English

Construction and Measurements of an Improved Vacuum-Swing-Adsorption Radon-Mitigation System

Instrumentation and Detectors 2015-09-02 v1 High Energy Physics - Experiment

Abstract

In order to reduce backgrounds from radon-daughter plate-out onto detector surfaces, an ultra-low-radon cleanroom is being commissioned at the South Dakota School of Mines and Technology. An improved vacuum-swing-adsorption radon mitigation system and cleanroom build upon a previous design implemented at Syracuse University that achieved radon levels of \sim0.2\,Bq\,m3^{-3}. This improved system will employ a better pump and larger carbon beds feeding a redesigned cleanroom with an internal HVAC unit and aged water for humidification. With the rebuilt (original) radon mitigation system, the new low-radon cleanroom has already achieved a >>\,300×\times reduction from an input activity of 58.6±0.758.6\pm0.7\,Bq\,m3^{-3} to a cleanroom activity of 0.13±0.060.13\pm0.06\,Bq\,m3^{-3}.

Keywords

Cite

@article{arxiv.1506.00929,
  title  = {Construction and Measurements of an Improved Vacuum-Swing-Adsorption Radon-Mitigation System},
  author = {J. Street and R. Bunker and C. Dunagan and X. Loose and R. W. Schnee and M. Stark and K. Sundarnath and D. Tronstad},
  journal= {arXiv preprint arXiv:1506.00929},
  year   = {2015}
}

Comments

5 pages, 4 figures, Proceedings of Low Radioactivity Techniques (LRT) 2015, Seattle, WA, March 18-20, 2015