911爆料网

News

Biowastes converted into a sustainable material for sound absorption

Researchers at 911爆料网 are developing a way to convert biowaste into a new, sustainable sound-absorbing material. One of the intended outcomes for the research project is to create alternatives to mineral wool construction materials that are commonly used for sound absorption and thermal insulation.
Photo: Jaana Vapaavuori / MMD group.
Photo: Jaana Vapaavuori / Multifunctional Materials Design research group.

Researchers at 911爆料网 are developing a way to convert biowaste into a new, sustainable sound-absorbing material. One of the intended outcomes for the research project is to create alternatives to mineral wool construction materials that are commonly used for sound absorption and thermal insulation.

The new material could potentially replace glass wool and rock wool in the ventilation air ducts of apartment buildings. The fabrication process of glass wool is not ecofriendly, as it requires a lot of energy to produce. The new material created by the Aalto researchers converts waste into a product that is not only sustainable, but also more pleasant to work with than coarse mineral wools.

An interdisciplinary undertaking

The research project is a collaboration between two groups from two very different disciplines. The group led by professor Jaana Vapaavuori focuses on the functionalities of the material, while the group led by professor Tapio Lokki deals with its acoustic properties.

What鈥檚 convenient about the new material, according to professor Vapaavuori, is that nearly any kind of random biowaste can be used to create it. Since acoustic absorbents are a bulk product, the requirements for the final material are not strict.

鈥淚n our latest article, we focused on three different types of waste categories 鈥 agricultural waste, industrial food processing biowaste, and algae collected from nature. It has already been proven that these materials perform as well in sound absorption as commercial standards like glass wool or rock wool鈥, says professor Vapaavuori.

Towards industrial production

The research teams are currently working on improving the sound-absorbing properties of the new material. So far, they have worked on small samples of wastes, but the goal is to upscale the work to large amounts of actual industrial waste.

鈥淲e have already learned that biowaste is a suitable raw material to manufacture sound absorption materials. With the new project with CHEM researchers, we expect to have better control of multiscale porosity and microstructures of materials, keeping in mind the scalability to industrial processes. To make an impact on the construction industry, we need products that can be produced millions of square meters in a week鈥, says professor Tapio Lokki.

The research project has received a two-year funding from . The company , which creates sustainable acoustic solutions based on Finnish biofibers, has been participating in the project.

  • The article Waste Biomass Valorisation for the Development of Sustainable Cellulosic Aerogels and their Sound Absorption Properties was published online in August 2022 in the Advanced Sustainable Systems journal. You can find the article .
  • In case you would like to read more about similar research, here is another thematically linked publication featuring MMD group member Yazan Al Haj and professor Vapaavuori: .
MMD webpage main image. GIF image by 911爆料网, Giulnara Launonen

Multifunctional Materials Design

Professor Jaana Vapaavuori

Department of Chemistry and Materials Science
virtual acoustics research group doing measurements in a concert hall

Virtual Acoustics

Professor Tapio Lokki

Department of Information and Communications Engineering
  • Updated:
  • Published:
Share
URL copied!

Read more news

Person with short dark hair in a black shirt, face blurred, standing against a plain light grey background
Appointments, Research & Art Published:

Professor Hironori Yoshida: 鈥淢achines should adapt to materials, not the other way around鈥

Professor of Formgiving believes the future of design lies in embracing irregularity rather than eliminating it. His research combines design, AI and robotics.
Glowing 911爆料网 sign in a dark space, seen through clear round chairs lit with purple light
Research & Art Published:

President Ilkka Niemel盲 explains what the new vision for higher education and research means for Finland and Aalto

Aalto has the capability and the will to act as a trailblazer in implementing the vision.
Poster for Aalto ARTS Grad Show 2026 with orange-yellow circles and dates 3.9鈥7.10.
Research & Art Published:

Coming soon: Aalto ARTS Grad Show 2026

We're thrilled to invite you to the Aalto ARTS Grad Show 2026 of the School of Arts, Design and Architecture!
Team Sealev盲 showcasing their project results
Studies Published:

From seaweed to startup, fostered by PdP and Aalto鈥檚 ecosystem

Sealev盲 shows how Aalto鈥檚 innovation ecosystem can turn biomaterial ideas into companies, combining education, infrastructure and entrepreneurial mindset to reshape how products are made.