Dr. Prosun Bhattacharya
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Dr. Prosun Bhattacharya

Professor
Department of Sustainable Development, Environmental Science and Engineering, KTH Royal Institute of Technology, Sweden


Highest Degree
Ph.D. in Geology from University of Delhi, Delhi, India

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Biography

Dr. Prosun Bhattacharya obtained his PhD in Geology from University of Delhi, Delhi, India. Currently he is working as Professor in Groundwater Chemistry in the Department of Sustainable Development, Environmental Science and Engineering, KTH Royal Institute of Technology, Sweden. In past he worked as Research Engineer and Coordinator in Groundwater Arsenic Research Group, Research Scientist in Department of Land and Water Resources Engineering, Visiting Scientist in Commonwealth Scientific and Industrial Research Organization Australia, Associate Professor at Department of Land and Water Resources Engineering, KTH. He has successfully undertaken number of research projects. He is also peer reviewer in number of international journals. He has published more than 135 research papers in peer review journals, 205 conference proceedings. He supervised 9 PhD students and currently he is supervising 3 PhD students.

Area of Interest:

Environmental Sciences
100%
Hydrogeochemistry
62%
Arsenic Mobilization Mechanisms
90%
Sustainable Mitigation
75%
Sediment Geochemistry
55%

Research Publications in Numbers

Books
16
Chapters
0
Articles
229
Abstracts
295

Selected Publications

  1. van der Voorn, T., C. van den Berg, P. Bhattacharya and J. Quist, 2021. Never waste a crisis: Drawing first lessons from the COVID-19 pandemic to tackle the water crisis. ACS EST Water, 1: 8-10.
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  2. Thakur, B.K., V. Gupta, P. Bhattacharya, M. Jakariya and M.T. Islam, 2021. Arsenic in drinking water sources in the middle gangetic plains in Bihar: An assessment of the depth of wells to ensure safe water supply. Groundwater Sustainable Dev., Vol. 12. 10.1016/j.gsd.2020.100504.
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  3. Sohrabi, N., N. Kalantari, V. Amiri, N. Saha, R. Berndtsson, P. Bhattacharya and A. Ahmad, 2021. A probabilistic-deterministic analysis of human health risk related to the exposure to potentially toxic elements in groundwater of Urmia coastal aquifer (NW of Iran) with a special focus on arsenic speciation and temporal variation. Stochastic Environ. Res. Risk Assess., 35: 1509-1528.
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  4. Sayeed, A., M.H. Rahman, J. Bundschuh, I. Herath and F. Ahmed et al., 2021. Handwashing with soap: A concern for overuse of water amidst the COVID-19 pandemic in Bangladesh. Groundwater Sustainable Dev., Vol. 13. 10.1016/j.gsd.2021.100561.
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  5. Mukherjee, A., S. Sarkar, M. Chakraborty, S. Duttagupta and A. Bhattacharya et al., 2021. Occurrence, predictors and hazards of elevated groundwater arsenic across India through field observations and regional-scale AI-based modeling. Sci. Total Environ., Vol. 759. 10.1016/j.scitotenv.2020.143511.
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  6. Maity, J.P., M. Vithanage, M. Kumar, A. Ghosh, D. Mohan, A. Ahmad and P. Bhattacharya, 2021. Seven 21st century challenges of arsenic-fluoride contamination and remediation. Groundwater Sustainable Dev., Vol. 12. 10.1016/j.gsd.2020.100538.
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  7. Maity, J.P., C.Y. Chen, P. Bhattacharya, R.K. Sharma, A. Ahmad, S. Patnaik and J. Bundschuh, 2021. Advanced application of nano-technological and biological processes as well as mitigation options for arsenic removal. J. Hazard. Mater., Vol. 405. 10.1016/j.jhazmat.2020.123885.
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  8. Lima, I.Q., O.E.R. Ramos, M.O. MuÜoz, M.I.C. Tapia and J.Q. Aguirre et al., 2021. Geochemical mechanisms of natural arsenic mobility in the hydrogeologic system of Lower Katari Basin, Bolivian Altiplano. J. Hydrol., Vol. 594. 10.1016/j.jhydrol.2020.125778.
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  9. Lima, I.Q., M.O. MuÜoz, O.E.R. Ramos, J.Q. Aguirre, J.P. Maity, A. Ahmad and P. Bhattacharya, 2021. Hydrogeochemical contrasts in the shallow aquifer systems of the Lower Katari Basin and Southern PoopÞ Basin, Bolivian Altiplano. J. South Am. Earth Sci., Vol. 105. 10.1016/j.jsames.2020.102914.
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  10. Kumar, M., P. Mazumder, S. Mohapatra, A.K. Thakur and K. Dhangar et al., 2021. A chronicle of SARS-CoV-2: Seasonality, environmental fate, transport, inactivation, and antiviral drug resistance. J. Hazard. Mater., Vol. 405. 10.1016/j.jhazmat.2020.124043.
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  11. Kumar, M., K. Kuroda, A.K. Patel, N. Patel, P. Bhattacharya, M. Joshi and C.G. Joshi, 2021. Decay of SARS-CoV-2 RNA along the wastewater treatment outfitted with Upflow anaerobic sludge blanket (UASB) system evaluated through two sample concentration techniques. Sci. Total Environ., Vol. 754. 10.1016/j.scitotenv.2020.142329.
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  12. Hussain, M.M., I. Bibi, N.K. Niazi, M. Shahid and J. Iqbal et al., 2021. Arsenic biogeochemical cycling in paddy soil-rice system: Interaction with various factors, amendments and mineral nutrients. Sci. Total Environ., Vol. 773. 10.1016/j.scitotenv.2021.145040.
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  13. Bundschuh, J., M.A. Armienta, N. Morales-Simfors, M.A. Alam and D.L. LÞpez et al., 2021. Arsenic in Latin America: New findings on source, mobilization and mobility in human environments in 20 countries based on decadal research 2010-2020. Crit. Rev. Environ. Sci. Technol., 51: 1727-1865.
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  14. Bhattacharya, P., M. Kumar, M.T. Islam, R. Haque and S. Chakraborty et al., 2021. Prevalence of SARS-CoV-2 in communities through wastewater surveillance-A potential approach for estimation of disease burden. Curr. Pollut. Rep., 7: 160-166.
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  15. Amiri, V., S. Kamrani, A. Ahmad, P. Bhattacharya and J. Mansoori, 2021. Groundwater quality evaluation using Shannon information theory and human health risk assessment in Yazd Province, Central Plateau of Iran. Environ. Sci. Pollut. Res., 28: 1108-1130.
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  16. Amiri, V., P. Bhattacharya and M. Nakhaei, 2021. The hydrogeochemical evaluation of groundwater resources and their suitability for agricultural and industrial uses in an arid area of Iran. Groundwater Sustainable Dev., Vol. 12. 10.1016/j.gsd.2020.100527.
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  17. Ali, S., S. Shekhar, T. Chandrasekhar, A.K. Yadav and N.K. Arora et al., 2021. Influence of the water-sediment interaction on the major ions chemistry and fluoride pollution in groundwater of the Older Alluvial Plains of Delhi, India. J. Earth Syst. Sci., Vol. 130. 10.1007/s12040-021-01585-3.
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  18. Ahmed, F., M.A. Islam, M. Kumar, M. Hossain and P. Bhattacharya et al., 2021. First detection of SARS-CoV-2 genetic material in the vicinity of COVID-19 isolation Centre in Bangladesh: Variation along the sewer network. Sci. Environ., Vol. 776. 10.1016/j.scitotenv.2021.145724.
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  19. Yadav, A., A. Nanda, B.L. Sahu, Y.K. Sahu and K.S. Patel et al., 2020. Groundwater hydrochemistry of Rajnandgaon District, Chhattisgarh, Central India. Groundwater Sustainable Dev., Vol. 11. 10.1016/j.gsd.2020.100352.
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  20. Seddique, A.A., Y. Kon, R. Anma, H. Masuda and P. Bhattacharya et al., 2020. Sources of U and Th in groundwater of the paleobeach aquifer at Cox's Bazar, Southeast Bangladesh. Groundwater Sustainable Dev., Vol. 10. 10.1016/j.gsd.2020.100332.
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  21. MariÜo, E.E., G.T. ìvila, P. Bhattacharya and C.J. Schulz, 2020. The occurrence of arsenic and other trace elements in groundwaters of the southwestern Chaco-Pampean plain, Argentina. J. South Am. Earth Sci., Vol. 100. 10.1016/j.jsames.2020.102547.
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  22. Lima, I.Q., O.R. Ramos, M.O. MuÜoz, J.Q. Aguirre and C. Duwig et al., 2020. Spatial dependency of arsenic, antimony, boron and other trace elements in the shallow groundwater systems of the Lower Katari Basin, Bolivian Altiplano. Sci. Total Environ., Vol. 719. 10.1016/j.scitotenv.2020.137505.
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  23. Kumar, M., A.K. Thakur, P. Mazumder, K. Kuroda and S. Mohapatra et al., 2020. Frontier review on the propensity and repercussion of SARS-CoV-2 migration to aquatic environment. J. Hazard. Mater. Lett., Vol. 1. 10.1016/j.hazl.2020.100001.
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  24. Khursheed, A., S. Alam, V.K. Tyagi, A.S. Nagpure and A.A. Khan et al., 2020. Future liasing of the lockdown during COVID-19 pandemic: The dawn is expected at hand from the darkest hour. Groundwater Sustainable Dev., Vol. 11. 10.1016/j.gsd.2020.100433.
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  25. Khan, K.M., R. Chakraborty, J. Bundschuh, P. Bhattacharya and F. Parvez, 2020. Health effects of arsenic exposure in Latin America: An overview of the past eight years of research. Sci. Total Environ., Vol. 710. 10.1016/j.scitotenv.2019.136071.
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  26. Kasiuliene, A., I. Carabante, H. Sefidari, M. hman, P. Bhattacharya and J. Kumpiene, 2020. Leaching of metal(loid)s from ashes of spent sorbent and stabilisation effect of calcium-rich additives. Environ. Sci. Pollut. Res., 27: 29248-29256.
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  27. Ijumulana, J., F. Ligate, P. Bhattacharya, F. Mtalo and C. Zhang, 2020. Spatial analysis and GIS mapping of regional hotspots and potential health risk of fluoride concentrations in groundwater of Northern Tanzania. Sci. Total Environ., Vol. 735. 10.1016/j.scitotenv.2020.139584.
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  28. Bivins, A., D. North, A. Ahmad, W. Ahmed and E. Alm et al., 2020. Wastewater-based epidemiology: Global collaborative to maximize contributions in the fight against COVID-19. Environ. Sci. Technol., 54: 7754-7757.
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  29. Alcaine, A.A., C. Schulz, J. Bundschuh, G. Jacks and R. Thunvik et al., 2020. Hydrogeochemical controls on the mobility of arsenic, fluoride and other geogenic co-contaminants in the shallow aquifers of Northeastern La Pampa Province in Argentina. Sci. Total Environ., Vol. 715. 10.1016/j.scitotenv.2020.136671.
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  30. Ahmad, A., S. Rutten, M. Eikelboom, L. de Waal, H. Bruning, P. Bhattacharya and A. van der Wal, 2020. Impact of phosphate, silicate and natural organic matter on the size of Fe(III) precipitates and arsenate co-precipitation efficiency in calcium containing water. Sep. Purif. Technol., Vol. 235. 10.1016/j.seppur.2019.116117.
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  31. Ahmad, A., P. van der Wens, K. Baken, L. de Waal, P. Bhattacharya and P. Stuyfzand, 2020. Arsenic reduction to <1 µg/L in Dutch drinking water. Environ. Int., Vol. 134. 10.1016/j.envint.2019.105253.
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  32. Ahmad, A., L. Heijnen, L. de Waal, F. Battaglia-Brunet and W. Oorthuizen et al., 2020. Mobility and redox transformation of arsenic during treatment of artificially recharged groundwater for drinking water production. Water Res., Vol. 178. 10.1016/j.watres.2020.115826.
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  33. Mirchooli, F., A. Motevalli, H.R. Pourghasemi, M. Mohammadi, P. Bhattacharya, F.F. Maghsood and J.P. Tiefenbacher, 2019. How do data-mining models consider arsenic contamination in sediments and variables importance? Environ. Monit. Assess., Vol. 191. 10.1007/s10661-019-7979-x.
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  34. Abiye, T.A. and P. Bhattacharya, 2019. Arsenic concentration in groundwater: Archetypal study from South Africa. Groundwater for Sustainable Dev., Vol. 9. 10.1016/j.gsd.2019.100246.
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  35. Vithanage, M. and P. Bhattacharya, 2015. Fluoride in the environment: Sources, distribution and defluoridation. Environ. Chem. Lett., 13: 131-147.
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  36. Vithanage, M. and P. Bhattacharya, 2015. Fluoride in Drinking Water: Health Effects and Remediation. In: Environmental Chemistry for a Sustainable World: Volume 5: CO2 Sequestration, Biofuels and Depollution, Lichtfouse, E., J. Schwarzbauer and D. Robert (Eds.). Springer International Publishing, Netherlands, ISBN: 978-3-319-11905-2, pp: 105-151.
  37. Munoz, M.O., P. Bhattacharya, O. Sracek, O.R. Ramos, J.Q. Aguirre, J. Bundschuh and J.P. Maity, 2015. Arsenic and other trace elements in thermal springs and in cold waters from drinking water wells on the Bolivian Altiplano. J. South Am. Earth Sci., 60: 10-20.
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  38. Mahanta, C., G. Enmark, D. Nordborg, O. Sracek and B. Nath et al., 2015. Hydrogeochemical controls on mobilization of arsenic in groundwater of a part of Brahmaputra river floodplain, India. J. Hydrol.: Regional Stud., (In Press). 10.1016/j.ejrh.2015.03.002.
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  39. Hossain, M., S.N. Rahman, P. Bhattacharya, G. Jacks, R. Saha and M. Rahman, 2015. Sustainability of arsenic mitigation interventions-an evaluation of different alternative safe drinking water options provided in Matlab, an arsenic hot spot in Bangladesh. Front. Environ. Sci., Vol. 3. 10.3389/fenvs.2015.00030.
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  40. Von Bromssen, M., L. Markussen, P. Bhattacharya, K.M. Ahmed and M. Hossain et al., 2014. Hydrogeological investigation for assessment of the sustainability of low-arsenic aquifers as a safe drinking water source in regions with high-arsenic groundwater in Matlab, southeastern Bangladesh. J. Hydrol., 518: 373-392.
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  41. Sengupta, S., O. Sracek, J.S. Jean, H.Y. Lu and C.H. Wang et al., 2014. Spatial variation of groundwater arsenic distribution in the Chianan Plain, SW Taiwan: Role of local hydrogeological factors and geothermal sources. J. Hydrol., 518: 393-409.
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  42. Raychowdhury, N., A. Mukherjee, P. Bhattacharya, K. Johannesson and J. Bundschuh et al., 2014. Provenance and fate of arsenic and other solutes in the Chaco-Pampean Plain of the Andean foreland, Argentina: From perspectives of hydrogeochemical modeling and regional tectonic setting. J. Hydrol., 518: 300-316.
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  43. Ramos, O.E.R., T.S. Rotting, M. French, O. Sracek, J. Bundschuh, J. Quintanilla and P. Bhattacharya, 2014. Geochemical processes controlling mobilization of arsenic and trace elements in shallow aquifers and surface waters in the Antequera and Poopo mining regions, Bolivian Altiplano. J. Hydrol., 518: 421-433.
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  44. Mukherjee, A., S. Verma, S. Gupta, K.R. Henke and P. Bhattacharya, 2014. Influence of tectonics, sedimentation and aqueous flow cycles on the origin of global groundwater arsenic: Paradigms from three continents. J. Hydrol., 518: 284-299.
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  45. Maity, J.P., J. Bundschuh, C.Y. Chen and P. Bhattacharya, 2014. Microalgae for third generation biofuel production, mitigation of greenhouse gas emissions and wastewater treatment: Present and future perspectives-A mini review. Energy, 78: 104-113.
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  46. Hossain, M., P. Bhattacharya, S.K. Frape, G. Jacks and M.M. Islam et al., 2014. Sediment color tool for targeting arsenic-safe aquifers for the installation of shallow drinking water tubewells. Sci. Total Environ., 493: 615-625.
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  47. Halder, D., A. Biswas, Z. Slejkovec, D. Chatterjee, J. Nriagu, G. Jacks and P. Bhattacharya, 2014. Arsenic species in raw and cooked rice: Implications for human health in rural Bengal. Sci. Total Environ., 497: 200-208.
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  48. Biswas, A., P. Bhattacharya, A. Mukherjee, B. Nath and H. Alexanderson et al., 2014. Shallow hydrostratigraphy in an arsenic affected region of Bengal Basin: Implication for targeting safe aquifers for drinking water supply. Sci. Total Environ., 485-486: 12-22.
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  49. Biswas, A., J.P. Gustafsson, H. Neidhardt, D. Halder and A.K. Kunduet al., 2014. Role of competing ions in the mobilization of arsenic in groundwater of Bengal Basin: Insight from surface complexation modelling. Water Res., 55: 30-39.
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  50. Biswas, A., H. Neidhardt, A.K. Kundu, D. Halder and D. Chatterjee et al., 2014. Spatial, vertical and temporal variation of arsenic in shallow aquifers of the Bengal Basin: Controlling geochemical processes. Chem. Geol., 387: 157-169.
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  51. Bhattacharya, P., R. Naidu, D.A. Polya, A. Mukherjee, J. Bundschuh and L. Charlet, 2014. Arsenic in hydrological processes-sources, speciation, bioavailability and management. J. Hydrol., 518: 279-283.
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  52. Ormachea Munoz, M., H. Wern, F. Johnsson, P. Bhattacharya and O. Sracek et al., 2013. Geogenic arsenic and other trace elements in the shallow hydrogeologic system of Southern Poopo Basin, Bolivian Altiplano. J. Hazard. Mater., 262: 924-940.
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  53. Jacks, G., Z. Slejkovec, M. Morth and P. Bhattacharya, 2013. Redox-cycling of arsenic along the water pathways in sulfidic metasediment areas in northern Sweden. Applied Geochemistry, 35: 35-43.
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  54. Halder, D., S. Bhowmick, A. Biswas, D. Chatterjee and J. Nriagu et al., 2013. Risk of arsenic exposure from drinking water and dietary components: Implications for risk management in rural Bengal. Environ. Sci. Technol., 47: 1120-1127.
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  55. Caceres Choque, L.F., O.E. Ramos Ramos, S.N. Valdez Castro, R.R. Choque Aspiazu and R.G. Choque Mamani et al., 2013. Fractionation of heavy metals and assessment of contamination of the sediments of Lake Titicaca. Environ. Monitoring Assess., 185: 9979-9994.
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  56. Bundschuh, J., P. Bhattacharya, B. Nath, R. Naidu and J. Ng et al., 2013. Arsenic ecotoxicology: The interface between geosphere, hydrosphere and biosphere. J. Hazardous Mater., 262: 883-886.
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  57. Bundschuh, J., J.P. Maity, B. Nath, A. Baba and O. Gunduz et al., 2013. Naturally occurring arsenic in terrestrial geothermal systems of western Anatolia, Turkey: Potential role in contamination of freshwater resources. J. Hazard. Mater., 262: 951-959.
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  58. Bhowmick, S., B. Nath, D. Halder, A. Biswas and S. Majumder et al., 2013. Arsenic mobilization in the aquifers of three physiographic settings of West Bengal, India: Understanding geogenic and anthropogenic influences. J. Hazardous Mater., 262: 915-923.
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  59. Vithanage, M., B. Dabrowska, A.B. Mukherjee, A. Sandhi and P. Bhattacharya, 2012. Arsenic uptake by plants and possible phytoremediation applications-A brief overview. Environ. Chem. Lett., 10: 217-224.
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  60. Ramos Ramos, O.E., L.F. Caceres, M.R. Ormachea Munoz, P. Bhattacharya and I. Quino et al., 2012. Sources and behavior of arsenic and trace elements in groundwater and surface water in the Poopo Lake Basin, Bolivian Altiplano. Environ. Earth Sci., 66: 793-807.
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  61. Maity, J.P., B. Nath, S. Kar, C.Y. Chen and S. Banerjee et al., 2012. Arsenic-induced health crisis in peri-urban Moyna and Ardebok villages, West Bengal, India: An exposure assessment study. Environ. Geochemistry Health, 34: 563-574.
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  62. Liu, C.C., J.P. Maity, J.S. Jean, A.H.M.S. Reza and Z. Li et al., 2012. Geochemical characteristics of the mud volcano fluids in Southwestern Taiwan and their possible linkage to elevated arsenic concentration in Chianan plain groundwater. Environ. Earth Sci., 66: 1513-1523.
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  63. Halder, D., S. Bhowmick, A. Biswas, U. Mandal and J. Nriagu et al., 2012. Consumption of Brown Rice: A potential pathway for arsenic exposure in rural Bengal. Environ. Sci. Technol., 46: 4142-4148.
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  64. Dabrowska, B., M. Vithanage, K.R. Gunaratna, A.B. Mukherjee and P. Bhattacharya, 2012. Bioremediation of Arsenic in Contaminated Terrestrial and Aquatic Environment: A Synoptic Review. In: Environmental Chemistry for a Sustainable World: Volume 2: Remediation of Air and Water Pollution, Lichtfouse, E., J. Schwarzbauer and D. Robert (Eds.). Springer, The Netherlands, pp: 475-509.
  65. Bundschuh, J., B. Nath, P. Bhattacharya, C.W. Liu and M.A. Armienta et al., 2012. Arsenic in the human food chain: The Latin American perspective. Sci. Total Environ., 429: 92-106.
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  66. Biswas, A., B. Nath, P. Bhattacharya, D. Halder and Kundu et al., 2012. Testing tubewell platform color as a rapid screening tool for arsenic and manganese in drinking water wells. Environ. Sci. Technol., 46: 434-440.
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  67. Biswas, A., B. Nath, P. Bhattacharya, D. Halder and A.K. Kundu et al., 2012. Testing tubewell platform color as a rapid screening tool for arsenic and manganese in drinking water wells: Addition to supporting information. Environ. Sci. Technol., 46: 1953-1953.
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  68. Biswas, A., B. Nath, P. Bhattacharya, D. Halder and A.K. Kundu et al., 2012. Hydrogeochemical contrast between brown and grey sand aquifers in shallow depth of Bengal Basin: Consequences for sustainable drinking water supply. Sci. Total Environ., 431: 402-412.
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  69. Bhattacharyaa, P., O. Sracek, B. Eldvall, R. Asklund and G. Barmen et al., 2012. Hydrogeochemical study on the contamination of water resources in a part of Tarkwa mining area, Western Ghana. J. Afr. Earth Sci., 66-67: 72-84.
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  70. Robinson, C., M. von Bromssen, P. Bhattacharya, S. Haller and A. Biven et al., 2011. Dynamics of arsenic adsorption in the targeted arsenic-safe aquifers in Matlab, South-eastern Bangladesh: Insight from experimental studies. Applied Geochem., 26: 624-635.
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  71. Mukherjee, A., P. Bhattacharya and A.E. Fryar, 2011. Arsenic and other toxic elements in global groundwater systems. Applied Geochem., 26: 415-420.
  72. Mukherjee, A., A.E. Fryar, B.R. Scanlon, P. Bhattacharya and A. Bhattacharya, 2011. Elevated arsenic in deeper groundwater of the western Bengal basin, India: Extent and controls from regional to local scale. Applied Geochem., 26: 600-613.
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  73. Maity, J.P., C.C. Liu, B. Nath, J. Bundschuh and S. Kar et al., 2011. Biogeochemical characteristics of Kuan-Tzu-Ling, Chung-Lun and Bao-Lai hot springs in southern Taiwan. J. Environ. Sci. Health Part A, 46: 1207-1217.
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  74. Maity, J.P., B. Nath, C.Y. Chen, P. Bhattacharya and O. Sracek et al., 2011. Arsenic-enriched groundwaters of India, Bangladesh and Taiwan-comparison of hydrochemical characteristics and mobility constraints. J. Environ. Sci. Health Part A, 46: 1163-1176.
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  75. Bundschuh, J., P. Bhattacharya, O. Sracek, M.F. Mellano and A.E. Ramirez et al., 2011. Arsenic removal from groundwater of the Chaco-Pampean Plain (Argentina) using natural geological materials as adsorbents. J. Environ. Sci. Health Part A, 46: 1297-1310.
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  76. Bhattacharya, P., M. Hossain, S.N. Rahman, C. Robinson and B. Nath et al., 2011. Temporal and seasonal variability of arsenic in drinking water wells in Matlab, Southeastern Bangladesh: A preliminary evaluation on the basis of a 4 year study. J. Environ. Sci. Health Part A, 46: 1177-1184.
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  77. Bhattacharya, P., A. Mukherjee and A.B. Mukherjee, 2011. Arsenic in Groundwater of India. In: Encyclopedia of Environmental Health, Volume 1, Nriagu, J.O. (Ed.). Elsevier, Burlington, ISBN-13: 9780444522627, pp: 150-164.
  78. Amofah, L.R., C. Maurice, J. Kumpiene and P. Bhattacharya, 2011. The influence of temperature, pH/molarity and extractant on the removal of arsenic, chromium and zinc from contaminated soil. J. Soils Sediments, 11: 1334-1344.
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  79. Kumar, M., P. Kumar, A.L. Ramanathan, P. Bhattacharya and R. Thunvik et al., 2010. Arsenic enrichment in groundwater in the middle Gangetic Plain of Ghazipur District in Uttar Pradesh, India. J. Geochem. Explor., 105: 83-94.
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  81. Bundschuh, J., P. Bhattacharya, J. Hoinkis, N. Kabay, J.S. Jean and M.I. Litter, 2010. Groundwater arsenic: From genesis to sustainable remediation. Water Res., 44: 5511-5511.
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  82. Bundschuh, J., M.I. Litter, P. Bhattacharya and J. Hoinkis, 2010. The Global Arsenic Crisis-A Short Introduction. In: The Global Arsenic Problem: Challenges for Safe Water Production, Kabay, N., J. Bundschuh, B. Hendry, M. Bryjak, K. Yoshizuka, P. Bhattacharya and S. Anac (Eds.). CRC Press/Balkema, Leiden, The Netherlands, ISBN-13: 978-0-415-57521-8, pp: 3-19.
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  84. Bundschuh, J., M. Litter, V.S. Ciminelli, M.E. Morgada and L. Cornejo et al., 2010. Emerging mitigation needs and sustainable options for solving the arsenic problems of rural and isolated urban areas in Latin America-a critical analysis. Water Res., 44: 5828-5845.
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  85. Bhattacharya, P., J. Bundschuh, M. von Bromssen, M. Hossain, K.M. Ahmed, J. Hoinkis and M. Litter, 2010. Arsenic Contamination in Groundwaters in Bangladesh and Options of Sustainable Drinking Water Supplies. In: The Global Arsenic Problem: Challenges for Safe Water Production, Kabay, N., J. Bundschuh, B. Hendry, M. Bryjak, K. Yoshizuka, P. Bhattacharya and S. Anac (Eds.). CRC Press/Balkema, Leiden, The Netherlands, ISBN-13: 978-0-415-57521-8, pp: 21-35.
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  87. Amofah, L.R., C. Maurice and P. Bhattacharya, 2010. Extraction of arsenic from soils contaminated with wood preservation chemicals. Soil Sediment Contam., 19: 142-159.
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  88. Sracek, O., M. Novak, P. Sulovsky, R. Martin, J. Bundschuh and P. Bhattacharya, 2009. Mineralogical Study of Arsenic-Enriched Aquifer Sediments at Santiago del Estero, Northwest Argentina. In: Natural Arsenic in Groundwater of Latin America: Occurrence, Health Impact and Remediation, Bundschuh, J., M.A. Armienta, P. Birkle, P. Bhattacharya, J. Matschullat and A.B. Mukherjee (Eds.). CRC Press, Netherlands, pp: 61-68.
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  91. Quintanilla, J., O.E.R. Ramos, M. Ormachea, M.E. Garcha, H. Medina, R. Thunvik and P. Bhattacharya, 2009. Arsenic Contamination, Speciation and Environmental Consequences in the Bolivian Plateau. In: Natural Arsenic in Groundwater of Latin America-Occurrence, Health Impact and Remediation, Bundschuh, J., M.A. Armienta, P. Birkle, P. Bhattacharya, J. Matschullat and A.B. Mukherjee (Eds.). CRC Press/Balkema, Leiden, The Netherlands, ISBN: 978-0-415-40771-7, pp: 91-100.
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  93. Mukherjee, A., P. Bhattacharya, F. Shi, A.E. Fryar and A.B. Mukherjee et al., 2009. Chemical evolution in the high arsenic groundwater of the Huhhot basin (Inner Mongolia, PR China) and its difference from the western Bengal basin (India). Applied Geochem., 24: 1835-1851.
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  94. Kim, K.W., S. Bang, Y. Zhu, A. A. Meharg and P. Bhattacharya, 2009. Arsenic geochemistry, transport mechanism in the soil-plant system, human and animal health issues. Environ. Int., 35: 453-454.
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  95. Jakariya, M., P. Bhattacharya, M.M. Hassan, K.M. Ahmed, M.A. Hasan, and S. Nahar, 2009. Temporal Variations of Groundwater Arsenic Contrations in Southwest Bangladesh. In: Natural Arsenic in Groundwater of Latin America-Occurrence, Health Impact and Remediation, Bundschuh, J., M.A. Armienta, P. Birkle, P. Bhattacharya, J. Matschullat and A.B. Mukherjee (Eds.). CRC Press/Balkema, Leiden, The Netherlands, ISBN: 978-0-415-40771-7, pp: 225-233.
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  97. Hasan, M.A., M. von Bromssen, P. Bhattacharya, K.M. Ahmed, A.M. Sikder, G. Jacks and O. Sracek, 2009. Geochemistry and mineralogy of shallow alluvial aquifers in Daudkandi upazila in the Meghna flood plain, Bangladesh. Environ. Geol., 57: 499-511.
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  98. Harikumar, P.S., E. Haile, K. Madhavan, V. Chaudhary, G. Jacks and P. Bhattacharya, 2009. Surveillance, Hydrogeochemistry and Methods of Removal of Fluoride Contamination in Groundwater: Case study from Kerala, India. In: Assessment of Groundwater Resources and Management, Ramanathan, A.L., P. Bhattacharya, A.K. Keshari, J. Bundschuh, D. Chandrashekharam and S.K. Singh (Eds.). I.K. International Publishing House Pvt. Ltd., New Delhi, Bangalore, India, ISBN: 978-81-906757-2-7, pp: 395-415.
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  102. Von Bromssen, M., S.H. Larsson, P. Bhattacharya, M.A. Hasan and K.M. Ahmed et al., 2008. Geochemical characterisation of shallow aquifer sediments of Matlab Upazila, Southeastern Bangladesh-Implications for targeting low-As aquifers. J. Contaminant Hydrol., 99: 137-149.
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  106. Mukherjee, A., M. von Bromssen, B.R. Scanlon, P. Bhattacharyav and A.E. Fryar et al., 2008. Hydrogeochemical comparison between the Bhagirathi and Meghna sub-basins, Bengal basin, India and Bangladesh: Effects of overlapped redox zones on dissolved arsenic. J. Contaminant Hydrol., 99: 31-48.
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  113. Jakariya, M., M. von Bromssen, G. Jacks, A.M.R. Chowdhury, K.M. Ahmed and P. Bhattacharya, 2007. Searching for sustainable arsenic mitigation strategy in Bangladesh: experience from two upazilas. Int. J. Environ. Poll., 31: 415-430.
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  114. Jakariya, M., M. Vahter, M. Rahman, M.A. Wahed, S.K. Hore, P. Bhattacharya, G. Jacks and L.A. Persson, 2007. Screening of arsenic in tubewell water with field test kits: Evaluation of the method from public health perspective. Sci. Total Environ., 379: 61-75.
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  115. Jakariya, M. and P. Bhattacharya, 2007. Use of GIS in local level participatory planning for arsenic mitigation: A case study from Matlab upazila, Bangladesh. J. Environ. Sci. Health, Part A., 42: 1933-1944.
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  117. Gustafsson, J.P. and P. Bhattacharya, 2007. Geochemical modelling of arsenic adsorption to oxide surfaces. Trace Met. Contam. Environ., 9: 159-206.
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  121. Naidu, R., E. Smith, G. Owens, P. Nadebaum and P. Bhattacharya, 2006. Management of Arsenic Contaminated Soils. In: Managing Arsenic in the Environment: From Soil to Human Health, Naidu, R., E. Smith, G. Owens, P. Bhattacharya and P. Nadebaum (Eds.). CSIRO Publishing, Melbourne, Australia, pp: 419-432.
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  148. Mukherjee, A.B. and P. Bhattacharya, 2002. Atmospheric emissions, depositions, and transformations of arsenic in natural ecosystem in Finland. Sci. World J., 2: 1667-1675.
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