Plastic2Green uses a proprietary plasma conversion platform to turn mixed, unsorted plastic waste into high‑value carbon products, including enriched graphene for advanced energy‑storage systems and low‑carbon ammonia for fertilizer or clean fuel. The closed‑loop process operates without sorting or washing, minimizing emissions while supplying manufacturers of next‑generation batteries and industrial users with sustainable feedstock.
Funding
$500K raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.
Founders
Product
Problem
Global plastic production and waste are rising sharply, yet only about 9‑10% of plastic waste is recycled, leaving large volumes of mixed, contaminated plastics unaddressed and contributing to environmental pollution.
Solution
Plastic2Green operates a proprietary plasma conversion platform that directly transforms mixed, unsorted plastic waste into high‑value carbon‑based products without the need for sorting or washing. The closed‑loop plasma process generates enriched graphene for advanced energy‑storage systems and low‑carbon ammonia that can serve as a sustainable fertilizer or clean fuel. By converting otherwise non‑recyclable plastics into these market‑ready materials, the company creates a circular pathway that reduces plastic landfill and provides feedstock for emerging clean‑energy and agricultural markets.
Target Audience
Primary customers include manufacturers of next‑generation batteries and energy storage devices, as well as agricultural and industrial users seeking low‑carbon ammonia and other carbon‑based materials.
Features
- Plasma‑based conversion technology capable of processing heterogeneous, contaminated plastic streams without pre‑sorting
- Closed‑loop system design that minimizes emissions and waste byproducts
- Production of enriched graphene with properties suited for fast‑charge, high‑density, non‑flammable energy storage applications
- Generation of low‑carbon ammonia usable as a green fertilizer or hydrogen source for fuel cells
- Direct synthesis of additional industrial carbon co‑products from the same feedstock