15 An Overview of Natural Water Contamination …
365
Lu Q, Zhu RL, Yang J, Li H, Liu YD, Lu SG, Luo QS, Lin KF (2015) Natural attenuation model
and biodegradation for 1, 1, 1-trichloroethane contaminant in shallow groundwater. Frontiers
Microbiol 25(6):839
McGrath SP, Zhao FJ (2003) Phytoextraction of metals and metalloids from contaminated soils.
Curr Opinion Biotechnol 14(3):277–282
Mishra PK, Dabadghao S, Modi GK, Desikan P, Jain A, Mittra I, Gupta D, Chauhan C, Jain SK,
Maudar KK (2009) In utero exposure to methyl isocyanate in the Bhopal gas disaster: evidence
of persisting hyperactivation of immune system two decades later. Occupational Environ Med
66(4):279
Mulligan CN, Yong RN (2004) Natural attenuation of contaminated soils. Environ Int 30(4):587–601
Mukherjee S, Kumari D, Joshi M, An AK, Kumar M (2020) Low-cost bio-based sustainable
removal of lead and cadmium using a polyphenolic bioactive Indian curry leaf (Murraya koengii)
powder. Int J hyg Envir heal 226:113471
Naidu R (2013) Recent advances in contaminated site remediation. Water Air Soil Pollut
224(12):1705 (3rddd)
Pagga U, Brown D (1986) The degradation of dyestuffs: Part II Behaviour of dyestuffs in aerobic
biodegradation tests. Chemosphere 15(4):479–491
Paigen B, Goldman LR, Magnant MM, Highland JH, Steegmann AT Jr (1987) Growth of children
living near the hazardous waste site. Love Canal Human Biol 1:489–508
Philp RP (2007) The emergence of stable isotopes in environmental and forensic geochemistry
studies: a review. Environ Chem Lett 5(2):57–66
Rosal R, Rodríguez A, Perdigón-Melón JA, Petre A, García-Calvo E, Gómez MJ, Agüera A,
Fernández-Alba AR (2010) Occurrence of emerging pollutants in urban wastewater and their
removal through biological treatment followed by ozonation. Water Res 44(2):578–588
Sharma S, Bhattacharya A (2017) Drinking water contamination and treatment techniques. Appl
Water Sci 7(3):1043–1067
Singh A, Patel AK, Deka JP, Das A, Kumar A, Manish Kumar (2019) mPrediction of Arsenic
vulnerable zones in groundwater environment of rapidly urbanizing setup, Guwahati, India.
Geochemistry 12559. https://doi.org/10.1016/j.chemer.2019.125590
Singh A, Patel AK, Manish Kumar (2020) Mitigating the risk of Arsenic and Fluoride contamination of groundwater through a Multi-Model framework of statistical assessment and natural
remediation techniques. In: Manish Kumar, Snow D, Honda R (eds) Emerging issues in the water
environment during anthropocene: a south east Asian perspective. Publisher Springer Nature.
ISBN 978-93-81891-41-4
Shim J, Kumar M, Goswami R, Mazumder P, Oh BT, Shea PJ (2019a) Removal of p-cresol and
tylosin from water using a novel composite of alginate, recycled MnO 2 and activated carbon. J
Hazard Mater 364:419–428
Shim J, Kumar M, Mukherjee S, Goswami R (2019b) Sustainable removal of pernicious arsenic and
cadmium by a novel composite of MnO 2 impregnated alginate beads: a cost-effective approach
for wastewater treatment. J Environ Manage 234:8–20
Thompson SC (1994) Giardia lamblia in children and the child care setting: a review of the literature.
J Paediatrics Child Health 30(3):202–209
2011 Water quality changes resulting from infiltration through the vadose zone. Water Res 45:5764–
5772 [CrossRef] [PubMed]
Zhang J, Li S (1997) Cancer mortality in a Chinese population exposed to hexavalent chromium in
water. J Occup Environ Med 39(4):315–319
Précédent

- 379/447

Suivant