Reloop PTA

Technology

A low-energy path to high-purity PTA.

Traditional chemical recycling relies on high heat, which drives up energy use and operating cost. Our proprietary reactor runs near ambient temperature — an efficiency-first process engineered to make chemical recycling economically viable at scale.

Reloop PTA process diagram: plastic bottles and polyester are processed into oriented PET film, converted by the near-ambient-temperature reactor into terephthalic acid, then supplied to bottle, lithium-ion battery recycling, and polyurethane markets

Waste from PET plastic bottles, oriented PET films, and polyester films is fed into our near-ambient-temperature reactor and converted into high-purity terephthalic acid. That output becomes the building block for new bottles, lithium-ion battery recycling materials, and polyurethane foams, resins, and devices — closing the loop from waste to high-performance manufacturing.

01
Plastic waste
Post-consumer & industrial feedstock
02
Near-ambient reactor
Proprietary low-energy process
03
High-purity PTA
Market-ready output
04
Manufacturing
Returns to the supply chain
↓ OPEXvs. high-heat recycling
High-purityoutput grade
Closed-loopsupply chain

Why it matters

By lowering the energy burden of depolymerization, we bridge the gap between waste management and high-performance manufacturing — enabling a closed-loop supply chain that reduces reliance on virgin feedstocks, without the heavy carbon footprint of conventional methods.