English

Distillation and Stripping purification plants for JUNO liquid scintillator

Instrumentation and Detectors 2024-06-04 v1 High Energy Physics - Experiment

Abstract

The optical and radiochemical purification of the scintillating liquid, which will fill the central detector of the JUNO experiment, plays a crucial role in achieving its scientific goals. Given its gigantic mass and dimensions and an unprecedented target value of about 3% @ 1 MeV in energy resolution, JUNO has set severe requirements on the parameters of its scintillator, such as attenuation length (Lat>20 m at 430 nm), transparency, light yield, and content of radioactive contaminants (238U,232Th<10-15 g/g). To accomplish these needs, the scintillator will be processed using several purification methods, including distillation in partial vacuum and gas stripping, which are performed in two large scale plants installed at the JUNO site. In this paper, layout, operating principles, and technical aspects which have driven the design and construction of the distil- lation and gas stripping plants are reviewed. The distillation is effective in enhancing the optical properties and removing heavy radio-impurities (238U,232Th, 40K), while the stripping process exploits pure water steam and high-purity nitrogen to extract gaseous contaminants (222Rn, 39Ar, 85Kr, O2) from the scintillator. The plant operating parameters have been tuned during the recent com- missioning phase at the JUNO site and several QA/QC measurements and tests have been performed to evaluate the performances of the plants. Some preliminary results on the efficiency of these purification processes will be shown.

Keywords

Cite

@article{arxiv.2406.01381,
  title  = {Distillation and Stripping purification plants for JUNO liquid scintillator},
  author = {C. Landini and M. Beretta and P. Lombardi and A. Brigatti and M. Montuschi and S. Parmeggiano and G. Ranucci and V. Antonelli and D. Basilico and B. Caccianiga and M. G. Giammarchi and L. Miramonti and E. Percalli and A. C. Re and P. Saggese and M. D. C. Torri and S. Aiello and G. Andronico and A. Barresi and A. Bergnoli and M. Borghesi and R. Brugnera and R. Bruno and A. Budano and A. Cammi and V. Cerrone and R. Caruso and D. Chiesa and C. Clementi and S. Dusini and A. Fabbri and G. Felici and A. Garfagnini and N. Giudice and A. Gavrikov and M. Grassi and R. M. Guizzetti and N. Guardone and B. Jelmini and L. Lastrucci and I. Lippi and L. Loi and C. Lombardo and F. Mantovani and S. M. Mari and A. Martini and M. Nastasi and D. Orestano and F. Ortica and A. Paoloni and F. Petrucci and E. Previtali and M. Redchuck and B. Ricci and A. Romani and G. Sava and A. Serafini and C. Sirignano and M. Sisti and L. Stanco and E. Stanescu Farilla and V. Strati and A. Triossi and C. Tuvè and C. Venettacci and G. Verde and L. Votano},
  journal= {arXiv preprint arXiv:2406.01381},
  year   = {2024}
}

Comments

11 pages, 7 figures