The covalent triazine framework, CTF-1, served as host material for the in situ synthesis of Fe2O3 nanoparticles. The composite material consisted of 20 +/- 2 m% iron, mainly in gamma-Fe2O3 phase. The resulting gamma-Fe2O3@CTF-1 was examined for the adsorption of As-III, As-V and H-II from synthetic solutions and real surface-, ground- and wastewater. The material shows excellent removal efficiencies, independent from the presence of Ca2+, Mg2+ or natural organic matter and only limited dependency on the presence of phosphate ions. Its adsorption capacity towards arsenite (198.0 mg g(-1)), arsenate (102.3 mg g(-1)) and divalent mercury (165.8 mg g(-1)) belongs amongst the best-known adsorbents, including many other iron-based materials. Reg...
In the last decades, the presence of high As levels in groundwaters poses a serious limitation to th...
Arsenic pollution of water is one of the severest environmental challenges threatening human health....
Arsenic (As) removal from portable water bodies using the nanotechnology-based adsorption technique ...
The covalent triazine framework, CTF-1, served as host material for the in situ synthesis of Fe2O3 n...
The chromium-based metal organic framework MIL-101(Cr) served as a host for the in situ synthesis of...
The presence of heavy metal ions in water is an environmental issue derived mainly from industrial ...
International audienceIron oxides such as magnetite and maghemite coated with cetyltrimethylammonium...
MIL-53(Al)-graphene oxide (GO) nanocomposites of different GO to MIL-53(Al) mass ratios (1% to 25% G...
The removal of arsenite (As(III)] has attracted increasing attentions because it is higher toxic and...
The present study focuses on the application of iron oxide nanomaterial for the abetment of arsenic...
The presence of arsenate in drinking water causes adverse health effects including skin lesions, dia...
Arsenic, is one of the most harmful elements to human health that continuously causes a threat to th...
The present work is divided into two sections. The first section deals with the synthesis of regener...
Elevated arsenic levels in soil and water resources due to improper waste management by industry cau...
In this study, two types of novel hybrid nanomaterials, i.e., graphene oxide‐manganese ferrite (GMF)...
In the last decades, the presence of high As levels in groundwaters poses a serious limitation to th...
Arsenic pollution of water is one of the severest environmental challenges threatening human health....
Arsenic (As) removal from portable water bodies using the nanotechnology-based adsorption technique ...
The covalent triazine framework, CTF-1, served as host material for the in situ synthesis of Fe2O3 n...
The chromium-based metal organic framework MIL-101(Cr) served as a host for the in situ synthesis of...
The presence of heavy metal ions in water is an environmental issue derived mainly from industrial ...
International audienceIron oxides such as magnetite and maghemite coated with cetyltrimethylammonium...
MIL-53(Al)-graphene oxide (GO) nanocomposites of different GO to MIL-53(Al) mass ratios (1% to 25% G...
The removal of arsenite (As(III)] has attracted increasing attentions because it is higher toxic and...
The present study focuses on the application of iron oxide nanomaterial for the abetment of arsenic...
The presence of arsenate in drinking water causes adverse health effects including skin lesions, dia...
Arsenic, is one of the most harmful elements to human health that continuously causes a threat to th...
The present work is divided into two sections. The first section deals with the synthesis of regener...
Elevated arsenic levels in soil and water resources due to improper waste management by industry cau...
In this study, two types of novel hybrid nanomaterials, i.e., graphene oxide‐manganese ferrite (GMF)...
In the last decades, the presence of high As levels in groundwaters poses a serious limitation to th...
Arsenic pollution of water is one of the severest environmental challenges threatening human health....
Arsenic (As) removal from portable water bodies using the nanotechnology-based adsorption technique ...