[1] Medhat M E. Assessment of radiation hazards due to natural radioactivity in some building materials used in Egyptian dwellings [J]. Radiation Protection Dosimetry, 2009, 133 (3): 177-185. [2] Trevisi R, Leonardi F, Risica S, et al. Updated database on natural radioactivity in building materials in Europe [J]. Journal of Environmental Radioactivity, 2018, 187: 90-105. [3] 王南萍. 中国天然石材放射性水平及影响因素[J]. 辐射防护通讯, 2001, 21(3): 22-24. WANG Nanping. Radioactivity levels in natural rocks and affecting factors [J]. Radiation Protection Bulletin,2001,21(3):22-24. [4] 王强, 何林锋, 卓维海. 装饰装修用石材放射性水平评价方法研究进展[J]. 中国辐射卫生, 2013, 22(6): 766-768. WANG Qiang, HE Linfeng, ZHUO Weihai. Progress on assessment method of radioactive level in stone materials used for decoration [J]. Chinese Journal of Radiological Health, 2013, 22(6): 766-768. [5] 潘自强. 我国天然辐射水平和控制中一些问题的讨论 [J]. 辐射防护, 2001, 21(5): 257-268. PAN Ziqiang. Some issues regarding natural radiation level and control in China [J].RadiationProtection, 2001,21(5):257-268. [6] CHENG J P, KANG K J, LI J M, et al. The China Jinping underground laboratory and its early science [J]. Annual Review of Nuclear and Particle Science, 2017, 67(1): 231-251. [7] 余克服, 张光学, 汪稔. 南海珊瑚礁:从全球变化到油气勘探——第三届地球系统科学大会专题评述 [J]. 地球科学进展, 2014, 29(11): 1287-1293. YU Kefu, ZHANG Guangxue, WANG Ren.Studies on the coral reefs of the South China Sea: From Global Change to Oil-Gas Exploration [J]. Advances in Earth Science,2014, 29(11): 1287-1293. [8] 李伟峰, 管娟, 马素花, 等. 海砂、珊瑚礁在海拌海养混凝土生产中的应用 [J]. 混凝土, 2016,(5): 148-152. LI Weifeng, GUAN Juan, MA Suhua, et al. Application of sea sand and coral reefs in the production of concrete mixed with seawater[J]. Concrete, 2016,(5): 148-152. [9] 王磊,范蕾. 珊瑚碎屑混凝土的强度特性及破坏形态分析 [J]. 混凝土与水泥制品, 2015,(1): 1-4. WANG Lei, FAN Lei. Strength characteristics and failure pattern of coral-based concrete [J].China Concrete and Products, 2015,(1): 1-4. [10] LIN W, YU K, WANG Y, et al. Radioactive level of coral reefs in the South China Sea [J]. Marine Pollution Bulletin, 2019, 142: 43-53. [11] 林武辉, 余克服, 王英辉, 等. 罕见的地表低辐射水平区域:珊瑚礁区 [J]. 辐射防护, 2018, 38(4): 287-292. LIN Wuhui,YU Kefu, WANG Yinghui, et al.Unusual low radiation area on the surface of the earth: coral reefs[J]. Radiation Protection, 2018, 38(4): 287-292. [12] 林武辉, 余克服, 王英辉, 等.珊瑚礁区沉积物的极低放射性水平特征与成因 [J]. 科学通报, 2018, 63(21): 2173-2183. LIN Wuhui,YU Kefu, WANG Yinghui, et al. Extremely low radioactivity in marine sediment of coral reefs and its mechanism[J]. Chinese Science Bulletin, 2018, 63(21): 2173-2183. [13] 中华人民共和国国家质量监督检验检疫总局, 中国国家标准化管理委员会. 建筑材料放射性核素限量:GB 6566—2010[S].北京:中国标准出版社,2010. [14] NEA-OECD. Exposure to radiation from natural radioactivity in building materials[R]. NEA Group of Experts of the Nuclear Energy Agency, OECD: Paris, France,1979. [15] Beretka J, Matthew P J. Natural radioactivity of Australian building materials, industrial wastes and by-products [J]. Health Physics, 1985, 48(1): 87-95. [16] UNSCEAR. Sources, effects of ionizing radiation [M]∥Report to the General Assembly with annex B. United Nations: New York,2000. [17] 路克平, 王军, 赵桂玲, 等. 常用建筑材料放射性水平测定及室内γ辐射剂量估算 [J]. 中国辐射卫生, 2001, 10(1): 32-33. LU Keping, WANG Jun, ZHAO Guiling, et al. Measurement of radioactive level of building materials and evaluation of γ-radiation dose indoors [J]. Chinese Journal of Radiological Health, 2001, 10(1): 32-33. [18] 李龙才. 石煤灰渣建材辐射环境影响评价[J]. 中国辐射卫生, 2016, 25(1): 40-43. LI Longcai. The assessment of radiological pollution from the building materials fabricated by ashes of bone-coal [J]. Chinese Journal of Radiological Health, 2016, 25(1): 40-43. [19] 刘振亚.中国电力行业年度发展报告[M] .北京: 中国市场出版社, 2011. [20] 宋卫杰, 陈凌, 潘自强, 等.中国燃煤火电煤灰渣在主体墙材中利用所致居民剂量估算 [J]. 辐射防护, 2018, 38(4): 300-307. SONG Weijie, CHEN Ling, PAN Ziqiang, et al. Assessment of radiation dose to inhabitants from coal ash in main wall material in China [J]. Radiation Protection, 2018, 38(4): 300-307. [21] 王信福. 关于矿渣对水泥放射性影响的探析 [J]. 水泥技术, 2005,(4): 83-84. WANG Xinfu. Slag radioactive influence on cement property [J]. Cement Technology, 2005,(4): 83-84. |