Removing Diethylphthalate (DEP) from Water Systems using Zeolites and Mesoporous Materials
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Leyder, F., Boulanger, P. (1983). Ultraviolet adsorption, aqueous solubility and octanol–water partition for
several phthalates. Bull. Environ. Contam. Toxicol., 30, 152–157.
Clara, M, Windhofer, G, Hartl, W, Braun, K, Simon, M, Gans, O, Scheffknecht, C, Chovanec, A. (2010).
Ocurrence of phthalates in surface runoff, untreated and treated wastewater and fate during wastewater
treatment. Chemosphere, 78, 1078–84.
Liang, DW, Zhang, T, Fang, HP, He, J. (2008). Phthalates biodegradation in the environment. Appl. Microbiol.
Biotechnol., 80, 183–198.
Staples, CA, Peterson, DR, Parkerton, TF, Adams, WJ. (1997). The environmental fate of phthalate esters.
Chemosphere, 35 667–749.
Pant, N, Shukla, M, Patel, DK, Shukla, Y, Mathur, N, Gupta, YK, Saxena, DK. (2008). Correlation of phthalate
exposures with semen quality. Toxicology and Applied Pharmacology, 231, 112–116.
Zhao, XK, Yang, GP, Wang, YJ. (2004). Adsorption of dimethyl phthalate on marine sediments. Water, Air,
and Soil Pollution, 157, 179–192.
Barnabé, S, Beauchesne, I, Cooper, DG, Nicell, JA. (2008). Plasticizers and their degradation products in the
process streams of a large urban physicochemical sewage treatment plant. Water Research, 42, 153–162.
Huang, M, Li, Y, Gu, G. (2010). Chemical composition of organic matters in domestic wastewater.
Desalination, 262, 36–42.
Sipma, J, Osuna, B, Collado, N, Monclus, H, Ferrero, G, Comas, J, Roda, IR. (2010). Comparison of removal
of pharmaceuticals in MBR and activated sludge system. Desalination, 250, 653–659.
Simmchen, J, Ventura, R, Segura, J. (2012). Progress in the removal of di-[2-ethylhexyl]-phthalate as
plasticizer in blood bags. Transfusion Medicine Reviews, 26, 27–37.
Venkata, MS, Shailaja, S, Rama, KM, Sarma, PN. (2007). Adsorptive removal of phthalate ester (diethylphthalate)
from aqueous phase by activated carbon: a kinetic study. Journal of Hazardous Materials, 146,
–282.
Peakall, DB. (1975). Phthalate esters: occurrence and biological effects. Residue Rev., 54, 1–41.
Michalowicz, J, Duda, W. (2007). Phenol—sources and toxicity. J. Environ. Stud. , 6.3, 347–362.
Kapanen, A, Stephen, JR, Bru¨ggemann, J, Kiviranta, A, White, DC, Ita¨vaara, M. (2007). Diethyl phthalate in
compost: ecotoxicological effects and response of the microbial community. Chemosphere, 67, 2201–2209.
Pham, TTH, Tyagi, RD, Brar, SK, Surampalli, RY. (2011). Effect of ultrasonication and Fenton oxidation on
biodegradation of bis(2-ethylhexyl) phthalate (DEHP) in wastewater sludge. Chemosphere, 82, 923–928.
Özer, ET, Gücer, S. (2011). Determination of some phthalate acid esters in arti-ficial saliva by gas
chromatography mass spectrometry after activated carbon enrichment. Talanta, 84, 362–367.
Julinová, M, Slavík, R. (2012). Removal of phthalates from aqueous solution by different adsorbents: a short
review. Journal of Environmental Management, 94, 13–24.
Oliveira, TF, Cagnon, B, Fauduet, H, Licheron, M, Chedeville, O. (2012). Removal of Diethyl Phthalate from
Aqueous Media by Adsorption on Different Activated Carbons: Kinetic and Isotherm Studies. Separation
Science and Technology, 47, 1139–1148.
Zhang, W, Xu, Z, Pan, B, Hong, C, Jia, K, Jiang, P, Zhang, Q, Pan, B. (2008). Equilibrium and heat of
adsorption of diethyl phthalate on heterogeneous adsorbents. J. Colloid Interface Sci. 325, 41–47.
Xu, Z., Zhang, W, Pan, B, Lv, L, Jiang, Z. (2011). Treatment of aqueous diethyl phthalate by adsorption using
a functional polymer resin. Environ. Technol., 32, 145–153.
Özer, ET, Osman, B, Kara, A, Besirli, N, Gücer, S, Sözeri, H. (2012). Removal of diethyl phthalate from
aqueous phase using magnetic poly(EGDMA–VP) beads. Journal of Hazardous Materials. 229– 230, 20– 28.
Yu, X, Wei, C, Ke, L, Wu, H, Chai, X, Hu, Y. (2012). Preparation of trimethylchlorosilane-modified acid
vermiculites for removing diethyl phthalate from water, Journal of Colloid and Interface Science, 369, 344–
Shi, Q, Li, A, Zhou, Q, Shuang, C, Li, Y. (2014). Removal of diethyl phthalate from aqueous solution using
magnetic iron–carbon composite prepared from waste anion exchange resin. Journal of the Taiwan Institute of
Chemical Engineers, 45, 2488–2493.
Okolia, CP, Adewuyi, GO, Zhang, Q, Diagboya, PN, Guo, Q. (2014). Mechanism of dialkyl phthalates removal
from aqueous solution using γ-cyclodextrin and starch based polyurethane polymer adsorbents. Carbohydrate
Polymers, 114, 440–449.
Prasad, B, Suresh, S. (2012). Biodegradation of dimethyl phthalate, diethyl phthalate, dibutyl phthalate and
their mixture by Variovorax sp, Int. J. Environ. Sci. Dev. 3, 283–8.
Boonnorat, J, Chiemchaisri, C, Chiemchaisria, W. (2014). Yamamoto, K., Removals of phenolic compounds
and phthalic acid esters in landfillleachate by microbial sludge of two-stage membrane bioreactor. Journal of
Hazardous Materials, 277, 93–101.
Jin, OK, Sook, YY, Kang, JW. (2006). Application of ozone, UV and ozone/UV processes to reduce
diethylphthalate and its estrogenic activity. Science of the Total Environment, 367, 681–693.
Vazquez-Gomez, L, de Battisti, A, Ferro, S, Cerro, M, Reyna, S, Martı´nez-Huitle, CA, Quiroz, MA. (2012).
Anodic Oxidation as Green Alternative for Removing Diethyl Phthalate from Wastewater Using Pb/PbO2 and
Ti/SnO2 Anodes. Clean – Soil, Air, Water, 40, 408–415.
Soo, OB, Jung, JY, Jin, OY, Sook, Y, Kang, JW. (2006). Application of ozone, UV and ozone/UV processes to
reduce diethyl phthalate and its estrogenic activity. Science of the Total Environment, 367, 681–693.
Oliveira, TF, Chedeville, O, Fauduet, H, Cagnon, B. (2011). Use of ozone/activated carbon coupling to remove
diethyl phthalate from water: influence of activated carbon textural and chemical properties. Desalination, 276,
–365.
Castillo, NAM, Pe´rez, RO, Ramos, RL, Polo, MS, Utrilla, JR, Dı´az, JDM. (2013). Removal of diethyl
phthalate from water solution by adsorption, photo-oxidation, ozonation and advanced oxidation process
(UV/H2O2, O3/H2O2 and O3/activated carbon). Sci Total Environ, 442, 26–35.
Shao, L, Ren, Z, Zhang, G, Chen, L. (2012). Facile synthesis, characterization of a MnFe2O4/ activated carbon
magnetic composite and its effectiveness in tetracycline removal. Mater Chem Phys., 135, 16–24.
Na, S, Ahn, YG, Cui, M, Khim, J. (2012), Significant diethyl phthalate (DEP) degradation by combined
advanced oxidation process in aqueous solution. J. Environ. Manage., 101, 104–10.
Baerlocher, C, McCusker, LB, Olson, DH. (2007). Atlas of Zeolite Framework Types, 6th ed. Elsevier: New
York.
Vitale, G, Mellot, CF, Bull, LM, Cheetham, (1997). K. Neutron Diffraction and Computational Study of
Zeolite NaX: Influence of SIII‘ Cations on Its Complex with Benzene. J. Phys. Chem. B, 101, 4559-4564.
Beauvais, C, Boutin, A, Fuchs, AH. (2004). A Numerical Evidence for Nonframework Cation Redistribution
Upon Water Adsorption in Faujasite Zeolite. ChemPhysChem., 5, 1791-1793.
Beauvais, C, Boutin, A, Fuchs, AH. (2005). Adsorption of water in zeolite sodium-faujasite: A molecular
simulation study. C. R. Chim., 8, 485-490.
Lella, AD, Desbiens, N, Boutin, A, Demachy, I, Ungerer, P, Bellat, JP, Fuchs, A. (2006). Molecular simulation
studies of water physisorption in zeolites, Phys. Chem. Chem. Phys., 8, 5396-5406.
Shirono, K, Endo, A, Daiguji, H. (2005). Molecular Dynamics Study of Hydrated Faujasite-Type Zeolites. J.
Phys. Chem. B., 109, 3446-3453.
Coasne, AB, Maurin, G, Henn, F, Jeffroy, M, Boutin, A. (2009). Cation Behavior in Faujasite Zeolites upon
Water Adsorption: A Combination of Monte Carlo and Molecular Dynamics Simulations. J. Phys. Chem. C.,
, 10696-10705.
Abrioux, C, Coasne, B, Maurin, G, Henn, F, Boutin, A, Lella, AD, Fuchs, AH. (2008). A molecular simulation
study of the distribution of cationin zeolites. Adsorption., 14, 743-753.
Zhu, L, Seff, K. (1999). Reinvestigation of the Crystal Structure of Dehydrated Sodium Zeolite X. J. Phys.
Chem. B, 103, 9512-9518.
Semmer-Herle´dan, V, Heeribout, L, Batamack, P, Dore´mieux-Morin, C, Fraissard, J, Gola, A, Benazzi, E.
(2000). Comparison of the acid strength of dealuminated H-faujasites determined by 1H NMR after water
adsorption. Microporous Mesoporous Mater., 34, 157-169.
Freude, D, Hunger, M, Pfeifer, H. (1982). Study of brønsted acidity of zeolites using high-resolution proton
magnetic resonance with magic-angle spinning. Chem. Phys. Lett., 91, 307-310.
Freude, D, Hunger, M, Pfeifer, H, Schwieger, W. (1986). 1H MAS NMR studies on the acidity of zeolites.
Chem. Phys. Lett., 128, 62-66.
Freude, D, Kilinowski, J, Hamdan, H. (1988). Solid-state NMR studies of the geometry of brønsted acid sites in
zeolitic catalysts. Chem. Phys. Lett., 149, 355-362.
Morita, T, Honda, H, Katayama, T, Tanaka, S, Ishimaru, S. (2014). Cation-Type Dependences of 1H and 29Si
MAS NMR Chemical Shifts and Desorption Temperatures of Water Molecules in Faujasite-Type Zeolites. Int.
Res. J. Pure and Applied Chem., 4, 638-655.
Simoncic, P, Armbruster, T. (2004). Peculiarity and defect structure of the natural and synthetic zeolite
mordenite: A single-crystal X-ray study. Am. Mineral., 89, 421–431.
Dyer, A, Singh, AP. (1988). Effect of cation exchange on heat of sorption and catalytic activity of mordenties.
Zeolites, 8, 242-246.
Bajpai, PK. (1986). Synthesis of mordenite type zeolite. Zeolites, 6, 2-8.
Maxwell, IE, Stork, WHJ, von Bekkum, H, Flanigen, EM, Jonsen, JC (Eds.). (1991). Introduction to Zeolite
Science and Practice. Elsevier, Amsterdam, p.71.
Fernandes, LD, Monteiro, JLF, Sousa-Aguiar, EF, Martinez, A, Corma, A. (1998). Ethylbenzene
hydroisomerization over bifunctional zeolite based catalysts: The influence of framework and extraframework
composition and zeolite structure. J. Catal., 177, 363-77.
Vaughan, PA. (1966). The crystal structure of the zeolite ferrierite. Acta cryst., 21, 983–990.
de Jong, KP, Mooiweer, HH, Buglass, JG, Maarsen, PK. (1997). Activation and deactivation of the zeolite
ferrierite for olefin conversions. Stud. Surf. Sci. Catal., 111, 127–138.
Houzvicka, J, Ponec, V. (1996). Skeletal isomerisation of n-butene on phosphorus containing catalysts. Appl.
Catal. A, 145, 95–108.
Kim, WG, Kim, JH, Ahn, BJ, Seo, G. (2001). The Skeletal Isomerization of C4-C7 1-Olefins over Ferrierite
and ZSM-5 Zeolite Catalysts. Korean J. Chem. Eng., 18, 120-126.
Bordiga, S, Palomino, GT, Paze, C, Zecchina, A. (2000). Vibrational spectroscopy of H2, N2, CO and NO
adsorbed on H, Li, Na, K-exchanged ferrierite. Microporous Mesoporous Mater., 34, 67–80.
Nachtigall, P, Bludsky, O, Grajciar, L, Nachtigallova, D, Delgado, MR, Arean, CO. (2009). Computational and
FTIR spectroscopic studies on carbon monoxide and dinitrogen adsorption on a high-silica H-FER zeolite.
Phys. Chem. Chem. Phys., 11, 791–802.
Bulanek, R, Frolich, K, Frydova, E, Cicmanec, P. (2010). Microcalorimetric and FTIR Study of the Adsorption
of Carbon Dioxide on Alkali-Metal Exchanged FER Zeolites. Top. Catal., 53, 1349–1360.
Vinu, A, Hossain, KZ, Ariga, K. (2005). Recent Advances in Functionalization of Mesoporous Silica. J.
Nanosci. Nanotechnol., 5, 347-75.
Jana, S, Dutta, B, Honda, H, Koner, S. (2011). Mesoporous silica MCM-41 with rod-shaped morphology:
Synthesis and characterization. Applied Clay Science, 54, 138–143.
Lee, YY, Wu, KCW. (2012). Conversion and kinetics study of fructose-to-5-hydroxymethylfurfural (HMF)
using sulfonic and ionic liquid groups bi-functionalized mesoporous silica nanoparticles as recyclable solid
catalysts in DMSO systems. Phys. Chem. Chem. Phys., 14, 13914-13917.
Peng, WH, Lee, YY, Wu, C, Wu, KCW. (2012). Acid–base bi-functionalized, large-pored mesoporous silica
nanoparticles for cooperative catalysis of one-pot cellulose-to-HMF conversion. J. Mater. Chem., 22, 23181-5.
Ariga, K, Yamauchi, Y, Rydzek, G, Ji, Q, Yonamine, Y, Wu, KCW, Hill, JP. (2014). Layer-by-layer
Nanoarchitectonics: Invention, Innovation, and Evolution. Chem. Lett., 43, 36-68.
Suzue, A, Honda, H, Kadokura, M, Tanaka, S, Tukada, H. (2014). Investigation of New Cooling Systems
Based on Complexes of Temperature-Responsive Poly(N-isopropylacrylamide) with Porous Materials. Bull.
Chem. Soc. Jpn., 87, 1186-1194.
Sasaki, T, Shimada, K, Tabata, H. (2007). A Study on Lead Adsorption Property of Synthesized Mesoporous
Silica. Ishikawa-ken Kogyo Shikenjo Kenkyu Hokoku, 56, 69-74.
Gerstein, BC, Dybowski, CR. (1985). Transient Techniques in NMR of Solids, Academic Press : New York.
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