

sustainability and conformity

biobased
Our biofillers have 96 - 100% of total renewable content of 96 - 100% according to EN 16848 , 98-100% of renewable C 14 according to EN 16640, 97 - 100% of renewable C, H, N and O elements according to EN16785.
tot bio-based [%] | C content [%] | bio-based C14 [%] | CHNO content [%] | bio-based CHNO [%] | |
---|---|---|---|---|---|
GTF | 96-100% | 43-46% | 98-100% | 93-96% | 97-100% |
ESF | 96-100% | 12-15% | 98-100% | 61-66% | 97-100% |
SFF | 96-100% | 42-45% | 98-100% | 88-95% | 97-100% |
WGS | 96-100% | 47-51% | 98-100% | 94-97% | 97-100% |

carbon foot print
The Carbon footprint (CFP) of our biofiller is currently under certification according to ISO14067 standards . The expected value are lower than that of conventional mineral or petrochemical fillers

recycling
AgroMateriae products are all certified by Bureau Veritas in accordance with the ReMade technical specification, version 2.0_2023. Certificate No. - Revision: IT341972-Rev.01, the accredited environmental certification that guarantees, through independent audits, traceability according to verifiable and measurable criteria. It meets the Minimum Environmental Criteria (CAM).

compostability and biodegradability
Our biofiller meets the requirements of EN 13423 (Industrial Composting) and EN 17033 (Soil Biodegradation). When added to certificated compostable or biodegradable resins, our biofillers enhance the compostability biodegradation rate, allowing for higher certifiable thickness

food contact
We have biofillers grades that conform with European regulations 1935/2004, 10/2011 and 2023/2006 regarding food contact safety.
advantages

cost-effectiveness
economically viable products

industrial reliability
large scale production with validated and repeatable mechanical and chemical processes

sustainability
reduction of the carbon footprint of the materia which biofillers are mixed, valorization and re-use of not food competitive, local and renewable wastes, biofillers are recyclable and biodegradable

versatility
development of different types and grades of biofillers according to the customer's needs

performance
enhancement of the properties of the material to which the biofillers are mixed