The Future of Biopolymers Starts Here
India’s first high-performance PHA biopolymer that actually biodegrades. Not in decades. Not in special facilities. But naturally in soil, water, and even the ocean.
Redefining sustainability through next-generation innovations.
TerraOne is a modern biotechnology company. Our portfolio combines advanced biology with clean technology to deliver precision nutrition, intelligent release systems, and environmentally elegant performance.
Packaging
Protective, high-performance packaging designed to break down in soil, compost and marine environments alike.
Aquaculture
Advanced PHA-based innovations designed to maximise productivity, support healthier aquatic life and sustainable aquaculture.
Aquaculture
Advanced PHA-based innovations designed to maximise productivity, support healthier aquatic life and sustainable aquaculture.
Animal Husbandry
Innovative technologies supporting animal wellbeing and productivity with a commitment to environmental sustainability.
Cosmetics
Biodegradable microbeads and texturising agents that replace microplastics without compromising performance. Engineered for the same feel, finish and function without the microplastic burden.
Biomedical
Biocompatible solutions enabling the future of medical innovation designed for advance healthcare through sustainable science.
Pharmaceutical
Advanced, sustainable biopolymers engineered for safer, smarter drug delivery systems enabling the future of pharmaceutical technologies
Waste Water
Innovative biological solutions aimed for sustainable water management, environmental protection and a healthier planet.
Textile
Biodegradable PHA materials redefining the future of sustainable textiles. Solutions combining performance with environmental responsibility.
Personal Care
Bio-based alternatives delivering high-performance personal care with a lighter environmental footprint where everyday care doesn't outlive the moment it was made for.
Built for global industries. Trusted through innovation.
World First Non-GMO PHA Biopolymer Manufacturer
Leading next-generation PHA biopolymer manufacturing with global production capabilities.
Planned Production Capacity
Designed to support large-scale commercial demand across multiple international industries.
Biodegradable
Manufactured using certified non-GMO biological processes for sustainable innovation.
industries supported
Supporting agriculture, packaging, aquaculture, environmental management and more worldwide.
How We Make It
From renewable resources to advanced biodegradable biomaterials—our biotechnology process transforms nature into sustainable innovation.
Renewable Feedstock
We begin with renewable natural resources that provide the foundation for sustainable PHA production.
Microbial Fermentation
Proprietary microbial fermentation converts renewable carbon into high-quality PHA biopolymers.
PHA Extraction
The polymer is carefully extracted and refined to achieve purity, consistency and industrial-grade performance.
Material Engineering
Our scientists formulate biomaterials with application-specific properties for multiple industries.
Global Applications
The final biomaterials are delivered across packaging, agriculture, aquaculture and environmental solutions worldwide.
The Problem We Are Solving
Conventional plastics have transformed industries but at an environmental cost. TerraOne is building the next generation sustainable biomaterials that perform without leaving a permanent footprint.
Ocean Pollution
Millions of tons of plastic waste reach oceans every year.
Microplastics
Persistent plastic particles contaminate water, soil and food chains.
Soil Degradation
Plastic residues reduce soil quality and long-term agricultural health.
Need for Alternatives
Industries require high-performance materials that naturally biodegrade.
Why Choose Terraone?
Traditional plastics were designed for durability—but not for sustainability. TerraPHA's PHA biopolymers deliver industrial performance while naturally returning to the environment.
Problem Statements
Packaging
Traditional plastic packaging creates long-persisting waste that pollutes land and oceans forever.
Agricultural
Plastic residue from mulch films and crop covers fragment into the soil, reducing fertility and clogging machinery year after year.
Aquaculture
Feed additives, cages and nets shed plastics directly into the water systems that fish and shrimp depend on.
Animal Husbandry
Growing resistance and consumer scrutiny are forcing the sector to look beyond conventional feed inputs as modern livestock farming demands higher productivity while reducing environmental impact.
Cosmetic Microbeads
Beauty products like exfoliants, fillers, etc often rely on synthetic ingredients and plastic-based materials that wash straight down the drain and could enter into the food chain thereby harming the environment.
Biomedical Waste
Healthcare requires advanced materials that are both safe for patients and sustainable for the future. Non-degradable implants and devices demand follow-up surgery, raising cost, risk and patient overload.
Pharmaceutical Delivery Limits
Conventional carriers struggle to release actives at the right rate, and leave synthetic residue behind.
Waste Water Contamination
Treatment plants are becoming a bottleneck for microplastics as they're passing them on rather than removing them.
Textile Shedding
Synthetic fabrics release microfibres with every wash, one of the largest single sources of ocean microplastics.
Personal Care Disposables
Everyday personal care products often depend on ingredients and packaging that persist in the environment.
Solution Statements
Packaging
PHA-based packaging delivers performance that matches the conventional plastic and biodegrade fully in soil, compost and marine conditions.
Agriculture
Mulch films and controlled-release coatings designed to break down in the field, so none of it needs retrieving and nothing accumulates.
Aquaculture
Marine-safe biological technologies that enhance gut health, boost yields, and protect aquatic environments.
Animal Husbandry
Sustainable biological solutions that improve animal health, efficiency, and responsible farming practices.
Cosmetics
Biodegradable microbeads and texturising agents that replicate the feel and function of microplastics, with a lower environmental footprint.
Biomedical
Biocompatible, bioresorbable polymers for sutures, scaffolds and devices designed for next-generation medical applications.
Pharmaceutical
Bioresorbable drug-delivery matrices engineered for controlled release, clean biodegradation and pharmaceutical innovation.
Waste Water
Biodegradable technologies that improve treatment efficiency while supporting cleaner water systems.
Textile
Biodegradable PHA materials driving a cleaner, circular future for textiles.
Personal Care
Everyday essentials made from fully biodegradable materials for high-performance personal care with a lighter environmental footprint.
Biopolymer portfolio of terraone
A guide to where PHA sits among today's biodegradable polymers — and how it compares to the materials it's built to replace.
PHA
PHA (Polyhydroxyalkanoates) are biodegradable polyesters produced by microorganisms as intracellular carbon and energy storage compounds. It fully breaks down in soil and marine environments, making it a genuine alternative to conventional petroleum-based plastics like PLA.
PBAT
PBAT (Polybutylene Adipate Terephthalate) is a petroleum-derived biodegradable plastic often blended with PLA or starch-based materials to improve flexibility, PBAT compares to PHA in compostability but unlike PHA, it relies on fossil feedstocks rather than microbial fermentation.
PBS
PBS (Polybutylene Succinate) is a biodegradable polyester made from succinic acid and butanediol, PBS offers PHA-like compostability and decent heat resistance. It has good mechanical properties and is used in packaging, agricultural films, and disposable products.
PLA
PLA (Polylactic Acid) is a biodegradable thermoplastic polymer derived from fermented plant starches like corn or sugarcane through lactic acid fermentation, PLA is compostable only under industrial conditions. It is widely used in food packaging, disposable utensils, and 3D printing applications due to its biodegradability and good mechanical properties.
CELLULOSE
The most abundant natural polymer on earth, cellulose forms the structural backbone of plant cell walls and serves as feedstock for bioplastics and packaging films.
TPS
TPS (Thermoplastic Starch) is a biodegradable plastic made by processing natural starch with plasticizers under heat and pressure, TPS is low-cost and fully compostable but, unlike PHA, it's highly sensitive to moisture and often needs blending with other polymers to hold up structurally.
Research & Innovation
Every TerraPHA innovation begins inside our laboratories, where biology, material science and engineering converge to create the next generation of sustainable biomaterials.
Engineering Tomorrow's Sustainable Materials
Our multidisciplinary research team continuously develops advanced PHA formulations that combine biodegradability with industrial performance across multiple applications.
Explore Technology →Advanced Biotechnology
Precision microbial engineering for high-performance biopolymers.
Material Innovation
Continuous R&D to improve strength, flexibility and biodegradability.
Sustainable Science
Renewable feedstocks powering environmentally responsible production.
Global Applications
Designed for packaging, agriculture, aquaculture and industrial markets.
Trusted by Industry Leaders
Businesses across packaging, agriculture and industrial sectors trust TerraPHA for innovative biodegradable material solutions.
TerraPHA's PHA materials exceeded our expectations in both sustainability and performance. Their technical support and product consistency have been outstanding.
Alex Kumar
Director • Sustainable PackagingThe transition from conventional plastics to TerraPHA's biopolymers was seamless. Their innovation aligns perfectly with our long-term sustainability goals.
Sarah Mitchell
Head of InnovationReliable quality, exceptional research and a strong commitment to environmental responsibility make TerraPHA an ideal partner for future-ready material solutions.
Rahul Desai
Manufacturing PartnerEverything You Need to Know
Find answers to the most common questions about TerraPHA, our biotechnology platform and sustainable PHA biomaterials.
Polyhydroxyalkanoates (PHA) are naturally produced biopolymers created by microorganisms. They offer the performance of conventional plastics while being fully biodegradable in natural environments.
TerraPHA develops advanced bio-based materials derived from renewable resources, reducing dependence on fossil fuels and minimizing long-term environmental impact.
Our solutions are suitable for packaging, agriculture, aquaculture, consumer goods, environmental management, industrial applications and many other sectors.
Yes. PHA is one of the few biomaterials capable of naturally biodegrading in marine, soil and compost environments without leaving harmful microplastic residues.
You can contact our team for product inquiries, technical collaborations, research partnerships or commercial opportunities.