Aluminum pillared clay was synthesized and impregnated with Co2+ (CoAP), using incipient wetness impregnation method. The obtained CoAP was characterized by chemical analysis, XRPD, SEM with EDS, XPS and low temperature N2 physisorption. By these methods the incorporation of Co2+ was confirmed in both micro and mesoporous region. The synthesized material was investigated as a catalyst in catalytic oxidation of organic water pollutants – dyes – in the presence of Oxone® (peroxymonosulfate). Oxone® is a precursor of sulfate radicals. Tartrazine was chosen as a model dye pollutant. The influence of the mass of the catalyst, temperature and initial pH was investigated. Temperature increase was beneficial for dye degradation rate. The reaction r...
The goal of this work was the synthesis of a montmorillonite based catalyst for advanced oxidative d...
Two different types of cobalt-based catalysts were synthesized and tested as Oxone® activators in c...
Heterogneous Fenton-like reaction is one of the most efficient solutions for the degradation of org...
Aluminum pillared clay was synthesized and impregnated with Co2+ (CoAP), using incipient wetness imp...
Aluminum pillared clay was synthesized and impregnated with Co2+ (CoAP), using incipient wetness imp...
Aluminum pillared clay was synthesized and impregnated with Co2+ (CoAP), using incipient wetness imp...
Aluminum pillared montmorillonite impregnated with cobalt (CoAP) was synthesized and characterized u...
Aluminum pillared montmorillonite impregnated with cobalt (CoAP) was synthe-sized and characterized ...
In past decades natural waterbodies have been severely struck by uncontrolled wastewater release. Th...
A series of aluminum pillared montmorillonite impregnated with different cobalt loadings (1–10) mass...
A series of aluminum pillared montmorillonite impregnated with different cobalt loadings (1–10) mass...
The catalytic degradation of hazardous organic contaminants in industrial wastewater is a promising ...
In this work aluminum pillared clay impregnated with cobalt (CoAP) was tested as catalyst in the de...
In this work aluminum pillared clay impregnated with cobalt (CoAP) was tested as catalyst in the de...
The goal of this work was the synthesis of a montmorillonite based catalyst for advanced oxidative d...
The goal of this work was the synthesis of a montmorillonite based catalyst for advanced oxidative d...
Two different types of cobalt-based catalysts were synthesized and tested as Oxone® activators in c...
Heterogneous Fenton-like reaction is one of the most efficient solutions for the degradation of org...
Aluminum pillared clay was synthesized and impregnated with Co2+ (CoAP), using incipient wetness imp...
Aluminum pillared clay was synthesized and impregnated with Co2+ (CoAP), using incipient wetness imp...
Aluminum pillared clay was synthesized and impregnated with Co2+ (CoAP), using incipient wetness imp...
Aluminum pillared montmorillonite impregnated with cobalt (CoAP) was synthesized and characterized u...
Aluminum pillared montmorillonite impregnated with cobalt (CoAP) was synthe-sized and characterized ...
In past decades natural waterbodies have been severely struck by uncontrolled wastewater release. Th...
A series of aluminum pillared montmorillonite impregnated with different cobalt loadings (1–10) mass...
A series of aluminum pillared montmorillonite impregnated with different cobalt loadings (1–10) mass...
The catalytic degradation of hazardous organic contaminants in industrial wastewater is a promising ...
In this work aluminum pillared clay impregnated with cobalt (CoAP) was tested as catalyst in the de...
In this work aluminum pillared clay impregnated with cobalt (CoAP) was tested as catalyst in the de...
The goal of this work was the synthesis of a montmorillonite based catalyst for advanced oxidative d...
The goal of this work was the synthesis of a montmorillonite based catalyst for advanced oxidative d...
Two different types of cobalt-based catalysts were synthesized and tested as Oxone® activators in c...
Heterogneous Fenton-like reaction is one of the most efficient solutions for the degradation of org...