152-161Fluoride concentrations in drinking water above permissible levels and incidences of fluorosis among people have been reported from many parts of the world including India. Low-cost and biodegradable adsorbents are the preferred choice for the removal of fluoride from an aqueous medium. In the present study, zinc-aluminium layered double hydroxide (LDH) supported on sugarcane bagasse (raw and acid-treated) has been synthesized, characterized, and investigated for the defluoridation of water. The SEM micrographs of the supported adsorbents show good dispersion of the LDH particles on the support material. The defluoridation capacity of the LDH is enhanced by supporting it on bagasse. The adsorption capacity of supported adsorbents inc...
In this work an attempt was made to remove fluoride and arsenate from the aqueous solution by using ...
Abstract The removing of fluoride from water is highly desired from the viewpoint of environmental p...
Millions of people worldwide are exposed to excessive concentrations of fluoride (F−) from groundwat...
A novel starch stabilized Mg/Al layered Double hydroxides (S-LDHs) was prepared in a facile approach...
Environment-friendly and cost-effective adsorbent is necessary for removal of excess fluoride from w...
In this work, calcined chitosan-supported layered double hydroxides (CSLDO) were synthesized through...
The present study evaluated calcined Mg/Al layered double hydroxide (CLDH) availability for the remo...
Fluoride excess in water represents an environmental issue and a risk for human health since it can ...
Herein, we report the synthesis of Mg/Al-CO<sub>3</sub> layered double hydroxides (LDHs) by the urea...
Most of the developing countries like India depend on the groundwater as source of drinking water th...
AbstractThe present study evaluated calcined Mg/Al layered double hydroxide (CLDH) availability for ...
Fluoride and fluorosis are endemic to many countries including Tanzania. Performances of different m...
Health risks linked to the regular consumption of water with high fluoride (F − ) content seriously ...
Carbonate Layered Double Hydroxides (LDHs) with different cationic composition and M/M3+ molar ratio...
LDHs have been systhesised by coprecipitation at pH - 10. Calcinate of these rich LDA precursers at ...
In this work an attempt was made to remove fluoride and arsenate from the aqueous solution by using ...
Abstract The removing of fluoride from water is highly desired from the viewpoint of environmental p...
Millions of people worldwide are exposed to excessive concentrations of fluoride (F−) from groundwat...
A novel starch stabilized Mg/Al layered Double hydroxides (S-LDHs) was prepared in a facile approach...
Environment-friendly and cost-effective adsorbent is necessary for removal of excess fluoride from w...
In this work, calcined chitosan-supported layered double hydroxides (CSLDO) were synthesized through...
The present study evaluated calcined Mg/Al layered double hydroxide (CLDH) availability for the remo...
Fluoride excess in water represents an environmental issue and a risk for human health since it can ...
Herein, we report the synthesis of Mg/Al-CO<sub>3</sub> layered double hydroxides (LDHs) by the urea...
Most of the developing countries like India depend on the groundwater as source of drinking water th...
AbstractThe present study evaluated calcined Mg/Al layered double hydroxide (CLDH) availability for ...
Fluoride and fluorosis are endemic to many countries including Tanzania. Performances of different m...
Health risks linked to the regular consumption of water with high fluoride (F − ) content seriously ...
Carbonate Layered Double Hydroxides (LDHs) with different cationic composition and M/M3+ molar ratio...
LDHs have been systhesised by coprecipitation at pH - 10. Calcinate of these rich LDA precursers at ...
In this work an attempt was made to remove fluoride and arsenate from the aqueous solution by using ...
Abstract The removing of fluoride from water is highly desired from the viewpoint of environmental p...
Millions of people worldwide are exposed to excessive concentrations of fluoride (F−) from groundwat...