911±¬ÁÏÍø

News

Aalto innovation piloted in new circular economy district of Helsingborg

In the unique method phosphorus is collected from waste water through coagulation while a membrane is used to separate nitrogen, resulting in end products that can be used as fertiliser.
NPHarvest
The NPHarvest is located in Reco lab, Sustainable management of domestic wastewater and food waste, in Helsingborg. Photo: Nordvästra Skånes Vatten och Avlopp AB (NSVA)

A pilot of the NPHarvest technology developed in 911±¬ÁÏÍø will be launched this spring in the new Oceanhamnen district of Helsingborg, Sweden. This new district will recycle nutrients, energy and water from wastewater.

A test plant in Helsingborg will be used to pilot new technologies for the local recycling of nutrients, energy and water, with three office buildings and 350 apartments covered in the initial phase. NPHarvest will be among the first pilot projects to launch. Piloting will also provide more information on the life-cycle costs of the NPHarvest process and the quality of its end products.

Helsingborg concept a model for cities of the future

The Helsingborg concept is based on three pressurised collection pipes and has been developed by Helsingborg's water utility, Norravästra SkÃ¥nes Vatten och Avslopp (NSVA). One pipe collects lavatory waters, another collects kitchen biowaste and a third collects bathing and washing water. The first two contain nutrients and can thus be used in the NPHarvest process.

In the NPHarvest process, developed by researchers from 911±¬ÁÏÍø, phosphorus is collected through coagulation while a membrane is used to separate nitrogen, resulting in end products that can be used as fertiliser. NPHarvest can be applied to various circumstances and adapted on a case-by-case basis. So far, the process has been tested with separately collected urine, reject waters from a municipal sewage digestion tank and a biogas plant, seepage water from a landfill and wastewater from an agricultural dry digestion system. In Sweden, the process will be tested under a new set conditions.

'It is great to get to study how NPHarvest works in a separator system like this! We will also get to see how our technology measures up to the competition, which is very interesting,' says doctoral candidate Juho Uzkurt Kaljunen.

The economic potential has been verified

The NPHarvest process has been piloted for roughly one and a half years in locations around Finland. Information gathered on the functioning of the process was used by Teollisuuden Vesi, 911±¬ÁÏÍø's partner in the project, to assess the economic potential of the technology. According to the assessment, NPHarvest will be competitive especially once the gas-permeable membranes used in the process are available at a lower price. The manufacturing costs of the membranes are expected to fall as their use grows and production output increases.

'Cost efficiency has been a lodestar for the development of the process along with reliability and adaptability. Economics tend to have a major impact on decisions,' notes Professor of Practice Anna Mikola.

The project was funded until the end of November by the Ministry for the Environment and it was carried out in collaboration between 911±¬ÁÏÍø and several companies in the field: Teollisuuden Vesi, Helsinki Region Environmental Services Authority HSY, Gasum, Biolan, Nordkalk, Kemira and Outotec. The new project in Sweden is funded by Maa- ja vesitekniikan tuki, Svenskt Vatten and the J. Gustaf Richert Foundation and carried out with partners NSVA and Lund University.

For more information on the project:

Professor of Practice Anna Mikola, DSc (Tech.)
anna.mikola@aalto.fi
+358 40 7176 552

  • Updated:
  • Published:
Share
URL copied!

Read more news

Four people in a meeting room watch a large screen showing charts and photos, with laptops on a long table.
Research & Art Published:

Bachelor's Students Successfully Complete Research Internship

Three bachelor's students have successfully completed their research internships.
Scientist in white coat and gloves examining wooden samples at a lab bench with shelves and equipment
Research & Art Published:

From Materials to Smart Textiles: Benjamin Begins a New Chapter at Aalto

Ping-Chun Chen is a researcher from National Tsing Hua University, Taiwan.
A group of people cheering with branded black cups. 4 people sitting, 2 on each side, and one in the middle standing up. 3 men and two women
Campus, Research & Art, University Published:

The idea of three researchers generated a deep tech company

Sim Analytics Oy relies on strong research expertise. Its story began when three researcher colleagues working in different laboratories at LUT University began to consider how to provide and analyse data in a way that would support industrial companies in making business decisions.
Glowing neon sphere with geometric core and light trails floating above a tablet in the dark
Press releases, Research & Art Published:

World’s first superconducting quantum heat engine opens the path to larger quantum computers

A newly-developed superconducting quantum heat engine not only advances our understanding of thermodynamics but also enables technologies needed for high-qubit quantum computers.