Environmental Engineering Reference
In-Depth Information
Reeves RD, Brooks RR, Macfarlane RM (1981) Nickel uptake by Californian Streptanthus and
Caulanthus
with
particular
reference
to
the
hyperaccumulator
S.
polygaloides
Gray
(Brassicaceae). Am J Bot 68:708-712
Renoux AY, Sarrazin M, Hawari J, Sunahara GI (2000) Transformation of 2,4,6-trinitrotoluene in
soil in the presence of the earthworm eisenia andrei. Environ Toxicol Chem 19:1473-1480
Riddle SG, Tran HH, Dewitt JG, Andrews JC (2002) Field, laboratory, and x-ray absorption
spectroscopic studies of mercury accumulation by water hyacinths. Environ Sci Technol
36:1965
Rizzi L, Petruzzelli G, Poggio G, Vigna G (2004) Soil physical changes and plant availability of
zn and pb in a treatability test of phytostabilization. Chemosphere 57(9):1039-1046
Robinson BH, Brooks RR, Howes AW, Kirkma JH, Gregg PEH (1997a) The potential of the
high- biomass nickel hyperaccumulator Berkheya coddii for phytoremediation and phyto-
mining. J Geochem Explor 60:115-126
Robinson BH, Chiarucci A, Brooks RR, Petit D, Kirkman JH, Gregg PEH, De Dominicis V
(1997b) The nickel hyperaccumulator plant Alyssum bertolonii as a potential agent for
phytoremediation and phytomining of nickel. J Geochem Explor 59:75-86
Roper JC, Dec J, Bollag J (1996) Using minced horseradish roots for the treatment of polluted
waters. J Environ Qual 25:1242-1247
Rosenfeld I, Beath OA (1964) Selenium- geobotany, biochemistry, toxicity and nutrition.
Academic Press, New York
Rout GR, Samantary S, Das P (1999) Chromium, nickel and zinc tolerance in Leucaena
leucocephala (K8). Silvae Genet 48:151-157
Rugh CL, Senecoff JF, Meagher RB, Merkle SA (1998) Development of transgenic yellow poplar
for mercury phtoremediation. Nature Biotechnol 16:925-928
Rugh CL, Wilde HD, Stack NM, Thompson DM, Summers AO, Meagher RB (1996) Mercuric
ion reduction and resistance in transgenic Arabidopsis thaliana plants expressing a modified
bacterial merA gene. Proc Natl Acad Sci USA 93:3182-3187
Sahi SV, Bryant NL, Sharma NC, Singh SR (2002) Characterization of a lead hyperaccumulator
shrub, Sesbania drummondii. Environ Sci Technol 36(21):4676-4680
Salt DE, Blaylock M, Kumar PBAN, Dushenkov V, Ensley BD, Chet I, Raskin I (1995a)
Phytoremediation: a novel strategy for the removal of toxic metals from the environment
using plants. Biotechnology 13:468-475
Salt DE, Prince RC, Pickering IJ, Raskin I (1995b) Mechanism of cadmium mobility and
accumulation in Indian mustard. Plant Physiol 109:1426-1433
Sari A, Tuzen M (2009) Kinetic and equilibrium studies of biosorption of Pb(II) and Cd(II) from
aqueous
solution
by
macrofungus
(Amanita
rubescens)
biomass.
J
Hazard
Mater
164:1004-1011
Schnoor JL (1997) Phytoremediation: technical and organisatoric issues, key factors. Ground-
Water Remediation Technologies Analysis Center, Pittsburgh
Scullion J (2006) Remediating polluted soils. Naturwissenschaften 93:51-65
Scullion J, Malik A (2000) Earthworm effects on aggregate stability, organic matter composition
and disposition, and their relationships. Soil Biol Biochem 32:119-126
Sebastiani L, Scebba F, Tognetti R (2004) Heavy metal accumulation and growth responses in
poplar clones Eridano (Populus deltoides x maximowiczii) and I-214 (P. x euramericana)
exposed to industrial waste. Environ Exp Bot 52:79-88
Sekhar KC, Kamala CT, Chary NS, Sastry ARK, Rao TN, Vairamani M (2004) Removal of lead
from aqueous solutions using an immobilized biomaterial derived from a plant biomass.
J Hazard Mater 108:111-117
Sheoran V, Sheoran AS, Poonia P (2008) Remediation techniques for contaminated soil. Environ
Enging Managt J 7(4):379-387
Sheoran AS, Sheoran V, Choudhary RP (2010) Bioremediation of acid-rock drainage by
sulphate-reducing prokaryotes: a review. Miner Eng 23(14):1073-1100
Sheoran V, Sheoran AS, Poonia P (2011) Role of hyperaccumulators in phytoextraction of metals
from contaminated mining sites: a review. Crit Rev Environ Sci Technol 41:168-214
Search WWH ::




Custom Search