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Design and engineering of layered double hydroxide based catalysts for water depollution by advanced oxidation processes: a review
Advanced oxidation processes (AOPs) have attracted special attention owing to the high
removal efficiency of recalcitrant organic contaminants. Recently, the use of layered double …
removal efficiency of recalcitrant organic contaminants. Recently, the use of layered double …
Heterogeneous Fenton catalysts based on clays, silicas and zeolites
This review focuses on the use of layered and porous aluminosilicates and layered double
hydroxides as catalysts for the Fenton reaction. In the general sections of this review we …
hydroxides as catalysts for the Fenton reaction. In the general sections of this review we …
Exploring, tuning, and exploiting the basicity of hydrotalcites for applications in heterogeneous catalysis
Basic catalysis! The basic properties of hydrotalcites (see picture) make them attractive for
numerous catalytic applications. Probing the basicity of the catalysts is crucial to understand …
numerous catalytic applications. Probing the basicity of the catalysts is crucial to understand …
Heterogeneous catalytic degradation of phenolic substrates: catalysts activity
This review article explored the catalytic degradation of phenol and some phenols derivates
by means of advanced oxidation processes (AOPs). Among them, only the heterogeneous …
by means of advanced oxidation processes (AOPs). Among them, only the heterogeneous …
Effective degradation of phenol via Fenton reaction over CuNiFe layered double hydroxides
H Wang, M **g, Y Wu, W Chen, Y Ran - Journal of hazardous materials, 2018 - Elsevier
A series of CuNiFe layered double hydroxides (LDHs) with various Cu/Ni molar ratios were
synthesized as catalysts for Fenton degradation of phenol. It is found that Cu+, Cu 2+, Ni 2+ …
synthesized as catalysts for Fenton degradation of phenol. It is found that Cu+, Cu 2+, Ni 2+ …
Solvothermal synthesis of Fe-MOF-74 and its catalytic properties in phenol hydroxylation
S Bhattacharjee, JS Choi, ST Yang… - … of nanoscience and …, 2010 - ingentaconnect.com
A Fe-containing metal-organic framework, Fe-MOF-74, was solvothermally synthesized
using FeCl2· 4H2O and 2, 5-di-hydroxy-1, 4-benzenedicarboxylic acid. Characterization was …
using FeCl2· 4H2O and 2, 5-di-hydroxy-1, 4-benzenedicarboxylic acid. Characterization was …
Preparation of a nanostructured iron chromite spinel in the pure form and its catalytic activity for the selective oxidation of benzene to phenol: experimental and DFT …
Selective oxidation of benzene to phenol in a single step is a long-standing challenge and
has been a subject of potential interest for researchers. In this study, a nanostructured iron …
has been a subject of potential interest for researchers. In this study, a nanostructured iron …
Fe (III) supported on resin as effective catalyst for the heterogeneous oxidation of phenol in aqueous solution
RM Liou, SH Chen, MY Hung, CS Hsu, JY Lai - Chemosphere, 2005 - Elsevier
FeIII supported on resin as an effective catalyst for oxidation was prepared and applied for
the degradation of aqueous phenol. Phenol was selected as a model pollutant and the …
the degradation of aqueous phenol. Phenol was selected as a model pollutant and the …
Heterogeneous Fenton-like degradation of organic pollutants in petroleum refinery wastewater by copper-type layered double hydroxides
A series of Ni (2-x) Cu (x) Al-LDH layered ternary double hydroxides with x: 0.0; 0.5; 1.5; and
2.0 were synthesized as catalysts to degrade aromatic and aliphatic organic compounds …
2.0 were synthesized as catalysts to degrade aromatic and aliphatic organic compounds …
Synthesis and characterization of CuMgAl ternary hydrotalcites as catalysts for the hydroxylation of phenol
S Kannan, A Dubey, H Knozinger - Journal of Catalysis, 2005 - Elsevier
CuMgAl ternary hydrotalcites with a (Cu+ Mg)/Al atomic ratio of 3.0 and a Cu/Mg atomic ratio
of 5.0, 3.0, 1.0, 0.33, and 0.2 were synthesized by coprecipitation under low supersaturation …
of 5.0, 3.0, 1.0, 0.33, and 0.2 were synthesized by coprecipitation under low supersaturation …