BESE-elements

BESE-elements, also affectionately known as potato mats, are biodegradable lattice structures for kickstarting ecosystem restoration projects.

BESE-elements® is our flagship product for ecosystem restoration. It is also described as a biodegradable lattice structure for ecosystem restoration. Thanks to its ingenious interlocking 3D structure it can be used in the restoration of a wide variety of different habitats. BESE-elements is made of a starch biopolymer derived from potato waste. They function to help reduce local currents and waves, provide stability, and shelter and settling opportunities for organisms. Other applications include erosion control and in natural filter systems.

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Size and weight
922 X 455 X 20 mm, 0.44 kg per unit
Area/volume (density)
80m3/m3 (1.3 g/cm3)
CERTIFICATION
The biopolymer Solanyl is certified as EN13432 (industrial composting) and certified according TÜV AUSTRIA OK compost.
BIODEGRADABILITY
Biodegradability depends on environmental conditions. Estimates Type 1: biodegradation in 10 to 20 years; Type 2: biodegradation in 2 to 4 years. Contains no petrochemical or metallic substances.

BESE-elements mimic natural structures

Imagine an oyster larva, or the seed of a salt marsh plant. These need protection in order to grow and thrive under the dynamic conditions of tidal flats. This protection is normally provided by mature individuals, be it a thriving oyster reef or established salt marsh vegetation. When these systems are lost or damaged due to human activities, ecosystem restoration can be challenging. BESE-elements® present a solution: a temporary structure where organisms can find shelter and establish themselves, initiating the first step of the restoration process. Following the establishment of the habitat, BESE-elements break down as the natural system takes over the role of becoming its own structure on which the habitat continues to develop.

The origins of BESE-elements

BESE-elements was developed from a design for a natural water filter system consisting of a plastic mat with mussels. Recognizing its effectiveness, we wanted to use this system to restore mussel beds in the Dutch Wadden Sea. However, we did not want to introduce plastics into this vulnerable natural system. BESE-elements were created from environmentally friendly and biodegradable materials following a four-year research and development process, in collaboration with Rodenburg Biopolymers. Potato starch, an abundant waste product from the French fries industry, emerged as the ideal material for BESE.

Proving the effectiveness of BESE-elements

Following the success of BESE-elements for mussel beds, Waardenburg Ecology, together with NIOZ, Radboud Universiteit Nijmegen and the University of Florida, investigated whether this new biodegradable structure could also be effective for salt marsh and sea grass restoration. They were, and soon these findings were published in scientific journals and further trials and projects were started in other natural systems including mangroves and riverbanks. To date, BESE-elements have successfully been commissioned as a biodegradable ecosystem restoration element for more than 11 different ecosystems.

Ongoing research and development

The journey doesn’t end there. At BESE, we are continually striving to improve our products even further. Currently, we offer type-1 BESE-elements with a breakdown period of 10 to 20 years, and type-2 BESE-elements breaking down in 2 to 4 years. Excitingly, we have developed a new material and structure for the upcoming type-3 BESE-elements. Field testing has begun, so stay tuned for updates on this exciting development.

FAQ BESE-elements

How long does it take for the product to breakdown?

BESE-elements type-1 breakdown over a period of 10 to 20 years, while BESE-elements type-2 break down within 2 to 4 years. The speed of breakdown is influenced by a range of factors, both biotic and abiotic, such as temperature, oxygen levels, and the types of micro-organisms present in the environment.

What are BESE-elements made of?

BESE-elements are made of waste potato starch from the French fries industry.

What is the final product after breakdown?

The potato starch used in BESE-elements is broken down by organisms through a process called dissimilation, resulting in the production of carbon dioxide (CO2) and water (H2O).

Which ecosystems can benefit from BESE-elements?

BESE-elements have already been used for sea grass, oyster reefs, mussel beds, mangroves, salt marshes, submerged aquatic vegetation, riverbank stabilization, peatlands and urban waterways, and countless other uses are yet to be discovered.

Are BESE-elements 3D printed?

No, BESE-elements are injection moulded. 3D printing is comparatively very slow, while injection moulding takes just a few seconds and better suited to our production scales.

What do BESE-elements cost?

More information about our products and pricing can be found in our factsheet.

To which countries can you ship your products?

We ship to all countries worldwide. For details of our transport costs please contact us using the form below.