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CSA N288.6 : 2012

Superseded

Superseded

A superseded Standard is one, which is fully replaced by another Standard, which is a new edition of the same Standard.

ENVIRONMENTAL RISK ASSESSMENTS AT CLASS 1 NUCLEAR FACILITIES AND URANIUM MINES AND MILLS

Available format(s)

Hardcopy , PDF

Superseded date

10-12-2020

Language(s)

English, French

Published date

01-01-2017

Preface
0 Introduction
1 Scope
2 Reference publications
3 Definitions and abbreviations
4 Environmental risk assessment objectives and report
   format
5 Environmental risk assessment framework, tiers, and
   timelines
6 Human health risk assessments
7 Ecological risk assessments
8 Evaluation of uncertainty
9 Risk-based recommendations
10 Quality assurance and quality control
11 Periodic review of the ERA
Annexes
A (informative) - Suggested table of contents for an
  environmental risk assessment report
B (informative) - Environmental risk assessment frameworks
C (informative) - Site characterization components
D (informative) - Receptor terminology in human health
  risk assessments
E (informative) - Sample portions of the conceptual site
  model section of an environmental risk assessment
F (informative) - Sample dose and risk calculations
G (informative) - Supplementary information on toxicity
  reference values in human health risk assessments
H (informative) - Entrainment and impingement evaluations

Describes ERAs for Class I nuclear facilities and uranium mines and mills. These facilities include (a) nuclear reactors; (b) uranium mines, mills, refineries, and conversion plants; (c) uranium fuel fabrication plants; (d) isotope processing facilities; (e) particle accelerators with a beam energy equal to or greater than 50 MeV; and (f) waste management facilities.

DevelopmentNote
French Edition issued on 01-08-2013. (10/2013)
DocumentType
Standard
Pages
142
ProductNote
Reconfirmed EN
PublisherName
Canadian Standards Association
Status
Superseded

CSA N288.1 : 2014 GUIDELINES FOR CALCULATING DERIVED RELEASE LIMITS FOR RADIOACTIVE MATERIAL IN AIRBORNE AND LIQUID EFFLUENTS FOR NORMAL OPERATION OF NUCLEAR FACILITIES

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