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Their influence on the effluent properties (COD, color, toxicity, spectra and residual enzymatic activity) was examined to evaluate the impact of L stage on environment since no experimental data have been published concerning this matter.
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In this work BDD electro-oxidation is demonstrated to be an efficient alternative to treat a wide variety of saline industrial effluents, which main properties were as follows: TOC = 266 4479 mg/L; [N-NH3] = 61 1150 mg/L; [Cl−] = 1996 37,645 mg/L; conductivity = 5.6 64 mS/cm.
Several new techniques are being developed which require the knowledge of effluent physical and transport properties for design and development of treatment plants.
This paper presents a study of the effect of the source of aluminum (when mixed with lime and synthetic sodium sulfate-rich effluent) on the physicochemical properties of the resultant ettringite sludge and on the propensity of the precipitate, when recycled, to form high density sludge (HDS).
Results from this study suggest that RWTs to support biological activity for a variety of wastewater treatment applications as a biofilm carrier have high potential that better performance as COD and TSS removal and sludge settling properties and effluent quality supported these findings.
The results of the physicochemical properties of effluent collected from the two selected sites are given in Table 1.
The experiment was designed as a 2 × 3 factorial and evaluated two water sources (water-soluble, inorganic fertilizer or municipal water) and three soilless substrates with 0, 5 or 10%% dewatered aquaculture effluent (v/v) on substrate properties and tomato (Solanum lycopersicum Mill. 'Bolseno') transplant growth.
In conclusion, the IPC effluent retains strong cardioprotective properties, containing hydrophobic mediator(s) < 30 kDa offering cytoprotection via PI3K/Akt-dependent signaling at ischemic reperfusion.
Because of the physicochemical complexity of the effluents, the biomedically relevant properties of these materials must be carefully assessed.
The evaluation of the potential public and occupational health hazards of developing and existing combustion processes requires a detailed understanding of the physical and chemical properties of effluents available for human and environmental exposures.
The OMCs show excellent adsorption properties for phenol effluent with the removal efficiency of phenols being up to 92.3%.
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