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Our Technology

 

PHAse Plastics are made from organic, natural biomass such as corn, food waste, and other feedstocks. Through our patented biotechnology process, we are able to use anaerobic digestion and fermentation to produce various types of Polyhydroxyalkanoate (PHA).

Transforming Waste Management

Innovative Biotechnologies for a Sustainable Future

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Novel Yeast Cell Factory Technology 

Welcome to the Future of Sustainable Bioplastics

Revolutionizing Waste Management with Novel Yeast Cell Factory Technology

At the intersection of biotechnology and environmental sustainability lies our pioneering Novel Yeast Cell Factory. This innovative technology revolutionizes waste management by converting organic waste into high-value, biodegradable plastics, providing a sustainable solution to two of the most pressing environmental challenges of our time—plastic pollution and organic waste disposal. 

Key Features

Sustainable Solution to Plastic Pollution

Economic and
Environmental Benefits

Advanced Anaerobic
Digestion (AD) Technology

The United States generation 35.7 million tons of plastic in 2018, with less than 9% recycled. Our technology converts waste into biodegrabale plastics, reducing landfill overflow and environmental contamination.

Utilizing organic waste as feedstock significantly lowers production costs. By diverting waste from landfills and converting it into valuable biopolymers, we not only mitigate disposal costs but also contribute to a circular economy.

Our hyperthermophilic AD process operates at temperatures above 65°C, converting waste more efficiently into volatile fatty acids (VFAs) instead of low-value biogas. This process enhances pathogen removal and antibiotic destruction, producing high-quality biofertilizers.

How it Works

Our innovative approach combines the strengths of anaerobic digestion and synthetic biology.

Hyperthermophilic
AD Process

Converts waste into VFAs, avoiding methane production and increasing efficiency.

VFAs serve as the building blocks for biopolymer production.

Metabolic Engineering
of Yarrowia lipolytica

This robust yeast strain converts VFAs into poly-3-hydroxybutyrate (P3HB) and its copolymer, P(3HB-co-3HV).

Our engineered yeast exhibits high tolerance to VFAs, ensuring efficient biopolymer synthesis.

Why Choose our Technology?

Sustainable Solution to
Impact

Economic
Viability

Market Demand and
Commercial Support

Reduces both plastic and organic waste simultaneously while supporting the development of a sustainable bioplastics industry.

Lower production costs are achieved through the use of waste feedstock and the potential to receive tipping fees for processing waste materials, further enhancing cost efficiency.

Strong market demand for PHAs in packaging, films, coatings, and more. Backed by major companies like PepsiCo and Toppan Printing Co., Ltd., which are committed to sustainable packaging solutions.

Join Us in Building a Sustainable Future

Our Novel Yeast Cell Factory technology represents a breakthrough in bioplastic production, combining cost-effectiveness with environmental stewardship. We invite biotech industry leaders, sustainability advocates, investors, and clients to explore how our technology can drive both economic and environmental wins.

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