Corrosion of Research Reactor Aluminium Clad Spent Fuel in Water

Corrosion of Research Reactor Aluminium Clad Spent Fuel in Water
Author: International Atomic Energy Agency
Publisher:
Total Pages: 236
Release: 2003
Genre: Business & Economics
ISBN:

This report describes research performed in ten laboratories within the framework of the IAEA Co-ordinated Research Project on Corrosion of Research Reactor Aluminium Clad Spent Fuel in Water. The project consisted of exposure of standard racks of corrosion coupons in the spent fuel pools of the participating research reactor laboratories and evaluation of the coupons after predetermined exposure times, along with periodic monitoring of the storage water. A group of experts in the field contributed a state of the art review and provided technical supervision of the project. Localized corrosion mechanisms are notoriously difficult to understand, and it was clear from the outset that obtaining consistency in the results and their interpretation from laboratory to laboratory would depend on the development of an excellent set of experimental protocols. These experimental protocols are described in the report, together with guidelines for the maintenance of optimum water chemistry to minimize the corrosion of aluminium clad research reactor fuel in wet storage.

Corrosion of Research Reactor Aluminium Clad Spent Fuel in Water

Corrosion of Research Reactor Aluminium Clad Spent Fuel in Water
Author: International Atomic Energy Agency
Publisher:
Total Pages: 236
Release: 2003
Genre: Business & Economics
ISBN:

This report describes research performed in ten laboratories within the framework of the IAEA Co-ordinated Research Project on Corrosion of Research Reactor Aluminium Clad Spent Fuel in Water. The project consisted of exposure of standard racks of corrosion coupons in the spent fuel pools of the participating research reactor laboratories and evaluation of the coupons after predetermined exposure times, along with periodic monitoring of the storage water. A group of experts in the field contributed a state of the art review and provided technical supervision of the project. Localized corrosion mechanisms are notoriously difficult to understand, and it was clear from the outset that obtaining consistency in the results and their interpretation from laboratory to laboratory would depend on the development of an excellent set of experimental protocols. These experimental protocols are described in the report, together with guidelines for the maintenance of optimum water chemistry to minimize the corrosion of aluminium clad research reactor fuel in wet storage.

Practices for Interim Storage of Research Reactor Spent Nuclear Fuel

Practices for Interim Storage of Research Reactor Spent Nuclear Fuel
Author: IAEA
Publisher: International Atomic Energy Agency
Total Pages: 139
Release: 2022-09-28
Genre: Technology & Engineering
ISBN: 9201233221

This publication provides an introduction to the management of research reactor spent nuclear fuel (RRSNF). Five key areas are discussed: types of RRSNF, characterization data, wet storage considerations, dry storage considerations, and lessons learned and current practices. Information on internationally accepted standards as well as information on aspects such as drying treatment and surveillance programmes are presented, as well as suggestions for further optimization of effective and safe storage of RRSNF through the application of new approaches. The intended users of this publication include industry professionals at operating research reactors and at RRSNF storage facilities who need to identify the most suitable approach for interim storage of spent fuel.

Safety Related Issues of Spent Nuclear Fuel Storage

Safety Related Issues of Spent Nuclear Fuel Storage
Author: J.D.B. Lambert
Publisher: Springer Science & Business Media
Total Pages: 357
Release: 2007-04-24
Genre: Technology & Engineering
ISBN: 1402059035

This book contains papers from a NATO-sponsored workshop in Almaty in September 2005, which discussed safety-related issues of storing spent nuclear fuel. Fifteen papers cover aluminum-clad fuel discharged from research reactors worldwide, while five papers examine stainless steel-clad fuel from fast reactors, and two Zircaloy-clad fuel from commercial light-water reactors.