Boron-Lined Neutron Detector Measurements

Boron-Lined Neutron Detector Measurements
Title Boron-Lined Neutron Detector Measurements PDF eBook
Author
Publisher
Pages
Release 2010
Genre
ISBN

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PNNL-18938 Revision Radiation portal monitors used for interdiction of illicit materials at borders include highly sensitive neutron detection systems. The main reason for having neutron detection capability is to detect fission neutrons from plutonium. The currently deployed radiation portal monitors (RPMs) from Ludlum and Science Applications International Corporation (SAIC) use neutron detectors based upon 3He-filled gas proportional counters, which are the most common large neutron detector. There is a declining supply of 3He in the world, and thus, methods to reduce the use of this gas in RPMs with minimal changes to the current system designs and sensitivity to cargo-borne neutrons are being investigated. Four technologies have been identified as being currently commercially available, potential alternative neutron detectors to replace the use of 3He in RPMs. Reported here are the results of tests of a newly designed boron-lined proportional counter option. This testing measured the neutron detection efficiency and gamma ray rejection capabilities of two successive prototypes of a system manufactured by GE Reuter Stokes.

Boron-Lined Multichamber and Conventional Neutron Proportional Counter Tests

Boron-Lined Multichamber and Conventional Neutron Proportional Counter Tests
Title Boron-Lined Multichamber and Conventional Neutron Proportional Counter Tests PDF eBook
Author
Publisher
Pages
Release 2010
Genre
ISBN

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Radiation portal monitors used for interdiction of illicit materials at borders include highly sensitive neutron detection systems. The main reason for having neutron detection capability is to detect fission neutrons from plutonium. The currently deployed radiation portal monitors (RPMs) from Ludlum and Science Applications International Corporation (SAIC) use neutron detectors based upon 3He-filled gas proportional counters, which are the most common large neutron detector. There is a declining supply of 3He in the world, and thus, methods to reduce the use of this gas in RPMs with minimal changes to the current system designs and sensitivity to cargo-borne neutrons are being investigated. Four technologies have been identified as being currently commercially available, potential alternative neutron detectors to replace the use of 3He in RPMs. These technologies are: 1) Boron trifluoride (BF3)-filled proportional counters, 2) Boron-lined proportional counters, 3) Lithium-loaded glass fibers, and 4) Coated non-scintillating plastic fibers. In addition, a few other companies have detector technologies that might be competitive in the near term as an alternative technology. Reported here are the results of tests of a boron-lined, multichamber proportional counter manufactured by LND, Inc. Also reported are results obtained with an earlier design of conventional, boron-lined, proportional counters from LND. This testing measured the required performance for neutron detection efficiency and gamma-ray rejection capabilities of the detectors.

Full Scale Coated Fiber Neutron Detector Measurements

Full Scale Coated Fiber Neutron Detector Measurements
Title Full Scale Coated Fiber Neutron Detector Measurements PDF eBook
Author
Publisher
Pages
Release 2010
Genre
ISBN

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Radiation portal monitors used for interdiction of illicit materials at borders include highly sensitive neutron detection systems. The main reason for having neutron detection capability is to detect fission neutrons from plutonium. The currently deployed radiation portal monitors (RPMs) from Ludlum and Science Applications International Corporation (SAIC) use neutron detectors based upon 3He-filled gas proportional counters, which are the most common large neutron detector. There is a declining supply of 3He in the world, and thus, methods to reduce the use of this gas in RPMs with minimal changes to the current system designs and sensitivity to cargo-borne neutrons are being investigated. Four technologies have been identified as being currently commercially available, potential alternative neutron detectors to replace the use of 3He in RPMs. These technologies are: 1) Boron trifluoride (BF3)-filled proportional counters, 2) Boron-lined proportional counters, 3) Lithium-loaded glass fibers, and 4) Coated non-scintillating plastic fibers. Reported here are the results of tests of the full-scale 6Li/ZnS(Ag)-coated non-scintillating plastic fibers option. This testing measured the required performance for neutron detection efficiency and gamma ray rejection capabilities of a system manufactured by Innovative American Technology (IAT) and Saint Gobain, and is a follow-up report to an earlier one on a smaller prototype system.

Boron-Lined Multitube Neutron Proportional Counter Test

Boron-Lined Multitube Neutron Proportional Counter Test
Title Boron-Lined Multitube Neutron Proportional Counter Test PDF eBook
Author
Publisher
Pages
Release 2010
Genre
ISBN

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Radiation portal monitors used for interdiction of illicit materials at borders include highly sensitive neutron detection systems. The main reason for having neutron detection capability is to detect fission neutrons from plutonium. The currently deployed radiation portal monitors (RPMs) from Ludlum and Science Applications International Corporation (SAIC) use neutron detectors based upon 3He-filled gas proportional counters, which are the most common large neutron detector. There is a declining supply of 3He in the world, and thus, methods to reduce the use of this gas in RPMs with minimal changes to the current system designs and sensitivity to cargo-borne neutrons are being investigated. Four technologies have been identified as being currently commercially available, potential alternative neutron detectors to replace the use of 3He in RPMs. These technologies are: 1) Boron trifluoride (BF3)-filled proportional counters, 2) Boron-lined proportional counters, 3) Lithium-loaded glass fibers, and 4) Coated non-scintillating plastic fibers. In addition, a few other companies have detector technologies that might be competitive in the near term as an alternative technology. Reported here are the results of tests of a boron-lined,?multitube? proportional counter manufactured by Centronic Ltd. (Surry, U.K. and Houston, TX). This testing measured the required performance for neutron detection efficiency and gamma-ray rejection capabilities of the detector.

Literature Search on Neutron Detectors

Literature Search on Neutron Detectors
Title Literature Search on Neutron Detectors PDF eBook
Author Frances L. Sachs
Publisher
Pages 82
Release 1951
Genre Neutrons
ISBN

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Evaluation of a Boron-lined Neutron Detector

Evaluation of a Boron-lined Neutron Detector
Title Evaluation of a Boron-lined Neutron Detector PDF eBook
Author B. M. Van der Ende
Publisher
Pages
Release 2014
Genre
ISBN

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Neutron Fluctuation Measurements at Oak Ridge National Laboratory

Neutron Fluctuation Measurements at Oak Ridge National Laboratory
Title Neutron Fluctuation Measurements at Oak Ridge National Laboratory PDF eBook
Author
Publisher
Pages 25
Release 1966
Genre
ISBN

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