13. Table 2: The selected strains of bacteria capable of degrading azo dye at 50 g NaCl l - 80 S-4 70 F-9 90 T-17 100 T-14 100 KS-26 100 KS-23 % Decolorization Bacterial Strains
14. DEGRADATION OF REACTIVE BLACK-5 All the three strains of bacteria were able to decolorize Reactive Black-5 up to salt concentration of 60 g NaCl l -1 . The degradation rate was affected with increase in salt concentration
15. Fig. 1: Potential of bacterial strain KS-23 for decolorization of Reactive Black-5 at different salt concentration (0-60 g NaCl l -1 )
16. Fig. 2: Potential of bacterial strain KS-26 for decolorization of Reactive Black-5 at different salt concentration (0-60 g NaCl l -1 )
17. Fig. 3: Potential of bacterial strain T-14 for decolorization of Reactive Black-5 at different salt concentration (0-60 g NaCl l -1 )
18. DEGRADATION OF REACTIVE BLUE BRS All the selected strains were able to degrade Reactive Blue BRS efficiently. Bacterial strains were able to tolerate salt concentration up to 100 g NaCl l -1 .
19. Fig. 4: Potential of bacterial strain KS-23 for decolorization Reactive Blue BRS at different salt concentration (0-100 g NaCl l -1 )
20. Fig. 5: Potential of bacterial strain KS-26 for decolorization Reactive Blue BRS at different salt concentration (0-100 g NaCl l -1 )
21. Fig. 6: Potential of bacterial strain T-14 for decolorization Reactive Blue BRS at different salt concentration (0-100 g NaCl l -1 )
22. DEGRADATION OF REACTIVE GOLDEN OVIFIX Bacterial strains were able to decolorize Reactive Golden Ovifix. All the three strains were able to decolorize Reactive Golden Ovifix in the presence of salt concentration 0-60 g NaCl l -1 .
23. Fig. 7: Potential of bacterial strain KS-23 for decolorization Reactive Golden Ovifix at different salt concentration (0-100 g NaCl l -1 )
24. Fig. 8: Potential of bacterial strain KS-26 for decolorization Reactive Golden Ovifix at different salt concentration (0-100 g NaCl l -1 )
25. Fig. 9: Potential of bacterial strain T-14 for decolorization Reactive Golden Ovifix at different salt concentration (0-100 g NaCl l -1 )
26. CONCLUSION This research suggested that under high saline conditions microbial activity is affected but there are many bacteria that have natural ability to tolerate such saline conditions. Therefore use of such halotolerant bacteria can be useful for the degradation of azo dyes under saline conditions.