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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
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Title
Nuclear Back-end and Transmutation Technology for Waste Disposal
Published by
Springer Japan, January 2015
DOI 10.1007/978-4-431-55111-9
ISBNs
978-4-43-155110-2, 978-4-43-155111-9
Editors

Ken Nakajima

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X Demographics

The data shown below were collected from the profiles of 5 X users who shared this research output. Click here to find out more about how the information was compiled.
Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 73 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Poland 1 1%
Unknown 72 99%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 12 16%
Researcher 12 16%
Lecturer 6 8%
Student > Master 5 7%
Student > Doctoral Student 4 5%
Other 18 25%
Unknown 16 22%
Readers by discipline Count As %
Engineering 11 15%
Computer Science 5 7%
Energy 4 5%
Agricultural and Biological Sciences 4 5%
Social Sciences 4 5%
Other 25 34%
Unknown 20 27%