Page 149 - Plant-Based Remediation Processes
P. 149
7 Use of Wetland Plants in Bioaccumulation of Heavy Metals 139
Tessier A, Campbell P, Bisson M (1979) Sequential extraction procedure for the speciation of
particulate trace metals. Anal Chem 51:844–850
USEPA (1995) United States Environmental Protection Agency: America’s Wetlands: our vital
link between land and water. EPA 843-K-95-001. http://www.epa.gov. Accessed 21 Aug 2012
USEPA (2000) United States Environmental Protection Agency: introduction to phytoremediation,
EPA 600-R-99-107. (http://nepis.epa.gov/Exe/ZyPURL.cgi?Dockey=30003T7G.txt; down-
loaded on 26-1-13)
USEPA (2001) United States Environmental Protection Agency: functions and values of wetlands.
EPA 843-F-01-002c. http://www.epa.gov/owow/wetlands/pdf/fun_val.pdf. Accessed 21 Aug
2012
USEPA (2004) United States Environmental Protection Agency: constructed treatment
wetlands. EPA 843-F-03-013. http://water.epa.gov/type/wetlands/restore/upload/2004_09_
20_wetlands_pdf_ConstructedW_pr.pdf. Accessed 21 Aug 2012
USEPA (2009a) United States Environmental Protection Agency: municipal solid waste in the
United States. http://www.epa.gov/osw/nonhaz/municipal/pubs/msw2009rpt.pdf. Accessed
21 Aug 2012
USEPA (2009b) United States Environmental Protection Agency: EPA programs that address
runoff. http://www.epa.gov/owow/wetlands/facts/fact25.html. Accessed 21 Aug 2012
Using phytoremediation to clean up sites. http://www.epa.gov/superfund/accomp/news/phyto.
htm. Accessed 21 Aug 2012
Vale C, Catarino F, Cortesao C, Cacador M (1990) Presence of metal-rich rhizoconcretions on the
roots of Spartina maritima from the salt marshes of the Tagus estuary, Portugal. Sci Tot
Environ 97(98):617–626
Verkleij JA, Schat H (1990) Mechanisms of metal tolerance in higher plants. In: Shaw AJ (ed)
Heavy metal tolerance in plants: evolutionary aspects. CRC, Boca Raton, FL
Vesk PA, Nockolds CE, Allaway WG (1999) Metal localization in water hyacinth roots from an
urban wetland. Plant Cell Environ 22:149–158
Watanabe ME (1997) Phytoremediation on the brink of commercialization. Environ Sci Technol
31:182–186
Weis JS, Weis P (2004) Metal uptake, transport and release by wetland plants: implications for
phytoremediation and restoration. Environ Int 30:685–700
Wheeler CT, Hughes LT, Oldroyd J, Pulford ID (2001) Effects of nickel on Frankia and its
symbiosis with Alnus glutinosa (L.). Gaertn. Plant Soil 23:81–90
Whiting SN, Leake JR, McGrath SP, Baker AJM (2001) Zinc accumulation by Thlaspi
caerulescens from soils with different Zn availability: a pot study. Plant Soil 236:11–18
Williams JB (2002) Phytoremediation in wetland ecosystems: progress, problems and potential.
Crit Rev Plant Sci 21:607–635
Wright DJ, Otte ML (1999) Wetland plant effects on the biogeochemistry of metals beyond the
rhizosphere. Biol Environ Proc Roy Irish Acad 99B:3–10
Wu SC, Cheung KC, Luo YM, Wong MH (2006) Effects of inoculation of plant growth-promoting
rhizobacteria on metal uptake by Brassica juncea. Environ Pollut 140:124–135
Ye Z, Baker AJ, Wong MH, Willis AJ (1998) Zinc, lead and cadmium accumulation and tolerance
in Typha latifolia as affected by iron plaque on the root surface. Aquat Bot 61:55–67
Zantopoulos N, Antoniou V, Nikolaidis E (1999) Copper, zinc, cadmium, and lead in sheep
grazing in North Greece. Bull Environ Contam Toxicol 62:691–699
Zheng J, Hintelmann H, Dimock D, Dzurko MS (2003) Speciation of arsenic in water, sediment,
and plants of the Moira watershed, Canada, using HPLC coupled to high resolution ICP-MS.
Anal Bioanal Chem 377:14–24