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Published in: Environmental Earth Sciences 20/2020

01-10-2020 | Original Article

Hydrogeochemical evolution of shallow and deeper aquifers in central Bangladesh: arsenic mobilization process and health risk implications from the potable use of groundwater

Authors: Narottam Saha, Md. Bodrud-Doza, A. R. M. Towfiqul Islam, Bilkis A. Begum, M. Safiur Rahman

Published in: Environmental Earth Sciences | Issue 20/2020

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Abstract

Protection of groundwater quality from various natural and anthropogenic forces is a prime concern in Bangladesh. In this study, we utilized groundwater geochemistry of shallow and deeper aquifers to investigate the hydrogeochemical processes controlling water quality, and the sources and mechanism of Arsenic (As) release to water and associated human health risks in the Faridpur district, Bangladesh. Analysis of hydrochemical facies indicated that groundwaters were Ca–Mg–HCO3 type and that water–rock interactions were the dominant factors controlling their major-ion chemical composition. The dissolution of calcite, dolomite, and silicates, as well as cation exchange processes regulated the major ions chemistry in the groundwater. Dissolved fluoride (F) concentrations (0.02–0.4 mg/L) were lower than the drinking water standard of 1.5 mg/L set by the World Health Organization (WHO). Arsenic contamination of groundwater is among the biggest health threats in Bangladesh. The measured As concentration (0.01–1.46 mg/L with a mean of 0.12 mg/L) exceeded the maximum permissible limit of Bangladesh and WHO for drinking water. The estimated carcinogenic risk of As exceeded the upper benchmark of 1 × 10–4 for both adult and children, and health threats from shallow groundwater were more severe than the deeper water. The vertical distribution of As resembled Fe and Mn with their higher concentrations in shallow Holocene aquifers and lower in deeper Pleistocene aquifers. Speciation calculation indicated the majority of groundwater samples were oversaturated with respect to siderite, calcite, and dolomite, while undersaturated with respect to rhodochrosite. The saturation state of the minerals along with other processes may exert kinetic control on As, Fe, and Mn distribution in groundwater and lead to their lack of statistically significant correlations. Microbially mediated reductive dissolution of Fe and Mn oxyhydroxides is envisaged as the primary controlling mechanism of As mobilization in Faridpur groundwater. Pyrite oxidation was not postulated as a plausible explanation of As pollution.

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Appendix
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Literature
go back to reference Acharyya S, Chakraborty P, Lahiri S, Raymahashay B, Guha S, Bhowmik A (1999) Arsenic poisoning in the Ganges delta. Nature 401:545–545 Acharyya S, Chakraborty P, Lahiri S, Raymahashay B, Guha S, Bhowmik A (1999) Arsenic poisoning in the Ganges delta. Nature 401:545–545
go back to reference Ahmed KM, Bhattacharya P, Hasan MA, Akhter SH, Alam SMM, Bhuyian MAH, Imam MB, Khan AA, Sracek O (2004) Arsenic enrichment in groundwater of the alluvial aquifers in Bangladesh: an overview. Appl Geochem 19:181–200 Ahmed KM, Bhattacharya P, Hasan MA, Akhter SH, Alam SMM, Bhuyian MAH, Imam MB, Khan AA, Sracek O (2004) Arsenic enrichment in groundwater of the alluvial aquifers in Bangladesh: an overview. Appl Geochem 19:181–200
go back to reference Alam MGM, Snow ET, Tanaka A (2003) Arsenic and heavy metal contamination of vegetables grown in Samta village. Bangladesh Sci Total Environ 308:83–96 Alam MGM, Snow ET, Tanaka A (2003) Arsenic and heavy metal contamination of vegetables grown in Samta village. Bangladesh Sci Total Environ 308:83–96
go back to reference Anawar HM, Akai J, Komaki K, Terao H, Yoshioka T, Ishizuka T, Safiullah S, Kato K (2003) Geochemical occurrence of arsenic in groundwater of Bangladesh: sources and mobilization processes. J Geochem Explor 77:109–131 Anawar HM, Akai J, Komaki K, Terao H, Yoshioka T, Ishizuka T, Safiullah S, Kato K (2003) Geochemical occurrence of arsenic in groundwater of Bangladesh: sources and mobilization processes. J Geochem Explor 77:109–131
go back to reference Anawar HM, Akai J, Sakugawa H (2004) Mobilization of arsenic from subsurface sediments by effect of bicarbonate ions in groundwater. Chemosphere 54:753–762 Anawar HM, Akai J, Sakugawa H (2004) Mobilization of arsenic from subsurface sediments by effect of bicarbonate ions in groundwater. Chemosphere 54:753–762
go back to reference APHA-AWWA (2005) Standard methods for the examination of water and wastewater. APHA-AWWA, Washington, DC APHA-AWWA (2005) Standard methods for the examination of water and wastewater. APHA-AWWA, Washington, DC
go back to reference Appelo CAJ, Postma D (2004) Geochemistry, groundwater and pollution. CRC Press, Boca Raton Appelo CAJ, Postma D (2004) Geochemistry, groundwater and pollution. CRC Press, Boca Raton
go back to reference Berg M, Trang PTK, Stengel C, Buschmann J, Viet PH, Van Dan N, Giger W, Stüben D (2008) Hydrological and sedimentary controls leading to arsenic contamination of groundwater in the Hanoi area, Vietnam: the impact of iron-arsenic ratios, peat, river bank deposits, and excessive groundwater abstraction. Chem Geol 249:91–112 Berg M, Trang PTK, Stengel C, Buschmann J, Viet PH, Van Dan N, Giger W, Stüben D (2008) Hydrological and sedimentary controls leading to arsenic contamination of groundwater in the Hanoi area, Vietnam: the impact of iron-arsenic ratios, peat, river bank deposits, and excessive groundwater abstraction. Chem Geol 249:91–112
go back to reference Bhanja SN, Mukherjee A, Rodell M, Wada Y, Chattopadhyay S, Velicogna I, Pangaluru K, Famiglietti JS (2017) Groundwater rejuvenation in parts of India influenced by water-policy change implementation. Sci Rep 7 1:1–7 Bhanja SN, Mukherjee A, Rodell M, Wada Y, Chattopadhyay S, Velicogna I, Pangaluru K, Famiglietti JS (2017) Groundwater rejuvenation in parts of India influenced by water-policy change implementation. Sci Rep 7 1:1–7
go back to reference Bhattacharya P, Hasan MA, Sracek O, Smith E, Ahmed KM, von Brömssen M, Huq SMI, Naidu R (2009) Groundwater chemistry and arsenic mobilization in the Holocene flood plains in south-central Bangladesh. Environ Geochem Health 31:23–43 Bhattacharya P, Hasan MA, Sracek O, Smith E, Ahmed KM, von Brömssen M, Huq SMI, Naidu R (2009) Groundwater chemistry and arsenic mobilization in the Holocene flood plains in south-central Bangladesh. Environ Geochem Health 31:23–43
go back to reference Bird G, Macklin MG, Brewer PA, Zaharia S, Balteanu D, Driga B, Serban M (2009) Heavy metals in potable groundwater of mining-affected river catchments, northwestern Romania. Environ Geochem Health 31:741 Bird G, Macklin MG, Brewer PA, Zaharia S, Balteanu D, Driga B, Serban M (2009) Heavy metals in potable groundwater of mining-affected river catchments, northwestern Romania. Environ Geochem Health 31:741
go back to reference Bostick BC, Fendorf S (2003) Arsenite sorption on troilite (FeS) and pyrite (FeS2). Geochim Cosmochim Acta 67:909–921 Bostick BC, Fendorf S (2003) Arsenite sorption on troilite (FeS) and pyrite (FeS2). Geochim Cosmochim Acta 67:909–921
go back to reference Chang F-J, Huang C-W, Cheng S-T, Chang L-C (2017) Conservation of groundwater from over-exploitation—scientific analyses for groundwater resources management. Sci Total Environ 598:828–838 Chang F-J, Huang C-W, Cheng S-T, Chang L-C (2017) Conservation of groundwater from over-exploitation—scientific analyses for groundwater resources management. Sci Total Environ 598:828–838
go back to reference Chowdhury S, Mazumder MAJ, Al-Attas O, Husain T (2016) Heavy metals in drinking water: occurrences, implications, and future needs in developing countries. Sci Total Environ 569–570:476–488 Chowdhury S, Mazumder MAJ, Al-Attas O, Husain T (2016) Heavy metals in drinking water: occurrences, implications, and future needs in developing countries. Sci Total Environ 569–570:476–488
go back to reference Chowdhury TR, Basu GK, Mandal BK, Biswas BK, Samanta G, Chowdhury UK, Chanda CR, Lodh D, Roy SL, Saha KC (1999) Arsenic poisoning in the Ganges delta. Nature 401:545–546 Chowdhury TR, Basu GK, Mandal BK, Biswas BK, Samanta G, Chowdhury UK, Chanda CR, Lodh D, Roy SL, Saha KC (1999) Arsenic poisoning in the Ganges delta. Nature 401:545–546
go back to reference Couture RM, Rose J, Kumar N, Mitchell K, Wallschlager D, Van Cappellen P (2013) Sorption of arsenite, arsenate, and thioarsenates to iron oxides and iron sulfides: a kinetic and spectroscopic investigation. Environ Sci Technol 47:5652–5659 Couture RM, Rose J, Kumar N, Mitchell K, Wallschlager D, Van Cappellen P (2013) Sorption of arsenite, arsenate, and thioarsenates to iron oxides and iron sulfides: a kinetic and spectroscopic investigation. Environ Sci Technol 47:5652–5659
go back to reference Das D, Samanta G, Mandal BK, Chowdhury TR, Chanda CR, Chowdhury PP, Basu GK, Chakraborti D (1996) Arsenic in groundwater in six districts of West Bengal, India. Environ Geochem Health 18:5–15 Das D, Samanta G, Mandal BK, Chowdhury TR, Chanda CR, Chowdhury PP, Basu GK, Chakraborti D (1996) Arsenic in groundwater in six districts of West Bengal, India. Environ Geochem Health 18:5–15
go back to reference De Miguel E, Iribarren I, Chacon E, Ordonez A, Charlesworth S (2007) Risk-based evaluation of the exposure of children to trace elements in playgrounds in Madrid (Spain). Chemosphere 66:505–513 De Miguel E, Iribarren I, Chacon E, Ordonez A, Charlesworth S (2007) Risk-based evaluation of the exposure of children to trace elements in playgrounds in Madrid (Spain). Chemosphere 66:505–513
go back to reference Dowling CB, Poreda RJ, Basu AR, Peters SL, Aggarwal PK (2002) Geochemical study of arsenic release mechanisms in the Bengal Basin groundwater. Water Resour Res 38:12 Dowling CB, Poreda RJ, Basu AR, Peters SL, Aggarwal PK (2002) Geochemical study of arsenic release mechanisms in the Bengal Basin groundwater. Water Resour Res 38:12
go back to reference Durov SA (1948) Natural waters and graphic representation of their composition 59:87–90 Durov SA (1948) Natural waters and graphic representation of their composition 59:87–90
go back to reference ECR (1997) The Environment Conservation Rules, Government of the People’s Republic of Bangladesh. Ministry of Environment and Forest, Bangladesh ECR (1997) The Environment Conservation Rules, Government of the People’s Republic of Bangladesh. Ministry of Environment and Forest, Bangladesh
go back to reference Fendorf S, Michael HA, van Geen A (2010) Spatial and temporal variations of groundwater arsenic in South and Southeast Asia. Science 328:1123–1127 Fendorf S, Michael HA, van Geen A (2010) Spatial and temporal variations of groundwater arsenic in South and Southeast Asia. Science 328:1123–1127
go back to reference Fisher RS, Mullican Iii WF (1997) Hydrochemical evolution of sodium-sulfate and sodium-chloride groundwater beneath the northern Chihuahuan Desert, Trans-Pecos, Texas, USA. Hydrogeol J 5:4–16 Fisher RS, Mullican Iii WF (1997) Hydrochemical evolution of sodium-sulfate and sodium-chloride groundwater beneath the northern Chihuahuan Desert, Trans-Pecos, Texas, USA. Hydrogeol J 5:4–16
go back to reference Gaillardet J, Dupré B, Louvat P, Allegre C (1999) Global silicate weathering and CO2 consumption rates deduced from the chemistry of large rivers. Chem Geol 159:3–30 Gaillardet J, Dupré B, Louvat P, Allegre C (1999) Global silicate weathering and CO2 consumption rates deduced from the chemistry of large rivers. Chem Geol 159:3–30
go back to reference Gibbs RJ (1970) Mechanisms controlling world water chemistry. Science 170:1088–1090 Gibbs RJ (1970) Mechanisms controlling world water chemistry. Science 170:1088–1090
go back to reference Giri S, Singh AK (2015) Human health risk assessment via drinking water pathway due to metal contamination in the groundwater of Subarnarekha River Basin. India Environ Monit Assess 187:1–14 Giri S, Singh AK (2015) Human health risk assessment via drinking water pathway due to metal contamination in the groundwater of Subarnarekha River Basin. India Environ Monit Assess 187:1–14
go back to reference Griffioen J (2001) Potassium adsorption ratios as an indicator for the fate of agricultural potassium in groundwater. J Hydrol 254:244–254 Griffioen J (2001) Potassium adsorption ratios as an indicator for the fate of agricultural potassium in groundwater. J Hydrol 254:244–254
go back to reference Harvey CF, Swartz CH, Badruzzaman A, Keon-Blute N, Yu W, Ali MA, Jay J, Beckie R, Niedan V, Brabander D (2002) Arsenic mobility and groundwater extraction in Bangladesh. Science 298:1602–1606 Harvey CF, Swartz CH, Badruzzaman A, Keon-Blute N, Yu W, Ali MA, Jay J, Beckie R, Niedan V, Brabander D (2002) Arsenic mobility and groundwater extraction in Bangladesh. Science 298:1602–1606
go back to reference Hasan MA, Ahmed KM, Sracek O, Bhattacharya P, von Brömssen M, Broms S, Fogelström J, Mazumder ML, Jacks G (2007) Arsenic in shallow groundwater of Bangladesh: investigations from three different physiographic settings. Hydrogeol J 15:1507–1522 Hasan MA, Ahmed KM, Sracek O, Bhattacharya P, von Brömssen M, Broms S, Fogelström J, Mazumder ML, Jacks G (2007) Arsenic in shallow groundwater of Bangladesh: investigations from three different physiographic settings. Hydrogeol J 15:1507–1522
go back to reference Islam FS, Gault AG, Boothman C, Polya DA, Charnock JM, Chatterjee D, Lloyd JR (2004) Role of metal-reducing bacteria in arsenic release from Bengal delta sediments. Nature 430:68–71 Islam FS, Gault AG, Boothman C, Polya DA, Charnock JM, Chatterjee D, Lloyd JR (2004) Role of metal-reducing bacteria in arsenic release from Bengal delta sediments. Nature 430:68–71
go back to reference Islam MS, Ahmed MK, Habibullah-Al-Mamun M, Raknuzzaman M (2015) The concentration, source and potential human health risk of heavy metals in the commonly consumed foods in Bangladesh. Ecotoxicol Environ Saf 122:462–469 Islam MS, Ahmed MK, Habibullah-Al-Mamun M, Raknuzzaman M (2015) The concentration, source and potential human health risk of heavy metals in the commonly consumed foods in Bangladesh. Ecotoxicol Environ Saf 122:462–469
go back to reference Jalali M (2009) Geochemistry characterization of groundwater in an agricultural area of Razan, Hamadan. Iran Environ Geol 56:1479–1488 Jalali M (2009) Geochemistry characterization of groundwater in an agricultural area of Razan, Hamadan. Iran Environ Geol 56:1479–1488
go back to reference Kaur T, Bhardwaj R, Arora S (2016) Assessment of groundwater quality for drinking and irrigation purposes using hydrochemical studies in Malwa region, southwestern part of Punjab, India. Appl Water Sci 7:1–16 Kaur T, Bhardwaj R, Arora S (2016) Assessment of groundwater quality for drinking and irrigation purposes using hydrochemical studies in Malwa region, southwestern part of Punjab, India. Appl Water Sci 7:1–16
go back to reference Kim EJ, Batchelor B (2009) Macroscopic and X-ray photoelectron spectroscopic investigation of interactions of arsenic with synthesized pyrite. Environ Sci Technol 43:2899–2904 Kim EJ, Batchelor B (2009) Macroscopic and X-ray photoelectron spectroscopic investigation of interactions of arsenic with synthesized pyrite. Environ Sci Technol 43:2899–2904
go back to reference Kinniburgh DG, Smedley PL (2001) Arsenic contamination of groundwater in Bangladesh. Technical Report WC/00/19, vol 1–4. British Geological Survey, Keyworth, UK Kinniburgh DG, Smedley PL (2001) Arsenic contamination of groundwater in Bangladesh. Technical Report WC/00/19, vol 1–4. British Geological Survey, Keyworth, UK
go back to reference Krishnan MS (1985) The geology of India and Burma. CBS, New Delhi Krishnan MS (1985) The geology of India and Burma. CBS, New Delhi
go back to reference Kumar M, Ramanathan AL, Mukherjee A, Verma S, Rahman MM, Naidu R (2018) Hydrogeo-morphological influences for arsenic release and fate in the central Gangetic Basin, India. Environ Technol Innov 12:243–260 Kumar M, Ramanathan AL, Mukherjee A, Verma S, Rahman MM, Naidu R (2018) Hydrogeo-morphological influences for arsenic release and fate in the central Gangetic Basin, India. Environ Technol Innov 12:243–260
go back to reference Li P, Tian R, Liu R (2019) Solute geochemistry and multivariate analysis of water quality in the Guohua phosphorite mine, Guizhou Province, China. Expo Health 11:81–94 Li P, Tian R, Liu R (2019) Solute geochemistry and multivariate analysis of water quality in the Guohua phosphorite mine, Guizhou Province, China. Expo Health 11:81–94
go back to reference Li P, Wu J, Tian R, He S, He X, Xue C, Zhang K (2018) Geochemistry, hydraulic connectivity and quality appraisal of multilayered groundwater in the Hongdunzi Coal Mine, Northwest China. Mine Water Environ 37:222–237 Li P, Wu J, Tian R, He S, He X, Xue C, Zhang K (2018) Geochemistry, hydraulic connectivity and quality appraisal of multilayered groundwater in the Hongdunzi Coal Mine, Northwest China. Mine Water Environ 37:222–237
go back to reference Li P, Zhang Y, Yang N, Jing L, Yu P (2016) Major ion chemistry and quality assessment of groundwater in and around a mountainous tourist town of China. Exposure Health 8:239–252 Li P, Zhang Y, Yang N, Jing L, Yu P (2016) Major ion chemistry and quality assessment of groundwater in and around a mountainous tourist town of China. Exposure Health 8:239–252
go back to reference Lijzen JPA, Otte P, van Dreumel M (2014) Towards sustainable management of groundwater: policy developments in the Netherlands. Sci Total Environ 485–486:804–809 Lijzen JPA, Otte P, van Dreumel M (2014) Towards sustainable management of groundwater: policy developments in the Netherlands. Sci Total Environ 485–486:804–809
go back to reference Luo W, Gao X, Zhang X (2018) Geochemical processes controlling the groundwater chemistry and fluoride contamination in the Yuncheng Basin, China—an area with complex hydrogeochemical conditions. PLoS ONE 13:e0199082 Luo W, Gao X, Zhang X (2018) Geochemical processes controlling the groundwater chemistry and fluoride contamination in the Yuncheng Basin, China—an area with complex hydrogeochemical conditions. PLoS ONE 13:e0199082
go back to reference McArthur J, Ravenscroft P, Safiulla S, Thirlwall M (2001) Arsenic in groundwater: testing pollution mechanisms for sedimentary aquifers in Bangladesh. Water Resour Res 37:109–117 McArthur J, Ravenscroft P, Safiulla S, Thirlwall M (2001) Arsenic in groundwater: testing pollution mechanisms for sedimentary aquifers in Bangladesh. Water Resour Res 37:109–117
go back to reference McArthur JM, Banerjee DM, Hudson-Edwards KA, Mishra R, Purohit R, Ravenscroft P, Cronin A, Howarth RJ, Chatterjee A, Talukder T, Lowry D, Houghton S, Chadha DK (2004) Natural organic matter in sedimentary basins and its relation to arsenic in anoxic ground water: the example of West Bengal and its worldwide implications. Appl Geochem 19:1255–1293 McArthur JM, Banerjee DM, Hudson-Edwards KA, Mishra R, Purohit R, Ravenscroft P, Cronin A, Howarth RJ, Chatterjee A, Talukder T, Lowry D, Houghton S, Chadha DK (2004) Natural organic matter in sedimentary basins and its relation to arsenic in anoxic ground water: the example of West Bengal and its worldwide implications. Appl Geochem 19:1255–1293
go back to reference Meharg AA, Rahman MM (2003) Arsenic contamination of Bangladesh paddy field soils: implications for rice contribution to arsenic consumption. Environ Sci Technol 37:229–234 Meharg AA, Rahman MM (2003) Arsenic contamination of Bangladesh paddy field soils: implications for rice contribution to arsenic consumption. Environ Sci Technol 37:229–234
go back to reference Meybeck M (1987) Global chemical weathering of surficial rocks estimated from river dissolved loads. Am J Sci 287:401–428 Meybeck M (1987) Global chemical weathering of surficial rocks estimated from river dissolved loads. Am J Sci 287:401–428
go back to reference Middelburg JJ, De Lange GJ, van Der Weijden CH (1987) Manganese solubility control in marine pore waters. Geochim Cosmochim Acta 51:759–763 Middelburg JJ, De Lange GJ, van Der Weijden CH (1987) Manganese solubility control in marine pore waters. Geochim Cosmochim Acta 51:759–763
go back to reference Nahar MS, Zhang J, Ueda A, Yoshihisa F (2014) Investigation of severe water problem in urban areas of a developing country: the case of Dhaka. Bangladesh Environ Geochem Health 36:1079–1094 Nahar MS, Zhang J, Ueda A, Yoshihisa F (2014) Investigation of severe water problem in urban areas of a developing country: the case of Dhaka. Bangladesh Environ Geochem Health 36:1079–1094
go back to reference Neumann RB, Ashfaque KN, Badruzzaman A, Ali MA, Shoemaker JK, Harvey CF (2010) Anthropogenic influences on groundwater arsenic concentrations in Bangladesh. Nat Geosci 3:46–52 Neumann RB, Ashfaque KN, Badruzzaman A, Ali MA, Shoemaker JK, Harvey CF (2010) Anthropogenic influences on groundwater arsenic concentrations in Bangladesh. Nat Geosci 3:46–52
go back to reference Nickson R, McArthur J, Ravenscroft P, Burgess W, Ahmed K (2000) Mechanism of arsenic release to groundwater, Bangladesh and West Bengal. Appl Geochem 15:403–413 Nickson R, McArthur J, Ravenscroft P, Burgess W, Ahmed K (2000) Mechanism of arsenic release to groundwater, Bangladesh and West Bengal. Appl Geochem 15:403–413
go back to reference Ortega-Guerrero A (2017) Evaporative concentration of arsenic in groundwater: health and environmental implications, La Laguna Region, Mexico. Environ Geochem Health 5:987–1003 Ortega-Guerrero A (2017) Evaporative concentration of arsenic in groundwater: health and environmental implications, La Laguna Region, Mexico. Environ Geochem Health 5:987–1003
go back to reference Parkhurst DL, Appelo CJW (1999) User's guide to PHREEQC (version 2): a computer program for speciation, batch-reaction, one-dimensional transport, and inverse geochemical calculations. Water-Resour Investig Rep 99:312 Parkhurst DL, Appelo CJW (1999) User's guide to PHREEQC (version 2): a computer program for speciation, batch-reaction, one-dimensional transport, and inverse geochemical calculations. Water-Resour Investig Rep 99:312
go back to reference Paul R, Brindha K, Gowrisankar G, Tan ML, Singh MK (2019) Identification of hydrogeochemical processes controlling groundwater quality in Tripura, Northeast India using evaluation indices, GIS, and multivariate statistical methods. Environ Earth Sci 78:470 Paul R, Brindha K, Gowrisankar G, Tan ML, Singh MK (2019) Identification of hydrogeochemical processes controlling groundwater quality in Tripura, Northeast India using evaluation indices, GIS, and multivariate statistical methods. Environ Earth Sci 78:470
go back to reference Polizzotto ML, Harvey CF, Li G, Badruzzman B, Ali A, Newville M, Sutton S, Fendorf S (2006) Solid-phases and desorption processes of arsenic within Bangladesh sediments. Chem Geol 228:97–111 Polizzotto ML, Harvey CF, Li G, Badruzzman B, Ali A, Newville M, Sutton S, Fendorf S (2006) Solid-phases and desorption processes of arsenic within Bangladesh sediments. Chem Geol 228:97–111
go back to reference Postma D, Jessen S, Hue NTM, Duc MT, Koch CB, Viet PH, Nhan PQ, Larsen F (2010) Mobilization of arsenic and iron from Red River floodplain sediments. Vietnam Geochim Cosmochim Acta 74:3367–3381 Postma D, Jessen S, Hue NTM, Duc MT, Koch CB, Viet PH, Nhan PQ, Larsen F (2010) Mobilization of arsenic and iron from Red River floodplain sediments. Vietnam Geochim Cosmochim Acta 74:3367–3381
go back to reference Postma D, Larsen F, Minh Hue NT, Duc MT, Viet PH, Nhan PQ, Jessen S (2007) Arsenic in groundwater of the Red River floodplain, Vietnam: controlling geochemical processes and reactive transport modeling. Geochim Cosmochim Acta 71:5054–5071 Postma D, Larsen F, Minh Hue NT, Duc MT, Viet PH, Nhan PQ, Jessen S (2007) Arsenic in groundwater of the Red River floodplain, Vietnam: controlling geochemical processes and reactive transport modeling. Geochim Cosmochim Acta 71:5054–5071
go back to reference Postma D, Larsen F, Thai NT, Trang PTK, Jakobsen R, Nhan PQ, Long TV, Viet PH, Murray AS (2012) Groundwater arsenic concentrations in Vietnam controlled by sediment age. Nat Geosci 5:656–661 Postma D, Larsen F, Thai NT, Trang PTK, Jakobsen R, Nhan PQ, Long TV, Viet PH, Murray AS (2012) Groundwater arsenic concentrations in Vietnam controlled by sediment age. Nat Geosci 5:656–661
go back to reference Radu T, Subacz JL, Phillippi JM, Barnett MO (2005) Effects of dissolved carbonate on arsenic adsorption and mobility. Environ Sci Technol 39:7875–7882 Radu T, Subacz JL, Phillippi JM, Barnett MO (2005) Effects of dissolved carbonate on arsenic adsorption and mobility. Environ Sci Technol 39:7875–7882
go back to reference Rahman MATMT, Majumder RK, Rahman SH, Halim MA (2011) Sources of deep groundwater salinity in the southwestern zone of Bangladesh. Environ Earth Sci 63:363–373 Rahman MATMT, Majumder RK, Rahman SH, Halim MA (2011) Sources of deep groundwater salinity in the southwestern zone of Bangladesh. Environ Earth Sci 63:363–373
go back to reference Ravenscroft P, Burgess WG, Ahmed KM, Burren M, Perrin J (2005) Arsenic in groundwater of the Bengal basin, Bangladesh: distribution, field relations, and hydrogeological setting. Hydrogeol J 13:727–751 Ravenscroft P, Burgess WG, Ahmed KM, Burren M, Perrin J (2005) Arsenic in groundwater of the Bengal basin, Bangladesh: distribution, field relations, and hydrogeological setting. Hydrogeol J 13:727–751
go back to reference Razak F, Corsi DJ, Subramanian S (2013) Change in the body mass index distribution for women: analysis of surveys from 37 low-and middle-income countries. PLoS Med 10:e1001367 Razak F, Corsi DJ, Subramanian S (2013) Change in the body mass index distribution for women: analysis of surveys from 37 low-and middle-income countries. PLoS Med 10:e1001367
go back to reference Safiulla S (1998) CIDA Arsenic project report: Monitoring and mitigation of arsenic in the ground water of Faridpur Municipality. Jahangirnagar University, Bangladesh Safiulla S (1998) CIDA Arsenic project report: Monitoring and mitigation of arsenic in the ground water of Faridpur Municipality. Jahangirnagar University, Bangladesh
go back to reference Saha N, Rahman MS (2020) Groundwater hydrogeochemistry and probabilistic health risk assessment through exposure to arsenic-contaminated groundwater of Meghna floodplain, central-east Bangladesh. Ecotoxicol Environ Saf 206:111349 Saha N, Rahman MS (2020) Groundwater hydrogeochemistry and probabilistic health risk assessment through exposure to arsenic-contaminated groundwater of Meghna floodplain, central-east Bangladesh. Ecotoxicol Environ Saf 206:111349
go back to reference Saha N, Rahman MS, Ahmed MB, Zhou JL, Ngo HH, Guo W (2017) Industrial metal pollution in water and probabilistic assessment of human health risk. J Environ Manag 185:70–78 Saha N, Rahman MS, Ahmed MB, Zhou JL, Ngo HH, Guo W (2017) Industrial metal pollution in water and probabilistic assessment of human health risk. J Environ Manag 185:70–78
go back to reference Schreiber ME, Simo JA, Freiberg PG (2000) Stratigraphic and geochemical controls on naturally occurring arsenic in groundwater, eastern Wisconsin, USA. Hydrogeol J 8:161–176 Schreiber ME, Simo JA, Freiberg PG (2000) Stratigraphic and geochemical controls on naturally occurring arsenic in groundwater, eastern Wisconsin, USA. Hydrogeol J 8:161–176
go back to reference Sharma S, Nagpal AK, Kaur I (2019) Appraisal of heavy metal contents in groundwater and associated health hazards posed to human population of Ropar wetland, Punjab, India and its environs. Chemosphere 227:179–190 Sharma S, Nagpal AK, Kaur I (2019) Appraisal of heavy metal contents in groundwater and associated health hazards posed to human population of Ropar wetland, Punjab, India and its environs. Chemosphere 227:179–190
go back to reference Sivasubramanian P, Balasubramanian N, Soundranayagam JP, Chandrasekar N (2013) Hydrochemical characteristics of coastal aquifers of Kadaladi, Ramanathapuram District, Tamilnadu, India. App Water Sci 3:603–612 Sivasubramanian P, Balasubramanian N, Soundranayagam JP, Chandrasekar N (2013) Hydrochemical characteristics of coastal aquifers of Kadaladi, Ramanathapuram District, Tamilnadu, India. App Water Sci 3:603–612
go back to reference Smith AH, Lingas EO, Rahman M (2000) Contamination of drinking-water by arsenic in Bangladesh: a public health emergency. Bull WHO 78:1093–1103 Smith AH, Lingas EO, Rahman M (2000) Contamination of drinking-water by arsenic in Bangladesh: a public health emergency. Bull WHO 78:1093–1103
go back to reference Solander KC, Reager JT, Wada Y, Famiglietti JS, Middleton RS (2017) GRACE satellite observations reveal the severity of recent water over-consumption in the United States. Sci, Rep, p 7 Solander KC, Reager JT, Wada Y, Famiglietti JS, Middleton RS (2017) GRACE satellite observations reveal the severity of recent water over-consumption in the United States. Sci, Rep, p 7
go back to reference Stimson J, Frape S, Drimmie R, Rudolph D (2001) Isotopic and geochemical evidence of regional-scale anisotropy and interconnectivity of an alluvial fan system, Cochabamba Valley, Bolivia. Appl Geochem 16:1097–1114 Stimson J, Frape S, Drimmie R, Rudolph D (2001) Isotopic and geochemical evidence of regional-scale anisotropy and interconnectivity of an alluvial fan system, Cochabamba Valley, Bolivia. Appl Geochem 16:1097–1114
go back to reference Swartz CH, Blute NK, Badruzzman B, Ali A, Brabander D, Jay J, Besancon J, Islam S, Hemond HF, Harvey CF (2004) Mobility of arsenic in a Bangladesh aquifer: inferences from geochemical profiles, leaching data, and mineralogical characterization. Geochim Cosmochim Acta 68:4539–4557 Swartz CH, Blute NK, Badruzzman B, Ali A, Brabander D, Jay J, Besancon J, Islam S, Hemond HF, Harvey CF (2004) Mobility of arsenic in a Bangladesh aquifer: inferences from geochemical profiles, leaching data, and mineralogical characterization. Geochim Cosmochim Acta 68:4539–4557
go back to reference Tareq SM, Safiullah S, Anawar HM, Rahman MM, Ishizuka T (2003) Arsenic pollution in groundwater: a self-organizing complex geochemical process in the deltaic sedimentary environment. Bangladesh Sci Total Environ 313:213–226 Tareq SM, Safiullah S, Anawar HM, Rahman MM, Ishizuka T (2003) Arsenic pollution in groundwater: a self-organizing complex geochemical process in the deltaic sedimentary environment. Bangladesh Sci Total Environ 313:213–226
go back to reference Thorstenson DC, Fisher DW, Croft MG (1979) The geochemistry of the Fox Hills-Basal Hell Creek Aquifer in southwestern North Dakota and northwestern South Dakota. Water Resour Res 15:1479–1498 Thorstenson DC, Fisher DW, Croft MG (1979) The geochemistry of the Fox Hills-Basal Hell Creek Aquifer in southwestern North Dakota and northwestern South Dakota. Water Resour Res 15:1479–1498
go back to reference Tweed S, Celle-Jeanton H, Cabot L, Huneau F, De Montety V, Nicolau N, Travi Y, Babic M, Aquilina L, Vergnaud-Ayraud V, Leblanc M (2018) Impact of irrigated agriculture on groundwater resources in a temperate humid region. Sci Total Environ 613–614:1302–1316 Tweed S, Celle-Jeanton H, Cabot L, Huneau F, De Montety V, Nicolau N, Travi Y, Babic M, Aquilina L, Vergnaud-Ayraud V, Leblanc M (2018) Impact of irrigated agriculture on groundwater resources in a temperate humid region. Sci Total Environ 613–614:1302–1316
go back to reference Umitsu M (1993) Late quaternary sedimentary environments and landforms in the Ganges Delta. Sediment Geol 83:177–186 Umitsu M (1993) Late quaternary sedimentary environments and landforms in the Ganges Delta. Sediment Geol 83:177–186
go back to reference UNICEF (2014) Multiple indicator cluster survey 2012–2013. Progotir pathey: final Report. Bangladesh Bureau of Statistics (BBS) and UNICEF Bangladesh. UNICEF (2014) Multiple indicator cluster survey 2012–2013. Progotir pathey: final Report. Bangladesh Bureau of Statistics (BBS) and UNICEF Bangladesh.
go back to reference USEPA (1996) Quantitative uncertainty analysis of superfund residential risk pathway models for soil and groundwater: white paper. US Environmental Protection Agency, USA USEPA (1996) Quantitative uncertainty analysis of superfund residential risk pathway models for soil and groundwater: white paper. US Environmental Protection Agency, USA
go back to reference USEPA (2001) Risk assessment guidance for superfund (RAGS), vol III—part A, process for conducting probabilistic risk assessment. Office of emergency and remedial response, Washington, DC USEPA (2001) Risk assessment guidance for superfund (RAGS), vol III—part A, process for conducting probabilistic risk assessment. Office of emergency and remedial response, Washington, DC
go back to reference USEPA (2004) Risk assessment guidance for superfund volume I: human health evaluation manual (part E, supplemental guidance for dermal risk assessment). US Environment Protection Agency, Washington DC USEPA (2004) Risk assessment guidance for superfund volume I: human health evaluation manual (part E, supplemental guidance for dermal risk assessment). US Environment Protection Agency, Washington DC
go back to reference USEPA (2015) Risk Based Screening Table-Generi, Summary Table. US Environment Protection Agency, Washington DC USEPA (2015) Risk Based Screening Table-Generi, Summary Table. US Environment Protection Agency, Washington DC
go back to reference Van Geen A, Bostick BC, Trang PTK, Lan VM, Mai N-N, Manh PD, Viet PH, Radloff K, Aziz Z, Mey JL (2013) Retardation of arsenic transport through a Pleistocene aquifer. Nature 501:204–207 Van Geen A, Bostick BC, Trang PTK, Lan VM, Mai N-N, Manh PD, Viet PH, Radloff K, Aziz Z, Mey JL (2013) Retardation of arsenic transport through a Pleistocene aquifer. Nature 501:204–207
go back to reference Van Geen A, Zheng Y, Cheng Z, Aziz Z, Horneman A, Dhar RK, Mailloux B, Stute M, Weinman B, Goodbred S (2006) A transect of groundwater and sediment properties in Araihazar, Bangladesh: further evidence of decoupling between As and Fe mobilization. Chem Geol 228:85–96 Van Geen A, Zheng Y, Cheng Z, Aziz Z, Horneman A, Dhar RK, Mailloux B, Stute M, Weinman B, Goodbred S (2006) A transect of groundwater and sediment properties in Araihazar, Bangladesh: further evidence of decoupling between As and Fe mobilization. Chem Geol 228:85–96
go back to reference Welch AH, Lico MS (1998) Factors controlling As and U in shallow ground water, southern Carson Desert Nevada. Appl Geochem 13:521–539 Welch AH, Lico MS (1998) Factors controlling As and U in shallow ground water, southern Carson Desert Nevada. Appl Geochem 13:521–539
go back to reference WHO (2006) Guidelines for drinking-water quality, 3rd edn. WHO, Geneva WHO (2006) Guidelines for drinking-water quality, 3rd edn. WHO, Geneva
go back to reference WHO (2017) Guidelines for drinking-water quality. World Health Organization, Geneva WHO (2017) Guidelines for drinking-water quality. World Health Organization, Geneva
go back to reference Winkel LH, Trang PTK, Lan VM, Stengel C, Amini M, Ha NT, Viet PH, Berg M (2011) Arsenic pollution of groundwater in Vietnam exacerbated by deep aquifer exploitation for more than a century. Proc Natl Acad Sci 108:1246–1251 Winkel LH, Trang PTK, Lan VM, Stengel C, Amini M, Ha NT, Viet PH, Berg M (2011) Arsenic pollution of groundwater in Vietnam exacerbated by deep aquifer exploitation for more than a century. Proc Natl Acad Sci 108:1246–1251
go back to reference Wu B, Zhao D, Jia H, Zhang Y, Zhang X, Cheng S (2009) Preliminary risk assessment of trace metal pollution in surface water from Yangtze River in Nanjing Section. China Bull Environ Contam Toxicol 82:405–409 Wu B, Zhao D, Jia H, Zhang Y, Zhang X, Cheng S (2009) Preliminary risk assessment of trace metal pollution in surface water from Yangtze River in Nanjing Section. China Bull Environ Contam Toxicol 82:405–409
go back to reference Zeng G, Liang J, Guo S, Shi L, Xiang L, Li X, Du C (2009) Spatial analysis of human health risk associated with ingesting manganese in Huangxing Town, Middle China. Chemosphere 77:368–375 Zeng G, Liang J, Guo S, Shi L, Xiang L, Li X, Du C (2009) Spatial analysis of human health risk associated with ingesting manganese in Huangxing Town, Middle China. Chemosphere 77:368–375
go back to reference Zheng Y, van Geen A, Stute M, Dhar R, Mo Z, Cheng Z, Horneman A, Gavrieli I, Simpson HJ, Versteeg R, Steckler M, Grazioli-Venier A, Goodbred S, Shahnewaz M, Shamsudduha M, Hoque MA, Ahmed KM (2005) Geochemical and hydrogeological contrasts between shallow and deeper aquifers in two villages of Araihazar, Bangladesh: Implications for deeper aquifers as drinking water sources. Geochim Cosmochim Acta 69:5203–5218 Zheng Y, van Geen A, Stute M, Dhar R, Mo Z, Cheng Z, Horneman A, Gavrieli I, Simpson HJ, Versteeg R, Steckler M, Grazioli-Venier A, Goodbred S, Shahnewaz M, Shamsudduha M, Hoque MA, Ahmed KM (2005) Geochemical and hydrogeological contrasts between shallow and deeper aquifers in two villages of Araihazar, Bangladesh: Implications for deeper aquifers as drinking water sources. Geochim Cosmochim Acta 69:5203–5218
go back to reference Zhou J, Zhang Y, Zhou A, Liu C, Cai H, Liu Y (2016) Application of hydrochemistry and stable isotopes (δ34S, δ18O and δ37Cl) to trace natural and anthropogenic influences on the quality of groundwater in the piedmont region, Shijiazhuang. China Appl Geochem 71:63–72 Zhou J, Zhang Y, Zhou A, Liu C, Cai H, Liu Y (2016) Application of hydrochemistry and stable isotopes (δ34S, δ18O and δ37Cl) to trace natural and anthropogenic influences on the quality of groundwater in the piedmont region, Shijiazhuang. China Appl Geochem 71:63–72
go back to reference Zhu B, Yang X, Rioual P, Qin X, Liu Z, Xiong H, Yu J (2011) Hydrogeochemistry of three watersheds (the Erlqis, Zhungarer and Yili) in northern Xinjiang, NW China. Appl Geochem 26:1535–1548 Zhu B, Yang X, Rioual P, Qin X, Liu Z, Xiong H, Yu J (2011) Hydrogeochemistry of three watersheds (the Erlqis, Zhungarer and Yili) in northern Xinjiang, NW China. Appl Geochem 26:1535–1548
Metadata
Title
Hydrogeochemical evolution of shallow and deeper aquifers in central Bangladesh: arsenic mobilization process and health risk implications from the potable use of groundwater
Authors
Narottam Saha
Md. Bodrud-Doza
A. R. M. Towfiqul Islam
Bilkis A. Begum
M. Safiur Rahman
Publication date
01-10-2020
Publisher
Springer Berlin Heidelberg
Published in
Environmental Earth Sciences / Issue 20/2020
Print ISSN: 1866-6280
Electronic ISSN: 1866-6299
DOI
https://doi.org/10.1007/s12665-020-09228-4

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