Environmental Engineering Reference
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Sheoran V, Sheoran AS, Poonia P (2012) Phytoremediation technologies for the reclamation of
organic and inorganic polluted soils and water: a review. Environ Res J 6(4/5):1-23
Shu WS, Lan CY, Zhang ZQ, Wong MH (2000) Use of vetiver and other three grasses for
revegetation of Pb/Zn Mine tailings at Lechang, Guangdong Province: field experiment. In:
2nd international vetiver conference, Bangkok, Thailand
Sikdar SK, Grosse D, Rogut I (1998) Membrane technologies for remediating contaminated soils:
a critical review. J Membrane Sci 151:75-85
Singer AC, van der Gast CJ, Thompson IP (2005) Perspectives and vision for strain selection in
bioaugmentation. Trends Biotech 23:74-77
Singh OV, Jain RK (2003) Phytoremediation of toxic aromatic pollutants from soil. Appl
Microbiol Biotechnol 63:128-135
Smith RAH, Bradshaw AD (1992) Stabilisation of toxic mine wastes by the use of tolerant plant
populations. Trans Inst Min Metall Sect A 81:230-237
Smrkolj P, Osvald M, Osvald J (2007) Selenium uptake and species distribution in
Seliniumaseolus vulgaris seeds obtained by two different cultivations. Eur Food Res Technol
225:233-237
Song SQ, Zhou X, Wu H, Zhou YZ (2004) Application of municipal garbage compost on
revegetation of tin tailings dams. Rural Eco-Environ 20(2):59-61
Srivastava M, Ma LQ, Contruva JA (2005) Uptake and distribution of selenium in different fern
species. Int. J Phytorem 7:33-42
Sui H, Li X, Jiang B, Huang G (2007) Simulation of remediation of multiple organic contaminats
system by bioventing. Huagong Xuebo (Chinese Edition). 58:1025-1031
Suko T, Fujikawa T, Miyazaki T (2006) Transport phenomena of volatile solute in soil during
bioventing technology. J ASTM Int 3:374-379
Susarla S, Medina VF, McCutcheon SC (2002) Phytoremediation: an ecological solution to
organic chemical contamination. Ecol Engineer 18:647-658
Suthersan SS (1997) Remediation engineering: design concepts. Lewis Publishers, Boca Raton
Tang J, Zhu W, Kookana R, Arata K (2013) Characteristics of biochar and its applications in
remediation of contaminated soils. J Biosci Bioeng 116(6):653-659
Tang SR, Huang CY, Zhu ZX (1997) Commelina communis L.: copper hyperaccumulator found
in Anhui Province of China. Pedosphere 7(3):207-210
Terry N, Carlson C, Raab TK, Zayed A (1992) Rates of selenium volatilization among crop
species. J Environ Qual 21:341-344
Urlings LGCM (1990) In situ cadmium removal-full scale remedial action of contaminated soil.
In: International symposium on hazardous waste treatment: treatment of contaminated soil,
air, waste association and US.EPA Risk education laboratory, Cincinnati, Ohio, 5-8 Feb 1990
USEPA (1998) Bioventing. Office of the Underground Storage Tank U.S. Environmental
Protection Agency, Publication EPA, 510-B-95-007
USEPA (1994) Selection of control technologies for remediation of soil contaminated with
arsenic, cadmium, chromium, lead or mercury. Revised Draft Engineering Bulletin, Jan 31
USEPA (1996) Engineering bulletin: technology alternatives for the remediation of soils
contaminated with arsenic, cadmium, chromium, mercury and lead. U.S. Environmental
Protection Agency, Office Of Emergency And Remedial Response, Cincinnati, OH
Van denhove H (2013) Phytoremediation options for radioactively contaminated sites evaluated.
Ann Nucl Energy 62:596-606
Vernay P, Gauthier-Moussard C, Hitmi A (2007) Interaction of bioaccumulation of heavy metal
chromium with water relation, mineral nutrition and photosynthesis in developed leaves of
Lolium perenne L. Chemosphere 68:1563-1575
Vidali M (2001) Bioremediation, An overview. Pure Appl Chem 73:1163-1172
Vinterhalter B, Vinterhalter D (2005) Nickel hyperaccumulation in shoot cultures of Alyssum
narkgrafii. Biol Plant 49:121-124
Wan QF, Deng DC, Bai Y, Xia CQ (2012) Phytoremediation and electrokinetic remediation of
uranium contaminated soils: a review. He-Huaxue yu Fangshe Huaxue. J Nucl Radiochem
34:148-156
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