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1.
J Environ Biol ; 2012 Jul; 33(4): 717-720
Article in English | IMSEAR | ID: sea-148418

ABSTRACT

The anionic surfactant sodium dodecyl sulphate (SDS), the core components of detergent and cosmetic product formulations, contributes significantly to the pollution profile of sewage and wastewater of all kinds. In this study, 44 SDS degrading strains were isolated by soil enrichment methods and the utilization efficiency was assessed by methylene blue active substances (MBAS) assay and High performance liquid chromatography (HPLC) method. Isolate S2 which showed maximum degradation was identified as Pseudomonas aeruginosa MTCC 10311 based on phenotypic features and 16 S rDNA typing .The isolate was found to harbor plasmid within the size range of 9-10 kb. The cured derivative of SDS degrading Pseudomonas aeruginosa was obtained at a frequency of 10.7% by incubation with ethidium bromide (500 mg ml-1) at 40oC. 96% of SDS degradation occurred at 1500 ppm level within 48 hr of incubation, whereas higher concentration of SDS (10000 ppm) showed only 20% degradation. The optimum temperature and pH was 30oC and 7.5, respectively.The additional supplementation of carbon and nitrogen source increased the degradation capacity from 93 to 95% and 90 to 96% respectively within 36 hrs of incubation.

2.
J Environ Biol ; 2007 Jul; 28(3): 611-5
Article in English | IMSEAR | ID: sea-113318

ABSTRACT

Reffing of coconut husk, the majorprocess in quality coir fibre extraction, causes serious pollution with brackish water lagoons of Kerala. An attempt is made to treat the coconut husk leachate by using a laboratory scale UASB-reactor The experiment was conducted with loading of leachate from 1 kg of fresh coconut husk. The anaerobic treatment was done continuously The parameters like VFA, pH, COD and polyphenols were analysed regularly during the evaluation of the reactor performance. The polyphenol, VFA and COD were diminished gradually with time. The pH of the reactor during the study was found to be in the range of 6-8. The biogas production was increased with loading and about 82% of the total COD/kg husk could be converted to biogas. The maximum polyphenol loading in the reactor was reached to about 298.51 mg/l of husk.


Subject(s)
Anaerobiosis , Bioreactors , Cocos , Fatty Acids, Volatile/metabolism , Flavonoids/metabolism , Industrial Waste , Methane/metabolism , Phenols/metabolism , Waste Disposal, Fluid/methods
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