黑料网

News

Aalto University seeking to make Finland a model country for energy storage solutions

Through partnerships and cooperative projects, solutions are being sought to the challenges of energy storage.
Precious metals in crushed batteries being dissolved in a test tube. Photo: Glen Forde/Aalto Energy Platform

The numbers and uses of lithium batteries have been increasing rapidly, with common uses including mobile electronics, electric cars and storage of renewable energy. The batteries are full of scarce materials, and so it is essential to recycle them. Some of the metals contained in the batteries are classified in the EU as critical raw materials, which means that they are important for EU countries鈥 economies but the risk of insufficient supply is large. Also, if the materials from batteries that have come to the end of their lifespan are not recovered and recycled, they can pose a serious threat to the environment. At the moment, lithium recycling is nonexistent.

Aalto University is at the forefront of research into the value chain of metals related to energy storage. Topics of research include searching for methods for recovering the metals that have been discarded into waste flows in ways that are both economical and environmentally sustainable. In a study recently published in the , researchers from Aalto presented a new hydrometallurgical method for separating out battery metals by leaching crushed battery waste with sulphuric acid in reductive conditions. The process makes use of higher solid matter concentrations than earlier research, which means that the solution produced has higher concentrations of lithium, nickel and cobalt. The optimised reductive solution also ensures good selectivity, and thus the copper-rich sediment left over is a suitable ingredient for use in copper works.

In addition, Aalto is also carrying out research on the recovery of rare earth elements, which are also currently not being recovered from battery and permanent magnet waste. Close cooperation is being carried out in these studies of battery waste and rare earth elements with other international leaders in the field such as Central South University and Jiangxi University.

Professor Mari Lundstr枚m searches for metals in secondary raw materials and develops methods and processes designed to more effectively recover and recycle metals. Kuva: Glen Forde/Aalto Energy Platform

Come and participate in the Energy Storage Futures events

鈥淎alto University has taken an active role in shaping an international energy storage strategy. A central component of the strategy should be attention to environmental perspectives and compliance with circular economy principles throughout the whole value chain. Among other things, this means that the structural design of batteries should take into account recyclability and options for reuse, and effective recycling processes should be developed. For Finland to reach the status of being a model country for energy storage, partnerships and different kinds of cooperative projects are needed鈥, says Professor Mari Lundstr枚m from Aalto University.

Aalto University will be holding a series of three breakfast events which will present the challenges of energy storage and the kinds of broad research being carried out on the subject and also provide an opportunity for envisioning together the future of energy storage. The first event, 22 March, will focus on the electrical storage of energy. The following event will be held 19 April (Beyond electrical energy storage) and 31 May (Reducing the need for energy storage). The events will be held in English.

Further information:

Kati Miettunen
Project Manager, Aalto Energy Platform
kati.miettunen@aalto.fi

Anne Kosola
Manager, Corporate Relations
+358 50 596 9395
anne.kosola@aalto.fi

Article:

Chao Peng, Joseph Hamuyuni, Benjamin P. Wilson, Mari Lundstr枚m, Selective reductive leaching of cobalt and lithium from industrially crushed waste Li-ion batteries in sulfuric acid system

Waste Management, https://doi.org/10.1016/j.wasman.2018.02.052

  • Updated:
  • Published:
Share
URL copied!

Read more news

A group of happy people standing in front of a staircase with colorful beanbag chairs.
Cooperation Published:

Transition to hydrogen economy is a marathon, not a sprint

During its first few years of operation, the Hydrogen Innovation Centre has built an active community around its doctoral school and launched the Inventors programme.
Aalto digital working
Research & Art Published:

Building a future through digital growth

In an era of complexity, uncertainty, and austerity, a clear vision towards growth is more important than ever. Finland and Europe need economic growth, and digital solutions offer a genuine path forward across all industries. By combining business expertise with academic knowledge, the Center for Digital Business Growth (CDBG) provides concrete support for companies looking to grow.
Learning Centre graphics
Research & Art, Studies Published:

New e book apps will replace Adobe Digital Editions from 20 May

There will be changes to how DRM (Digital Rights Management) protected e books are downloaded in Ebook Central, EBSCO eBooks and VLeBooks. Adobe Digital Editions will be replaced by new apps that better support accessibility.
Angular teal building under grey sky with text: Aalto University Centre for radical creativity
Cooperation, Press releases, Research & Art, University Published:

Aalto University establishes Centre for Radical Creativity 鈥 aiming to support societal and corporate transformation

The centre responds to the interest and need for transformation among businesses and organizations and calls partners to join.