53. Li, W., Shi, Y., Gao, L., Liu, J., & Cai, Y. (2015). Occurrence, fate and risk assessment of
parabens and their chlorinated derivatives in an advanced wastewater treatment plant.
Journal of Hazardous Materials, 300, 29–38.
54. Liu, J. L., & Wong, M. H. (2013). Pharmaceuticals and personal care products (PPCPs): A
review on environmental contamination in China. Environment International, 59, 208–224.
55. Madhav, S., Ahamad, A., Kumar, A., Kushawaha, J., Singh, P., & Mishra, P. K. (2018a).
Geochemical assessment of groundwater quality for its suitability for drinking and irrigation
purpose in rural areas of Sant Ravidas Nagar (Bhadohi), Uttar Pradesh. Geology, Ecology,
and Landscapes, 2(2), 127–136.
56. Madhav, S., Ahamad, A., Singh, P., & Mishra, P. K. (2018b). A review of textile industry:
Wet processing, environmental impacts, and effluent treatment methods. Environmental
Quality Management, 27(3), 31–41.
57. Martín, J., del Mar Orta, M., Medina-Carrasco, S., Santos, J. L., Aparicio, I., & Alonso, E.
(2018). Removal of priority and emerging pollutants from aqueous media by adsorption onto
synthetic organo-funtionalized high-charge swelling micas. Environmental Research, 164,
488–494.
58. McGregor, D. B., Baan, R. A., Partensky, C., Rice, J. M., & Wilbourn, J. D. (2000).
Evaluation of the carcinogenic risks to humans associated with surgical implants and other
foreign bodies-a report of an IARC Monographs Programme Meeting. European Journal of
Cancer, 36(3), 307–313.
59. Meenakshi, S., Maheswari, R. C. (2006). Fluoride in drinking water and its removal. Journal
of Hazardous Materials B, 137, 456–463.
60. Milman, N., Pedersen, P. A., á Steig, T., Byg, K. E., Graudal, N., & Fenger, K. (2001).
Clinically overt hereditary hemochromatosis in Denmark 1948–1985: Epidemiology, factors
of significance for long-term survival, and causes of death in 179 patients. Annals of
Hematology, 80(12), 737–744.
61. Mohan, D., Pittman Jr, C. U., Bricka, M., Smith, F., Yancey, B., Mohammad, J. … Gong, H.
(2007). Sorption of arsenic, cadmium, and lead by chars produced from fast pyrolysis of
wood and bark during bio-oil production. Journal of Colloid and Interface Science, 310(1),
57–73.
62. Mompelat, S., Le Bot, B., & Thomas, O. (2009). Occurrence and fate of pharmaceutical
products and by-products, from resource to drinking water. Environment International, 35,
803–814.
63. Navarro-Alarcon, M., & Cabrera-Vique, C. (2008). Selenium in food and the human body:
A review. Science of the Total Environment, 400, 115–141.
64. Novotny, V. (1995). Diffuse sources of pollution by toxic metals and impact on receiving
waters. In Heavy metals (pp. 33–52). Berlin, Heidelberg: Springer.
65. Oliveira, T. S., Murphy, M., Mendola, N., Wong, V., Carlson, D., & Waring, L. (2015).
Characterization of pharmaceuticals and personal care products in hospital effluent and waste
water influent/effluent by direct-injection LC-MS-MS. Science of the Total Environment,
518, 459–478.
66. Orebiyi, E. O., Awomeso, J. A., Idowu, O. A., Martins, O., Oguntoke, O., & Taiwo, A. M.
(2010). Assessment of pollution hazards of shallow well water in Abeokuta and environs,
southwest, Nigeria. American Journal of Environmental Sciences, 6, 50–56.
67. PAK-EPA. (2005). State of Environment Report 2005. Pakistan Environmental Protection
Agency (Pak-EPA). Govt. of Pakistan, Islamabad, Pakistan: Ministry of Environment.
68. Parkkila, S., Niemelä, O., Savolainen, E. R., & Koistinen, P. (2001). HFE mutations do not
account for transfusional iron overload in patients with acute myeloid leukemia. Transfusion,
41(6), 828–831.
69. Patra, R. C., Dwivedi, S. K., Bhardwaj, B., & Swarup, D. (2000). Industrial fluorosis in
cattle and buffalo around Udaipur, India. Science of the Total Environment, 253(1–3), 145–
150.
38
A. Ahamad et al.
parabens and their chlorinated derivatives in an advanced wastewater treatment plant.
Journal of Hazardous Materials, 300, 29–38.
54. Liu, J. L., & Wong, M. H. (2013). Pharmaceuticals and personal care products (PPCPs): A
review on environmental contamination in China. Environment International, 59, 208–224.
55. Madhav, S., Ahamad, A., Kumar, A., Kushawaha, J., Singh, P., & Mishra, P. K. (2018a).
Geochemical assessment of groundwater quality for its suitability for drinking and irrigation
purpose in rural areas of Sant Ravidas Nagar (Bhadohi), Uttar Pradesh. Geology, Ecology,
and Landscapes, 2(2), 127–136.
56. Madhav, S., Ahamad, A., Singh, P., & Mishra, P. K. (2018b). A review of textile industry:
Wet processing, environmental impacts, and effluent treatment methods. Environmental
Quality Management, 27(3), 31–41.
57. Martín, J., del Mar Orta, M., Medina-Carrasco, S., Santos, J. L., Aparicio, I., & Alonso, E.
(2018). Removal of priority and emerging pollutants from aqueous media by adsorption onto
synthetic organo-funtionalized high-charge swelling micas. Environmental Research, 164,
488–494.
58. McGregor, D. B., Baan, R. A., Partensky, C., Rice, J. M., & Wilbourn, J. D. (2000).
Evaluation of the carcinogenic risks to humans associated with surgical implants and other
foreign bodies-a report of an IARC Monographs Programme Meeting. European Journal of
Cancer, 36(3), 307–313.
59. Meenakshi, S., Maheswari, R. C. (2006). Fluoride in drinking water and its removal. Journal
of Hazardous Materials B, 137, 456–463.
60. Milman, N., Pedersen, P. A., á Steig, T., Byg, K. E., Graudal, N., & Fenger, K. (2001).
Clinically overt hereditary hemochromatosis in Denmark 1948–1985: Epidemiology, factors
of significance for long-term survival, and causes of death in 179 patients. Annals of
Hematology, 80(12), 737–744.
61. Mohan, D., Pittman Jr, C. U., Bricka, M., Smith, F., Yancey, B., Mohammad, J. … Gong, H.
(2007). Sorption of arsenic, cadmium, and lead by chars produced from fast pyrolysis of
wood and bark during bio-oil production. Journal of Colloid and Interface Science, 310(1),
57–73.
62. Mompelat, S., Le Bot, B., & Thomas, O. (2009). Occurrence and fate of pharmaceutical
products and by-products, from resource to drinking water. Environment International, 35,
803–814.
63. Navarro-Alarcon, M., & Cabrera-Vique, C. (2008). Selenium in food and the human body:
A review. Science of the Total Environment, 400, 115–141.
64. Novotny, V. (1995). Diffuse sources of pollution by toxic metals and impact on receiving
waters. In Heavy metals (pp. 33–52). Berlin, Heidelberg: Springer.
65. Oliveira, T. S., Murphy, M., Mendola, N., Wong, V., Carlson, D., & Waring, L. (2015).
Characterization of pharmaceuticals and personal care products in hospital effluent and waste
water influent/effluent by direct-injection LC-MS-MS. Science of the Total Environment,
518, 459–478.
66. Orebiyi, E. O., Awomeso, J. A., Idowu, O. A., Martins, O., Oguntoke, O., & Taiwo, A. M.
(2010). Assessment of pollution hazards of shallow well water in Abeokuta and environs,
southwest, Nigeria. American Journal of Environmental Sciences, 6, 50–56.
67. PAK-EPA. (2005). State of Environment Report 2005. Pakistan Environmental Protection
Agency (Pak-EPA). Govt. of Pakistan, Islamabad, Pakistan: Ministry of Environment.
68. Parkkila, S., Niemelä, O., Savolainen, E. R., & Koistinen, P. (2001). HFE mutations do not
account for transfusional iron overload in patients with acute myeloid leukemia. Transfusion,
41(6), 828–831.
69. Patra, R. C., Dwivedi, S. K., Bhardwaj, B., & Swarup, D. (2000). Industrial fluorosis in
cattle and buffalo around Udaipur, India. Science of the Total Environment, 253(1–3), 145–
150.
38
A. Ahamad et al.
