Nuclear energy

Overview of the Nuclear Industry up to date

  

The nuclear industry is undergoing a phase of renewal, though cautious, after a period of stagnation in the 2010s. It remains a strategic pillar for many countries, at the crossroads of energy, climate, economic and geopolitical issues.

  

Role in the Energy Transition

  

Nowadays, nuclear power is recognized as a low-carbon, dispatchable source of electricity capable of continuous production. In the context of slowing climate change while reducing dependence on fossil fuels, several countries consider nuclear energy as an essential complement to renewable energies (wind, solar), which are intermittent.

  

A Contrasting Global Landscape

  

  • Pro-nuclear countries: France, China, Russia, South Korea, and more recently, the United Kingdom and some Eastern European countries are currently investing in new reactors.
  • Retreat from or phase-out of nuclear power: Germany has closed its power plants, while other countries remain hesitant for political, economic, or societal reasons.
  • New entrants: Countries like the United Arab Emirates and Turkey are developing their first nuclear capacity.

  

Industrial and Economical Challenges

  

The area is currently facing some obstacles. 

  • ​High costs and budget overruns on major reactor projects.
  • Long construction times, which tend to hinder investment
  • The existing fleet are aging, particularly in Europe and North America, requiring extension or replacement programs.
  • Radioactive waste management, remaining a sensitive political and societal issue.

  

Major Publications regarding nuclear energy

There are many standards focusing on nuclear energy. The most prominent ones are RCC-M, the ASME Code, and ISO 19443.

You can read our detailed brochure in order to know more about the collection of standards related to nuclear energy.

  

  

All the documentation related to nuclear energy

ASTM E704-19

ASTM E704-19

Superseded Historical

Standard Test Method for Measuring Reaction Rates by Radioactivation of Uranium-238

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ASTM E636-20

ASTM E636-20

Superseded Historical

Standard Guide for Conducting Supplemental Surveillance Tests for Nuclear Power Reactor Vessels

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ASTM C833-17

ASTM C833-17

Superseded Historical

Standard Specification for Sintered (Uranium-Plutonium) Dioxide Pellets for Light Water Reactors

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ASTM C1672-17

ASTM C1672-17

Superseded Historical

Standard Test Method for Determination of Uranium or Plutonium Isotopic Composition or Concentration by the Total Evaporation Method Using a Thermal Ionization Mass Spectrometer

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ASTM C1725-17

ASTM C1725-17

Superseded Historical

Standard Guide for Hot Cell Specialized Support Equipment and Tools

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ASTM C852/C852M-17

ASTM C852/C852M-17

Superseded Historical

Standard Guide for Design Criteria for Plutonium Gloveboxes

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ASTM C1615/C1615M-17

ASTM C1615/C1615M-17

Superseded Historical

Standard Guide for Mechanical Drive Systems for Remote Operation in Hot Cell Facilities

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ASTM E266-17

ASTM E266-17

Superseded Historical

Standard Test Method for Measuring Fast-Neutron Reaction Rates by Radioactivation of Aluminum

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ASTM C1022-17

ASTM C1022-17

Superseded Historical

Standard Test Methods for Chemical and Atomic Absorption Analysis of Uranium-Ore Concentrate

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ASTM C1075-17

ASTM C1075-17

Superseded Historical

Standard Practices for Sampling Uranium-Ore Concentrate

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ASTM C1108-17

ASTM C1108-17

Superseded Historical

Standard Test Method for Plutonium by Controlled-Potential Coulometry

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ASTM C1165-17

ASTM C1165-17

Superseded Historical

Standard Test Method for Determining Plutonium by Controlled-Potential Coulometry in H2SO4 at a Platinum Working Electrode

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ASTM C1267-17

ASTM C1267-17

Superseded Historical

Standard Test Method for Uranium by Iron (II) Reduction in Phosphoric Acid Followed by Chromium (VI) Titration in the Presence of Vanadium

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ASTM C776-17

ASTM C776-17

Superseded Historical

Standard Specification for Sintered Uranium Dioxide Pellets for Light Water Reactors

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ASTM E526-17e1

ASTM E526-17e1

Superseded Historical

Standard Test Method for Measuring Fast-Neutron Reaction Rates by Radioactivation of Titanium

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