Title of article :
Effect of inoculant density, formulation, dispersion and soil nutrient amendment on the removal of carbofuran residues from contaminated soil
Author/Authors :
Duquenne، نويسنده , , Philippe and Parekh، نويسنده , , Nisha R. and Catroux، نويسنده , , Gérard and Fournier، نويسنده , , Jean-Claude، نويسنده ,
Pages :
7
From page :
1805
To page :
1811
Abstract :
Our study was aimed at investigating some factors affecting the use of a carbofuran-degrading bacterium as an inoculant to remove carbofuran residues from contaminated soil. Soil samples inoculated with a liquid cell suspension of strain C28 to give an initial density ranging from 103 to 107 cfu g−1 (dry weight of soil) significantly improved pesticide removal. When the soil was inoculated with a granular formulation of strain C28 to give theoretical cell densities of 5 × 103, 5 × 104 and 5 × 105 cfu g−1 (dry wt of soil), a significant increase in the rate of carbofuran degradation, as compared to uninoculated samples, was seen only for the highest inoculum size. The rate of carbofuran degradation in non-inoculated samples was significantly reduced by chloroform fumigation, but inoculation of natural and chloroform-fumigated soil with equivalent cell densities of strain C28 in both liquid and granular formulation led to a significant increase in the rate of carbofuran breakdown. The effect of soil glucose amendment on pesticide degradation by strain C28, in a liquid or solid formulation, depended on the concentration of the sugar and on inoculant density. A low concentration of glucose significantly reduced the lag phase before pesticide degradation by a low density inoculant. A high concentration, however, led to a significant reduction of the degradation rate for all inoculum sizes. Mixing the siol after inoculation was essential to obtain rapid degradation of the pesticide. When theoretically-equivalent cell densities were introduced in 0.1 and 1 g of microgranules, no significant difference in the rate of pesticide degradation was observed in these experiments.
Journal title :
Astroparticle Physics
Record number :
1991646
Link To Document :
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