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Geochemistry. Группа авторовЧитать онлайн книгу.

Geochemistry - Группа авторов


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      59. Hseu, Z.Y. and Lai, Y.J., Nickel accumulation in paddy rice on serpentine soils containing high geogenic nickel contents in Taiwan. Environ. Geochem. Health, 39, 6, 1325–1334, 2017.

      61. Martiniaková, M., Omelka, R., Jančová, A., Stawarz, R., Formicki, G., Concentrations of selected heavy metals in bones and femoral bone structure of bank (Myodes glareolus) and common (Microtus arvalis) voles from different polluted biotopes in Slovakia. Arch. Environ. Contam. Toxicol., 60, 3, 524–532, 2011.

      62. Azam, I., Afsheen, S., Zia, A., Javed, M., Saeed, R., Sarwar, M.K., Munir, B., Evaluating insects as bioindicators of heavy metal contamination and accumulation near industrial area of Gujrat, Pakistan. BioMed Res. Int., 942751, 1–11, https://doi.org/10.1155/2015/942751, 2015.

      63. Kouřimská, L. and Adámková, A., Nutritional and sensory quality of edible insects. NFS J., 4, 22–26, 2016.

      64. Kamp, D.W., Asbestos-induced lung diseases: an update. Transl. Res., 153, 4, 143–152, 2009.

      65. Boulanger, G., Andujar, P., Pairon, J.C., Billon-Galland, M.A., Dion, C., Dumortier, P., Brochard, P., Sobaszek, A., Bartsch, P., Paris, C., Jaurand, M.C., Quantification of short and long asbestos fibers to assess asbestos exposure: a review of fiber size toxicity. Environ. Health, 13, 1, 59, http://www.ehjournal.net/content/13/1/59, 2014.

      66. Røe, O.D. and Stella, G.M., Malignant Pleural Mesothelioma: History, Controversy, and Future of a Man-Made Epidemic, in: Asbestos and Mesothelioma, pp. 73–101, Springer, Chatham, 2017.

      67. Bernstein, D.M., Rogers, R., Smith, P., The biopersistence of Canadian chrysotile asbestos following inhalation: final results through 1 year after cessation of exposure. Inhalation Toxicol., 17, 1, 1–14, 2005.

      68. Hodgson, J.T. and Darnton, A., Mesothelioma risk from chrysotile. Comment on “Lung cancer mortality and fibre exposures among North Carolina asbestos textile workers”. Occup. Environ. Med., 67, 6, 432, 2010.

      69. Wang, X., Lin, S., Yano, E., Qiu, H., Igtanius, T.S., Tse, L., Lan, Y., Wang, M., Mortality in a Chinese chrysotile miner cohort. Int. Arch. Occup. Environ. Health, 85, 4, 405–412, 2012.

      70. Bernstein, D.M. and Hoskins, J.A., The health effects of chrysotile: current perspective based upon recent data. Regul. Toxicol. Pharm., 45, 3, 252–264, 2006.

      71. Bernstein, D.M., The health risk of chrysotile asbestos. Curr. Opin. Pulm. Med., 20, 4, 366–370, 2014.

      72. ZGS (Zimbabwe Geological Survey), Minerals of Zimbabwe. Available at: http://www.mines.gov.zw/?q=minerals-zimbabwe Accessed on 3 January 2019, 2019.

      73. IARC (International Agency for Research on Cancer), A review of human carcinogens. Part C: Arsenic, metals, fibres, and dusts, IARC Working Group on the Evaluation of Carcinogenic Risks to Humans, Lyon, 2009.

      75. Papanikolaou, G. and Pantopoulos, K., Iron metabolism and toxicity. Toxicol. Appl. Pharmacol., 202, 2, 199–211, 2005.

      76. Puntarulo, S., Iron, oxidative stress and human health. Mol. Aspects Med., 26, 4-5, 299–312, 2005.

      77. Moyo, V.M., Mandishona, E., Hasstedt, S.J., Gangaidzo, I.T., Gomo, Z.A., Khumalo, H., Saungweme, T., Kiire, C.F., Paterson, A.C., Bloom, P., MacPhail, A.P., Evidence of genetic transmission in African iron overload. Blood, 91, 3, 1076–1082, 1998.

      78. Gordeuk, V.R., African iron overload. Semin. Hematol., 39, 4, 263–269, 2002.

      79. Marzec-Wróblewska, U., Kaminski, P., Lakota, P., Ludwikowski, G., Szymanski, M., Wasilow, K., Stuczynski, T., Bucinski, A., Jerzak, L., Determination of rare earth elements in human sperm and association with semen quality. Arch. Environ. Contam. Toxicol., 69, 2, 191–201, 2015.

      80. Pagano, G., Guida, M., Tommasi, F., Oral, R., Health effects and toxicity mechanisms of rare earth elements—Knowledge gaps and research prospects. Ecotoxicol. Environ. Saf., 115, 40–48, 2015.

      81. Vergauwen, E., Vanbinst, A.M., Brussaard, C., Janssens, P., De Clerck, D., Van Lint, M., Houtman, A.C., Michel, O., Keymolen, K., Lefevere, B., Bohler, S., Central nervous system gadolinium accumulation in patients undergoing periodical contrast MRI screening for hereditary tumor syndromes. Hered. Cancer Clin. Pract., 16, 1, 2, 2018.

      82. Bandara, T., Herath, I., Kumarathilaka, P., Hseu, Z.Y., Ok, Y.S., Vithanage, M., Efficacy of woody biomass and biochar for alleviating heavy metal bioavailability in serpentine soil. Environ. Geochem. Health, 39, 2, 391–401, 2017.

      83. Kumarathilaka, P. and Vithanage, M., Influence of Gliricidia sepium biochar on attenuate perchlorate-induced heavy metal release in serpentine soil. J. Chem., Article ID 6180636, 1–9, https://doi.org/10.1155/2017/6180636, 2017.

      84. Hamilton, J.L., Wilson, S.A., Morgan, B., Turvey, C.C., Paterson, D.J., Jowitt, S.M., McCutcheon, J., Southam, G., Fate of transition metals during passive carbonation of ultramafic mine tailings via air capture with potential for metal resource recovery. Int. J. Greenhouse Gas Control, 71, 155–167, 2018.

      85. Gwenzi, W., Chaukura, N., Noubactep, C., Mukome, F.N.D., Biochar-based water treatment systems as a potential low-cost and sustainable technology for clean water provision. J. Environ. Manage., 197, 732–749, 2017.

      Email: [email protected]; [email protected]; (ORCID: http://orcid.org.0000-0003-3149-1052)

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