ANSTO Synroc® - Radioactive Waste Treatment Technology
ANSTO Synroc technology provides a safe, secure matrix for the immobilisation and final disposal of radioactive waste.
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ANSTO Synroc technology provides a safe, secure matrix for the immobilisation and final disposal of radioactive waste.
Year 11 STEM student and aspiring physicist was given the opportunity of a lifetime to tour ANSTO’s Lucas Heights campus and meet some of Australia’s top researchers.
Specifications, Beryllium Filter, User Manual, Instrument reference
The high-energy heavy-ion microprobe is used for the characterisation or modification of material properties at depths from approximately 1 micrometre to maximum depths of up to 500 micrometres from the material surface.
The ANSTO Science Series is a live and virtual meet-up that focuses on the key capacities of ANSTO’s people, partners and facilities and how they are meeting global challenges in sustainable industries, medicine, advanced manufacturing and in accelerating small business.
Read about an ANSTO scientist and their work to prepare for a school project or interview.
Creating a global energy system that is both environmentally and economically sustainable is unquestionably one of the largest challenges facing the scientific and engineering communities.
ANSTO physicist supports launch of new carbon ion therapy treatment service in Austria.
Particle Induced X-ray Emission (PIXE) is a powerful and relatively simple analytical technique that can be used to identify and quantify trace elements typically ranging from aluminium to to uranium.
The Australian Academy of Technology and Engineering (ATSE) has elected Professor Andrew Peele, Director of ANSTO’s Australian Synchrotron, to become a Fellow of the prestigious organisation.
New mentor program offers deep brains trust to support the development of southern Sydney startups
Imperial College London researchers tapped into ancient geological data locked within precariously balanced rocks using a new technique to boost the precision of hazard estimates for large earthquakes.