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48. Pennak RV (1978) Freshwater invertebrates of the United Sates. 2nd edn. Wiley, New York
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50. (SETAC), S. o. E. T. a. C.-E (1993) Guidance document on sediment toxicity test and bioassays
for freshwater and marine environments. Workshop on Sediment Toxicity Assessment.
SETAC, Amsterdam
51. Büege JA, Aust SD (1978) Microsomal lipid peroxidation. Method Enzymol 52:302–310
52. Levine RL, Williams JA, Stadtman ER et al (1994) Carbonyl assays for determination of
oxidatively modified proteins. Method Enzymol 233:346–357
53. Jiang ZY, Hunt JV, Wolff SP (1992) Ferrous ion oxidation in the presence of xylenol orange for
detection of lipid hydroperoxide in low density lipoprotein. Anal Biochem 202:384–389
54. Misra HP, Fridovich I (1972) The role of superoxide anion in the autoxidation of epinephrine
and a simple assay for superoxide dismutase. J Biol Chem 247:3170–3175
55. Radi R, Turrens JF, Chang LY et al (1991) Detection of catalase in rat heart mitochondria. J Biol
Chem 266:22028–22034
56. Bradford M (1976) A rapid and sensitive method for the quantitation of microorganism
quantities of protein utilizing the principle of protein dye binding. Anal Biochem 72:248–254
57. Novoa-Luna KA, Romero-Romero R, Natividad-Rangel R et al (2016) Oxidative stress induced
in Hyalella azteca by an effluent from a NSAID-manufacturing plant in Mexico. Ecotoxicology
25(7):1288–1304
58. Araujo L, Villa N, Camargo N et al (2011) Persistence of gemfibrozil, naproxen and mefenamic
acid in natural waters. Environ Chem Lett 9:13–18
59. Borgmann U, Bennie DT, Ball AL et al (2007) Effect of a mixture of seven pharmaceuticals on
Hyalella azteca over multiple generations. Chemosphere 66:1278–1283
60. Gómez-Oliván LM, Neri-Cruz N, Galar-Martínez M et al (2012) Assessing the oxidative stress
induced by paracetamol spiked in artificial sediment on Hyalella azteca. Water Air Soil Pollut
223:5097–5104
Photo-Fenton Treatment of a Pharmaceutical Industrial Effluent Under Safe pH. . .
259
olive oil mill wastewater contaminants. Appl Catal B-Environ 74:11–18
44. Sadok Letaïef BC, Aranda P, Martín-Luego MA et al (2003) Fe-containing pillared clays as
catalysts for phenol hydroxylation. Appl Clay Sci 22:263–277
45. Bobu M, Yediler A, Siminiceanu I et al (2008) Degradation studies of ciprofloxacin on a
pillared iron catalyst. Appl Catal B-Environ 83:15–23
46. González-Bahamón LF, Mazille F, Benítez LN et al (2011) Photo-Fenton degradation of
resorcinol mediated by catalysts based on iron species supported on polymers. J Photoch
Photobio A 217:201–206
47. Agency, U.-U. S. E. P (2000) Methods for measuring the toxicity and bioaccumulation of
sediment-associated contaminants with freshwater invertebrates. Page 192 Report EPA 600/R99/064. Prepared by the Office of Research and Development, Mid-Continent Ecology Division, USEPA, Duluth, Minnesota, and the Office of Science and Technology, Office of Water,
USEPA, Washington, DC
48. Pennak RV (1978) Freshwater invertebrates of the United Sates. 2nd edn. Wiley, New York
49. (OECD), O. f. t. E. C. a. D (1984) Guidelines for the testing of chemicals. Guideline 207:
earthworm acute toxicity test OECD publications service, Paris, p 9
50. (SETAC), S. o. E. T. a. C.-E (1993) Guidance document on sediment toxicity test and bioassays
for freshwater and marine environments. Workshop on Sediment Toxicity Assessment.
SETAC, Amsterdam
51. Büege JA, Aust SD (1978) Microsomal lipid peroxidation. Method Enzymol 52:302–310
52. Levine RL, Williams JA, Stadtman ER et al (1994) Carbonyl assays for determination of
oxidatively modified proteins. Method Enzymol 233:346–357
53. Jiang ZY, Hunt JV, Wolff SP (1992) Ferrous ion oxidation in the presence of xylenol orange for
detection of lipid hydroperoxide in low density lipoprotein. Anal Biochem 202:384–389
54. Misra HP, Fridovich I (1972) The role of superoxide anion in the autoxidation of epinephrine
and a simple assay for superoxide dismutase. J Biol Chem 247:3170–3175
55. Radi R, Turrens JF, Chang LY et al (1991) Detection of catalase in rat heart mitochondria. J Biol
Chem 266:22028–22034
56. Bradford M (1976) A rapid and sensitive method for the quantitation of microorganism
quantities of protein utilizing the principle of protein dye binding. Anal Biochem 72:248–254
57. Novoa-Luna KA, Romero-Romero R, Natividad-Rangel R et al (2016) Oxidative stress induced
in Hyalella azteca by an effluent from a NSAID-manufacturing plant in Mexico. Ecotoxicology
25(7):1288–1304
58. Araujo L, Villa N, Camargo N et al (2011) Persistence of gemfibrozil, naproxen and mefenamic
acid in natural waters. Environ Chem Lett 9:13–18
59. Borgmann U, Bennie DT, Ball AL et al (2007) Effect of a mixture of seven pharmaceuticals on
Hyalella azteca over multiple generations. Chemosphere 66:1278–1283
60. Gómez-Oliván LM, Neri-Cruz N, Galar-Martínez M et al (2012) Assessing the oxidative stress
induced by paracetamol spiked in artificial sediment on Hyalella azteca. Water Air Soil Pollut
223:5097–5104
Photo-Fenton Treatment of a Pharmaceutical Industrial Effluent Under Safe pH. . .
259
