The Age of Parity has a New Passport; SMX Platform Bridges Physical Assets to Digital Blockchain and Verified Circularity Credits
SMX extends its molecular marking into a blockchain-linked passport system so companies can test, verify and digitally monetize recycled plastic.
Rhea-AI Summary
SMX (SMX) expanded its plastics technology into a multi-layer Digital Material Passport platform that links marked physical plastic to blockchain-based records and potential circularity credits.
The system embeds invisible molecular markers into plastic, connects each item to a Digital Material Passport with origin, composition and lifecycle data, and anchors these records on blockchain to support verified material trading and real-world asset applications. SMX describes a progression from material to passport, blockchain, market and credit, and has launched a client experience that lets companies run their own plastics through the marking and passport process to test authentication, data capture and integration with its Circularity-as-a-Service infrastructure.
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Key Terms
blockchain technical
api-driven technical
erp systems technical
chain of custody technical
AI-generated analysis. How Rhea-AI works. Not financial advice.
NEW YORK CITY, NY / ACCESS Newswire / September 23, 2026 / SMX has taken its plastics technology beyond authentication, expanding its Digital Material Passport platform into infrastructure that connects physical materials to the digital blockchain and, ultimately, new markets for verified material assets.
The expansion comes as SMX's approach to plastics and the circular economy gains broader attention. In a September 22 article, the popular financial news site Benzinga examined the growing challenge of proving recycled content and highlighted SMX's molecular marking and Digital Material Passport technology as an approach designed to connect physical materials with verifiable digital records throughout their lifecycle. The article noted that as the recycling economy grows, verification itself could become increasingly valuable.
SMX's technology was designed to give plastic a persistent identity in the physical world, using molecular markers to authenticate what a material is, where it came from and how it moves through its lifecycle. The expanded platform carries that identity into the digital world, creating a blockchain-linked record that can follow the material into verified markets, real-world asset applications and circularity credits.
The expanded model creates a continuous progression:
Material → Passport → Blockchain → Market → Credit
SMX is also opening a new client experience around the platform, allowing companies to bring their own plastic into the process and test how it can be marked, identified, authenticated and connected to a Digital Material Passport.
At the first layer is SMX's molecular marking technology, which gives plastic a persistent physical identity. Invisible molecular markers are embedded directly into the material, allowing it to be authenticated later rather than relying exclusively on labels, certificates, invoices or supplier declarations.
The second layer is the Digital Material Passport Platform (DMPP), launched by SMX earlier this year. The DMPP connects that physical identity to a secure digital record containing information including origin, composition, chain of custody, recycled content, manufacturing history and lifecycle status.
The platform includes interactive dashboards, blockchain-backed transaction timelines, data export capabilities, management of compliance and audit documents, and lifecycle mapping from raw material through finished product and subsequent reuse cycles. Its modular, API-driven architecture is designed to integrate with existing enterprise and ERP systems.
That is an important distinction in the developing Digital Product Passport market. SMX is not simply creating a digital record about a material. Its system connects that record back to an identifier embedded in the physical material itself.
FROM MATERIAL TO MARKET
Once the identity, composition, provenance and recycled content of plastic can be verified and carried into a blockchain-backed digital record, SMX's infrastructure is designed to allow that authenticated material to participate in digital and real-world asset markets. Buyers and sellers can potentially transact material carrying verifiable information about what it actually is.
The final layer is Credit, connecting verified recycling and reuse to SMX's circularity infrastructure.
Through its Circularity-as-a-Service platform, SMX is building the ability to document and certify plastic as it moves through recovery and reuse. Verified circularity events can provide the underlying evidence for Plastic Circularity Credits, creating potential economic value for an activity that historically has been difficult to prove consistently.
Together, the layers create a continuous chain: the material is marked. The passport records it. The blockchain carries its identity into the digital world. The market recognizes it. The credit captures verified circularity.
ONE PLATFORM, MULTIPLE COMMERCIAL FUNCTIONS
A manufacturer could mark plastic at production and connect it to a Digital Material Passport. A converter or brand could authenticate its composition and origin. A recycler could verify the same material when it returns through a recovery stream. Its recycled content and lifecycle could remain associated with the material as it enters another production cycle.
The resulting verified data can support compliance and certification, but SMX is designing the infrastructure to extend into material trading, real-world asset digitization and circularity credits.
That broader commercial capability is particularly relevant as recycled and virgin plastic enter what SMX calls the Age of Parity. Oil and energy volatility, inflation, tariffs, petrochemical disruption, transportation costs and supply-chain pressure have changed the traditional economics of virgin plastic. At the same time, recycled-content mandates, plastic taxes and other regulatory pressures are increasing the economic importance of recovered material.
The result is a market in which recycled plastic can increasingly compete with virgin material on economics, not simply environmental preference. As recycled plastic gains economic value, proving that it is actually recycled becomes increasingly important.
SMX's platform is designed to connect two markets that have traditionally operated separately: the physical plastics economy and the digital economy built around data, verification and increasingly tokenized real-world assets.
A ton of recycled plastic remains a ton of recycled plastic. But when its identity, composition, provenance, chain of custody and recycling history can be independently authenticated and carried into the digital world, it becomes a different commercial proposition.
COMPANIES CAN PUT THEIR OWN PLASTIC THROUGH THE SYSTEM
SMX's new client experience is designed to make that proposition tangible. Companies can provide their own plastic and experience how SMX molecularly marks it, authenticates it and connects it to the Digital Material Passport infrastructure.
That gives polymer producers, packaging companies, manufacturers, brands and recyclers an opportunity to evaluate the technology using material from their own operations rather than through a generic demonstration.
The experience shows the larger architecture in action: physical verification feeds a digital passport, the passport carries authenticated material identity onto the blockchain, that identity can support verified material markets, and verified lifecycle events can ultimately support circularity credits.
It is the difference between being shown a platform and putting your own material through it.
ABOUT SMX (SECURITY MATTERS) PLC
SMX (Security Matters) PLC (NASDAQ:SMX) develops molecular traceability and material authentication technologies designed to strengthen supply-chain transparency and integrity across global industries. Its platform embeds invisible molecular markers directly into physical materials, including solids, liquids and gases, allowing them to carry a persistent identity that can be detected and verified throughout their lifecycle.
Contact: Billy White / billywhitepr@gmail.com
SOURCE: SMX (Security Matters) Public Limited
View the original press release on ACCESS Newswire
FAQ
AI-generated questions and answers. How Rhea-AI works. Not financial advice.
What information can SMX's Digital Material Passport record for plastic materials?
The Digital Material Passport Platform is designed to store a secure digital record for each marked material, including origin, composition, chain of custody, recycled content, manufacturing history and lifecycle status. The platform also provides interactive dashboards, blockchain-backed transaction timelines, data export tools, compliance and audit document management, and lifecycle mapping from raw material through finished products and subsequent reuse cycles.
How does SMX's molecular marking differ from traditional plastic identification methods?
SMX embeds invisible molecular markers directly into the plastic, giving it a persistent physical identity that can be authenticated later. This reduces reliance on external indicators such as labels, certificates, invoices or supplier declarations, because the material itself carries the identifier that is then linked to its Digital Material Passport.
How are circularity credits intended to work in SMX's platform?
Through its Circularity-as-a-Service platform, SMX is building tools to document and certify plastic as it moves through recovery and reuse. Verified circularity events can serve as evidence for Plastic Circularity Credits, which are intended to capture economic value from recycling and reuse activities that have historically been difficult to prove consistently.
Who can participate in SMX's new client experience and what do they gain?
Polymer producers, packaging companies, manufacturers, brands and recyclers can provide their own plastic to see how SMX molecularly marks it, authenticates it and connects it to the Digital Material Passport infrastructure. This allows companies to evaluate the technology using material from their own operations rather than generic samples and to observe how physical verification can support digital records, potential material markets and circularity credits.