263
References
1. Zuccato E, Castiglioni S, Fanelli R (2005) Identification of the pharmaceuticals for human use
contaminating the Italian aquatic environment. J Hazard Mater 122(3):205–209
2. Khalaf S, Shoqeir JH, Scrano L, Karaman R, Bufo SA (2019) Photodegradation using TiO2activated borosilicate tubes. Environ Sci Pollut Res 26(19):19025–19034
Table 27.3 Structure and molecular formula of photo products obtained and identified during the
photodegradation assays
Structure
Molecular formula
[M+H]
+
Accurate m/z
[M+H]
+
Error
(ppm)
Sunligth +
Tube
Sunlight +
Tube (G.W.)
C 18 H 21 FN 3 O 4
+
362.1511
−3.4
x
x
C 16 H 19 FN 3 O 4
+
336.1354
−4.3
x
C 17 H 19 FN 3 O 4
+
348.1354
−7.9
x
x
C 16 H 17 FN 3 O 5
+
350.1147
−4.9
x
x
C 17 H 19 FN 3 O 5
+
364.1303
−9.4
x
x
C 18 H 21 FN 3 O 5
+
378.1460
−9.7
x
x
C 18 H 21 FN 3 O 6
+
394.1409
−13.1
x
x
27 Fluoroquinolones in Water: Removal Attemps by Innovative Aops
References
1. Zuccato E, Castiglioni S, Fanelli R (2005) Identification of the pharmaceuticals for human use
contaminating the Italian aquatic environment. J Hazard Mater 122(3):205–209
2. Khalaf S, Shoqeir JH, Scrano L, Karaman R, Bufo SA (2019) Photodegradation using TiO2activated borosilicate tubes. Environ Sci Pollut Res 26(19):19025–19034
Table 27.3 Structure and molecular formula of photo products obtained and identified during the
photodegradation assays
Structure
Molecular formula
[M+H]
+
Accurate m/z
[M+H]
+
Error
(ppm)
Sunligth +
Tube
Sunlight +
Tube (G.W.)
C 18 H 21 FN 3 O 4
+
362.1511
−3.4
x
x
C 16 H 19 FN 3 O 4
+
336.1354
−4.3
x
C 17 H 19 FN 3 O 4
+
348.1354
−7.9
x
x
C 16 H 17 FN 3 O 5
+
350.1147
−4.9
x
x
C 17 H 19 FN 3 O 5
+
364.1303
−9.4
x
x
C 18 H 21 FN 3 O 5
+
378.1460
−9.7
x
x
C 18 H 21 FN 3 O 6
+
394.1409
−13.1
x
x
27 Fluoroquinolones in Water: Removal Attemps by Innovative Aops
