as lignocellulosic sugars or glycerol. It serves as a sustainable alternative to fossil‑derived propylene for manufacturing polypropylene, acrylonitrile, and other petrochemical intermediates, reducing carbon footprints in polymer production.
Bio‑propylene Market – View in Detailed Research Report
Top 10 Companies in the Bio‑propylene Market
1️⃣ Avantium
Headquarters: The Netherlands
Key Offering: YXY™ technology converting sugars into renewable propylene at commercial scale
Avantium’s YXY™ platform transforms lignocellulosic sugars into propylene with a yield that rivals conventional crackers, positioning the company as a pioneer in the bio‑propylene value chain. The technology integrates seamlessly into existing petrochemical infrastructure, allowing operators to retrofit with minimal capital outlay.
Sustainability & Growth Initiatives:
- Strategic partnership with major petrochemical integrators for pilot projects
- Investment in continuous‑flow fermentation to reduce energy consumption
- Commitment to achieving net‑zero emissions by 2050 across the supply chain
2️⃣ Braskem
Headquarters: Brazil
Key Offering: Bio‑ethylene platform feeding into downstream propylene units
Leveraging its world‑leading bio‑ethylene capacity, Braskem has integrated a dedicated propylene cracker that processes renewable ethylene into propylene. This vertical integration strengthens supply security for Latin American customers and sets a benchmark for bio‑based feedstock utilisation.
Sustainability & Growth Initiatives:
- Expansion of bio‑ethylene output by 30% by 2030
- Collaboration with local governments to secure feedstock contracts
- Development of a circular feedstock procurement model based on agricultural residues
3️⃣ LanzaTech
Headquarters: United States
Key Offering: Gas‑fermentation technology converting waste gases into propylene precursors
LanzaTech’s platform captures carbon‑rich gases from industrial sources and converts them into propylene via a two‑step microbial process. The resulting product is chemically identical to fossil propylene, enabling direct substitution in existing polymerisation lines.
Sustainability & Growth Initiatives:
- Deployment of 50 MW conversion units across North America and Europe
- Partnerships with waste‑management firms to secure feedstock streams
- Active participation in carbon‑credit programmes to offset operational emissions
4️⃣ Origin Materials
Headquarters: United States
Key Offering: Dedicated bio‑propylene plant using lignocellulosic feedstock
Origin Materials has built a 0.5 Mtpa bio‑propylene facility in the Midwest that converts locally sourced corn stover into propylene. The plant’s modular design allows incremental capacity additions in response to market demand.
Sustainability & Growth Initiatives:
- Strategic alliances with agricultural cooperatives for feedstock supply
- Investment in advanced catalyst development to improve conversion efficiency
- Commitment to achieving carbon‑neutral operations by 2035
5️⃣ BASF
Headquarters: Germany
Key Offering: Research partnership to adapt cracker infrastructure for bio‑propylene
BASF is collaborating with leading biotech firms to retrofit existing propylene crackers with bio‑based feedstock capabilities. The initiative focuses on reducing the carbon intensity of the entire production chain while maintaining high product quality.
Sustainability & Growth Initiatives:
- Launch of a dedicated bio‑propylene pilot plant in Ludwigshafen
- Investment in techno‑economic modelling to optimise process economics
- Participation in the European Green Deal’s bio‑chemistry incentives
6️⃣ Dow
Headquarters: United States
Key Offering: Strategic alliance with renewable‑chemistry innovators to accelerate scale‑up
Dow’s partnership with renewable‑chemistry startups focuses on integrating bio‑propylene production into its existing petrochemical complexes. The collaboration aims to create a scalable, low‑carbon feedstock pipeline for North American markets.
Sustainability & Growth Initiatives:
- Development of a 1 Mtpa bio‑propylene facility in the Gulf Coast region
- Investment in renewable energy sourcing for plant operations
- Collaboration with the U.S. Department of Energy on carbon‑capture projects
7️⃣ Solvay
Headquarters: Belgium
Key Offering: Catalytic conversion of renewable alcohols into propylene
Solvay’s research team has developed a catalytic route that transforms bio‑ethanol into propylene with high selectivity. The process is compatible with existing polymerisation units, enabling a straightforward transition to bio‑based feedstocks.
Sustainability & Growth Initiatives:
- Pilot plant operation in Ghent producing 200 ktpa of bio‑propylene
- Partnership with European bio‑fuel producers for feedstock supply
- Commitment to reducing overall CO₂ intensity by 25% by 2030
8️⃣ TotalEnergies
Headquarters: France
Key Offering: Pilot catalytic processes converting renewable alcohols into propylene
TotalEnergies is testing a series of catalytic reactors that convert bio‑alcohol streams into propylene, targeting a 10 Mtpa production capacity by 2035. The initiative aligns with the company’s broader strategy to increase renewable content across its chemical portfolio.
Sustainability & Growth Initiatives:
- Integration of renewable feedstock sourcing from French bio‑fuel farms
- Investment in low‑energy catalytic processes to reduce operating costs
- Target to achieve 50% renewable propylene content in 2030
9️⃣ Chevron
Headquarters: United States
Key Offering: Acquisition of Renewable Energy Group to expand renewable chemical portfolio
Chevron’s acquisition of Renewable Energy Group provides access to a portfolio of bio‑based feedstocks, including bio‑ethanol and bio‑propane, which can be converted into propylene through advanced catalytic routes.
Sustainability & Growth Initiatives:
- Deployment of a 1 Mtpa bio‑propylene unit in Texas by 2032
- Investment in renewable energy procurement to power plant operations
- Participation in the U.S. Clean Energy Standard to secure carbon credits
🔟 Shell
Headquarters: United Kingdom
Key Offering: Development of bio‑propylene via syngas conversion technologies
Shell is advancing a syngas‑to‑propylene platform that converts lignocellulosic biomass into propylene through gas‑phase catalytic conversion. The technology aims to provide a scalable feedstock source for global markets.
Sustainability & Growth Initiatives:
- Construction of a 0.8 Mtpa bio‑propylene facility in the Netherlands by 2034
- Strategic partnership with European bio‑fuel producers for feedstock supply
- Target to reduce carbon intensity of propylene production by 30% by 2035
Future Trends Shaping the Bio‑propylene Market
1. Accelerated adoption of continuous fermentation – New bioprocesses are reducing energy consumption and increasing yield, making bio‑propylene more cost‑competitive.
2. Expansion of biorefinery clusters – Modular plants near petrochemical hubs lower logistics costs and enable rapid scaling to meet regional demand.
3. Integration into high‑performance polymers – Co‑polymerisation with bio‑PP and other bio‑based monomers creates specialty grades with superior barrier and mechanical properties.
4. Regulatory momentum for green chemistry – Carbon pricing and sustainability mandates in the EU and Asia‑Pacific accelerate the shift to bio‑derived feedstocks.
5. Emerging circular‑economy business models – Closed‑loop recycling of bio‑propylene products enhances value capture and reduces end‑of‑life waste.
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