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Nuclear Back-end and Transmutation Technology for Waste Disposal

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Cover of 'Nuclear Back-end and Transmutation Technology for Waste Disposal'

Table of Contents

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    Book Overview
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    Chapter 1 Nuclear Transmutation of Long-Lived Nuclides with Laser Compton Scattering: Quantitative Analysis by Theoretical Approach
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    Chapter 2 Recent Progress in Research and Development in Neutron Resonance Densitometry (NRD) for Quantification of Nuclear Materials in Particle-Like Debris
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    Chapter 3 Development of Nondestructive Assay to Fuel Debris of Fukushima Daiichi NPP (1): Experimental Validation for the Application of a Self-Indication Method
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    Chapter 4 Development of Nondestructive Assay of Fuel Debris of Fukushima Daiichi NPP (2): Numerical Validation for the Application of a Self-Indication Method
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    Chapter 5 Precise Measurements of Neutron Capture Cross Sections for LLFPs and MAs
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    Chapter 6 Development of the Method to Assay Barely Measurable Elements in Spent Nuclear Fuel and Application to BWR 9 × 9 Fuel
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    Chapter 7 Contribution of the European Commission to a European Strategy for HLW Management Through Partitioning & Transmutation
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    Chapter 8 Design of J-PARC Transmutation Experimental Facility
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    Chapter 9 Accelerator-Driven System (ADS) Study in Kyoto University Research Reactor Institute (KURRI)
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    Chapter 10 Heat Transfer Study for ADS Solid Target: Surface Wettability and Its Effect on a Boiling Heat Transfer
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    Chapter 11 Experimental Study of Flow Structure and Turbulent Characteristics in Lead–Bismuth Two-Phase Flow
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    Chapter 12 Theory of Power Spectral Density and Feynman-Alpha Method in Accelerator-Driven System and Their Higher-Order Mode Effects
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    Chapter 13 Study on Neutron Spectrum of Pulsed Neutron Reactor
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    Chapter 14 Application of the Resource-Renewable Boiling Water Reactor for TRU Management and Long-Term Energy Supply
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    Chapter 15 Development of Uranium-Free TRU Metallic Fuel Fast Reactor Core
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    Chapter 16 Enhancement of Transmutation of Minor Actinides by Hydride Target
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    Chapter 17 Method Development for Calculating Minor Actinide Transmutation in a Fast Reactor
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    Chapter 18 Overview of European Experience with Thorium Fuels
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    Chapter 19 Transmutation Scenarios after Closing Nuclear Power Plants
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    Chapter 20 Sensitivity Analyses of Initial Compositions and Cross Sections for Activation Products of In-Core Structure Materials
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    Chapter 21 Options of Principles of Fuel Debris Criticality Control in Fukushima Daiichi Reactors
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    Chapter 22 Modification of the STACY Critical Facility for Experimental Study on Fuel Debris Criticality Control
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    Chapter 23 Expectation for Nuclear Transmutation
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    Chapter 24 Issues of HLW Disposal in Japan
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    Chapter 25 Considering the Geological Disposal Program of High-Level Radioactive Waste Through Classroom Debate
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    Chapter 26 Environmental Transfer of Carbon-14 in Japanese Paddy Fields
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    Chapter 27 Development of a Rapid Analytical Method for 129 I in the Contaminated Water and Tree Samples at the Fukushima Daiichi Nuclear Power Station
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    Chapter 28 Consideration of Treatment and Disposal of Secondary Wastes Generated from Treatment of Contaminated Water
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    Chapter 29 Volume Reduction of Municipal Solid Wastes Contaminated with Radioactive Cesium by Ferrocyanide Coprecipitation Technique
Attention for Chapter 3: Development of Nondestructive Assay to Fuel Debris of Fukushima Daiichi NPP (1): Experimental Validation for the Application of a Self-Indication Method
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Chapter title
Development of Nondestructive Assay to Fuel Debris of Fukushima Daiichi NPP (1): Experimental Validation for the Application of a Self-Indication Method
Chapter number 3
Book title
Nuclear Back-end and Transmutation Technology for Waste Disposal
Published by
Springer, Tokyo, January 2015
DOI 10.1007/978-4-431-55111-9_3
Book ISBNs
978-4-43-155110-2, 978-4-43-155111-9
Authors

Jun-ichi Hori, Tadafumi Sano, Yoshiyuki Takahashi, Hironobu Unesaki, Ken Nakajima

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 1 Mendeley reader of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 1 100%

Demographic breakdown

Readers by professional status Count As %
Professor > Associate Professor 1 100%
Readers by discipline Count As %
Engineering 1 100%