their bioremediation approaches, 1st edn. CRC Press, Taylor & Francis Group, Boca Raton, pp
1–22. https://doi.org/10.1201/9781315173351-2
Bharagava RN, Saxena G, Chowdhary P (2017c) Constructed wetlands: an emerging
phytotechnology for degradation and detoxification of industrial wastewaters. In: Bharagava
RN (ed) Environmental pollutants and their bioremediation approaches, 1st edn. CRC Press,
Taylor & Francis Group, Boca Raton, pp 397–426. https://doi.org/10.1201/9781315173351-15
Bhuiyan MAH, Suruvi NI, Dampare SB, Islam MA, Quraishi SB, Ganyaglo S, Suzuki S (2011)
Investigation of the possible sources of heavy metal contamination in lagoon and canal water in
the tannery industrial area in Dhaka-Bangladesh. Environ Monit Assess 175:633–649
Bhutta MN, Ramzan M, Hafeez CA (2002) Groundwater quality and availability in Pakistan. In:
Proceedings of seminar on strategies to address the present and future water quality issues.
PCRWR, Islamabad. Pak Rev Sci Eau 12:671–686
Blaylock MJ, Huang JW (2000) Phytoextraction of metals. In: Raskin I, Ensley BD (eds)
Phytoremediation of toxic metals using plants to clean up the environment. Wiley, New York,
pp 53–70
Cachada A, Pereira ME, Ferreira SE, Duarte AC (2011) Sources of potentially toxic elements and
organic pollutants in an urban area subjected to an industrial impact. Environ Monit Assess
184:15–32
Cameron RE (1992) Guide to site and soil description for hazardous waste site characterisation. In:
Metals. Environmental Protection Agency EPA 1,/600/4-91/029, Las Vegas
Chakraborty S, Dutta AR, Sural S, Gupta D, Sen S (2013) Ailing bones and failing kidneys: a case
of chronic cadmium toxicity. Ann Clin Biochem 50(5):492–495
Chandra R, Saxena G, Kumar V (2015) Phytoremediation of environmental pollutants: an
eco-sustainable green technology to environmental management. In: Chandra R
(ed) Advances in biodegradation and bioremediation of industrial waste, 1st edn. CRC Press,
Taylor & Francis Group, Boca Raton, pp 1–30. https://doi.org/10.1201/b18218-2
Chaney RL, Malik M, Li YM, Brown SL, Brewer EP, Angle JS, Baker AJM (1997)
Phytoremediation of soil metals. Curr Opin Biotechnol 8:279–284
Cheng SP, Grosse W, Karrenbrock F, Thoennessen M (2002) Efficiency of constructed wetlands in
decontamination of water polluted by heavy metals. Ecol Eng 18(3):317–325
Clayton LR (2007) Phytoremediation. Encyclopedia of plant and crop science. Taylor & Francis,
London
DeBusk WF (1999) Wastewater treatment wetlands: contaminant removal processes. Gainesville
University of Florida. http://edis.ifas.ufl.edu. Accessed 17 Mar 2017
Dong J, Mao WH, Zhang GP, Wu FB, Cai Y (2007) Root excretion and plant tolerance to cadmium
toxicity–a review. Plant Soil Environ 53:193–200
Droppo IG, Leppard GG, Flannigan DT, Liss SN (1997) The freshwater floc: a functional
relationship of water and organic andinorganic floc constituents affecting suspended sediment
properties. Water Air Soil Pollut 99(1–4):43–53
Dulaing G, Ryckegem G, Tack F, Verloo M (2006) Metal accumulation in intertidal litter through
decomposing leaf blades, sheaths and stems of Phragmitesaustralis. Chemosphere 63
(11):1815–1823
Duvnjak ZS, Al-Asheh (1997) Sorption of cadmium and other heavy metals by pine bark. Adv
Environ Res 1:194
Ensley BD (2000) Rational for use of phytoremediation. In: Raskin I, Ensley BD (eds)
Phytoremediation of toxic metals: using plants to clean- up the environment. Wiley,
New York, pp 3–12
Fassett DW (1980) Cadmium. In: Waldron HA (ed) Metals in the environment. Academic,
New York, pp 61–11
Gautam S, Kaithwas G, Bharagava RN, Saxena G (2017) Pollutants in tannery wastewater,
pharmacological effects and bioremediation approaches for human health protection and environmental safety. In: Bharagava RN (ed) Environmental pollutants and their bioremediation
11 Toxic Metals in Industrial Wastewaters and Phytoremediation Using. . .
279
1–22. https://doi.org/10.1201/9781315173351-2
Bharagava RN, Saxena G, Chowdhary P (2017c) Constructed wetlands: an emerging
phytotechnology for degradation and detoxification of industrial wastewaters. In: Bharagava
RN (ed) Environmental pollutants and their bioremediation approaches, 1st edn. CRC Press,
Taylor & Francis Group, Boca Raton, pp 397–426. https://doi.org/10.1201/9781315173351-15
Bhuiyan MAH, Suruvi NI, Dampare SB, Islam MA, Quraishi SB, Ganyaglo S, Suzuki S (2011)
Investigation of the possible sources of heavy metal contamination in lagoon and canal water in
the tannery industrial area in Dhaka-Bangladesh. Environ Monit Assess 175:633–649
Bhutta MN, Ramzan M, Hafeez CA (2002) Groundwater quality and availability in Pakistan. In:
Proceedings of seminar on strategies to address the present and future water quality issues.
PCRWR, Islamabad. Pak Rev Sci Eau 12:671–686
Blaylock MJ, Huang JW (2000) Phytoextraction of metals. In: Raskin I, Ensley BD (eds)
Phytoremediation of toxic metals using plants to clean up the environment. Wiley, New York,
pp 53–70
Cachada A, Pereira ME, Ferreira SE, Duarte AC (2011) Sources of potentially toxic elements and
organic pollutants in an urban area subjected to an industrial impact. Environ Monit Assess
184:15–32
Cameron RE (1992) Guide to site and soil description for hazardous waste site characterisation. In:
Metals. Environmental Protection Agency EPA 1,/600/4-91/029, Las Vegas
Chakraborty S, Dutta AR, Sural S, Gupta D, Sen S (2013) Ailing bones and failing kidneys: a case
of chronic cadmium toxicity. Ann Clin Biochem 50(5):492–495
Chandra R, Saxena G, Kumar V (2015) Phytoremediation of environmental pollutants: an
eco-sustainable green technology to environmental management. In: Chandra R
(ed) Advances in biodegradation and bioremediation of industrial waste, 1st edn. CRC Press,
Taylor & Francis Group, Boca Raton, pp 1–30. https://doi.org/10.1201/b18218-2
Chaney RL, Malik M, Li YM, Brown SL, Brewer EP, Angle JS, Baker AJM (1997)
Phytoremediation of soil metals. Curr Opin Biotechnol 8:279–284
Cheng SP, Grosse W, Karrenbrock F, Thoennessen M (2002) Efficiency of constructed wetlands in
decontamination of water polluted by heavy metals. Ecol Eng 18(3):317–325
Clayton LR (2007) Phytoremediation. Encyclopedia of plant and crop science. Taylor & Francis,
London
DeBusk WF (1999) Wastewater treatment wetlands: contaminant removal processes. Gainesville
University of Florida. http://edis.ifas.ufl.edu. Accessed 17 Mar 2017
Dong J, Mao WH, Zhang GP, Wu FB, Cai Y (2007) Root excretion and plant tolerance to cadmium
toxicity–a review. Plant Soil Environ 53:193–200
Droppo IG, Leppard GG, Flannigan DT, Liss SN (1997) The freshwater floc: a functional
relationship of water and organic andinorganic floc constituents affecting suspended sediment
properties. Water Air Soil Pollut 99(1–4):43–53
Dulaing G, Ryckegem G, Tack F, Verloo M (2006) Metal accumulation in intertidal litter through
decomposing leaf blades, sheaths and stems of Phragmitesaustralis. Chemosphere 63
(11):1815–1823
Duvnjak ZS, Al-Asheh (1997) Sorption of cadmium and other heavy metals by pine bark. Adv
Environ Res 1:194
Ensley BD (2000) Rational for use of phytoremediation. In: Raskin I, Ensley BD (eds)
Phytoremediation of toxic metals: using plants to clean- up the environment. Wiley,
New York, pp 3–12
Fassett DW (1980) Cadmium. In: Waldron HA (ed) Metals in the environment. Academic,
New York, pp 61–11
Gautam S, Kaithwas G, Bharagava RN, Saxena G (2017) Pollutants in tannery wastewater,
pharmacological effects and bioremediation approaches for human health protection and environmental safety. In: Bharagava RN (ed) Environmental pollutants and their bioremediation
11 Toxic Metals in Industrial Wastewaters and Phytoremediation Using. . .
279
