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Influence of aeration rate and method of process activation on the degree of purification of zinc-containing waste water by ferritization

Bogdan Yemchura, Gennadii Kochetov

2021enwastewaterzincferritizationenvironmentpollution

Abstract

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This study addresses the environmental challenges posed by the discharge of pollutants, particularly heavy metals from galvanic production, which significantly contributes to water pollution. The objective of this research was to investigate the effects of aeration rate and activation method on the efficiency of zinc-containing wastewater purification through ferritization. The methodology included experimental setups where varying aeration rates and activation techniques were employed to treat synthetic wastewater samples containing zinc ions. Results indicated that optimized aeration conditions significantly enhanced the purification effectiveness, leading to a marked reduction in zinc concentration. The findings suggest that careful control of aeration and activation processes can improve waste treatment efficiencies, thereby mitigating the environmental impact of electroplating operations. This work highlights the potential for resource recovery from waste while addressing ecological concerns in the galvanic sector.

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Cite This Work

@article{d640ea48-77c6-4a59-88ff-f7b6f393ad48,
  title={Influence of aeration rate and method of process activation on the degree of purification of zinc-containing waste water by ferritization},
  author={Bogdan Yemchura and Gennadii Kochetov},
  year={2021},
  language={en}
}
TY  - JOUR
TI  - Influence of aeration rate and method of process activation on the degree of purification of zinc-containing waste water by ferritization
AU  - Bogdan Yemchura
AU  - Gennadii Kochetov
PY  - 2021
LA  - en
ER  -

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