02723naa a2200301 a 450000100080000000500110000800800410001910000200006024501480008026000090022852018460023765000100208365000160209365000170210965000190212665000090214565000210215465000210217565000110219665000230220765000260223065000210225665000100227770000200228770000200230770000210232777300730234819433912014-03-25 2012 bl uuuu u00u1 u #d1 aABREU, C. A. de aPhytoremediation of a soil contaminated by heavy metals and boron using castor oil plants and organic matter amendments.h[electronic resource] c2012 aPhytoremediation is a sound alternative to soil decontamination, as it has lower costs and is more environmentally friendly than other practices. The need to handle contaminated biomass after harvesting and the search for new renewable energy sources have shifted research interests from typical edible or scenic plant species to those that can be used to produce biofuels. The castor oil plant (Ricinus communis L.) is a fast growing plant with high biomass production and is a potential phytoaccumulator of several metals. In recent years, the federal government of Brazil has encouraged castor oil plant ultivation for biodiesel and bioethanol production. The aim of the present work was to evaluate the phytoextraction potential of R. communis L. and the effect of organicmatter addition (peat vs. filter cake) to a soil contaminated with scrapmetal residue containing heavy metals and boron. The experiment consisted of a completely randomized block design with two organic matter sources and four rates of amendment (0, 20, 40 and 80 Mg ha?1 organic carbon). Treatments were replicated three times. The castor oil plants were harvested 74 days after sowing. No accumulation of Cr, Ni, Cd, Cu, Pb or Zn was observed in the plants, but the concentration of B increased to 626 mg kg?1 upon filter cake addition in castor oil shoots. Peat addition reduced by 2.7 years the time needed for removal of 50% of soil B content compared to the treatment with no organic matter addition. The transfer factor and transference index values obtained for B with castor oil plants in the present study were comparable to those obtained for hyperaccumulator species. Although our results are promising,further studies should be conducted to prove the usefulness of plants grown in contaminated areas for remediation purposes and for biofuel production. aBoron afilter cake aHeavy metals aOrganic matter aPeat aPhytoremediation aSoil remediation aMamona aMatéria orgânica aRecuperação do solo aRicinus Communis aTurfa1 aCOSCIONE, A. R.1 aPIRES, A. M. M.1 aPAZ-FERREIRO, J. tJournal of Geochemical Exploration, Amsterdamgv. 123, p. 3-7, 2012.