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1.
J Environ Sci (China) ; 74: 19-31, 2018 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-30340672

RESUMEN

Nowadays, trends in wastewater treatment by zero-valent iron (ZVI) were turned to use bimetallic NZVI particles by planting another metal onto the ZVI surface to increase its reactivity. Nano size zero-valent iron/copper (NZVI/Cu0) bimetallic particles were synthesized in order to examine its toxicity effects on the wastewater microbial life, kinetics of phosphorus, ammonia stripping and the reduction of chemical oxygen demand (COD). Various concentrations of NZVI/Cu0 and operation conditions both aerobic and anaerobic were investigated and compared with pure NZVI experiment. The results showed that addition 10mg/L of NZVI/Cu0 significantly increased the numbers of bacteria colonies under anaerobic condition, conversely it inhibited bacteria activity with the presence of oxygen. Furthermore, the impact of nanoparticles on ammonia stripping and phosphorus removal was also linked to the emitted iron ions electrons. It was found that dosing high concentration of bimetallic NZVI/Cu0 has a negative effect on ammonia stripping regardless of the aeration condition. In comparison to control, dosing only 10mg/L NZVI/Cu0, the phosphorus removal increased sharply both under aerobic and anaerobic conditions, these outcomes were obtained as a result of complete dissolution of bimetallic nanoparticles which formed copper-iron oxides components that are attributed to increasing the phosphorus adsorption rate.


Asunto(s)
Bacterias/crecimiento & desarrollo , Bacterias/metabolismo , Cobre/química , Hierro/química , Nanopartículas del Metal/química , Aguas Residuales/química , Aguas Residuales/microbiología , Adsorción , Aire , Atmósfera/química , Bacterias/efectos de los fármacos , Análisis de la Demanda Biológica de Oxígeno , Cobre/toxicidad , Hierro/toxicidad , Nitrógeno/química , Fósforo/química , Fósforo/aislamiento & purificación , Fósforo/metabolismo
2.
Chemosphere ; 197: 502-512, 2018 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-29407812

RESUMEN

Nanoscale zero-valent iron (nZVI) is a versatile treatment reagent that should be utilized in an effective application for nitrate remediation in water. For this purpose, a laboratory-scale continuous-flow system (LSCFS) was developed to evaluate nZVI performance in removal of nitrate in different contaminated-water bodies. The equipment design (reactor, settler, and polisher) and operational parameters of the LSCFS were determined based on nZVI characterization and nitrate reduction kinetics. Ten experimental runs were conducted at different dosages (6, 10 and 20 g) of nZVI-based reagents (nZVI, bimetallic nZVI-Cu, CuCl2-added nZVI). Effluent concentrations of nitrogen and iron compounds were measured, and pH and ORP values were monitored. The major role exhibited by the recirculation process of unreacted nZVI from the settler to the reactor succeeded in achieving overall nitrate removal efficiency (RE) of >90%. The similar performance of both nZVI and copper-ions-modified nZVI in contaminated distilled water was an indication of LSCFS reliability in completely utilizing iron nanoparticles. In case of treating contaminated river water and simulated groundwater, the nitrate reduction process was sensitive towards the presence of interfering substances that dropped the overall RE drastically. However, the addition of copper ions during the treatment counteracted the retardation effect and greatly enhanced the nitrate RE.


Asunto(s)
Nanopartículas del Metal/química , Nitratos/química , Contaminantes Químicos del Agua/química , Cobre , Agua Subterránea/química , Hierro/química , Modelos Químicos , Nitrógeno , Óxidos de Nitrógeno , Reproducibilidad de los Resultados , Eliminación de Residuos Líquidos , Agua , Contaminantes Químicos del Agua/análisis , Contaminación del Agua , Purificación del Agua
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