[1] SERP J, ALLIBERT M, BENEŠ O, et al. Progress in Nuclear Energy, 2014, 77:308.
[2] KELLY J E. Progress in Nuclear Energy, 2014, 77:240.
[3] KŘEPEL J, HOMBOURGER B, FIORINA C, et al. Annals of Nuclear Energy, 2014, 64:380.
[4] MATHIEU L, HEUER D, BRISSOT R, et al. Progress in Nuclear Energy, 2006, 48(7):664.
[5] LESTER R M, NORMAN E, JEAN F. The Chemistry of the Actinide and Transactinide Elements[M]. Forth Edition. New York:Springer Science & Business Media, 2010:1.
[6] JIANG M H, XU H J, DAI Z M. Bulletin of Chinese Academy of Sciences, 2012, 27(3):366. (in Chinese) (江绵恒, 徐洪杰, 戴志敏. 中国科学院院刊, 2012, 27(3):366.)
[7] CAI X Z, DAI Z M, XU H J. Physics, 2016, 45(9):578. (in Chinese) (蔡翔舟, 戴志敏, 徐洪杰. 物理, 2016, 45(9):578.)
[8] XU H J. Thorium Energy and Molten Salt Reactor R&D in China[M]. Thorium Energy for the World. New York:Springer International Publishing, 2016:37.
[9] International Atomic Energy Agency (IAEA). Advances in Small Modular ReactorTechnology Developments[M]. A Supplement to:IAEA Advanced Reactors Information System (ARIS), 2016 Ed.
[10] XU H J, DAI Z M, CAI X Z. Nuclear Physics News, 2014, 24(2):24.
[11] Reactor and Fuel Cycle Technology Subcommittee Report to the full Commission, Blue Ribbon Commission on America's Nuclear Future[C]. Washington, DC, January, 2012.
[12] YU C G, LI X X, CAI X Z, et al. Annals of Nuclear Energy, 2015, 85:597.