References

  1. B. Subedi, B. Du, C.K. Chambliss, J. Koschorreck, H. Rudel, M. Quack, B.W. Brooks, S. Usenko, Occurrence of pharmaceuticals and personal care products in German fish tissue: a national study, Environ. Sci. Technol., 46 (2012) 9047–9054.
  2. Q. Bu, B. Wang, J. Huang, S. Deng, G. Yu, Pharmaceuticals and personal care products in the aquatic environment in China: a review, J. Hazard. Mater., 262 (2013) 189–211.
  3. R. Feito, J.C.M. Rubio, J. Fernández, Occurrence of pharmaceuticals in river and tap waters of Toledo (Castilla-La Mancha Community, Spain), Toxicol. Lett., 196 (2010) S37–S351.
  4. W.A. Cabrera-Lafaurie, F.R. Roman, A.J. Hernandez-Maldonado, Transition metal modified and partially calcined inorganicorganic pillared clays for the adsorption of salicylic acid, clofibric acid, carbamazepine, and caffeine from water, J. Colloid. Interface Sci., 386 (2012) 381–391.
  5. A. Daneshvar, J. Svanfelt, L. Kronberg, G.A. Weyhenmeyer, Winter accumulation of acidic pharmaceuticals in a Swedish river, Enviro. Sci. Pollut. R, 17 (2010) 908–916.
  6. L. Joseph, J.R.V. Flora, Y.G. Park, M. Badawy, H. Saleh, Y. Yoon, Removal of natural organic matter from potential drinking water sources by combined coagulation and adsorption using carbon nanomaterials, Sep. Purif. Technol., 95 (2012) 64–72.
  7. J. Ryu, Y. Yoon, J. Oh, Occurrence of endocrine disrupting compounds and pharmaceuticals in 11 WWTPs in Seoul, Korea, J. Civ. Eng., 15 (2011) 57–64.
  8. J. Ryu, J. Oh, S.A. Snyder, Y. Yoon, Determination of micropollutants in combined sewer overflows and their removal in a wastewater treatment plant (Seoul, South Korea), Environ. Monit. Assess., 186 (2014) 3239–3251.
  9. K.H. Chu, Y.A.J. Al-Hamadani, C.M. Park, G. Lee, M. Jang, A. Jang, N. Her, A. Son, Y. Yoon, Ultrasonic treatment of endocrine disrupting compounds, pharmaceuticals, and personal care products in water: a review, Chem. Eng. J., 327 (2017) 629–647.
  10. X. Bian, Y. Xia, T. Zhan, L. Wang, W. Zhou, Q. Dai, J. Chen, Electrochemical removal of amoxicillin using a Cu doped PbO2 electrode: electrode characterization, operational parameters optimization and degradation mechanism, Chemosphere, 233 (2019) 762–770.
  11. Q. Dai, J. Zhou, M. Weng, X. Luo, D. Feng, J. Chen, Electrochemical oxidation metronidazole with Co modified PbO2 electrode: degradation and mechanism, Sep. Purif. Technol., 166 (2016) 109–116.
  12. Q. Dai, Y. Xia, C. Sun, M. Weng, J. Chen, J. Wang, J. Chen, Electrochemical degradation of levodopa with modified PbO2 electrode: parameter optimization and degradation mechanism, Chem. Eng. J., 245 (2014) 359–366
  13. M. Weng, X. Yu, Electrochemical oxidation of para-aminophenol with rare earth doped lead dioxide electrodes: kinetics modeling and mechanism, Front. Chem., 7 (2019) 382.
  14. N.F.F. Moreira, C.A. Orge, A.R. Ribeiro, J.L. Faria, O.C. Nunes, M.F.R. Pereira, A.M.T. Silva, Fast mineralization and detoxification of amoxicillin and diclofenac by photocatalytic ozonation and application to an urban wastewater, Water. Res., 87 (2015) 87–96.
  15. Q. Dai, J. Wang, J. Yu, J. Chen, J. Chen, Catalytic ozonation for the degradation of acetylsalicylic acid in aqueous solution by magnetic CeO2 nanometer catalyst particles, Appl. Catal., B, 144 (2014) 686–693.
  16. Q. Dai, W. Chen, J. Luo, X. Luo, Abatement kinetics of highly concentrated 1H-Benzotriazole in aqueous solution by ozonation, Sep. Purif. Technol., 183 (2017) 327–332.
  17. I. Ahmed, J.W. Jun, B.K. Jung, S.H. Jhung, Adsorptive denitrogenation of model fossil fuels with Lewis acid-loaded metal–organic frameworks (MOFs), Chem. Eng. J., 255 (2014) 623–629.
  18. C. Jung, J. Park, K.H. Lim, S. Park, J. Heo, N. Her, J. Oh, S. Yun, Y. Yoon, Adsorption of selected endocrine disrupting compounds and pharmaceuticals on activated biochars, J. Hazard. Mater., 263 (2013) 702–710.
  19. M. Weng, J. Pei, Electrochemical oxidation of reverse osmosis concentrate using a novel electrode: Parameter optimization and kinetics study, Desalination, 399 (2016) 21–28.
  20. Y. Hou, M. Qiu, M.G. Kim, P. Liu, G. Nam, T. Zhang, X. Zhuang, B. Yang, J. Cho, M. Chen, C. Yuan, L. Lei, X. Feng, Atomically dispersed nickel-nitrogen-sulfur species anchored on porous carbon nanosheets for efficient water oxidation, Nat. Commun., 10 (2019) 1392.
  21. P. Trens, H. Belarbi, C. Shepherd, P. Gonzalez, N.A. Ramsahye, U.H. Lee, Y.K. Seo, J.S. Chang, Adsorption and separation of xylene isomers vapors onto the chromium terephthalate-based porous material MIL-101(Cr): an experimental and computational study, Microporous Mesoporous Mater., 183 (2014) 17–22.
  22. J.L.C. Rowsell, O.M. Yaghi, Strategies for hydrogen storage in metal-organic frameworks, Angew. Chem. Int. Ed., 44 (2005) 4670–4679.
  23. E. Haque, J.W. Jun, S.H. Jhung, Adsorptive removal of methyl orange and methylene blue from aqueous solution with a metal-organic framework material, iron terephthalate (MOF- 235), J. Hazard. Mater., 185 (2011) 507–511.
  24. E.V. Ramos-Fernandez, C. Pieters, B. Linden, J. Juan-Alcaniz, P. Serra-Crespo, M.W.G.M. Verhoeven, H. Niemantsverdriet, J. Gascon, F. Kapteijn, Highly dispersed platinum in metal-organic framework NH2-MIL-101(Al) containing phosphotungstic acid – Characterization and catalytic performance, J. Catal., 289 (2012) 42–52.
  25. X. Li, Y. Liu, J. Wang, J. Gascon, J. Li, B. Bruggen, Metal-organic frameworks based membranes for liquid separation, Chem. Soc. Rev., 46 (2017) 7124–7144.
  26. A. Donnadio, R. Narducci, M. Casciola, F. Marmottini, R. D’Amato, M. Jazestani, H. Chiniforoshan, F. Costantino, Mixed Membrane Matrices (MMMs) based on Nafion/UiO-66/SO3H-UiO-66 Nano MOFs: revealing the effect of crystal size, sulfonation and filler loading on the mechanical and conductivity properties, ACS Appl. Mater. Interfaces, 9 (2017) 42239–42246.
  27. J.H. Cavka, S. Jakobsen, U. Olsbye, N. Guillou, C. Lamberti, S. Bordiga, K.P. Lillerud, A new zirconium inorganic building brick forming metal-organic frameworks with exceptional stability, J. Am. Chem. Soc., 130 (2008) 13850–13851.
  28. N. Yin, K. Wang, L. Wang, Z. Li, Amino-functionalized MOFs combining ceramic membrane ultrafiltration for Pb (II) removal, Chem. Eng. J., 306 (2016) 619–628.
  29. Y.J. Xia, X.Z. Bian, Y. Xia, W. Zhou, L. Wang, S.Q. Fan, P. Xiong, T.T. Zhan, Q.Z. Dai, J.M. Chen, Effect of indium doping on the PbO2 electrode for the enhanced electrochemical oxidation of aspirin: an electrode comparative study, Sep. Purif. Technol., 237 (2020) 116321.
  30. Z. Hasan, E.J. Choi, S.H. Jhung, Adsorption of naproxen and clofibric acid over a metal–organic framework MIL-101 functionalized with acidic and basic groups, Chem. Eng. J., 219 (2013) 537–544.
  31. H.R. Abid, H. Tian, H.M. Ang, M.O. Tade, C.E. Buckley, S. Wang, Nanosize Zr metal-organic framework (UiO-66) for hydrogen and carbon dioxide storage, Chem. Eng. J., 187 (2012) 415–420.
  32. R.N. Amador, L. Cirre, M. Carboni, D. Meyer, BTEX removal from aqueous solution with hydrophobic Zr metal-organic frameworks, J. Environ. Manage., 214 (2018) 17–22.
  33. I. Ahmed, S.H. Jhung, Effective adsorptive removal of indole from model fuel using a metal-organic framework functionalized with amino groups, J. Hazard. Mater., 283 (2015) 544–550.
  34. Y. Han, M. Liu, K. Li, Q. Sun, C. Song, G. Zhang, Z. Zhang, X. Guo, Cu2O mediated synthesis of metal-organic framework UiO-66 in nanometer scale, Cryst. Growth Des., 17 (2017) 685–692.
  35. Z. Hasan, S.H. Jhung, Removal of hazardous organics from water using metal-organic frameworks (MOFs): plausible mechanisms for selective adsorptions, J. Hazard. Mater., 283 (2015) 329–339.
  36. Z. Hasan, N.A. Khan, S.H. Jhung, Adsorptive removal of diclofenac sodium from water with Zr-based metal–organic frameworks, Chem. Eng. J., 284 (2016) 1406–1413.