[1] Johnson NC, Manchester S, Sarin L, et al. Mercury vapor release from broken compact fluorescent lamps and in situ capture by new nanomaterial sorbents. Environ Sci Technol, 2008; 42, 5772−8. doi:  10.1021/es8004392
[2] Jang M, Hong SM, Park JK. Characterization and recovery of mercury from spent fluorescent lamps. Waste Manage, 2005; 25, 5−14. doi:  10.1016/j.wasman.2004.09.008
[3] Tunsu C, Retegan T, Ekberg C. Sustainable processes development for recycling of fluorescent phosphorous powders–rare earths and mercury separation. Chalmers University of Technology, Sweden, 2012; 4, 7, 8, 11.
[4] Gul N, Khan S, Khan A, et al. Mercury health effects among the workers extracting gold from carpets and dusted clays through amalgamation and roasting processes. Environ Sci Pollut Res, 2015; 22, 17965−74. doi:  10.1007/s11356-015-4952-2
[5] Karagas M, Choi AL, Oken E, et al. Evidence on the human health effects of low level methylmercury exposure. Environ health perspect, 2012; 120, 799−806. doi:  10.1289/ehp.1104494
[6] Marcinek-Jacel M, Albinska J, Pawlaczyk A, et al. The impact of demographic factors, behaviors and environmental exposure to mercury content in the hair of the population living in the region of Lodz (central Poland). Environ Toxicol Pharmaco, 2017; 55, 196−201. doi:  10.1016/j.etap.2017.09.001
[7] Park JD, Zheng W. Human exposure and health effects of inorganic and elemental mercury. J Prev Med Public Health, 2012; 45, 344−52. doi:  10.3961/jpmph.2012.45.6.344
[8] Zhang L, Wong M. Environmental mercury contamination in China: sources and impacts. Environ Int, 2007; 33, 108−21. doi:  10.1016/j.envint.2006.06.022
[9] Zahir F, Rizwi SJ, Haq SK, et al. Low dose mercury toxicity and human health. Environ Toxicol Pharmacol, 2005; 20, 351−60. doi:  10.1016/j.etap.2005.03.007
[10] Abdel-Rasul GM, Abu-Salem MA, Al-Batanony MA, et al. Neurobehavioral, respiratory, and auditory disorders among mercury-exposed fluorescent lamp workers. Menoufia Med J, 2013; 26, 58−62.
[11] Al-Batanony MA, Abdel-Rasul G, Abu-Salem M, et al. Occupational exposure to mercury among workers in a fluorescent lamp factory, Quisna industrial zone, Egypt. Int J Occup Environ Med, 2013; 4, 149−56.
[12] Crump KL, Trudeau VL. Mercury-induced reproductive impairment in fish. Environ Toxicol Chem, 2009; 28, 895−907. doi:  10.1897/08-151.1
[13] Rossini SR, Reimao R, Lefevre BH, et al. Chronic insomnia in workers poisoned by inorganic mercury: psychological and adaptive aspects. Arq Neuro Psiquiat, 2000; 58, 32−8. doi:  10.1590/S0004-282X2000000100005
[14] Fawer R, Ribaupierre Y, Guillemin M, et al. Measurement of hand tremor induced by industrial exposure to metallic mercury. Br J Ind Med, 1983; 40, 204−8.
[15] Verberk MM, Salle HJ, Kemper CH. Tremor in workers with low exposure to metallic mercury. Am Ind Hyg Asso J, 1986; 47, 559−62. doi:  10.1080/15298668691390232
[16] Pan S, Lin L, Zeng F, et al. Effects of lead, cadmium, arsenic, and mercury co-exposure on children's intelligence quotient in an industrialized area of southern China. Environ Pollut, 2018; 235, 47−54. doi:  10.1016/j.envpol.2017.12.044
[17] WMA. WMA declaration of Helsinki—ethical principles for medical research involving human subjects. 64th World Medical Association General Assembly, Fortaleza, Brazil, 2013. https://www.wma.net/policies-post/wma-declaration-of-helsinki-ethical-principles-for-medical-research-involving-human-subjects/ [2019-1-30].
[18] Sakamoto M, Murata K, Kubota M, et al. Mercury and heavy metal profiles of maternal and umbilical cord RBCs in Japanese population. Ecotoxicol Environ Saf, 2010; 73, 1−6. doi:  10.1016/j.ecoenv.2009.09.010
[19] Vahter M, Åkesson A, Lind B, et al. Longitudinal study of methylmercury and inorganic mercury in blood and urine of pregnant and lactating women, as well as in umbilical cord blood. Environ. Res, 2000; 84, 186−94. doi:  10.1006/enrs.2000.4098
[20] Harada M, Nakachi S, Cheu T, et al. Monitoring of mercury pollution in Tanzania: relation between head hair mercury and health. Sci Total Environ, 1999; 227, 249−56. doi:  10.1016/S0048-9697(99)00031-5
[21] Sahu R, Saxena P, Johnson S, et al. Mercury pollution in the Sonbhadra district of Uttar Pradesh, India, and its health impacts. Toxicol. Environ Chem, 2014; 96, 1−12. doi:  10.1080/02772248.2014.918464
[22] Zolfaghari G, Esmaili-Sari A, Ghasempouri SM, et al. Evaluation of environmental and occupational exposure to mercury among Iranian dentists. Sci. Total Environ, 2007; 381, 59−67. doi:  10.1016/j.scitotenv.2007.03.007
[23] Sakamoto M, Man Chan H, Domingo JL, et al. Changes in body burden of mercury, lead, arsenic, cadmium and selenium in infants during early lactation in comparison with placental transfer. Ecotoxicol Environ Saf, 2012; 84, 179−84. doi:  10.1016/j.ecoenv.2012.07.014
[24] Berglund M, Lind B, Björnberg KA, et al. Inter-individual variations of human mercury exposure biomarkers: a cross-sectional assessment. Environ Health, 2005; 4, 20. doi:  10.1186/1476-069X-4-20
[25] Levy M, Schwartz S, Dijak M, et al. Childhood urine mercury excretion: dental amalgam and fish consumption as exposure factors. Environ Res, 2004; 94, 283−90. doi:  10.1016/j.envres.2003.07.004
[26] Yan J, Gao ZY, Wang J, et al. Hair mercury levels and their relationship with seafood consumption among preschool children in Shanghai. Biomed Environ Sci, 2017; 30, 220−3.
[27] Mortada WI, Sobh MA, El-Defrawy MM, et al. Reference intervals of cadmium, lead, and mercury in blood, urine, hair, and nails among residents in Mansoura city, Nile delta. Egypt Environ Res, 2002; 90, 104−10. doi:  10.1006/enrs.2002.4396
[28] Montuori P, Jover E, Díez S, et al. Mercury speciation in the hair of pre-school children living near a chlor-alkali plant. Sci Total Environ, 2009; 369, 51−8.
[29] Jung SA, Chung D, On J, et al. Correlation Between Total Mercury and Methyl Mercury-In Whole Blood of South Korean. Bull Korean Chem Soc, 2013; 34, 1101−7. doi:  10.5012/bkcs.2013.34.4.1101
[30] Li P, Feng X, Shang L, et al. Human co-exposure to mercury vapor and methylmercury in artisanal mercury mining areas, Guizhou, China. Ecotoxicol Environ Saf, 2011; 74, 473−9. doi:  10.1016/j.ecoenv.2010.10.030
[31] Sakamoto M, Feng X, Li P, et al. High exposure of Chinese mercury mine workers to elemental mercury vapor and increased methylmercury levels in their hair. Environ. Health Prev Med, 2007; 12, 66−70. doi:  10.1007/BF02898151
[32] Dye B, Schober S, Dillon C, et al. Urinary mercury concentrations associated with dental restorations in adult women aged 16–49 years: United States, 1999–2000. Occup Environ Med, 2005; 62, 368−75. doi:  10.1136/oem.2004.016832
[33] Nuttall KL. Interpreting mercury in blood and urine of individual patients. Ann Clin Lab Sci, 2004; 34, 235−50.
[34] Río-Segade S, Bendicho C. Selective reduction method for separate determination of inorganic and total mercury in mussel tissue by flow-injection cold vapor technique. Ecotoxicol Environ Saf, 1999; 42, 245−52. doi:  10.1006/eesa.1998.1753
[35] Barbosa A, Jardim W, Dorea J, et al. Hair mercury speciation as a function of gender, age, and body mass index in inhabitants of the Negro River basin, Amazon, Brazil. Arch Environ Contam Toxicol, 2001; 40, 439−44. doi:  10.1007/s002440010195
[36] Gul N, Khan S, Khan A, et al. Quantification of Hg excretion and distribution in biological samples of mercury-dental-amalgam users and its correlation with biological variables. Environ Sci Pollut Res, 2016; 12, 20585−90.
[37] Bjorkman L, Lundekvam BF, Lægreid T, et al. Mercury in human brain, blood, muscle and toenails in relation to exposure: an autopsy study. Environ Health, 2007; 6, 30. doi:  10.1186/1476-069X-6-30
[38] Višnjevec AM, Kocman D, Horvat M. Human mercury exposure and effects in Europe. Environ Toxicol Chem, 2014; 33, 1259−70. doi:  10.1002/etc.2482
[39] Obiri S, Dodoo D, Armah F, et al. Evaluation of lead and mercury neurotoxic health risk by resident children in the Obuasi municipality, Ghana. Environ. Toxicol Pharmacol, 2010; 29, 209−12. doi:  10.1016/j.etap.2010.01.001
[40] Pigatto PD, Costa A, Guzzi G. Are mercury and Alzheimer's disease linked? Sci Total Environ, 2018; 613, 1579−80.
[41] Orr SE, Bridges CC. Chronic Kidney Disease and Exposure to Nephrotoxic Metals. Int J Mol Sci, 2017; 18, 1−35.
[42] Li P, Feng X, Qiu G, et al. Mercury exposures and symptoms in smelting workers of artisanal mercury mines in Wuchuan, Guizhou, China. Environ Res, 2008; 107, 108−14. doi:  10.1016/j.envres.2007.08.003
[43] Darvishi E, Assari MJ, Farhadian M, et al. Occupational exposure to mercury vapor in a compact fluorescent lamp factory: Evaluation of personal, ambient air, and biological monitoring. Toxicol Ind Health, 2019; 35, 304−13. doi:  10.1177/0748233719831531
[44] Gonzalez-Merizalde MV, Menezes-Filho JA, Cruz-Erazo CT, et al. Manganese and mercury levels in water, sediments, and children living near gold-mining areas of the Nangaritza River basin, Ecuadorian Amazon. Arch Environ Contam Toxicol, 2016; 71, 171−82.
[45] Gonzalez-Merizalde MV, Menezes-Filho JA, Cruz-Erazo CT, et al. Manganese and mercury levels in water, sediments, and children living near gold-mining areas of the Nangaritza River basin, Ecuadorian Amazon. Arch Environ Contam Toxicol, 2016; 71, 171−82. doi:  10.1007/s00244-016-0285-5
[46] Hagan N, Robins N, Hsu-Kim H, et al. Mercury hair levels and factors that influence exposure for residents of Huancavelica, Peru. Environ Geochem Health, 2015; 37, 507−14. doi:  10.1007/s10653-014-9665-9
[47] Díez S, Esbri JM, Tobias A, et al. Determinants of exposure to mercury in hair from inhabitants of the largest mercury mine in the world. Chemosphere, 2011; 84, 571−7. doi:  10.1016/j.chemosphere.2011.03.065
[48] Barbieri FL, Cournil A, Gardon J. Mercury exposure in a high fish eating Bolivian Amazonian population with intense small-scale gold-mining activities. Int J Environ Health Res, 2009; 19, 267−77. doi:  10.1080/09603120802559342
[49] Elgazali AA, Gajdosechova Z, Abbas Z, et al. Reactive gaseous mercury is generated from chloralkali factories resulting in extreme concentrations of mercury in hair of workers. Sci Rep, 2018; 8, 3675. doi:  10.1038/s41598-018-20544-5
[50] Esmaeili SA, Zolfaghari G, Ghasempouri S. Effect of age, gender, years of practice, specialty and number of amalgam restorations on mercury concentration in nails of dentists practicing in Tehran. JIDA, 2007; 19, 97−104.
[51] De Kom JF, Van der Voet GB, de Wolff FA. Mercury exposure of maroon workers in the small scale gold mining in Suriname. Environ Res, 1998; 77, 91−7. doi:  10.1006/enrs.1998.3835
[52] Hassett-Sipple B, Swartout J, Schoeny R. Mercury study report to Congress. Volume 5. Health effects of mercury and mercury compounds: Environmental Protection Agency, 1997; Research Triangle Park, NC. United States.
[53] Wilson E, Lafferty JS, Thiboldeaux R, et al. Occupational mercury exposure at a fluorescent lamp recycling facility—Wisconsin. Morb. Mortal. Wkly Rep, 2017; 67, 763−6.
[54] Hassett-Sipple B, Swartout J, Schoeny R. Mercury study report to Congress. Volume 5. Health effects of mercury and mercury compounds: Environmental Protection Agency, 1997; Research Triangle Park, NC. United States.
[55] Aymaz S, Grob O, Krakamp B, et al. Membranous nephropathy from exposure to mercury in the fluorescent-tube-recycling industry. Nephrol Dial Transplant, 2001; 16, 2253−5. doi:  10.1093/ndt/16.11.2253