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Titlebook: Water Quality Management; Select Proceedings o Vijay P Singh,Shalini Yadav,Ram Narayan Yadava Conference proceedings 2018 Springer Nature S

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Assessment of Aerobic Biodegradability for Vegetable Tanning Process Wastewater Generated from Leathpparent removal of only 24 and 34% of COD, and tannins were observed over a residence time of 24 h. This shows that the efficiency of aerobic microorganisms is affected by the binding of tannins to their cell wall. Supporting data obtained with the help of FTIR is presented in this paper.
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Assessment of Aerobic Biodegradability for Vegetable Tanning Process Wastewater Generated from Leathpparent removal of only 24 and 34% of COD, and tannins were observed over a residence time of 24 h. This shows that the efficiency of aerobic microorganisms is affected by the binding of tannins to their cell wall. Supporting data obtained with the help of FTIR is presented in this paper.
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Biodegradability of Syntans Using Ozonation as a Pretreatment Processime for sulfone-based syntan. Whereas for the same contact time, in the case of phenol-based syntan, BI increased to 0.170 and 0.197, respectively, at acidic and alkaline pH. Further, efficacy of biological treatment of wastewater containing syntans was evaluated, with and without application of ozo
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Evaluation of Dolochar as a Filter Media in Slow Sand Filtrationlids (TSS) removal efficiencies of dual media filter were 78.69 and 89.08%, whereas in case of sand media filter removal efficiencies were 66.17 and 82.48% respectively. Microbial removal efficiency observed was also more in the case of dual media filter. The only disadvantage in dual media filter o
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Performance Evaluation of Filters for Sedimentation Particle Filtrationfilters were able to retain only 92.73 and 86.33%, respectively. The main difference in the removal of particles of different diameters was found that sand filter is most efficient (i.e. 82.35%) in removing particles of all diameters and achieved the total retention of particles with diameters greater than 0.05 mm.
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Bioremediation of Chromium Complex Dye by Growing ,removal was studied using a statistical approach response surface methodology (RSM). The ranges of the parameters were initial dye concentration: 100–300 mg/L, pH: 3.5–4.5 and time: 35–50 h. Maximum color removal (75.25%) was observed at dye concentration: 100 mg/L, pH: 4.84, and time: 50 h. The desirability of the RSM model was found to be 0.967.
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