Journal of
Chemical Engineering and Materials Science

  • Abbreviation: J. Chem. Eng. Mater. Sci.
  • Language: English
  • ISSN: 2141-6605
  • DOI: 10.5897/JCEMS
  • Start Year: 2010
  • Published Articles: 97

Full Length Research Paper

Photocatalytic oxidation of 17 α-Ethinylestradiol by UV-activated TiO2 in batch and continuous-flow reactor

Carvalho R. V.
  • Carvalho R. V.
  • Goiania, Goias State, Brazil.
  • Google Scholar
Isecke B. G.
  • Isecke B. G.
  • Goiania, Goias State, Brazil.
  • Google Scholar
Carvalho E.
  • Carvalho E.
  • Goiania, Goias State, Brazil.
  • Google Scholar
Teran F. J. C.
  • Teran F. J. C.
  • Goiania, Goias State, Brazil.
  • Google Scholar


  •  Received: 24 March 2017
  •  Accepted: 20 April 2017
  •  Published: 31 May 2017

References

Armstrong BM, Lazorchak JM, Murphy CA, Haring HJ, Jensen KM, Smith ME (2015). Determining the effects of a mixture of an endocrine disrupting compound, 17 α-ethinylestradiol, and ammonia on fathead minnow (Pimephales promelas) reproduction. Sci Total Environ. 120:108-114.

 

Atkinson SK, Marlatt VL, Kimpe LE, Lean DRS, Trudeau VL, Blais JM (2012). The occurrence of steroidal estrogens in south-eastern Ontario wastewater treatment plants. Sci. Total Environ. 430:119-125.
Crossref

 

Frontistis Z, Kassinos-Falta D, Mantzavinos D, Xekoukoulotakis NP (2012). Photocatalytic degradation of 17α-ethynylestradiol in environmental samples by ZnO under simulated solar radiation. J. Chemical Tec. Biotechnol. 87:1051-1058.
Crossref

 

Gokçe CE, Arayici S (2016). Investigation of the environmental distribution of endocrine disrupting materials in sewage sludge. Desalin. Water Treat. 57:2564-2569.
Crossref

 

Gokçe CE, Arayici S (2016). Adsorption of 17β-estradiol and estrone by activated carbon derived from sewage sludge. Desalin. Water Treat. 57:2503-2514.
Crossref

 

Gotostos MJN, Chia-Chi, De luna SMDG, Ming-Chun L (2014). Kinetic study of acetaminophen degradation by visible light photocatalysis. J. Environ. Sci. Health Part. A 49:892-899.
Crossref

 

Halling-Sorensen B, Nielsen SN, Lanzky PF, Ingerslev F, Lutz- heft HCH, Jorgensen SE (1998). Occurrence, fate and eVects of pharmaceutical substances in the environment—a review, Chemosphere 36:357-393.
Crossref

 

Huerta-Fontela M, Galceran MT, Ventura F (2011). Occurrence and removal of pharmaceuticals and hormones through drinking water treatment. Water Res. 45:1432-1442.
Crossref

 

King O, Merwe J, McDonald JA, Leusch FDL (2016). Concentrations of levonorgestrel and ethinilestradiol in wastewater effluents: Is the progestin also cause of concern? Environ. Toxicol. Chem. 35:1378-1385.
Crossref

 

Larcher S, Yargeau V (2013). Biodegradation of 17 alpha-ethinylestradiol by heterotrophic bacteria. Environ. Pollut. 173:17-22.
Crossref

 

Ma X, Zhang C, Deng J, Song S, Li Q, Guo Y, Li C (2015). Simultaneous Degradation of Estrone, 17β-Estradiol and 17α-Ethinyl Estradiol in an Aqueous UV/H2O2 System. Environ. Res. Public Health 12:12016-12029.
Crossref

 

Ma W, Nie C, Gao X, Qu D, Lun X, Chen B (2016). Sorption characteristics and factors affecting the adsorption behavior of bisphenol A and 17ß-estradiol/ethinyl estradiol in river- and farmland-based artificial groundwater recharge with reclaimed water. Desalin. Water Treat. 57:8015-8025.
Crossref

 

Miranda CY, Contreras J, Zaror CD, Mansilla HD (2013). Phenylmercury degradation by heterogeneous photocatalysis assisted by UV-A light. J. Environ. Sci. Health Part A 48:1642-1648.
Crossref

 

Nasuhoglu D, Berk D, Yargeau V (2012). Photocatalytic removal of 17-α- ethinylestradiol (EE2) e levonorgestrel (LNG) from contraceptive pill manufacturing plant wastewater under UV radiation. Chem. Eng. J. 185-186: 52-60.
Crossref

 

Padovan RN, Azevedo EB (2015). Combining a sequencing batch reactor with heterogeneous photocatalysis (TiO2/UV) for treating a pencil manufacturer's wastewater. Braz. J. Chem. Eng. 32:99-106.
Crossref

 

Pešoutová R, StÅ™íteský L, Hlavínek P (2014). A pilot scale comparison of advanced oxidation processes for estrogenic hormone removal from municipal wastewater effluent. Water Sci. Technol. 70:70.
Crossref

 

Pessoa GP, Souza NC, Vidal CB, Alves, PIM, Firmino RF, Nascimento AB, Santos (2014). Occurrence and removal of estrogens in Brazilian wastewater treatment plants. Sci. Total Environ. 490:288-295.
Crossref

 

Santiago DE, Do-a-Rodriguez JM, Ara-a J, Fernandez-Rodriguez C, Gonzalez-Diaz OJ, Perez-Pe-a AMT (2013). Optimization of the degradation of imazalil by photocatalysis: Comparison between commercial and lab-made photocatalysts. Applied Catalysis B, 138-139:391-400. 
Crossref

 

Solcova O, Spacilova L, Maleterova Y, Morozova M, Ezechias M, Kresinova Z (2016). Photocatalytic water treatment on TiO2 thin layers, Desalin. Water Treat. 57:11631-11638.
Crossref

 

Tyler CR, Spary C, Gibson R, Santos EM, Shears J, Hill EM (2005). Accounting for differences in estrogenic responses in rainbow trout (Oncorhynchus mykiss: Salmonidae) and roach (Rutilus rutilus: Cyprinidae) exposed to effluents from wastewater treatment works. Environ. Sci. Technol. 39:2599-2607.
Crossref

 

Wang Y, Li Y, Zhang W, Wang Q, Wang D (2015). Photocatalytic degradation and reactor modeling of 17α-ethynylestradiol employing titanium dioxide-incorporated foam concrete. Environ. Sci. Pollut. Res. Int. 22:3508-3517.
Crossref

 

Yi T, Mackintosh S, Aga DS, Harper WF (2011). Exploring 17 alpha-ethinylestradiol removal, mineralization, and bioincorporation in engineered bioreactors. Water Res. 45:(3)1369-1377.
Crossref

 

Zenker A, Cicero MR, Prestinaci F, Bottoni P, Carere M (2014). Bioaccumulation and biomagnification potential of pharmaceuticals with a focus to the aquatic environment. J. Environ. Manage. 133:378-387.
Crossref

 

Zhou Y, Zha J, Wang Z (2012). Occurrence and fate of steroid estrogens in the largest wastewater treatment plant in Beijing, China. Environ. Monit. Assess. 184:6799-6813.
Crossref