[1] Ma Jimin, An Li, He Tie et al. Neutronic experiment and analyses of a hybrid tritium breeding blanket mockup for CFETR[J]. Annals of Nuclear Energy, 161, 108431(2021).
[2] He Tie, Wang Xinhua, An Li et al. An online method to measure tritium production rate of fusion-fission hybrid reactor in CAEP[J]. Fusion Engineering and Design, 137, 43-47(2018).
[3] Yamaguchi S, Oyama Y, Nakamura T et al. An on-line method for tritium production measurement with a pair of lithium-glass scintillators[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 254, 413-418(1987).
[4] Batistoni P, Angelone M, Carconi P et al. Neutronics experiments on HCPB and HCLL TBM mock-ups in preparation of nuclear measurements in ITER[J]. Fusion Engineering and Design, 85, 1675-1680(2010).
[5] Long Heqing. Apparatus with an internal gas proportional counter for absolute measurement of tritium[J]. Acta Metrologica Sinica, 10, 144-150(1989).
[6] Sato S, Ochiai K, Verzilov Y et al. Measurement of tritium production rate in water cooled pebble bed multi-layered blanket mockup by DT neutron irradiation experiment[J]. Nuclear Fusion, 47, 517-521(2007).
[7] Batistoni P, Angelone M, Bettinali L et al. Neutronics experiment on a helium cooled pebble bed (HCPB) breeder blanket mock-up[J]. Fusion Engineering and Design, 82, 2095-2104(2007).
[8] Verzilov Y, Maekawa F, Oyama Y. A novel method for solving lithium carbonate pellet by binary-acid for tritium production rate measurement by liquid scintillation counting technique[J]. Journal of Nuclear Science and Technology, 33, 390-395(1996).
[9] Kudo H, Tanak K, Amano H. Chemical behaviors of tritium produced by the 6Li(n, α)T reaction in lithium oxide[J]. Journal of Inorganic and Nuclear Chemistry, 40, 363-367(1978).
[10] Pillon M, Angelone M, Batistoni P et al. Development of on-line tritium monitor based upon artificial diamond for fusion applications[J]. IEEE Transactions on Nuclear Science, 58, 1141-1144(2011).
[11] Yagi T, Kondo K, Misawa T et al. Application of a 6LiF small neutron detector with an optical fiber to tritium production rate measurement in D-T neutron fields[J]. Journal of Nuclear Science and Technology, 48, 777-785(2011).
[12] Duan Shaojie. Amacro experiment of neutronics[M]. Beijing: National Defense Industry Press, 2008
[13] Tong Yanjuan. Chang Song, Li Xuezhi. Determination of lithium in glass by AAS[J]. Glass, 3, 40-41(2005).
[14] Gualdrini G, Bedogni R, Monteventi F. Developing a thermal neutron irradiation system for the calibration of personal dosemeters in terms of HP(10)[J]. Radiation Protection Dosimetry, 110, 43-48(2004).
[15] Angelone M, Fonnesu N, Colangeli A et al. Calibration and test of a 6LiF-diamond detector for the HCPB mock-up experiment at JET[J]. Fusion Engineering and Design, 146, 1755-1758(2019).
[16] Finocchiaro P, Cosentino L, Lo Meo S et al. Absolute efficiency calibration of 6LiF-based solid state thermal neutron detectors[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 885, 86-90(2018).
[17] Qin J G, An L, Lu X X et al. Note: calibration of majority isotopes for enriched and depleted uranium fission chambers by using the elimination method with fast neutrons[J]. Review of Scientific Instruments, 89, 116104(2018).
[18] Marlies L B, Désirée R, Marcel R, et al. The PTB thermal neutron calibration facility[R]. PhysikalischTechnische Bundesanstalt, Braunschweig, 2018.
[19] Xie Lei, Chen Xiping, Fang Leiming et al. Fenghuang: High-intensity multi-section neutron powder diffractometer at CMRR[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 915, 31-35(2019).