Almayahi B A, Tajuddin A A, Jaafar M S
School of Physics, Universiti Sains Malaysia, 11800 USM, Penang, Malaysia.
Appl Radiat Isot. 2012 Nov;70(11):2652-60. doi: 10.1016/j.apradiso.2012.07.021. Epub 2012 Aug 4.
The radioactivity quantity and quality were determined in soil and water samples in Northern Malaysian Peninsula (NMP) using HPGe spectroscopy and GR-135 spectrometer. The (226)Ra, (232)Th and (40)K concentrations in soil samples are 57±2, 68±4 and 427±17 Bq kg(-1), respectively, whereas in water samples were found to be 2.86±0.79, 3.78±1.73 and 152±12 Bq l(-1), respectively. These concentrations are within those reported from literature in other countries in the world. The radiological hazard indices of the samples were also calculated. The mean values obtained from soil samples are 186 Bq kg(-1), 88 nGy h(-1), 108 μSv y(-1), 0.50 and 0.65 for Radium Equivalent Activity (Ra(eq)), Absorbed Dose Rates (D(R)), Annual Effective Dose Rates (ED), External Hazard Index (H(ex)) and Internal Hazard Index (H(in)) respectively, whereas, for water samples were found to be 20, 10, 13, 0.05 and 0.06, respectively. All the health hazard indices are well below their recommended limits, except in two soil sampling sites which were found to be ()025 (1.1 H(ex)) and ()026 (1.1 H(ex), 1.6 H(in)). The calculated and the measured gamma dose rates had a good correlation coefficient, R=0.88. Moreover, the average value radon is 20 (in the range of 7-64) Bq m(-3), a positive correlation (R=0.81) was observed between the (222)Rn and (226)Ra concentrations in samples measured by the SNC continuous radon monitor (model 1029, Sun Nuclear Corporation) and HPGe detector, respectively. Some soils in this study with H(in) and H(ex)<1 are suitable for use in agriculture and as building materials. Also, in this study H(in) and H(ex)<1 for water samples, therefore, water after processing and filtration is safe and suitable for use in household and industrial purposes.
使用高纯锗光谱仪和GR - 135光谱仪测定了马来西亚半岛北部(NMP)土壤和水样中的放射性数量和质量。土壤样品中镭 - 226、钍 - 232和钾 - 40的浓度分别为57±2、68±4和427±17 Bq kg⁻¹,而水样中的浓度分别为2.86±0.79、3.78±1.73和152±12 Bq l⁻¹。这些浓度在世界其他国家文献报道的范围内。还计算了样品的放射性危害指数。土壤样品的镭当量活度(Ra(eq))平均值为186 Bq kg⁻¹、吸收剂量率(D(R))为88 nGy h⁻¹、年有效剂量率(ED)为108 μSv y⁻¹、外照射危害指数(H(ex))为0.50、内照射危害指数(H(in))为0.65,而水样的相应值分别为20, 10, 13, 0.05和0.06。除了两个土壤采样点(分别为()025(1.1 H(ex))和()026(1.1 H(ex),1.6 H(in)))外,所有健康危害指数均远低于推荐限值。计算得到的伽马剂量率与测量值具有良好的相关系数,R = 0.88。此外,氡的平均值为20(范围为7 - 64)Bq m⁻³,分别通过SNC连续氡监测仪(型号1029,太阳核公司)和高纯锗探测器测量的样品中,镭 - 222和镭 - 226浓度之间存在正相关(R = 0.81)。本研究中一些内照射危害指数和外照射危害指数小于1的土壤适合用于农业和作为建筑材料。此外,本研究中水样的内照射危害指数和外照射危害指数小于1,因此,经过处理和过滤后的水是安全的,适合家庭和工业使用。