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Journal Abstract Search


372 related items for PubMed ID: 16403552

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  • 3. Effect of heavy metals on soil denitrification and CO2 production after short term incubation.
    Probanza A, Gutiérrez Mañero FJ, Ramos B, Acero N, Lucas JA.
    Microbiologia; 1996 Sep; 12(3):417-24. PubMed ID: 8897422
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  • 4. The influence of soil heavy metals pollution on soil microbial biomass, enzyme activity, and community composition near a copper smelter.
    Wang Y, Shi J, Wang H, Lin Q, Chen X, Chen Y.
    Ecotoxicol Environ Saf; 2007 May; 67(1):75-81. PubMed ID: 16828162
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  • 5. Decomposition of heavy metal contaminated nettles (Urtica dioica L.) in soils subjected to heavy metal pollution by river sediments.
    Khan KS, Joergensen RG.
    Chemosphere; 2006 Nov; 65(6):981-7. PubMed ID: 16677685
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  • 6. Dynamics of C, N and P in soil amended with biosolids from a pharmaceutical industry producing cephalosporines or third generation antibiotics: a laboratory study.
    Franco-Hernández O, Dendooven L.
    Bioresour Technol; 2006 Sep; 97(13):1563-71. PubMed ID: 16129602
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  • 7. Effects of lead and cadmium nitrate on biomass and substrate utilization pattern of soil microbial communities.
    Muhammad A, Xu J, Li Z, Wang H, Yao H.
    Chemosphere; 2005 Jul; 60(4):508-14. PubMed ID: 15950043
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  • 9. Labile substrates quality as the main driving force of microbial mineralization activity in a poplar plantation soil under elevated CO2 and nitrogen fertilization.
    Lagomarsino A, Moscatelli MC, De Angelis P, Grego S.
    Sci Total Environ; 2006 Dec 15; 372(1):256-65. PubMed ID: 17023027
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  • 10. Effects of Cd and Pb on soil microbial community structure and activities.
    Khan S, Hesham Ael-L, Qiao M, Rehman S, He JZ.
    Environ Sci Pollut Res Int; 2010 Feb 15; 17(2):288-96. PubMed ID: 19333640
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  • 11. Effect of heavy metals on soil microbial activity and diversity in a reclaimed mining wasteland of red soil area.
    Liao M, Chen CL, Huang CY.
    J Environ Sci (China); 2005 Feb 15; 17(5):832-7. PubMed ID: 16313013
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  • 13. Effects of the presence of a composted biosolid on the metal immobilizing action of an urban soil.
    Madrid F, Florido MC.
    J Hazard Mater; 2010 Apr 15; 176(1-3):792-8. PubMed ID: 20031317
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  • 14. Comparison of different microbial biomass and activity measurement methods in metal-contaminated soils.
    Barajas-Aceves M.
    Bioresour Technol; 2005 Aug 15; 96(12):1405-14. PubMed ID: 15792589
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  • 15. Soil microbial communities and enzyme activities under various poultry litter application rates.
    Acosta-Martínez V, Harmel RD.
    J Environ Qual; 2006 Aug 15; 35(4):1309-18. PubMed ID: 16825450
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  • 16. Risk assessment of heavy metal contaminated soil in the vicinity of a lead/zinc mine.
    Li J, Xie ZM, Zhu YG, Naidu R.
    J Environ Sci (China); 2005 Aug 15; 17(6):881-5. PubMed ID: 16465871
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  • 17. Changes in soil chemical and microbiological properties during 4 years of application of various organic residues.
    Odlare M, Pell M, Svensson K.
    Waste Manag; 2008 Aug 15; 28(7):1246-53. PubMed ID: 17697770
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  • 18. The influence of soil pollution on soil microbial biomass and nematode community structure in Navoiy Industrial Park, Uzbekistan.
    Shukurov N, Pen-Mouratov S, Steinberger Y.
    Environ Int; 2006 Jan 15; 32(1):1-11. PubMed ID: 16143397
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  • 19. Soil resource availability impacts microbial response to organic carbon and inorganic nitrogen inputs.
    Zhang WJ, Zhu W, Hu S.
    J Environ Sci (China); 2005 Jan 15; 17(5):705-10. PubMed ID: 16312988
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  • 20. Phytotoxicity and speciation of copper, zinc and lead during the aerobic composting of sewage sludge.
    He MM, Tian GM, Liang XQ.
    J Hazard Mater; 2009 Apr 30; 163(2-3):671-7. PubMed ID: 18703282
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