References
1. Fenton HJH (1894) Oxidation of tartaric acid in presence of iron. J Chem Soc 65:899–910
2. Walling C, Goosen A (1973) Mechanism of the ferric ion catalyzed decomposition of hydrogen
peroxide. Effect of organic substrates. J Am Chem Soc 95:2987–2991
3. Lipczynska-Kochany E (1991) Novel method for a photocatalytic degradation of 4-nitrophenol
in homogeneous aqeuous solution. Environ Technol 12:87–92
4. Zepp RG, Faust BC, Hoigne J (1992) Hydroxyl radical formation in aqueous reactions (pH 3-8)
of iron(II) with hydrogen peroxide: the photo-Fenton reaction. Environ Sci Technol
26:313–319
5. Lucas MS, Peres JA (2006) Decolorization of the azo dye Reactive Black 5 by Fenton and
photo-Fenton oxidation. Dyes Pigments 71:236–244
6. Moraes JEF, Silva DN, Quina FH et al (2004) Utilization of solar energy in the
photodegradation of gasoline in water and of oil-field-produced water. Environ Sci Technol
38:3746–3751
7. Ortega-Gómez E, Ballesteros Martín MM, Carratalà A et al (2015) Principal parameters
affecting virus inactivation by the solar photo-Fenton process at neutral pH and μM concentrations of H 2 O 2 and Fe
2+ /
3+ . Appl Catal B Environ 174–175:395–402
8. Fernandez J, Bandara J, Kiwi J et al (1998) Efficient photo-assisted Fenton catalysis mediated
by Fe ions on Nafion membranes active in the abatement of non-biodegradable azo-dye. Chem
Commun 14:1493–1494
9. Yuranova T, Enea O, Mielczarski E et al (2004) Fenton immobilized photo-assisted catalysis
through a Fe/C structured fabric. Appl Catal B Environ 49:39–50
10. Bozzi A, Yuranova T, Mielczarski J et al (2002) Abatement of oxalates catalyzed by Fe-silica
structured surfaces via cyclic carboxylate intermediates in photo-Fenton reactions. Chem
Commun 0:2202–2203
11. Ma W, Huang Y, Li J et al (2003) An efficient approach for the photodegradation of organic
pollutants by immobilized iron ions at neutral pHs. Chem Commun 0:1582–1583
12. Li J, Ma W, Huang Y et al (2004) Oxidative degradation of organic pollutants utilizing
molecular oxygen and visible light over a supported catalyst of Fe(bpy) 3
2+ in water. Appl
Catal B Environ 48:17–24
13. Zhang G, Gao Y, Zhang Y et al (2010) Fe 2 O 3 -pillared rectorite as an efficient and stable Fentonlike heterogeneous catalyst for photodegradation of organic contaminants. Environ Sci Technol
44:6384–6389
14. Feng J, Hu X, Yue PL et al (2003) Discoloration and mineralization of Reactive Red HE-3B by
heterogeneous photo-Fenton reaction. Water Res 37:3776–3784
15. Wei X, Wu H, He G et al (2017) Efficient degradation of phenol using iron-montmorillonite as a
Fenton catalyst: importance of visible light irradiation and intermediates. J Hazard Mater
321:408–416
16. Bossmann SH, Oliveros E, Gob S et al (2001) Degradation of polyvinyl alcohol (PVA) by
homogeneous and heterogeneous photo catalysis applied to the photochemically enhanced
Fenton reactions. Water Sci Technol 44:257–262
17. Gonzalez-Olmos R, Martin MJ, Georgi A et al (2012) Fe-zeolites as heterogeneous catalysts in
solar Fenton-like reactions at neutral pH. Appl Catal B Environ 125:51–58
18. Qian X, Ren M, Zhu Y et al (2017) Visible light assisted heterogeneous Fenton-like degradation
of organic pollutant via α-FeOOH/mesoporous carbon composites. Environ Sci Technol
51:3993–4000
19. Song AN, Hameed BH (2013) Degradation of Acid Blue 29 in visible light radiation using iron
modified mesoporous silica as heterogeneous photo-Fenton catalyst. Appl Catal A: Gel
450:96–105
20. Gu L, Zhu N, Guo H et al (2013) Adsorption and Fenton-like degradation of naphthalene dye
intermediate on sewage sludge derived porous carbon. J Hazard Mater 246–247:145–153
References
273
1. Fenton HJH (1894) Oxidation of tartaric acid in presence of iron. J Chem Soc 65:899–910
2. Walling C, Goosen A (1973) Mechanism of the ferric ion catalyzed decomposition of hydrogen
peroxide. Effect of organic substrates. J Am Chem Soc 95:2987–2991
3. Lipczynska-Kochany E (1991) Novel method for a photocatalytic degradation of 4-nitrophenol
in homogeneous aqeuous solution. Environ Technol 12:87–92
4. Zepp RG, Faust BC, Hoigne J (1992) Hydroxyl radical formation in aqueous reactions (pH 3-8)
of iron(II) with hydrogen peroxide: the photo-Fenton reaction. Environ Sci Technol
26:313–319
5. Lucas MS, Peres JA (2006) Decolorization of the azo dye Reactive Black 5 by Fenton and
photo-Fenton oxidation. Dyes Pigments 71:236–244
6. Moraes JEF, Silva DN, Quina FH et al (2004) Utilization of solar energy in the
photodegradation of gasoline in water and of oil-field-produced water. Environ Sci Technol
38:3746–3751
7. Ortega-Gómez E, Ballesteros Martín MM, Carratalà A et al (2015) Principal parameters
affecting virus inactivation by the solar photo-Fenton process at neutral pH and μM concentrations of H 2 O 2 and Fe
2+ /
3+ . Appl Catal B Environ 174–175:395–402
8. Fernandez J, Bandara J, Kiwi J et al (1998) Efficient photo-assisted Fenton catalysis mediated
by Fe ions on Nafion membranes active in the abatement of non-biodegradable azo-dye. Chem
Commun 14:1493–1494
9. Yuranova T, Enea O, Mielczarski E et al (2004) Fenton immobilized photo-assisted catalysis
through a Fe/C structured fabric. Appl Catal B Environ 49:39–50
10. Bozzi A, Yuranova T, Mielczarski J et al (2002) Abatement of oxalates catalyzed by Fe-silica
structured surfaces via cyclic carboxylate intermediates in photo-Fenton reactions. Chem
Commun 0:2202–2203
11. Ma W, Huang Y, Li J et al (2003) An efficient approach for the photodegradation of organic
pollutants by immobilized iron ions at neutral pHs. Chem Commun 0:1582–1583
12. Li J, Ma W, Huang Y et al (2004) Oxidative degradation of organic pollutants utilizing
molecular oxygen and visible light over a supported catalyst of Fe(bpy) 3
2+ in water. Appl
Catal B Environ 48:17–24
13. Zhang G, Gao Y, Zhang Y et al (2010) Fe 2 O 3 -pillared rectorite as an efficient and stable Fentonlike heterogeneous catalyst for photodegradation of organic contaminants. Environ Sci Technol
44:6384–6389
14. Feng J, Hu X, Yue PL et al (2003) Discoloration and mineralization of Reactive Red HE-3B by
heterogeneous photo-Fenton reaction. Water Res 37:3776–3784
15. Wei X, Wu H, He G et al (2017) Efficient degradation of phenol using iron-montmorillonite as a
Fenton catalyst: importance of visible light irradiation and intermediates. J Hazard Mater
321:408–416
16. Bossmann SH, Oliveros E, Gob S et al (2001) Degradation of polyvinyl alcohol (PVA) by
homogeneous and heterogeneous photo catalysis applied to the photochemically enhanced
Fenton reactions. Water Sci Technol 44:257–262
17. Gonzalez-Olmos R, Martin MJ, Georgi A et al (2012) Fe-zeolites as heterogeneous catalysts in
solar Fenton-like reactions at neutral pH. Appl Catal B Environ 125:51–58
18. Qian X, Ren M, Zhu Y et al (2017) Visible light assisted heterogeneous Fenton-like degradation
of organic pollutant via α-FeOOH/mesoporous carbon composites. Environ Sci Technol
51:3993–4000
19. Song AN, Hameed BH (2013) Degradation of Acid Blue 29 in visible light radiation using iron
modified mesoporous silica as heterogeneous photo-Fenton catalyst. Appl Catal A: Gel
450:96–105
20. Gu L, Zhu N, Guo H et al (2013) Adsorption and Fenton-like degradation of naphthalene dye
intermediate on sewage sludge derived porous carbon. J Hazard Mater 246–247:145–153
References
273
