New Master Research Agreement strengthens commitment to cutting-edge research and innovation
Northumbria University and Lockheed Martin Space UK have signed a new Master Research Agreement,…
International
View our Global FootprintBusiness
Northumbria University is proud to offer a range of Professional, Statutory and Regulatory Body (PSRB) approved & accredited courses and programmes. Explore our list of courses and programmes under our Education and Training page.
More on our Business ServicesResearch
Northumbria is a research-rich, business-focused, professional university with a global reputation for academic quality. We conduct ground-breaking research that is responsive to the science & technology, health & well being, economic and social and arts & cultural needs for the communities
Discover more about our ResearchAlumni
Northumbria University is renowned for the calibre of its business-ready graduates. Our alumni network has over 253,000 graduates based in 178 countries worldwide in a range of sectors, our alumni are making a real impact on the world.
Our AlumniOne barrier to textile circularity is the disconnect between textiles and fabric care industries. Clothing that is difficult to keep clean and smelling fresh presents a significant challenge for circularity by increasing washing, reducing clothing lifespan and limiting reuse potential. In fact, consumer research identified that persistent malodour is responsible for direct disposal of clothing to landfill rather than donation to charity. To address this problem, better integration between textile design and fabric care products is required to develop solutions to keep clothing in use for longer. Safe biotics such as Bacillus are used as finishes in non-washables (e.g. mattresses) and are present in some fabric care products. This research aims to develop and test prototype biotics for clothing as a living interface to demonstrate that co-design of textiles and care products could enable a circularity breakthrough. The research focuses on developing a biotic system for 100% polyester sportswear; a textile fibre with a strong potential for closed loop recycling, but with a significant problem with persistent malodour.
Dr Jane Scott, Ewelina Bien (Design & Textile Technology, Newcastle University); Prof. Richard Thompson, Dr Max Kelly (Environmental Science, University of Plymouth); Dr Angela Sherry, Rebecca Pearman (Microbial Environments, Northumbria University).
Dr Neil Lant, Katherine Latimer (Procter and Gamble)
Future Fibres Network Plus Flexible Fund supported by the UKRI Circular Fashion and Textiles Programme: Network Plus—a trilateral initiative from the Natural Environment Research Council, Arts and Humanities Research Council and Innovate UK (Grant Ref: NE/Y004035/1).
Oct 2024 - Sept 2025
Northumbria University and Lockheed Martin Space UK have signed a new Master Research Agreement,…
The longest satellite record ever assembled shows that Greenland and Antarctica have lost 11.3…
Dr Juna Sathian, an Associate Professor at Northumbria University, has been elected a Fellow…
Northumbria University has played a key role in shaping a new national plan designed to help…
A Northumbria University academic, whose research has played a key role in bringing breakfast…
Wildfires raging through prehistoric rainforests helped create the earliest known peat bog…
A Northumbria University astronomer has helped uncover new clues about a rare icy object from…
Two leading academics from Northumbria University have been elected to the Fellowship of the…
Coach Lane Campus
-
Europa Hotel
-
The Great Hall, Sutherland Building
-
Manchester Marriott Hotel Piccadilly
-
Page last updated 22/07/26