Sustainable Material Strategy

Less raw materials, longer life, lower environmental impact.

We consider recycled content, recyclable materials and long-lasting product design within the same system. Our aim; Developing workspaces that help reduce resource use, waste and carbon impact throughout the product's life cycle.

Approach starting from the material

Sustainability is about what material the product starts with.

The environmental impact of an office product is not limited to the moment of production. Obtaining the raw material, processing, production, logistics, life cycle, maintenance and end-of-life recovery potential should be evaluated together.

01 / FEWER VIRGIN SOURCES

recycled content

The use of recycled raw materials in suitable products and components helps reduce the need for virgin resources and recycle existing material.

02 / LONGER USE

Durable and renewable product

Long lifespan, maintenance and parts replacement approach; It can reduce the need for new production by preventing earlier replacement of products.

03 / RETURN TO THE LOOP

recyclable material

Correct separation of materials such as glass, suitable LAM surfaces, textiles and felt; It supports recovery and reuse processes at the end of use.

material library

More responsible material choices

Not every material has the same environmental profile. Therefore, we aim to evaluate the recycled content rate, recyclability, lifespan and production source on a product basis.

PLASTİC COMPONENTS

recycled plastic

The use of recycled plastic in appropriate components reduces the need for new plastic raw materials and helps re-value existing plastic waste.

Ex. 80%* Verified proportion of recycled content by product or ingredient.
LAM / SURFACE MATERİALS

recyclable LAM

LAM materials suitable for product structure and waste separation conditions; It can make it easier to direct the material to recycling processes after use.

Decomposable structure Material composition and connection method directly affect recovery potential.
PINE

Recyclable glass

Glass is one of the materials that can be recycled into the raw material cycle when separated correctly. Its long lifespan and recovery potential provide significant advantages in corporate projects.

recovery focused Detachable connection and clean separation support the recycling process.
MATERİAL

Recycled fiber options

Alternatives containing recycled fibers in upholstery fabrics can contribute to reducing the need for new fibers and reusing textile waste.

Content transparency Fiber composition and recycled content ratio are specified in the product technical documentation.
ACOUSTİC FELT

recycled felt

Felt options produced from recycled fibers in acoustic panels and dividers support sound control and enable the second life of the material.

acoustic + cyclic Functional performance and recycled content can come together in the same product.
Şeffaflık notu: “%80” gibi geri dönüştürülmüş içerik oranları, ilgili ürün veya bileşenin tedarikçi beyanı / teknik dokümanı ile doğrulanmış veriye göre yayımlanmalıdır. Oranlar ürün ailesine ve malzeme tedarikine göre değişebilir.
carbon approach

Material selection begins to determine the carbon impact of the product at the design stage.

Carbon emissions are not just the energy consumption of the factory. Raw material production, processing, transportation, the lifespan of the product, and what happens at the end of its life are all parts of the total environmental impact.

CO₂e

Four key levers for lower embodied carbon.

Recycled content, less virgin raw materials, long lifespan and recyclable product architecture; Depending on the material and manufacturing process, it can help reduce the carbon impact of the product throughout its life cycle.

01

Reducing virgin raw material

The use of recycled raw materials can help reduce resource consumption and associated emissions by reducing the need to extract and process new raw materials.

02

Extend product life

When more durable and serviceable products are used for a longer period of time, the need for new production and logistics caused by frequent product changes may decrease.

03

separate the material

Detachable connections and the ability to separate material types increase the possibility of reuse or recycling at the end of use.

04

Making data visible

Monitoring recycled content, material composition and product-based CO₂e data; It enables design and purchasing decisions to become measurable.

Cyclic product life

The sustainability of a product does not end the day it is delivered.

Long-lasting product design, maintenance and parts replacement system; It extends the service life of the furniture and prepares the ground for the materials to be recycled at the end of use.

01

design

Material selection, durability and demountability are addressed in the first drawing of the product.

02

produce

Quality control and correct production discipline form the basis of the product's lifespan.

03

Use & Renew

The lifespan of the product can be extended through maintenance, service and appropriate parts replacement.

04

Reclaim

Separating materials at the end of use increases the possibility of reuse or recycling.

Data and transparency

Sustainability should be verifiable data, not a claim.

The sustainability page is not just a brand narrative; There should be a data layer where architects, purchasing teams and international customers can access technical information on a product basis.

Recycled content ratio and material composition
Supplier declaration, certificate or link to technical documentation
Maintenance, parts replacement and product life information
Separation and recycling orientation at the end of the product
More responsible workplaces

We choose materials not only for today's appearance, but also for tomorrow's resources.

Let's develop workplace solutions that combine recycled content, longevity, maintenance, recovery and material transparency in corporate projects.

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