• 中文核心期刊
  • 中国科技核心期刊
  • ISSN 1007-6336
  • CN 21-1168/X
LIANG Hao-rui, WANG Meng-qi, YANG Gui-peng, DING Hai-bing. Studying bilge water treatment by combination of Fenton reagent and potassium monopersulfate[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2016, 35(5): 780-786. DOI: 10.13634/j.cnki.mes20160524
Citation: LIANG Hao-rui, WANG Meng-qi, YANG Gui-peng, DING Hai-bing. Studying bilge water treatment by combination of Fenton reagent and potassium monopersulfate[J]. Chinese Journal of MARINE ENVIRONMENTAL SCIENCE, 2016, 35(5): 780-786. DOI: 10.13634/j.cnki.mes20160524

Studying bilge water treatment by combination of Fenton reagent and potassium monopersulfate

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  • Received Date: September 15, 2015
  • Accepted Date: December 09, 2015
  • Combination of Fenton reagent and potassium monopersulfate was applied to treat bilge water and the optimal conditions were determined by variable control method. The results showed that at pH=3, the chemical oxygen demand (COD) of bilge water decreased from 963mg/L to 120mg/L after three-time flocculants by Fenton reagent (30%H2O2 19.2mL/L, FeSO4 5.21g/L, and nFe2+/nH2O2=0.0997), up to 87.54% of COD was removed.The suspected H2S smell in the water was also disappeared, and the water color became transparent from dark-brown and opacitas. After flocculants, the water sample was oxidized by potassium monopersulfate. Under acidic condition, the potassium monopersulfate had the highest oxidized efficiency at 50~60℃. The organic matter in the bilge water was degraded significantly when the adding amount of potassium monopersulfate was 1.3 times as the theoretical amount. Then the COD in the bilge water decreased from 120mg/L to 20.5mg/L and the removal efficiency was 82.35%. Finally, the COD removal efficiency reached 97.82% after the bilge water was treated by the combination of Fenton reagent and potassium monopersulfate, and the COD concentration matched national wastewater discharge standard.

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