276
Views
58
CrossRef citations to date
0
Altmetric
Original Articles

In Situ Remediation of Nickel Phytotoxicity for Different Plant Species

&
Pages 465-495 | Published online: 14 Feb 2007

References

  • McIlveen , W.D. and Negusanti , J.J. 1994 . Nickel in the terrestrial environment . Sci. Total Environ. , 148 : 109 – 138 .
  • Kuja , A. , Jones , R. and McIlveen , W. 2000 . Phytotoxicology Soil Investigation: INCO-Port Colborne 1999 Toronto, , Canada : Ministry of the Environment, Queen's Printer of Ontario . Phytotoxicology and Soils Standards Section, Rep. No. SDB-031-3511-2000 Standards Development Branch, Ontario
  • Temple , P.J. and Bisessar , S. 1981 . Uptake and toxicity of nickel and other metals in crops grown on soil contaminated by nickel refinery . J. Plant Nutr. , 3 : 473 – 482 .
  • Frank , R. , Stonefield , K.I. , Suda , P. and Potter , J.W. 1982 . Impact of nickel contamination on the production of vegetables on an organic soil, Ontario, Canada, 1980–1981 . Sci. Total Environ. , 26 : 41 – 65 .
  • Crooke , W.M. 1956 . Effect of soil reaction on uptake of nickel from a serpentine soil . Soil Sci. , 81 : 269 – 276 .
  • Hunter , J.G. and Vergnano , O. 1952 . Nickel toxicity in plants . Ann. Appl. Biol. , 39 : 279 – 284 .
  • Soane , B.C. and Saunder , D.H. 1959 . Nickel and chromium toxicity of serpentine soils in Southern Rhodesia . Soil Sci. , 88 : 322 – 330 .
  • Hazlett , P.W. , Rutherford , G.K. and vanLoon , G.W. 1983 . Metal contaminants in surface soils and vegetation as result of nickel/copper smelting at Coniston, Ontario, Canada . Reclam. Reveg. Res. , 2 : 123 – 137 .
  • Kukier , U. and Chaney , R.L. 2001 . Amelioration of nickel phytotoxicity in muck and mineral soils . J. Environ. Qual. , 30 : 1949 – 1960 .
  • U.S. Environmental Protection Agency. 1995 . Test Methods for Evaluating Soils and Wastes. Vol. IA: Laboratory Manual Physical/Chemical Methods, , 3rd Ed. Washington, DC : U.S. Gov. Print. Off. . SW 845
  • Roth , J.A , Wallihan , E.F. and Sharpless , R.G. 1971 . Uptake by oats and soybeans of copper and nickel added to a peat soil . Soil Sci. , 112 : 338 – 342 .
  • Sauerbeck , D.R. and Hein , A. 1991 . The nickel uptake from different soils and its prediction by chemical extractions . Water Air Soil Pollut. , 57-58 : 861 – 871 .
  • Yang , X. , Baligar , V.C. , Martens , D.C. and Clark , R.B. 1996 . Plant tolerance to nickel toxicity: I . Influx, transport, and accumulation of nickel in four species. J. Plant Nutr. , 19 : 73 – 85 .
  • Yamamoto , A. , Nakamura , T. , Adu-Gyamfi , J.J. and Saigusa , M. 2002 . Relationship between chlorophyll content in leaves of sorghum and pigeon pea determined by extraction method and by chlrophyll meter (SPAD-502) . J. Plant Nutr. , 25 : 2295 – 2301 .
  • Madden , M.S. 1988 . Adapting the Sr(NO3 ) 2 Method for Determining Available Cations to a Routine Soil Testing Procedure Madison, WI : University of Wisconsin . M.Sc thesis
  • SAS Institute. 1998 . “ SAS/STAT™ User's Guide, Release 6.03 Ed ” . SAS Institute Inc. .
  • Crooke , W.M. , Hunter , J.G. and Vergnano , O. 1954 . The relationship between nickel toxicity and iron supply . Ann. Appl. Biol. , 41 : 311 – 324 .
  • Chaney , R.L. 1970 . Effect of nickel on iron metabolism by soybean . 31 : 1692 – 1693 . Ph.D. Thesis, Purdue Univ., West Lafayette, IN, Dissert. Abst. Int.
  • Takagi , S. 1991 . “ Mugineic acids as examples of root exudates which play an important role in nutrient uptake by plant roots ” . In Phosphorus Nutrition of Grain Legumes in the Semi-Arid Tropics Edited by: Johansen , C. , Lee , K.K. and Sahrawat , K.L. 77 – 90 . Patancheru, Andhra Pradesh, , India : International Crops Research Institute for the Semi-Arid Tropics, ICRISAT .
  • Yehuda , Z. , Shenker , M. , Römheld , V. , Marschner , H. , Hadar , Y. and Chen , Y. 1996 . The role of ligand exchange in the uptake of iron from microbial siderophores by gramineous plants . Plant Physiol. , 112 : 1273 – 1280 .
  • Treeby , M. , Marschner , H. and Römheld , V. 1989 . Mobilization of iron and other micronutrient cations from a calcareous soil by plant-borne, microbial, and synthetic metal chelators . Plant Soil , 114 : 217 – 226 .
  • Anderson , A.J. , Meyer , D.R. and Mayer , F.K. 1979 . Effects of the environment on the symptom pattern of nickel toxicity in the oat plant . Ann. Bot. , 43 : 271 – 283 .
  • Marschner , H. 1995 . Mineral Nutrition of Higher Plants, , 2nd Ed. 889 London : Academic Press .
  • Scheckel , K.G. and Sparks , D.L. 2001 . Dissolution kinetics of nickel surface precipitates on clay mineral and oxide surfaces . Soil Sci. Soc. Am. J. , 65 : 685 – 694 .
  • Singh , B.R. and Jeng , A.S. 1993 . Uptake of zinc, cadmium, mercury, lead, chromium, and nickel by ryegrass grown in a sandy soil . Norw. J. Agric. Sci. , 7 : 147 – 157 .
  • Brown , P.H. , Dunemann , L. , Schulz , R. and Marschner , H. 1989 . Influence of redox potential and plant species on the uptake of nickel and cadmium from soils . Z. Pflanzenernähr. Bodenkd. , 152 : 85 – 91 .
  • Patterson , J.B.E. 1971 . Metal Toxicities Arising from Industry 193 – 207 . London : HMSO . MAFF Tech. Bull. No. 21
  • Davis , R.D. and Beckett , P.H.T. 1978 . The use of young plants to detect metal accumulation in soils . Water Pollut. Contr. , 77 : 193 – 210 .
  • Davis , R.D. and Carlton-Smith , C.H. 1984 . An investigation into the phytotoxicity of zinc, copper and nickel using sewage sludge of controlled metal content . Environ. Pollut. , B8 : 163 – 185 .
  • L'Huillier , L. and Edighoffer , S. 1996 . Extractability of nickel and its concentration in cultivated plants in Ni-rich ultramafic soils of New Caledonia . Plant Soil , 186 : 255 – 264 .
  • Haq , A.U. , Bates , T.E. and Soon , Y.K. 1980 . Comparison of extractants for plant-available zinc, cadmium, nickel, and copper in contaminated soils . Soil Sci. Soc. Am. J. , 44 : 772 – 777 .
  • Davies , G.R. 1977 . “ Pot experiments testing zinc, copper and nickel salts on the growth and composition of crops ” . In Inorganic Pollution and Agriculture 191 – 204 . London, , UK : Ministry of Agriculture, Fisheries and Food . Ref. Book 326
  • Siebielec , G. , Chaney , R.L. and Kukier , U. 2000 . Remediation of Diverse Soils Contaminated by Ni Refinery in Port Colborne/Ontario: Development of Ni Extractability Test Predicting Phytoavailability of Ni Toronto, , Canada : INCO .
  • Chang , A.T. and Sherman , G.D. 1953 . The nickel content of some Hawaiian soils and plants and the relation of nickel to plant growth . Hawaii Agric. Expt. Sta. Bull. , 19 : 3 – 25 .
  • Foroughi , M. , Hoffman , G. , Teicher , K. and Venter , F. 1976 . Die Einfluss unerschiedlich hoher Gaben von Cadmium, Chrom, oder Nickel auf Tomaten in Nährlösung . Landwirtsch. Forsch. Sonderh. , 32 : 37 – 48 .
  • Piccini , D.F. and Malavolta , E. 1992 . Effect of nickel on two common bean cultivars . J. Plant Nutr. , 15 : 2343 – 2350 .
  • Malan , H.L. and Farrant , J.M. 1998 . Effects of the metal pollutants cadmium and nickel on soybean seed development . Seed Sci. Res. , 8 : 445 – 453 .
  • Adriano , D.C. 1986 . Trace Elements in Terrestrial Environment 517 New York : Springer Verlag .
  • Bingham , F.T. 1979 . Bioavailability of Cd to food crops in relation to heavy metal content of sludge-amended soil . Environ. Health. Perspect. , 28 : 39 – 43 .
  • Proctor , J. and Baker , A.J.M. 1994 . “ The importance of nickel for plant growth in ultramafic (serpentine) soils ” . In Trace Metals in Soil-Plant Systems Edited by: Ross , S.M. 417 – 432 . London : John Wiley & Sons, Ltd. .
  • deVries , M.P.C. and Tiller , K.G. 1978 . Sewage sludge as a soil amendment, with special reference to Cd, Cu, Mn, Ni, Pb, and Zn – Comparison of results from experiments conducted inside and outside a greenhouse . Environ. Pollut. , 16 : 213 – 240 .
  • Baker , D.E. and Woodruff , C.M. 1963 . Influence of volume of soil per plant upon growth and uptake of phosphorus by corn from soils treated with different amounts of phosphorus . Soil Sci. , 94 : 409 – 413 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.