Integrated Heat Balance of STAR-H2 System for Hydrogen Production
The secure transportable autonomous reactor (STAR) hydrogen project is part of the US Department of Energy’s (DOE’s) Nuclear Energy Research Initiative (NERI) to develop Generation IV nuclear reactors that will supply high-temperature heat at over 800°C. The goal of NERI is to develop an economical,...
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Published in | Nuclear Production of Hydrogen pp. 277 - 288 |
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Main Authors | , |
Format | Book Chapter |
Language | English |
Published |
Paris
OECD Publishing
14.04.2004
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Series | Nuclear Science |
Online Access | Get full text |
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Abstract | The secure transportable autonomous reactor (STAR) hydrogen project is part of the US Department of Energy’s (DOE’s) Nuclear Energy Research Initiative (NERI) to develop Generation IV nuclear reactors that will supply high-temperature heat at over 800°C. The goal of NERI is to develop an economical, proliferation-resistant, sustainable, nuclear-based energy supply system based on a modular-sized fast reactor that is passively safe and cooled with heavy liquid metal. STAR-H2 consists of... |
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AbstractList | The secure transportable autonomous reactor (STAR) hydrogen project is part of the US Department of Energy’s (DOE’s) Nuclear Energy Research Initiative (NERI) to develop Generation IV nuclear reactors that will supply high-temperature heat at over 800°C. The goal of NERI is to develop an economical, proliferation-resistant, sustainable, nuclear-based energy supply system based on a modular-sized fast reactor that is passively safe and cooled with heavy liquid metal. STAR-H2 consists of... |
Author | Moisseytsev, Anton Matonis, Diana T |
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Title | Integrated Heat Balance of STAR-H2 System for Hydrogen Production |
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