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Decolourisation and Detoxification of Reactive Azo Dyes by Saccharothrix Aerocolonigenes TE5

Rizwana Parvez S., Uma Maheswari Devi Palempalle

Journal of Applied & Environmental Microbiology. 2015, 3(2), 58-62 doi:10.12691/jaem-3-2-5
  • Figure 1. Decolourisation of Reactive azo dyes by Saccarothrix aerocolonigenes TE5 under static conditions. The data indicate the mean of three independent experiments Mean±SEM. p<0.001
  • Figure 2. Decolourisation of Reactive azo dyes by Saccarothrix aerocolonigenes TE5 under shaking conditions. The data indicate the mean of three independent experiments Mean±SEM. p<0.05
  • Figure 3. The effect of pH on the decolurization of of three reactive azo dyes by Saccarothrix aerocolonigenes TE5. The data indicates the mean of three independent experiments Mean±SEM. p<0.01
  • Figure 4. The effect of temperatue on the decolurization of of three reactive azo dyes by Saccarothrix aerocolonigenes TE5. The data indicates the mean of three independent experiments Mean±SEM. p<0.01
  • Figure 5. The effect of Carbon sources on the colour removal of three reactive azo dyes by Saccarothrix aerocolonigenes TE5. The data indicate the mean of three independent experiments Mean±SEM. p<0.01
  • Figure 6. The effect of Nitrogen sources on the colour removal of three reactive azo dyes by Saccarothrix aerocolonigenes TE5. The data indicate the mean of three independent experiments Mean±SEM. p<0.01
  • Figure 7. The effect of degraded and control RR1 dye on germination of wheat seedlings. The data indicates the mean of three independent experiments Mean±SEM. p<0.01
  • Figure 8. The effect of degraded and control RR1 dye on length of (a) plumule (b) Radicle