ISO 13465:2009 PDF
Nuclear energy — Nuclear fuel technology — Determination of neptunium in nitric acid solutions by spectrophotometry
Nuclear energy — Nuclear fuel technology — Determination of neptunium in nitric acid solutions by spectrophotometry
- Статус документа:
- Отменён
- Формат:
- Электронный (PDF)
- Количество страниц:
- 6
- Дата публикации:
- 5 мая 2009 г.
- Издание:
- ISO IS 13465 edition 2 version 1
- ICS:
- 27.120.30
ISO 13465:2009 specifies an analytical method for determining the neptunium concentration by spectrophotometry, with a standard deviation of about 5 %, in nitric acid solutions of nuclear reactor irradiated fuels, at different steps of the process in a nuclear fuel reprocessing plant. The method is applicable to aliquots containing a concentration of neptunium between 10 mg×l-1 and 200 mg×l-1.
Abstract
Overview
ISO 13465:2009 is an international standard developed by the International Organization for Standardization (ISO) that specifies an analytical method for determining the concentration of neptunium in nitric acid solutions through spectrophotometry. This method is crucial for monitoring neptunium levels in nuclear fuel reprocessing plants, particularly in solutions derived from the dissolution of irradiated nuclear reactor fuels. The standard sets forth precise procedures to achieve accurate neptunium measurement within a concentration range of 10 mg·L⁻¹ to 200 mg·L⁻¹, offering a typical precision with about 5% standard deviation.
Key Topics
-
Scope and Purpose The method ensures reliable quantification of neptunium (Np) at different process steps in nuclear fuel reprocessing, supporting safety and process control in the nuclear energy sector.
-
Principle of Measurement Neptunium is converted quantitatively to the neptunium(V) oxidation state using a vanadium(V)/vanadium(IV) redox buffer. The concentration is then determined by measuring the absorbance peak at 981 nm with a spectrophotometer.
-
Interference Management The method accounts for potential interferences caused by uranium(VI), nitrate ions, plutonium species, and other redox-active substances, prescribing conditions to minimize their impact for accurate neptunium detection.
-
Required Reagents and Preparation Detailed preparation of nitric acid solutions, vanadium oxide sulfate, cerium nitrate, and redox buffer mixtures ensure the method’s chemical environment is precisely controlled.
-
Calibration and Sample Preparation Techniques to prepare calibration standards and sample aliquots are defined to maintain consistency and accuracy, including guidance on volumes and concentrations tailored to spectrophotometer linearity.
-
Spectrophotometric Measurement Use of a double-beam grating spectrophotometer optimized for high beta-gamma radioactive solutions, with specific baseline settings and spectral range requirements, is critical for data quality.
-
Result Calculation and Reproducibility The standard provides precise formulas for calculating neptunium concentration in samples and outlines achievable reproducibility, emphasizing method validation per laboratory conditions.
Applications
-
Nuclear Fuel Reprocessing Plants Continuous and accurate measurement of neptunium concentration supports process control, safety assurance, and regulatory compliance during nuclear fuel recycling operations.
-
Nuclear Reactor Fuel Analysis Assists in monitoring the dissolution of irradiated fuel solutions to ensure proper handling and treatment of radioactive materials.
-
Radioactive Waste Management Provides reliable data essential for evaluating neptunium content in waste streams, facilitating effective radioactive waste processing and storage strategies.
-
Quality Control in Nuclear Materials Enables standardized testing of neptunium levels to maintain high-quality control in nuclear fuel fabrication and reprocessing activities.
Related Standards
-
ISO 3696: Water for Analytical Laboratory Use Specifies water quality requirements critical for preparing reagents and solutions employed in ISO 13465:2009 procedures.
-
Standards on Nuclear Fuel Technology and Analysis Other ISO/TC 85 series standards addressing nuclear fuel technology and analytical techniques complement this method by providing additional guidelines for nuclear material characterization.
Keywords: ISO 13465:2009, neptunium determination, nitric acid solutions, spectrophotometry, nuclear fuel reprocessing, nuclear energy safety, uranium interference, vanadium redox buffer, nuclear analytical method, nuclear fuel technology, radioactive material analysis.
Технические детали
- Технический комитет
- ISO/TC 85/SC 5 - Nuclear installations, processes and technologies
- SKU
- ISO 13465:2009
Похожие стандарты
Упомянутые в описании и другие стандарты ISO
SIST EN ISO 3696:1998
ДействующийWater for analytical laboratory use - Specification and test methods (ISO 3696:1987)
Overview EN ISO 3696:1995 (ISO 3696:1987) – "Water for analytical laboratory use – Specification and test methods" is a CEN-adopted international standard that defines quality grades, specification l…
ISO 8689-1:2000
ДействующийWater quality — Biological classification of rivers — Part 1: Guidance on the interpretation of biological qu…
Overview ISO 8689-1:2000, titled Water quality - Biological classification of rivers - Part 1: Guidance on the interpretation of biological quality data from surveys of benthic macroinvertebrates, is…
ISO/ASTM51540-04(2012)
ОтменёнStandard Practice for Use of a Radiochromic Liquid Dosimetry System (Withdrawn 2020)
Significance and Use4.1 The radiochromic liquid dosimetry system provides a means of measuring absorbed dose in materials (5-7). Under the influence of ionizing radiation, chemical reactions take pla…
ISO/ASTM51204-04
ДействующийStandard Practice for Dosimetry in Gamma Irradiation Facilities for Food Processing (Withdrawn 2013)
Significance and Use4.1 Food products may be treated with ionizing radiation, such as gamma-rays from 60Co or 137Cs sources, for numerous purposes, including control of parasites and pathogenic micro…
ISO/ASTM51431-05
ОтменёнStandard Practice for Dosimetry in Electron Beam and X-Ray (Bremsstrahlung) Irradiation Facilities for Food P…
Significance and Use4.1 Food products may be treated with acceleratorgenerated radiation (electrons and X-rays) for numerous purposes, including control of parasites and pathogenic microorganisms, in…
ISO/ASTM52628-20e1
ДействующийStandard Practice for Dosimetry in Radiation Processing
1.1 This practice describes the basic requirements that apply when making absorbed dose measurements in accordance with the ASTM E61 series of dosimetry standards. In addition, it provides guidance o…
ISO/ASTM52921-13(2019)
ДействующийStandard Terminology for Additive Manufacturing—Coordinate Systems and Test Methodologies
Significance and Use 3.1 Although many additive manufacturing systems are based heavily upon the principles of Computer Numerical Control (CNC), the coordinate systems and nomenclature specific to CN…
ISO/ASTMTR52917-EB
ДействующийAdditive Manufacturing — Round Robin Testing — General Guidelines
This document outlines the steps with regard to aspects of design to conduct and run a round robin study (RRS) to assess the degree of variability in an additive manufacturing material or process. Th…