204
Views
9
CrossRef citations to date
0
Altmetric
Original Articles

Selectivty Assessments of a Sequential Extraction Procedure for Potential Trace Metals’ Mobility and Bioavailability in Phosphate Rocks from Jordan Phosphate Mines

, , &

References

  • Abed , A. M. and Khalid , H. 1985 . Uranium distribution in the Jordanian phosphorite . Dirasat , 12 : 91 – 103 .
  • Abed , A. , Sadaqah , R. and Al Kuisi , M. 2008 . Uranium and potentially toxic metals during the mining, beneficiation, and processing of phosphorite and their effects on ground water in Jordan . Mine Water Environ. , 27 ( 3 ) : 171 – 182 .
  • Adamo , P. S. , Dudka , S. , Wilson , M. J. and McHardy , W. J. 1996 . Chemical and mineralogical forms of Cu and Ni in contaminated soils from the Sudbury mining and smelting region, Canada . Environ. Pollut. , 91 : 11 – 19 .
  • Al-Hwaiti , M. 2000 . Geostatistical and Geochemical Investigation on Shidiya Phosphorites, Western Orebody, South Jordan: Variation in Ore Composition and its Content of Toxic Heavy Metals Available for Plant Absorption, Ph.D. thesis , Amman , , Jordan : University of Jordan .
  • Al-Hwaiti , M. , Matheis , G. and Saffarini , G. 2005 . Mobilization, redistribution and bioavailability of potentially toxic elements in Shidiya phosphorites, Southeast Jordan . Environ. Geol. , 47 ( 3 ) : 431 – 444 .
  • Altschuler , Z. S. 1980 . The geochemistry of trace elements in marine phosphorites, Part I: Characteristic abundances and enrichment . SEPM Spec , 29 : 19 – 30 .
  • Anju , M. and Banerjee , D. K. 2011 . Associations of cadmium, zinc, and lead in soils from a lead and zinc mining area as studied by single and sequential extractions . Environ. Monit. Assess , 176 : 67 – 85 .
  • Arda , O. , Saltoglu , T. , Alpasian , E. and Akyuz , T. 1977 . Geochemical and mineralogical analyses of Mazidagi phosphate containing uranium, vanadium, fluorine and other elements; and views on the probability of urnium recovery . Bulletin of the Minerals Research and Exploration Institute of Turkey , 87 : 33 – 48 .
  • Aydin , I. , Imamoglu , S. , Aydin , F. , Saydut , A. and Hamamci , C. 2009 . Determination of mineral phosphate species in sedimentary phosphate rock in Mardin, SE Anatolia, Turkey by sequential extraction . J. Microchem. , 91 : 63 – 69 .
  • Aydin , I. , Aydina , F. , Saydut , A. , Bakirdere , G. and Hamamcia , C. 2010 . Hazardous metal geochemistry of sedimentary phosphate rock used for fertilizer (Mazıdag, SE Anatolia, Turkey) . J. Microchem. , 96 : 247 – 251 .
  • Bunus , F. T. 2000 . Uranium and rare earth recovery from phosphate fertilizer industry by solvent extraction . Mineral Processing and Extract. Metallu. Rev. , 21 ( 1 ) : 381 – 478 .
  • Cabral , A. R. and Lefebvre , G. 1998 . Use of sequential extraction in the study of heavy metal retention by silty soils . Water Air Soil Poll , 102 : 329 – 344 .
  • Cook , P. J. and Freney , J. R. 1988 . Source of cadmium in agriculture . Bureau of Rural Resources Proceedings , 2 : 4 – 19 . Bureau of Rural Resources, Canberra, Australia
  • Davidson , C. M. , Duncan , A. L. , Litteljohn , D. , Ure , A. M. and Garden , L. M. 1998 . A critical evaluation of the three stage BCR sequential extraction procedure to assess the potential mobility and toxicity of heavy metals in industrially-contaminated land . Anal. Chim. Act. , 363 : 45 – 55 .
  • Dhoum , R. T. and Evans , G. J. 1998 . Evaluation of uranium and arsenic retention by soil from a low level radioactive waste management site using sequential extraction . Appl. Geochem. , 13 ( 4 ) : 415 – 420 .
  • Dold , B. 2003 . Speciation of the most soluble phases in a sequential extraction procedure adapted for geochemical studies of copper sulfide mine waste . J. Geochem. Explor. , 80 : 55 – 68 .
  • Ellington , M. D. , Riggs , S. R. and Bray , J. T. 1984 . Cd/Ca and Zn/Ca ratios in sedimentary phosphorites and their relationship to paleonutrient levels in the,iocene phosphorites of North Carolina . Geol. Soc. Am. , 16 ( 3 ) : 136
  • El-Noman , J. 1995 . Lithologisch Anorganisch und Organisch Geochemische Merkmale von Phosphoriten der Lagerstaetten, El-Hasa, El-Abied und Esh-Shidiyas, Jordanien und ihre Genetische Interpretationen, unpubl. Thesis (D 83) , Berlin , , Germany : Technische Universitaet .
  • Francisco , P. , Manuel , M. J. , Teófilo , S. and Silvia , P. 2011 . Distribution of Cd, Ni, Cr, and Pb in amended soils from Alicante Province (SE, Spain) . Water Air Soil Poll. , 217 : 535 – 543 .
  • Gnandi , K. R. , Boroon , M. H. and Dimitri , D. D. 2009 . Distribution, speciation, and extractability of cadmium in the sedimentary phosphorite of Hahotoé-Kpogamé(Southern Togo) . Aquat. Geochem. , 15 : 485 – 495 .
  • Hall , G. E. M. , Vaive , J. E. and MacLaurin , A. I. 1996 . Analytical aspects of the application of sodium pyrophosphate reagent in the specific extraction of the labile organic component of humus and soils . J. Geochem. Explor. , 56 : 23 – 36 .
  • Hassan , F. and El-Kammar , A. M. 1975 . Environmental condition effecting the distribution of uranium and rare earth elements in Egyptian phosphorites: Egypt, Part 1, Dolomite Phosphates of Safaga . Geol. Surv. Min. Resh. Dept. , 19 : 169 – 178 .
  • Hisham , K. F. and Randa , M. E. 2009 . Environmental geochemistry for heavy metals and uranium potentiality in oil shale sediments, Quseir, Red Sea, Egypt . J. Appl. Sci. Res. , 5 ( 8 ) : 914 – 921 .
  • Kabata-Pendias , A. and Pendias , H. 1991 . Trace Elements in Soils and Plants , Boca Raton , FL : CRC Press .
  • Kauwenbergh , S. J. V. 1997 . Cadmium and other Minor Elements in World Resources of Phosphate Rock , Alabama : The Fertilizer Society, IFDS, Muscle Shoals .
  • Khalid , H. 1980 . Petrography, Mineralogy and Geochemistry of Esh-Shidyia phosphorites. M.Sc. Thesis , Amman , , Jordan : University of Jordan .
  • Khoury , H. , Al-Hawari , Z. and El-Suradi , S. 1988 . Clay minerals associated with Jordanian phosphates and their possible industrial utilization . Appl. Clay Sci. , 3 : 111 – 121 .
  • Leleyter , L. and Probst , J. L. 1999 . A new sequential extraction procedure for the speciation of particulate trace elements in river sediments . Int. J. Environ. Anal. Chem , 72 ( 2 ) : 109 – 128 .
  • Lena , Q. M. and Gade , N. R. 1997 . Effects of phosphate rock on sequential chemical extraction of lead in contaminated soils . J. Environ. Qual. , 26 : 788 – 794 .
  • Lucas , J. , Flicoteaux , R. , Nathan , Y. , Prevot , L. and Shahar , Y. 1980 . Different aspects of phosphorite weathering . SEPM Spec. Publ. , 29 : 41 – 51 .
  • McArthur , J. M. 1985 . Francolite geochemistry-compositional controls during formation, diagenisis, metamorphism and weathering . Geochem. Cosmchm. Act. , 49 : 23 – 35 .
  • McClellan , G. H. 1980 . Mineralogy of carbonate-flouriteapatites . J. Geol. Soc. , 137 : 675 – 681 .
  • McConnell , D. 1973 . Apatite, its Crystal Chemistry, Mineralogy, Utilization and Geologic and Biologic Occurrences , New York : Springer Verlag .
  • Moral , R. , Gilkes , R. J. and Jordan , M. M. 2005 . Distribution of heavy metals in calcareous and non-calcareous soils in Spain . Water Air Soil Poll. , 162 : 127 – 142 .
  • Nathan , Y. 1981 . Structural position of trace elements in apatite: Implications of their recovery . Isr. J. Earth Sci. , 30 : 31 – 34 .
  • Nathan , Y. , Soudry , D. , Levy , Y. , Shititrit , D. and Dorfman , E. 1997 . The geochemistry of cadmium in the Negev phosphorites . Chem. Geol. , 142 : 87 – 107 .
  • Patricia , M. , Monica , R. A. , Carolina , M. and Carrillo-Chavez , A. 2011 . Use of partition and redistribution indexes for heavy metal soil distribution after contamination with a multi-element solution . J Soils Sed. , 11 : 619 – 627 .
  • Prevot , L. 1990 . Geochemistry, petrography, genesis of Cretaceous-Eocene phosphorites, the Gnatour deposits (Marocco): A type example . Mem Soc Géol Fr , 158 : 232
  • Prevot , L. 1994 . How to interpret trace element contents in phosphorites using the geological data . Rev. Inv. Cient. Ser. Cienc. Mar. , 5 ( 2 ) : 51 – 61 .
  • Prevot , L. and Lucas , J. 1980 . Behavior of some trace elements in phosphatic sedimentary formation . SEPM Spec. Publ. , 29 : 31 – 39 .
  • Ramos , L. , Hernandez , M. and Gonzalez , M. J. 1994 . Sequential fractionation of copper, lead, cadmium and zinc in soils from or near Donana National Park . Journal of Environ. Qual. , 23 : 50 – 57 .
  • Raza , R. H. , Goswami , K. G. , Kusre , B. C. and Sarma , K. P. 2011 . Distribution and solid-phase speciation of toxic heavy metals of bed sediments of Bharali tributary of Brahmaputra River . Environ. Monit. Assess. , 177 : 457 – 466 .
  • Schuman , L. M. 1985 . Fractionation method for soil microelements . Soil Sci. , 140 : 11 – 22 .
  • Singh , S. P. , Tack , F. M. and Verloo , M. G. 1998 . Heavy metal fractionation and extractability in dredged sediment derived surface soils . Water Air Soil Poll. , 102 : 313 – 328 .
  • Slansky , M. 1986 . Geology of Sedimentary Phosphates , London : North Oxford Academic Publishers .
  • Sylvia , K. , Florian , K. , Jutta , R. and Ute , F. 2007 . U balances in a groecosystems: Loads and fate of fertiliser derived uranium . FORUM of FAL , Bundesallee 50, 38116 Braunschweig, Germany. Int. Symposium, June 4–6
  • Tessier , A. , Campbell , P. G. C. and Bisson , M. 1979 . Sequential extraction procedure for the speciation of particulate trace metals . Anal. Chem. , 51 : 844 – 851 .
  • Tooms , J. S. , Summerhayes , C. P. and Cronan , D. S. 1969 . Geochemistry of marine phosphate and manganese deposits . Oceanogr. Mar. Biol. Ann. Rev. , 7 : 49 – 100 .
  • Ure , A. M. , Davidson , C. M. and Thomas , R. P. 1995 . “ Single and sequential extraction schemes for trace metals speciation in soil and sediment ” . In Quality Assurance for Environmental Analysis (BCR) , Edited by: Quevauviller , P. , Maier , E. A. and Griepink , B. 505 – 523 . Elsevier, Amsterdam .
  • Willett , I. R. , Noller , B. N. and Beech , T. A. 1994 . Mobility of radium and heavy metals from uranium mine tailings in acid sulfate soils . Aus. J. Soil Res. , 32 : 335 – 355 .
  • Xiangdong , L. , Coles , B. J. , Ramsey , M. H. and Thornton , I. 1995 . Sequential extraction of soils for multielement analysis by ICP-MS . Chem. Geol. , 124 : 109 – 123 .

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.