Kramer, P.J. and T.T. Kozlowski (1979), Physiology of Woody Plants. (Academic Press,
New York), 811 pp.
Krebs, W., C. Brombacher, P.P. Bosshard, R. Bachofen and H. Brandl (1997), Microbial
recovery of metals from solids, FEMS Microbiology and Ecology 20: 605–617.
Krendelev, F.P. and Yi.F. Pogrebnyak (1979), Gold and zinc concentrations in birch sap as
prospecting indicators for these metals, Doklady Akad. Nauk SSSR 234: 250–252.
Kyuregyan, E.A. and R.A. Burnutyan (1972), Gold in the juice of plants as a method for its
detection (in Russian), Izd. Akad. Nauk Ar., SSSR 25: 83–85.
Lax, K. and O. Selinus (2005), Geochemical mapping at the Geological Survey of Sweden,
Geochemistry: Exploration, Environment, Analysis 5: 337–346.
Leblanc, M., D. Petit, A. Deram, B.H. Robinson and R.R. Brooks (1999), The phytomining
and environmental significance of hyperaccumulation of thallium by Iberis intermedia from
southern France, Economic Geology 94(1): 109–113.
Ledin, M. and K. Pedersen (1996), The environmental impact of mine wastes-Roles of micro-
organisms and their significance in treatment of mine wastes, Earth Science Reviews 41:
67–108.
Lee, B.S. (1987), The determination of platinum and palladium in soils and vegetation
by electrothermal atomic absorption spectrometry, B.Sc. Thesis (unpublished), Massey
University, Palmerston North, New Zealand.
Lee, J., R.D. Reeves, R.R. Brooks and T. Jaffre
´
(1977), Isolation and identification of a citrato
complex of nickel from nickel-accumulating plants, Phytochemistry 16: 1503–1505.
Lee, J., R.D. Reeves, R.R. Brooks and T. Jaffre
´
(1978), The relationship between nickel and
citric acid in some nickel-accumulating plants, Phytochemistry 17: 1033–1035.
Lenarc
ˇ
ic
ˇ
, T. and S. Pirc (1987), Rapid method of cleaning aquatic moss, Journal of Geochemical
Exploration 27: 213–216.
Lepp, N.W. (1992), Uptake and accumulation of metals in bacteria and fungi, in: D.C. Adriano,
ed., Biogeochemistry of Trace metals (CRC Press, Boca Raton, FL), 513 pp.
Lepp, N.W. (2005), Copper, in: I. Shtangeeva, ed., Trace and Ultratrace Elements in Plants
and Soils (WIT Press, Southampton, Boston), pp. 129–148.
Levchenko, L.A., A.P. Sadkov, N.V. Lariontseva, E.M. Koldasheva, A.K. Shilova and A.E.
Shilov (2002), Gold helps bacteria to oxidize methane, Journal of Inorganic Biochemistry
88: 251–253.
Leybourne, M.L., W.D. Goodfellow, D.R. Boyle and C.E. Dunn (1999), Stream water, stream
sediment, and vegetation geochemistry of the Restigouche-Murray Brook area, Bathurst
Mining Camp, New Brunswick (parts of NTS 21-O/7, 8, 9, 10), Geological Survey of
Canada, Open File Report D3763.
Lima e Cunha, M.C., D.L. Saldanha, R.R. Brooks and C.E. Dunn (1997), A preliminary
survey of the vegetation and biogeochemistry of the mafic/ultramafic sequences of the
Cerro Mantiquera, Lavras do Sul, Rio Grande do Sul, Brazil, Ofioliti 22: 201–206.
Ling-shao, K., G. Ping, R. Tian-xiang, Z. Hua and Y. Shao-ping (1992), Characteristics
of the phytogeochemistry in Naomuhong copper mine area at the Alasan of Nei Monggol
[Inner Mongolia], Journal of Integrative Plant Biology (Acta Botanica Sinica) 34: 781–789.
Lisk, D.J. (1972), Trace metals in soils, plants, and animals, Advances in Agronomy 24:
267–325.
Lombi, E., A.L. Nolan (2005), Metal and arsenic bioavailability and uptake by hyperaccu-
mulator plants, in: I. Shtangeeva, ed., Trace and Ultratrace Elements in Plants and Soil
(WIT Press, Southampton, Boston), pp. 97–128.
437Biogeochemistry in Mineral Exploration