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Estimation of radon risk exposure in selected underground workplaces in the Sudetes (southern Poland)

机译:在Sudetes(波兰南部)选定的地下工作场所中进行ra风险评估

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The risk of exposure to increased ionizing radiation from radon was assessed for two groups of people who spend time, either for work (employees serving these visitors, mainly guides) or leisure (members of the public – visitors), in underground tourist facilities: Bear Cave in Kletno, the Gold Mine complex in Z?oty Stok and the Underground Educational Tourist Route in the Old Uranium Mine in Kletno. These facilities had been chosen due to their location within the Sudetes, the most radon–prone area in Poland, and because of continuous radon activity concentration measurements conducted there since May 2008 to the end of January 2012. The selected facilities also meet the criteria for a radiation hazard workplace set by Polish law. The annual limit of the effective ionizing radiation dose allowed for employees in Poland, which is 20mSv/year, is exceeded for guides working in all the facilities. Also, according to Polish radiological protection regulations, their working conditions qualify them as exposed workers of category A or B. After a month's work, guides receive the annual effective radiation dose allowed for category B workers (>1mSv/year) and after a few months – an annual effective radiation dose allowed for people employed in category A conditions (>6mSv/year). Members of the public spending no longer than one hour inside each facility are at risk of receiving small effective radiation doses, ranging from 0.001 to 0.2mSv/h.
机译:对在地下旅游设施中花费时间的两组人进行了评估,以暴露于ra气中增加的电离辐射的风险,这些人在工作中(为这些访客服务的雇员,主要是导游)或在公共旅游者中休闲(公众人士–访客): Kletno的洞穴,Z?oty Stok的金矿综合体和Kletno的旧铀矿的地下教育旅游路线。之所以选择这些设施,是因为它们位于波兰最易发生don气的地区Sudetes内,并且由于自2008年5月至2012年1月底在那里进行的连续ra活度浓度测量。所选择的设施还符合波兰法律规定的辐射危害工作场所。在所有设施中工作的向导都超过了波兰员工允许的有效电离辐射剂量的年度上限,即每年20mSv。另外,根据波兰的放射防护法规,他们的工作条件使他们有资格成为A类或B类暴露工人。工作一个月后,导游会获得B类工人允许的年度有效辐射剂量(> 1mSv /年),并且经过几次月–允许在A类条件下工作的人员的年度有效辐射剂量(> 6mSv /年)。在每个设施内花费不超过一小时的公共成员有受到小的有效辐射剂量的危险,辐射剂量范围为0.001至0.2mSv / h。

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