Phytoextraction and Accumulation of Mercury in Three Plant Species: Indian Mustard (Brassica Juncea), Beard Grass (Polypogon monospeliensis), and Chinese Brake Fern (Pteris vittata)
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[1] D. R. Hoagland,et al. The Water-Culture Method for Growing Plants Without Soil , 2018 .
[2] F. Han,et al. Binding, distribution, and plant uptake of mercury in a soil from Oak Ridge, Tennessee, USA. , 2006, The Science of the total environment.
[3] B. Sridhar,et al. Anatomical changes due to uptake and accumulation of Zn and Cd in Indian mustard (Brassica juncea) , 2005 .
[4] B. Sridhar,et al. Phytotoxicity and phytoaccumulation of trivalent and hexavalent chromium in brake fern , 2005, Environmental toxicology and chemistry.
[5] M. Greger,et al. Clonal differences in mercury tolerance, accumulation, and distribution in willow. , 2004, Journal of environmental quality.
[6] B. Sridhar,et al. Phytoavailability and toxicity of trivalent and hexavalent chromium to Brassica juncea , 2004 .
[7] M. Ravichandran,et al. Interactions between mercury and dissolved organic matter--a review. , 2004, Chemosphere.
[8] N. M. Kelly,et al. Spectral absorption features as indicators of water status in coast live oak ( Quercus agrifolia ) leaves , 2003 .
[9] David L. Monts,et al. Industrial age anthropogenic inputs of heavy metals into the pedosphere , 2002, Naturwissenschaften.
[10] S. McGrath,et al. Arsenic hyperaccumulation by different fern species , 2002 .
[11] M. Barnett,et al. Oxidative dissolution of metacinnabar (β-HgS) by dissolved oxygen , 2001 .
[12] Yong Cai,et al. A fern that hyperaccumulates arsenic , 2001, Nature.
[13] Archana Sharma,et al. Mercury toxicity in plants , 2000, The Botanical Review.
[14] D W Boening,et al. Ecological effects, transport, and fate of mercury: a general review. , 2000, Chemosphere.
[15] N. Terry,et al. Rhizosphere bacteria enhance the accumulation of selenium and mercury in wetland plants , 1999, Planta.
[16] Michael M. Reddy,et al. Enhanced dissolution of cinnabar (mercuric sulfide) by dissolved organic matter isolated from the Florida Everglades , 1998 .
[17] B. B. Panda,et al. Mercury-tolerance ofChloris barbata Sw. andCyperus rotundus L. isolated from contaminated sites , 1993, Biologia Plantarum.
[18] Cliff I. Davidson,et al. Toxic metals in the atmosphere , 1986 .
[19] J. W. Huckabee,et al. Distribution of mercury in vegetation at Almadén, Spain , 1983 .
[20] D. R. Jackson,et al. Atmospheric Emission and Plant Uptake of Mercury from Agricultural Soils near the Almadén Mercury Mine , 1979 .
[21] David L. Johnson,et al. Gaseous emissions of mercury from an aquatic vascular plant , 1978, Nature.
[22] S. Lindberg,et al. Mercury Accumulation in Foliage over Time in Two Northern Mixed-Hardwood Forests , 2002 .
[23] I. Raskin,et al. Phytoremediation of toxic metals : using plants to clean up the environment , 2000 .
[24] Jeanna R Henry,et al. An Overview of the Phytoremediation of Lead and Mercury , 2000 .
[25] J. Shann,et al. Phytotoxicity and accumulation of mercury in tobacco subjected to different exposure routes , 1995 .
[26] F. Stuart Chapin,et al. Integrated Responses of Plants to Stress , 1991 .
[27] C. Davidson,et al. Mercury vapor in the atmosphere: three case studies on emission, deposition, and plant uptake. , 1986 .