Influence of mercury from fly ash on cattle reared nearby thermal power plant
详细信息    查看全文
  • 作者:Vikas Eknath Mahajan (1)
    Raju Ravindra Yadav (2)
    Narayan Purushottam Dakshinkar (1)
    Vinod Madanlal Dhoot (1)
    Gautam Ramkrishna Bhojane (1)
    Madhura Kiran Naik (2)
    Preeti Shrivastava (2)
    Pravin Krishnarao Naoghare (2)
    Kannan Krishnamurthi (2)
  • 关键词:Cattle ; Fly ash ; Mercury ; Thermal power plant
  • 刊名:Environmental Monitoring and Assessment
  • 出版年:2012
  • 出版时间:December 2012
  • 年:2012
  • 卷:184
  • 期:12
  • 页码:7365-7372
  • 全文大小:157KB
  • 参考文献:1. Alonso, M. L., Benedito, J. L., Miranda, M., Castillo, C., Hernandez, J., & Shore, R. F. (2003a). Mercury concentration in cattle from NW Spain. / The Science of the Total Environment, 302(1-), 93-00.
    2. Alonso, M. L., Benedito, J. L., Miranda, M., Fernandez, J. A., Castillo, C., Hernandez, J., & Shore, R. F. (2003b). Large scale spatial variation in mercury concentration in cattle in NW Spain. / Environmental Pollution, 25, 173-81. CrossRef
    3. Bafana, A., Krishnamurthi, K., Patil, M., & Chakrabarti, T. (2009). Heavy metal resistance in / Arthrobacter ramosus strain G2 isolated from mercuric salt-contaminated soil. / Journal of Hazardous Materials, 177, 481-86. CrossRef
    4. Bahga, C. S., Sikka, S. S., & Saijpal, S. (2009). Effect of seasonal stress on growth rate and serum enzyme levels in young crossbred calves. / Indian Journal of Animal Research, 43, 288-90.
    5. Bando, I., Reus, M. I. S., Andres, D., & Cascales, M. (2005). Endogenous antioxidant defence system in rat liver following mercury chloride oral intoxication. / Journal of biochemistry and molecular toxicology, 19, 154-61. CrossRef
    6. Bauer, P. J. (1981). Affinity and stoichiometry of calcium binding by arsenazo III. / Analytical Biochemistry, 1,110(1), 61-2. CrossRef
    7. Bonacker, D., Stoiber, T., Wang, M., B?hm Konrad, J., Prots, I., Unger, E., Their, R., Hermann, B., Bolt Hermann, M., & Degen Gisela, H. (2004). Genotoxicity of inorganic mercury salts based on disturbed microtubule function. / Archive of Toxicology, 78, 575-83. CrossRef
    8. Chakraborty, R., & Mukherjee, A. (2011). Technical note: Vetiver can grow on coal fly ash without DNA damage. / International Journal of Phytoremediation, 3, 206-14.
    9. Chauhan, S. S., Chaudhary, V. K., & Satyanarayan, M. V. K. (1987). Cytotoxicity of inhaled coal fly ash in rats. / Environmental Research, 43, 1-2. CrossRef
    10. Devi, S. S., Vinayagamoorthy, N., Agrawal, M., Biswas, A., Biswas, R., Naoghare, P., Kumbhakar, S., Krishnamurthi, K., Hengstler, J. G., Hermes, M., & Chakrabarti, T. (2008). Distribution of detoxifying genes polymorphism in Maharastrian population of central India. / Chemosphere, 70, 1835-839. CrossRef
    11. Dogra, R. K. S., Shanker, R., Saxena, A. K., Khanna, S., Srivastava, S. N., Shukla, L. J., & Zaidi, S. H. (1984). Air pollution: Significance of pulmonary dust deposits in bovine species. / Environmental Pollution Series A, Ecological and Biological, 36, 109-20. CrossRef
    12. Froetscher, R. K., Tataruch, F., Hauser, S., Leschnik, M., Url, A., & Baumgartner, W. (2007). Toxic effects seen in a herd of beef cattle following exposure to ash residue contaminated by lead and mercury. / The Veterinary Journal, 174, 99-05. CrossRef
    13. Han, W. K., & Bonventre, J. V. (2004). Biologic markers for the early detection of acute kidney injury. / Current Opinion in Critical Care, 10, 476-82. CrossRef
    14. Jain, N. C. (1986). / Schalm’s Veterinary Hematology (4th ed.). 600. Washington square, Philadelphia, USA: Lea and Febiger.
    15. Johansen, P., Mulvad, G., Pedersen, H. S., Hansen, J. C., & Riget, F. (2007). Human accumulation of mercury in Greenland. / The Science of the Total Environment, 377, 173-78. CrossRef
    16. Khapekar, R. R., & Nandkar, P. B. (2007). Water quality index (WQI) of Koradi Thermal Power Station. / Environmental Ecology, 25, 690-95.
    17. Kunzli, N. (2011). Commentary: Abating climate change and lung cancer. / International Journal of Epidemiology. doi:10.1093/ije/dyr,037,1-2 .
    18. Lecavalier, P. R., Chu, I., Villeneuve, D., & Valli, V. E. (1994). Combined effects of mercury and hexachlorobenzene in the rat. / Journal of Environmental Science and Health Part B, 29(5), 951-61. CrossRef
    19. Mani, U., Prasad, A. K., Kumar, V. S., Kewal, L., Kanojia, R. K., Chaudhari, B. P., & Murthy, R. C. (2007). Effect of fly ash inhalation on biochemical and histomorphological changes in rat liver. / Ecotoxicology and Environmental Safety, 68, 126-33. CrossRef
    20. Massanyi, P., Lukac, N., Slivkova, J., Kovacik, J., Massanyi, P., Lukac, N., Slivkova, J., Kovacik, J., Makarevich, A. V., Chrenek, P., Toman, R., Forgacs, Z., Somosy, Z., Stawarz, R., & Formicki, G. (2007). Mercury-induced alterations in rat kidneys and testes in vivo. / Journal of Environmental Science and Health, Part A, 42, 865-70.
    21. Mazhaiskii, Y. A., Zakharova, O. A., Evtyukhin, V. F., & Tobratov, S. A. (2000). Pollution in the zone around Ryazan power station. / Chemical and Petroleum Engineering, 36, 607-10. CrossRef
    22. Menon, J. S., & Mahajan, S. V. (2010). Site-wise mercury levels in Ulhas River Estuary and Thane Creek near Mumbai, India and its relation to water parameters. / Our Nature, 8, 170-79.
    23. Moreira-Rodrigues, M., Henriques-Coelho, T., Moura, C., Vasques Novoa, F., Sampaio-Maia, B., Pestana, M., & Leite-Moreira, F. A. (2010). Cardiac dysfunction in HgCl2-induced nephrotic syndrome. / Experimental Biology and Medicine, 235, 392-00. doi:10.1258/ebm.2009.009147 . CrossRef
    24. Oskarsson, A., Hallen, I. P., Sundberg, J., & Grawe, K. P. (1998). Risk assessment in relation to neonatal meat exposure. / Analyst, 123(1), 19-3. k">CrossRef
    25. Pandey, V. C., Abhilash, P. C., & Singh, N. (2009). The Indian perspective of utilizing fly ash in phytoremediation, phytomanagement and biomass production. / Journal of Environmental Management, 90, 2943-958. CrossRef
    26. Patnaik, B. B., Roy, A., Agarwal, S., & Bhattacharya, S. (2010). Induction of oxidative stress by non-lethal dose of mercury in rat liver: Possible relationships between apoptosis and necrosis. / Journal of Environmental Biology, 31, 413-16.
    27. Persijn, J. P., & Vanderslik, W. (1976). A new method for the determination of glutamyl transferase in serum. / Journal of Clinical Chemistry and Clinical Biochemistry, 141, 421-27.
    28. Ramanan, R., Krishnamurthi, K., Deshkar, A., Yadav, R., & Chakrabarti, T. (2010). Enhanced algal CO2 sequestration through calcite deposition by / Chlorella sp. and / Spirulina platensis in a mini-raceway pond. / Bioresource Technology, 101, 2616-622. CrossRef
    29. Robinson, M., & Hesketh, A. (1976). Effect of mercuric chloride on the structure and function of the kidney of sheep. / Journal of Comparative Pathology, 86, 307-18. CrossRef
    30. Sepulveda, A., Schluep, M., Renaud, F. G., Streicher, M., Kuehr, R., Hagelüken, C., & Gerecke, A. C. (2010). A review of the environmental fate and effects of hazardous substances released from electrical and electronic equipments during recycling: Examples from China and India. / Environmental Impact Assessment Review, 30, 28-1. CrossRef
    31. Sharma, S. K., & Kalra, N. (2006). Effect of fly ash incorporation on soil properties and productivities of crops: A review. / Journal of Science and Industrial Research, 65, 383-90.
    32. Sharma, M. C., Kumar, M., & Sharma R. D. (2009). Textbook of Clinical Veterinary Medicine. Edition1, ICAR, New Delhi.
    33. Sieber, M., Hoffmann, D., Adler, M., Vaidya, V. S., Clement, M., Bonventre, J. V., Zidek, N., Rached, E., Amberg, A., Callanan, J. J., Dekant, W., & Mally, A. (2009). Comparative analysis of novel noninvasive renal biomarkers and metabonomic changes in a rat model of gentamicin nephrotoxicity. / Toxicological Sciences, 109(2), 336-49. kfp070">CrossRef
    34. Smith, K. R., Veranth, J. M., Kodavanti, U. P., Aust, A. E., Kent, E., & Pinkerto, K. E. (2006). Acute pulmonary and systemic effects of inhaled coal fly ash in rats: Comparison to ambient environmental particles. / Toxicological Sciences, 93(2), 390-99. kfl062">CrossRef
    35. Stoiber, T., Bonacker, D., B?hm, K. J., Bolt Hermann, M., Their, R., Degen Gisela, H., & Unger, E. (2004). Disturbed microtubule function and induction of micronuclei by chelate complexes of mercury(II). / Mutation Research, 563, 97-06. CrossRef
    36. Swarup, D., & Dwivedi, S. K. (2002). / Environmental pollution and effects of lead and fluoride on animal health (1st ed.). New Delhi: ICAR.
    37. Thefeld, W., Hoffmeister, H., Busch, E. W., Koller, P. U., &Vollmar, J. (1974). Referenzwertefuer die Bestimmungen der Transaminasen GOT und GPT sowie der alkalischen Phosphatase im Serum mit optimierten Standardmethoden. / Deutsche Medizinische Wochenschrift, 99, 343-51. CrossRef
    38. Toro, G., & Ackerman, P. G. (1975). / Practical clinical chemistry. Boston: Brown.
    39. US EPA. (1998). Method 7473, Mercury in solids and solutions by thermal decomposition, amalgamation and atomic absorption spectrophotometry. Washington, DC.
    40. Williams, D. F. (1981). Mercury. In / Systemic aspects of biocompatibility (pp. 237-47). Boca Raton, Florida: CRP.
    41. Wolf, M. B., & Baynes, J. W. (2007). Cadmium and mercury cause an oxidative stress-induced endothelial dysfunction. / BioMetals, 20, 73-1. CrossRef
  • 作者单位:Vikas Eknath Mahajan (1)
    Raju Ravindra Yadav (2)
    Narayan Purushottam Dakshinkar (1)
    Vinod Madanlal Dhoot (1)
    Gautam Ramkrishna Bhojane (1)
    Madhura Kiran Naik (2)
    Preeti Shrivastava (2)
    Pravin Krishnarao Naoghare (2)
    Kannan Krishnamurthi (2)

    1. Nagpur Veterinary College, Seminary Hills, Nagpur, India
    2. Environmental Health Division, National Environmental Engineering Research Institute (NEERI), Nagpur, India
  • ISSN:1573-2959
文摘
Cattle grazing nearby coal-fired power stations are exposed to fly ash. The present investigation aims to assess the environmental and health impacts of fly ash containing mercury emitted from thermal power plant. The health effect of fly ash were studied using 20 lactating cattle reared within a 5-km radius of s thermal power plant for the possible effect of fly ash such as the alterations in hematological and biochemical parameters of blood, milk, and urine. Results indicated that the hemoglobin levels (6.65?±-.40?g/dl) were significantly reduced in all the exposed animals. Biochemical parameters viz., blood urea nitrogen (27.35?±-.19?mg/dl), serum glutamate oxaloacetate transaminase (43.39?±-.08?IU/l), albumin, and creatinine were found to be increased, whereas serum glutamate pyruvic transaminase (29.26?±-.02) and Ca2+ were observed to be statistically insignificant in exposed animals. Mercury concentrations estimated in the blood, milk, and urine of exposed (n--0) and control (n--0) animals were 7.41?±-.86, 4.75?±-.57, 2.08?±-.18, and 1.05?±-.07, 0.54?±-.03, 0.20?±-.02?μg/kg, respectively. The significant increase (P-lt;-.01) in the levels of mercury in blood, milk, and urine of exposed animals in comparison to control indicated that the alterations of biochemical parameters in exposed cattle could be due to their long term exposure to fly ash mercury which may have direct or indirect impact on human populations via food chain.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700