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          la ecuación de velocidad para los POAs evaluados   therapeutic use in rheumatic diseases and pain of
          pueden ajustarse a un modelo cinético de pseudo-  varying  origin.  Drugs,  20(1),  24–48.  https://doi.
          orden  y,  en  el  caso  UV/H2O2,  a  un  modelo  de   org/10.2165/00003495-198020010-00002
          segundo orden.                             Calza,  P.,  Sakkas,  V.  A.,  Medana,  C.,  Baiocchi,  C.,
                                                           Dimou, A.,  Pelizzetti,  E.,  & Albanis, T.  (2006).
                                                           Photocatalytic  degradation  study  of  diclofenac
                                                           over  aqueous  TiO2  suspensions.  Applied
          Agradecimientos
                                                           Catalysis.  B,  Environmental,  67(3–4),  197–205.
                                                           https://doi.org/10.1016/j.apcatb.2006.04.021
          Se  agradece  al  estudiante  de  la  licenciatura  en   Castro-Peña,  L.,  &  Durán-Herrera,  J.  E.  (2014).
          ingeniería química: Julio Cesar Hernández Mateos   Degradación y decoloración de agua contaminada
          que  apoyo  en  el  desarrollo  experimental  de  este   con  colorantes  textiles  mediante  procesos  de
          proyecto.                                        oxidación  avanzada.  Revista  Tecnología  en
                                                           Marcha,  27(2),  40.  https://doi.org/10.18845/
          Declaración de conf icto de interés              tm.v27i2.1807
                                                     De la Cruz, N., Esquius, L., Grandjean, D., Magnet, A.,
          N/A                                              Tungler, A., de Alencastro, L. F., & Pulgarín, C.
                                                           (2013). Degradation of emergent contaminants by
                                                           UV, UV/H2O2 and neutral photo-Fenton at pilot
                                                           scale  in  a  domestic  wastewater  treatment  plant.
                                                           Water  Research,  47(15),  5836–5845.  https://doi.
          Referencias                                      org/10.1016/j.watres.2013.07.005
                                                     Domènech, X., Jardim, W. F. y Litter, M. (2001). Procesos
          Adeyeye, C. M., & Li, P.-K. (1990). Diclofenac Sodium.   avanzados  de  oxidación  para  la  eliminación  de
               En Analytical  Prof les  of  Drug  Substances  (pp.   contaminantes. En: Eliminación de contaminantes
               123–144).   Elsevier.   https://doi.org/10.1016/  por fotocatálisis heterogénea. (M. A. Blesa, Ed.).
               S0099-5428(08)60366-4                       CYTED, La Plata, Argentina, pp. 4-26.
          Aielo,  P.  B.,  Borges,  F. A.,  Romeira,  K.  M.,  Miranda,  Epold, I., Dulova, N., & Trapido, M. (2012). Degradation
               M. C. R., De Arruda, L. B., Filho, P. N. L., De C   of diclofenac in aqueous solution by homogeneous
               Drago, B., & Herculano, R. D. (2014). Evaluation   and  heterogeneous  photolysis.  Journal  of
               of sodium diclofenac release using natural rubber   environmental engineering & ecological science,
               latex  as  carrier.  Materials  Research,  17(suppl   1(1), 3. https://doi.org/10.7243/2050-1323-1-3
               1),   146-152.   https://doi.org/10.1590/s1516-  Estrada-Arriaga,  E.  B.,  Cortés-Muñoz,  J.  E.,  González-
               14392014005000010                           Herrera,  A.,  Calderón-Mólgora,  C.  G.,  de
          Altman,  R.,  Bosch,  B.,  Brune,  K.,  Patrignani,  P.,   Lourdes  Rivera-Huerta,  M.,  Ramírez-Camperos,
               &  Young,  C.  (2015).  Advances  in  NSAID   E.,  Montellano-Palacios,  L.,  Gelover-Santiago,
               development:  evolution  of  diclofenac  products   S.  L.,  Pérez-Castrejón,  S.,  Cardoso-Vigueros,
               using  pharmaceutical  technology.  Drugs,  75(8),   L.,  Martín-Domínguez,  A.,  &  García-Sánchez,
               859–877.   https://doi.org/10.1007/s40265-015-  L.  (2016).  Assessment  of  full-scale  biological
               0392-z                                      nutrient  removal  systems  upgraded  with
          Bagal,  M.  V.,  &  Gogate,  P.  R.  (2014).  Degradation  of   physico-chemical  processes  for  the  removal  of
               diclofenac  sodium  using  combined  processes   emerging pollutants present in wastewaters from
               based   on   hydrodynamic   cavitation   and   Mexico. The Science of the Total Environment,
               heterogeneous   photocatalysis.   Ultrasonics   571,   1172–1182.   https://doi.org/10.1016/j.
               Sonochemistry,  21(3),  1035–1043.  https://doi.  scitotenv.2016.07.118
               org/10.1016/j.ultsonch.2013.10.020    Félix-Cañedo,  T.  E.,  Durán-Álvarez,  J.  C.,  &  Jiménez-
          Bartolomei,  M.,  Bertocchi,  P.,  Antoniella,  E.,  &   Cisneros,  B.  (2013).  The  occurrence  and
               Rodomonte,   A.   (2006).   Physico-chemical   distribution of a group of organic micropollutants
               characterisation  and  intrinsic  dissolution  studies   in  Mexico  City’s  water  sources.  The  Science
               of  a  new  hydrate  form  of  diclofenac  sodium:   of  the  Total  Environment,  454–455,  109–118.
               comparison  with  anhydrous  form.  Journal   https://doi.org/10.1016/j.scitotenv.2013.02.088
               of  Pharmaceutical  and  Biomedical  Analysis,  Ghiasvand,  A.  R.,  Taherimaslak,  Z.,  Badiee,  M.  Z.  &
               40(5),   1105–1113.   https://doi.org/10.1016/j.  Farajzadeh,  M. A.  (2008). A  new  homogeneous
               jpba.2005.09.009                            liquid-liquid   extractive-spectrophotometric
          Bensalah, N., Chair, K., & Bedoui, A. (2018). Eff cient   method for determination of diclofenac in urine.
               degradation  of  tannic  acid  in  water  by  UV/H   Oriental  Journal  of  Chemistry,  24  (1),  83-90.
               2  O  2  process.  Sustainable  Environment   http://www.orientjchem.org/?p=11258
               Research,  28(1),  1–11.  https://doi.org/10.1016/j.  Goh,  C.  F.,  Craig,  D.  Q.  M.,  Hadgraft,  J.,  &  Lane,
               serj.2017.04.004                            M.  E.  (2017).  The  application  of  ATR-FTIR
          Brogden,  R.  N.,  Heel,  R.  C.,  Pakes,  G.  E.,  Speight, T.   spectroscopy  and  multivariate  data  analysis
               M.,  & Avery,  G.  S.  (1980).  Diclofenac sodium:   to  study  drug  crystallisation  in  the  stratum
               A  review  of  its  pharmacological  properties  and   corneum.  European  Journal  of  Pharmaceutics

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