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PlaSolvo™ – EVIKSH’s cellulose-based material platform
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PlaSolvo™ |  FEEDSTOCK   STRATEGY

Sustainable Feedstock

EVIKSH utilises renewable and waste-derived cellulose feedstocks to develop scalable material systems for industrial applications.

FEEDSTOCK  ADVANTAGE

Designed Around Scalable Cellulose Sources

From the outset, EVIKSH prioritised scalability, material performance, and long-term sustainability in the development of PlaSolvo™. As a result, food-based feedstocks were not considered a viable pathway for industrial scale-up.

EVIKSH utilises diverse cellulose feedstocks, including agricultural residues, paper waste, timber by-products, and natural fibers, to support scalable and resilient material production.

By leveraging abundant renewable sources and avoiding competition with food systems, PlaSolvo™ is designed for cost efficiency, supply flexibility, and industrial scalability across multiple applications.

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PROCESS  DESIGN

Designed for Scalable Industrial Processing

PlaSolvo™ is developed through a simplified, non-toxic processing methodology designed for compatibility with industrial manufacturing environments.

Built on EVIKSH’s proprietary cellulose engineering platform, the process enables scalable production, material consistency and seamless integration into existing manufacturing systems across multiple applications.

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PlaSolvo™ | ENGINEERED MATERIAL FORMATS

Material Configurations Across Packaging and Industrial Applications

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The platform supports multiple cellulose-based material configurations developed for packaging and industrial application environments. Through formulation control and process adaptation, these material systems can be configured into flexible, rigid, coated, and specialty formats compatible with evolving manufacturing and sustainability requirements.

Surface & Coating Systems

Thin-film material layers designed for coating, encapsulation, and protective surface applications across packaging, produce and industrial materials.

Flexible Film Structure

Flexible cellulose-based material formats developed for lightweight packaging systems requiring adaptable structural and containment properties.

Rigid & Molded Formats

Multi-layered material configurations designed for rigid and semi-rigid applications including containers, formed structures and disposable product systems.

Specialty Optical Materials

Customisable reflective and surface-engineered material formats developed for aesthetic, decorative and specialty consumer applications.

PlaSolvo™  PLATFORM  CAPABILITIES

Engineered for Performance and Responsible End-of-Life

PlaSolvo™ enables a versatile range of engineered material capabilities, balancing industrial performance with responsible end-of-life outcomes across diverse application environments.

Economic Scalability

Engineered for scalable manufacturing through abundant industrial-grade cellulose feedstocks, supporting cost-efficient production and supply chain resilience across applications.

Advanced Barrier Properties

Designed to deliver reliable chemical resistance and barrier performance for the containment and protection of liquid, gel-based, and semi-solid products across packaging and industrial applications.

Adaptive Physical Performance

Engineered across thin flexible, flexible mid-gauge, and rigid material formats to support diverse structural and functional application requirements.

Custom Material Engineering

Engineered for application-specific performance requirements across barrier behaviour, mechanical response, thermal stability and surface characteristics.

Industrial Processing Capability

Designed for integration with conventional and scalable industrial processing systems, supporting adoption without requiring fundamental changes to existing manufacturing infrastructure.

Industrial Heat Resistance

Engineered to maintain thermal and structural stability under demanding processing and end-use conditions across food packaging and industrial applications.

Circular Material Compatibility

Developed from structured renewable cellulose feedstocks and engineered for controlled biodegradation pathways, enabling application-specific degradation behaviour and compatibility with home-compostable and circular material system.

Advanced Visual & Surface Finish

Supports transparent, opaque, and engineered surface variations, enabling controlled visual appearance and application-specific aesthetic differentiation across product formats.

EVIKSH | THE ROAD AHEAD 

Advancing Towards Industrial Deployment

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EVIKSH is progressing from laboratory validation towards pilot-scale manufacturing and industrial integration of its cellulose-based material systems for packaging and industrial applications.

Current development is focused on refining progress pathways, optimising material preference and assessing compatibility within existing manufacturing environments.

Where We are Today

Laboratory-scale prototypes have validated core material behaviour across multiple cellulose-based configurations, demonstrating consistent performance across flexible, coated and rigid format pathways.

Work is ongoing to translate these results into scalable manufacturing conditions and repeatable production processes.

Near-Term Focus

The next stage is centered on pilot-scale manufacturing development and industrial collaboration.

This includes process scale-up, integration testing within partner environments, and validation of manufacturability across relevant application formats.

Long-Term Direction

The long-term objective is to enable scalable adoption of cellulose-based material systems as practical alternatives to conventional plastics across packaging and industrial applications.

Future development will focus on industrial deployment, manufacturing partnerships and integration into circular material value chains.

Building scalable material systems designed for industrial compatibility and responsible end-of-life pathways.

APPLICATION  DEVELOPMENT

Explore PlaSolvo™ Applications

Discuss packaging, industrial and material development opportunities with the EVIKSH team.

Headquarter: Cambridge, UK

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