top of page

BIBLIOGRAPHY OF URV SUBPROJECT

Blanco-Brieva, G., Capel-Sanchez, M.C., de Frutos, M.P., Padilla-Polo, A., Campos-Martin, J.M. and Fierro, J.L.G., New two-step process for propene oxide production (HPPO) based on the direct synthesis of hydrogen peroxide; Ind. Eng. Chem. Res., 47, 21, 8011-8015 (2008)

Blanco-Brieva, G., Campos-Martin, J.M., de Frutos, M.P. and Fierro, J.L.G., Some insights on the negative effect played by silylation of functionalized commercial silica in the direct synthesis of hydrogen peroxide; Catal. Today, 158,1-2,97-102 (2010a)

Blanco-Brieva, G., Escrig, M.P.D., Campos-Martin, J.M. and Fierro, J.L.G., Direct synthesis of hydrogen peroxide on palladium catalyst supported on sulfonic acid-functionalized silica; Green Chemistry, 12,7, 1163-1166 (2010b)

Choudhary, V.R., Samanta, C. and Jana, P., A novel route for in-situ H2O2 generation from selective reduction of O2 by hydrazine using heterogeneous Pd catalyst in an aqueous medium; Chem. Commun., 43, 5399-5401 (2005)

Choudhary, V.R. and Jana, P., In situ generation of hydrogen peroxide from reaction of O2 with hydroxylamine from hydroxylammonium salt in neutral aqueous or non-aqueous medium using reusable Pd/Al2O3 catalysts; Catal. Commun., 8,1578 (2007)

Contreras, S., Yalfani, M.S., Medina, F. and Sueiras, J.E., Effect of support and second metal in catalytic in-situ generation of hydrogen peroxide by Pd-supported catalysts: application in the removal of organic pollutant by means of the Fenton process, Water Sci.Technol., 63, 9, 2017-2024 (2011)

Goor, G., Kunkel, W. and Weiberg O., in Ullmann’s Encyclopedia of Industrial Chemistry, Vol. A13, Eds. B. Elvers, S. Hawkins, M. Ravenscroft and G. Schulz, VCH, Weinheim, 443-466 (1989)

Moreno,T., Garcia-Serna, J., Plucinski, P., Sanchez-Montero M.J. and; Cocero, M.J., Direct synthesis of H2O2 in methanol at low pressures over Pd/C catalyst: Semi-continuous process; Appl. Catal. A, 386, 1-2, 28-33 (2010).

Sheriff, T.S., Cope, S. and Ekwegh, M., Calmagite dye oxidation using in situ generated hydrogen peroxide catalysed by manganese (II) ions. Dalton Trans., 44, 5119–5122 (2007)

Walling, C., Fenton’s reagent revisited, Acc. Chem. Res., 8, 125-131 (1975)Watts, R.J., Kong,S. and Lee, W., Sedimentation and reuse of titanium dioxide: Application to suspended- photocatalyst reactors J. Environ. Eng. 121, 730–735 (1995)

Yalfani, M.S., Contreras, S., Medina, F. and Sueiras, J.E., Direct generation of hydrogen peroxide from formic acid and O2 using heterogeneous Pd/gamma-Al2O3 catalysts; Chem. Commun., 33 ; 3885-3887, (2008)

Yalfani, M.S., Contreras, S., Medina, F. and Sueiras, J., Phenol degradation by Fenton’s process using catalytic in situ generated hydrogen peroxide; Appl Catal. B, Environ. 89, 3-4, 519-526 (2009)

Yalfani, M.S., Contreras, S., Llorca, J., Dominguez, M., Sueiras, J.E. and Medina, F., Simultaneous in situ generation of hydrogen peroxide and Fenton reaction over Pd-Fe catalysts. Phys. Chem. Chem. Phys., 12, 44, 14673-14676 (2010)

Yalfani, M.S., Contreras, S., Medina, F. and Sueiras, J.E., Hydrogen substitutes for the in situ generation of H2O2: An application in the Fenton reaction; J. Hazard. Mat., 192, 1, 340-346 (2011)

 

bottom of page