Radiation protection instrumentation. Installed personnel surface contamination monitoring assemblies

2015 ◽  
Author(s):  
Akinlade Bidemi I. ◽  
Kelani Sherif O.

Introduction: Observing radiation protection and safety culture in radiation practices reduce radiation exposure and the probability of radiation risk to workers, patients and the general public. This study assesses the radiation protection and safety practice at the pioneer Nuclear Medicine Centre in Nigeria, University College Hospital (UCH), Ibadan. This assessment involves measurements of dose rate and surface contamination in the hot laboratory, injection and patient’s isolated rooms and compares their values with international recommended limits. Materials and Methods: Measurements of radiation doses and surface contamination in the controlled areas were carried out using three different high-sensitive and calibrated radiation detectors namely Ultra Radiac (model MRAD 1010), Ludlum (model 2241-3/44-9) and Redeye (model PRD). Results: The dose rate values in the controlled areas monitored ranged from 0.103 to 0.430 µGy/h while the effective doses calculated from these values ranged from 0.2 to 0.86 mSv per annum. This is far less than the recommended dose limit of 20 mSv per annum for radiation worker, who usually worked in these areas. Also, the surface contamination values obtained in these areas ranged from 0.060 to 2.867 Bq/cm2, which is similarly less than the recommended limit of 10 Bq/cm2. Conclusion: These results showed that the centre has a wide range of compliance with radiation safety practice according to the acceptable standards guided by the Nigerian Nuclear Regulatory Authority and International regulations.


Author(s):  
G. R. Liebenberg ◽  
A. L. Visagie

Like many other countries, South Africa embarked on a project involving the development of depleted uranium armour piercing ammunition during the 1980’s. Several weapon systems were tested on two proof ranges in the Northern Cape region of South Africa. These tests were conducted up to 1989 when a decision was taken to terminate the project. NECSA was contracted for the radiological clean up of these sites contaminated with depleted uranium (DU), which became a priority since 1997. The project, which was completed in 2002, was a first of its kind in South Africa and, even internationally, a unique operation. A phased approach was followed for the preparatory and clean-up activities. The first part of the presentation covers the development and planning phases of the project with particular reference to: • Introduction and typical radiological characteristics of depleted uranium weapons proof ranges. • Problem definition – extent of site contamination and site characteristics. • Development of the clean-up strategy for the sites. The second part of the presentation covers the various phases implemented for the clean up of the respective sites with specific reference to the on-site operations and methodology, radiation protection control measures, problems encountered and findings during various phases of the operation. The respective clean-up phases were the following: • Removal of surface contamination. This meant collection of objects from the surfaces of the strata identified in the radiological surveys performed on the respective sites. • Extended surface clean-up operation. This operation became eminent after a report, modelling trajectory paths, indicated that DU fragments could be expected outside the areas covered by the original site surveys. An area of ± 6 million m2 was covered by the extended clean up operation. • Contaminated metal clean-up operation. Metal target plates contaminated with entrapped uranium penetrators or layers of surface contamination had to be processed and removed from the sites. • Volume reduction by performing the following steps: * Collection of contaminated soil from the identified strata. A total of ± 35000-m3 soil was collected and stockpiled during this operation on the respective sites. * Mechanical screening of the collected soil to fractionate the DU penetrator remains into different size fractions. * Radiological screening of the soil containing the various size fractions to remove the uranium metal particles. • Radioactive waste management. The contaminated material and DU had to be removed from the sites and disposed of. Various routes were employed to execute this phase. • Materials and site clearance. Throughout each phase of the total clean-up operation radiation protection control measures were implemented based on prospective hazard assessments. The measures were further applied in such a way as to minimize exposures. At no stage did the actual exposures exceed the exposures estimated for each phase. The project was finally completed and cleared by the National Nuclear Regulator in July 2002.


2020 ◽  
Author(s):  
S. Economides ◽  
C.J. Hourdakis ◽  
C. Pafilis ◽  
G. Simantirakis ◽  
P. Tritakis ◽  
...  

This paper concerns an analysis regarding the performance of X-ray equipment as well as the radiological safety in veterinary facilities. Data were collected from 380 X-ray veterinary facilities countrywide during the on-site regulatory inspections carried out by the Greek Atomic Energy Commission. The analysis of the results shows that the majority of the veterinary radiographic systems perform within the acceptable limits; moreover, the design and shielding of X-ray rooms as well as the applied procedures ensure a high level of radiological safety for the practitioners, operators and the members of the public. An issue that requires specific attention in the optimization process for the proper implementation of veterinary radiology practices in terms of radiological safety is the continuous training of the personnel. The above findings and the regulatory experience gained were valuable decision-making elements regarding the type of the regulatory control of veterinary radiology practices in the new radiation protection framework.


2002 ◽  
Vol 41 (06) ◽  
pp. 245-251 ◽  
Author(s):  
M. Knietsch ◽  
T. Spillmann ◽  
E.-G. Grünbaum ◽  
R. Bauer ◽  
M. Puille

SummaryAim: Establishment of radioiodine treatment of feline hyperthyroidism in veterinary routine in accordance with German radiation protection regulations. Patients and methods: 35 cats with proven hyperthyroidism were treated with 131I in a special ward. Thyroid uptake and effective halflife were determined using gammacamera dosimetry. Patients were released when measured whole body activity was below the limit defined in the German “Strahlenschutzverordnung”. Results: 17/20 cats treated with 150 MBq radioiodine and 15/15 cats treated with 250 MBq had normal thyroid function after therapy, normal values for FT3 and FT4 were reached after two and normal TSH levels after three weeks. In 14 cats normal thyroid function was confirmed by controls 3-6 months later. Thyroidal iodine uptake was 24 ± 10%, effective halflife 2.5 ± 0.7 days. Whole body activity <1 MBq was reached 13 ± 4 days after application of 131I. Radiation exposure of cat owners was estimated as 1.97 Sv/MBq for adults. Conclusion: Radioiodine therapy of feline hyper-thyroidism is highly effective and safe. It can easily be performed in accordance with German radiation protection regulations, although this requires hospitalisation for approximately two weeks. Practical considerations on radiation exposure of cat owners do not justify this long interval. Regulations for the veterinary use of radioactive substances similar to existing regulations for medical use in humans are higly desirable.


2002 ◽  
Author(s):  
M. Hoover ◽  
M. McCawley ◽  
D. Yereb ◽  
S. Tinkle ◽  
S. Beaton ◽  
...  

1985 ◽  
Author(s):  
M. Bamberg ◽  
D. van Beuningen ◽  
W. Gössner ◽  
Friedrich Heuck ◽  
H. Jung ◽  
...  

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