References
- M. Czaplicka, Sources and transformations of chlorophenols in
the natural environment, Sci. Total Environ., 322 (2004) 21–39.
- E. Díaz, J.A. Casas, A.F. Mohedano, L. Calvo, M.A. Gilarranz,
J.J. Rodríguez, Kinetics of the hydrodechlorination of
4-chlorophenol in water using Pd, Pt, and Rh/Al2O3 catalysts,
Ind. Eng. Chem. Res., 47 (2008) 3840–3846.
- G. Moreno, G. Buitrón, Influence of the origin of the
inoculum and the acclimation strategy on the degradation of
4-chlorophenol, Bioresour. Technol., 94 (2004) 215–218.
- P.D. Vaidya, V.V. Mahajani, Studies in hydrotreatment as a
unit process to destroy 4-chlorophenol in aqueous stream over
Ru-Pd/TiO2 catalyst, Appl. Catal., B, 51 (2004) 21–31.
- G. Busca, S. Berardinelli, C. Resini, L. Arrighi, Technologies
for the removal of phenol from fluid streams: a short review of
recent developments, J. Hazard. Mater., 160 (2008) 265–288.
- C.B. Molina, A.H. Pizarro, J.A. Casas, J.J. Rodriguez, Aqueousphase
hydrodechlorination of chlorophenols with pillared
clays-supported Pt, Pd and Rh catalysts, Appl. Catal., B, 148
(2014) 330–338.
- L. Calvo, A.F. Mohedano, J.A. Casas, M.A. Gilarranz, J.J.
Rodrı́guez, Treatment of chlorophenols-bearing wastewaters
through hydrodechlorination using Pd/activated carbon
catalysts, Carbon, 42 (2004) 1377–1381.
- Z. Jin, C. Yu, X. Wang, Y. Wan, D. Li, G. Lu, Hydrodechlorination
of chlorophenols at low temperature on a novel Pd catalyst,
Chem. Commun., (2009) 4438–4440.
- T. Hara, T. Kaneta, K. Mori, T. Mitsudome, T. Mizugaki, K.
Ebitani, K. Kaneda, Magnetically recoverable heterogeneous
catalyst: palladium nanocluster supported on hydroxyapatiteencapsulated
γ-Fe2O3 nanocrystallites for highly efficient
dehalogenation with molecular hydrogen, Green Chem., 9
(2007) 1246–1251.
- Z. Jin, C. Yu, X. Wang, Y. Wan, D. Li, G. Lu, Liquid phase
hydrodechlorination of chlorophenols at lower temperature on
a novel Pd catalyst, J. Hazard. Mater., 186 (2011) 1726–1732.
- F.D. Kopinke, D. Angeles-Wedler, D. Fritsch, K. Mackenzie,
Pd-catalyzed hydrodechlorination of chlorinated aromatics in
contaminated waters—effects of surfactants, organic matter
and catalyst protection by silicone coating, Appl. Catal., B, 96
(2010) 323–328.
- H. Rong, S. Cai, Z. Niu, Y. Li, Composition-dependent
catalytic activity of bimetallic nanocrystals: AgPd-catalyzed
hydrodechlorination of 4-chlorophenol, ACS Catal., 3 (2013)
1560–1563.
- Z. Dong, X. Le, C. Dong, W. Zhang, X. Li, J. Ma, Ni@Pd core–shell
nanoparticles modified fibrous silica nanospheres as highly
efficient and recoverable catalyst for reduction of 4-nitrophenol
and hydrodechlorination of 4-chlorophenol, Appl. Catal., B,162
(2015) 372–380.
- E. Diaz, A.F. Mohedano, J.A. Casas, L. Calvo, M.A. Gilarranz,
J.J. Rodriguez, Comparison of activated carbon-supported Pd
and Rh catalysts for aqueous-phase hydrodechlorination, Appl.
Catal., B, 106 (2011) 469–475.
- E. Diaz, A.F. Mohedano, J.A. Casas, L. Calvo, M.A. Gilarranz,
J.J. Rodriguez, Deactivation of a Pd/AC catalyst in the
hydrodechlorination of chlorinated herbicides, Catal. Today,
241 (2015) 86–91.
- M. Munoz, Z.M. de Pedro, J.A. Casas, J.J. Rodriguez,
Improved γ-alumina-supported Pd and Rh catalysts for
hydrodechlorination of chlorophenols, Appl. Catal., A,488
(2014) 78–85.
- H. Hildebrand, K. Mackenzie, F.D. Kopinke, Highly
active Pd-on-magnetite nanocatalysts for aqueous phase
hydrodechlorination reactions, Environ. Sci. Technol., 43 (2009)
3254–3259.
- M. Bonarowska, Z. Kaszkur, L. Kępiński, Z. Karpiński,
Hydrodechlorination of tetrachloromethane on alumina- and
silica-supported platinum catalysts, Appl. Catal., B, 99 (2010)
248–256.
- T. Yoneda, T. Takido, K. Konuma, Hydrodechlorination
reactivity of para-substituted chlorobenzenes over platinum/
carbon catalyst, J. Mol. Catal. A: Chem., 265 (2007) 80–89.
- C.B. Molina, A.H. Pizarro, M.A. Gilarranz, J.A. Casas, J.J.
Rodriguez, Hydrodechlorination of 4-chlorophenol in water
using Rh–Al pillared clays, Chem. Eng. J., 160 (2010) 578–585.
- C.S. Srikanth, V.P. Kumar, B. Viswanadham, K.V. Chary,
Hydrodechlorination of 1,2,4-trichlorbenzene over supported
ruthenium catalysts on various supports, Catal. Commun., 13
(2011) 69–72.
- D. Fang, W. Li, J. Zhao, S. Liu, X. Ma, J. Xu, C. Xia, Catalytic
hydrodechlorination of 4-chlorophenol over a series of Pd-Cu/g-Al2O3 bimetallic catalysts, RSC Adv., 4 (2014) 59204–59210.
- J. Zhao, W. Li, D. Fang, Effect of indium-modified palladium
catalysts on the hydrodechlorination of 4-chlorophenol, RSC
Adv., 5 (2015) 42861–42868.
- I. Witońska, A. Królak, S. Karski, Bi modified Pd/support (SiO2,
Al2O3) catalysts for hydrodechlorination of 2,4-dichlorophenol,
J. Mol. Catal. A: Chem., 331 (2010) 21–28.
- I.A. Witońska, M.J. Walock, M. Binczarski, M. Lesiak, A.V.
Stanishevsky, S. Karski, Pd–Fe/SiO2 and Pd–Fe/Al2O3 catalysts
for selective hydrodechlorination of 2,4-dichlorophenol into
phenol, J. Mol. Catal. A: Chem., 393 (2014) 248–256.
- F.J. Urbano, J.M. Marinas, Hydrogenolysis of organohalogen
compounds over palladium supported catalysts, J. Mol. Catal.
A: Chem., 173 (2001) 329–345.
- J.A. Baeza, L. Calvo, M.A. Gilarranz, A.F. Mohedano, J.A. Casas,
J.J. Rodriguez, Catalytic behavior of size-controlled palladium
nanoparticles in the hydrodechlorination of 4-chlorophenol in
aqueous phase, J. Catal., 293 (2012) 85–93.
- G. Yuan, M.A. Keane, Role of base addition in the liquid-phase
hydrodechlorination of 2,4-dichlorophenol over Pd/Al2O3 and
Pd/C, J. Catal., 225 (2004) 510–522.
- G. Yuan, M.A. Keane, Catalyst deactivation during the liquid
phase hydrodechlorination of 2,4-dichlorophenol over
supported Pd: influence of the support, Catal. Today, 88 (2003)
27–36.
- Z.M. De Pedro, E. Diaz, A.F. Mohedano, J.A. Casas, J.J.
Rodriguez, Compared activity and stability of Pd/Al2O3 and
Pd/AC catalysts in 4-chlorophenol hydrodechlorination in
different pH media, Appl. Catal., B, 103 (2011) 128–135.
- X. Cui, W. Zuo, M. Tian, Z. Dong, J. Ma, Highly efficient
and recyclable Ni MOF-derived N-doped magnetic
mesoporous carbon-supported palladium catalysts for the
hydrodechlorination of chlorophenols, J. Mol. Catal. A: Chem.,
423 (2016) 386–392.
- N. Yan, C. Xiao, Y. Kou, Transition metal nanoparticle catalysis
in green solvents, Coord. Chem. Rev., 254 (2010) 1179–1218.
- J.A. Baeza, L. Calvo, M.A. Gilarranz, J.J. Rodriguez, Effect of size
and oxidation state of size-controlled rhodium nanoparticles
on the aqueous-phase hydrodechlorination of 4-chlorophenol,
Chem. Eng. J., 240 (2014) 271–280.
- S. Karanjit, A. Jinasan, E. Samsook, R.N. Dhital, K. Motomiya, Y.
Sato, H. Sakurai, Significant stabilization of palladium by gold
in the bimetallic nanocatalyst leading to an enhanced activity in
the hydrodechlorination of aryl chlorides, Chem. Commun., 51
(2015) 12724–12727.
- J. Zhou, H. Chen, Q. Chen, Z. Huang, Bimetallic Au-decorated
Pd catalyst for the liquid phase hydrodechlorination of
2,4-dichlorophenol, Appl. Surf. Sci., 387 (2016) 588–594.
- O.S.G. Soares, J.J. Órfão, M.F.R. Pereira, Bimetallic catalysts
supported on activated carbon for the nitrate reduction in
water: optimization of catalysts composition, Appl. Catal., B, 91
(2009) 441–448.
- L. Chen, W. Kong, J. Yao, H. Zhang, B. Gao, Y. Li, C. Jiang,
Synthesis and characterization of Mn-Co-Ni-O ceramic
nanoparticles by reverse microemulsion method, Ceram. Int.,
41 (2015) 2847–2851.
- Z. Yan, M. Wang, Y. Lu, R. Liu, J. Zhao, Ethylene glycol
stabilized NaBH4, reduction for preparation carbon-supported
Pt–Co alloy nanoparticles used as oxygen reduction
electrocatalysts for microbial fuel cells, J. Solid State Chem., 18
(2014) 1087–1097.
- M.A. Alvarez-Montero, L.M. Gómez-Sainero, J. Juan-Juan, A.
Linares-Solano, J.J. Rodriguez, Gas-phase hydrodechlorination
of dichloromethane with activated carbon-supported metallic
catalysts, Chem. Eng. J., 162 (2010) 599–608.
- R.L. Frost, Y. Xi, B.J. Wood, Thermogravimetric analysis, PXRD,
EDX and XPS study of chrysocolla (Cu,Al)2H2Si2O5(OH)4·nH2O structural
implications, Thermochim. Acta, 545 (2012) 157–162.