Vol 6 No 02 (2017)
Research Articles
Published January 31, 2017

References

  1. Ali, S; P Bai; F Zeng; S Cai; IH Shamsi; B Qiu; F Wu, and G Zhang. “The ecotoxicological and interactive effects of chromium and aluminium on growth, oxidative damage and antioxidant enzymes on two barley genotypes differing in Al tolerance”. Environ. Exp. Bot 70 (2011): 185–191.
  2. Bonet, A; C Poschenrieder, and J Barcelo. “Chromium III-iron interaction in Fe-deficient and Fe-sufficient bean plants”. J. Plant Nutr. 14(1991): 403-414.
  3. Bahmanyar, MA. “Cadmium, Nickel, Chromium and Lead levels in soils and vegetables under long term irrigation with industrial wastewater”. Communications in soil science and plant analysis 39(2008): 2068-2079.
  4. Cao, A; A Carucci; T Lai; PL Colla, and E Tamburini. “Effect of biodegradable chelatings on heavy metals phytoextraction with Mirabilis jalapa and on its associated bacteria”. Eur. J Soil Biol. 43 (2007), 200-206
  5. Davies FT; JD Puryear; JN Egilla, and JAS Grossi. “Mycorrhizal fungi enhance accumulation and tolerance of chromium in sunflower (Helianthus annuus)”. J Plant Physiol 158(2001): 777-86
  6. Jarup L. “Hazards of heavy metals contamination”. British Medicine Bulletin 68(2003): 167-182.
  7. Mohanty, M, and HK Patra. “Phytoremediation potential of Paragrass-An in-situ Approach for Chromium Contaminated soil” Int. J. Phytoremediation 14.8(2012): 796-805.
  8. Mohanty, M; C Pradhan, and HK Patra. “Chrimium translocation, bioconcetration and its phytotoxic impacts in in vivo grown seedlings of Sesbania sesban L. Seedlings”. Acta Biologica Hungarica 66.1(2015): 80-92.
  9. Mohanty, M, and HK Patra. “An in vivo study on toxicological alterations in Sesbania indicum L. under hexavalent chromium stress”. Intl. Jour. Sc. Res. 4.5(2015): 1711-1715.
  10. Mantry, P, and HK Patra. “Chelate-assisted Phytoextraction of Chromium in Drought Resistant and Drought Susceptible variety of Rice”. Int. Res. J. Biological Sci. 4.7(2015): 1-7.
  11. Mantry, P, and HK Patra. “Effect of of hexavalent chromium (Cr+6) and chelating agents on growth, uptake and biochemical lesions in flood resistant rice grown under water logged and drought conditions”. International Journal of Bioassay 4(2015): 3835-3840
  12. Nowack, B; R Schulin, and BH Robinson. “Critical assessmentof chelant-enhanced phytoextraction”. Environ. Sci. Technol. 40(2006): 5225-5232.
  13. Patra, HK; A Nayak, and DS Marndi. “Assessment of Phytotoxicity and Tolerance Potential of Cassia tora (L.) Roxb. Grown in Chromium Contaminated Soil”. Intl. Jour. Biol. Sc. 6.1(2015):
  14. Pulford, ID, and C Watson. “Phytoremediation of heavy metal contaminated land by trees-A Review”. Environ. Intl. 29(2003): 529-540.
  15. Rouphael, Y; M Cardarelli; E Reab, and G Colla. “Grafting of cucumber as a means to minimize copper toxicity”. Environment and Experimental Botany. 63(2008): 49-58.
  16. Sauerbeck, DR. “Plant element and soils properties governing uptake and availability of heavy metals derived from sewage sludge”. Water Air Soil Pollution 57.58 (1991): 227-237.
  17. Vernay, P; C Gauthier-Moussard; L Jean; FO Bordas; F Faure; G Ledoigt, and A Hitmi. “Effect of Chromium on phytochemical and physiological parameters in Datura innoxia”. Chemosphere 72(2008): 763-771.
  18. Zhao, Z; M Xi; G Jianga; X Liua; Z Bai, and Huang Y. “Effects of IDSA, EDDS and EDTA on heavy metals accumulation in hydroponically grown maize (Zea mays, L.)”. J. Hazard. Mater 181(2010) 455-459.