ECOLOGICAL INTEGRITY

Engineered for zero-microplastic degradation.

Our plant-starch polymers perform like traditional plastics under heavy load, then return entirely to organic biomass within 180 days in industrial composting systems.

Macro photograph of a high-tensile compostable grocery bag under stress, showing material grain and structural integrity under soft studio light
Macro photograph of a high-tensile compostable grocery bag under stress, showing material grain and structural integrity under soft studio light
MATERIAL SCIENCE

The plant-starch polymer matrix

We process renewable agricultural starches into high-tensile resins. These structural polymers withstand rigorous retail handling and moisture without premature degradation, matching traditional polyethylene in tensile strength and load capacity.

When exposed to industrial composting conditions, microbes fully metabolize the starch matrix. The material leaves behind only water, carbon dioxide, and rich organic humus, with zero toxic residues or microplastics.

• VERIFIED IMPACT

Quantifiable circular performance

We validate our material performance through rigorous testing and international certification. Every batch of our plant-starch polymer is engineered to meet strict global ecological standards while maintaining high tensile integrity.

180 Days

complete biodegradation

100%

zero-microplastic residue

ASTM D6400

global compliance certified

Align your supply chain with global mandates.

Request our comprehensive ASTM D6400 and EN 13432 certification dossiers, material safety data sheets, and custom formulation specifications. Our logistics team coordinates container-load exports directly from Gujarat to major global ports.