Oxide scale growth behavior of alumina-forming austenitic stainless steel exposed to supercritical water
Author:
Publisher
Elsevier BV
Subject
General Materials Science,General Chemical Engineering,General Chemistry
Reference64 articles.
1. The hotter the engine, the better;Perepezko;Science,2009
2. The role of new energy in carbon neutral;Zou;Pet. Explor. Dev.,2021
3. Current status and future developments in nuclear-power industry of the world;Pioro;J. Nucl. Eng. Radiat. Sci.,2019
4. Optimization of a fuel assembly for supercritical water-cooled reactor CSR1000;Zhu;Front Energy Res,2021
5. Supercritical water-cooled reactor materials– summary of research and open issues;Guzonas;Prog. Nucl. Energ.,2014
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