The growing demand for water purification provided the initial momentum to produce lanthanide-incorporated nano-hydroxyapatite (HAP) such as HAP·CeO2, HAP·CeO2·La(OH)3 (2:1), and HAP·CeO2·La(OH)3 (3:2). These materials open avenues to remove fluoride and lead ions from contaminated water bodies effectively. Composites of HAP containing CeO2 and La(OH)3 were prepared using in situ wet precipitation of HAP, followed by the addition of Ce(SO4)2 and La(NO3)3 into the same reaction mixture. The resultant solids were tested for the removal of fluoride and lead ions from contaminated water. It was found that the composite HAP·CeO2 shows fluoride and lead ion removal capacities of 185 and 416 mg/g, respectively. The fluoride removal capacity of the...
Fluoride excess in water represents an environmental issue and a risk for human health since it can ...
This research article was published by Elsevier, 2022The present study describes the synthesis and c...
Fluoride is a critical micronutrient for human health and is usually ingested through food and drink...
The growing demand for water purification provided the initial momentum to produce lanthanide-incorp...
Highly ordered pore mesoporous silica composites, like SBA-3 and hydroxyapatite (HaP) nanocrystals, ...
Fluoride contamination in water due to natural and anthropogenic activities has been documented as s...
A novel nanocomposite (BT-HAp) was developed by chemical synthesis using hydroxyapatite nanoparticle...
The development of effective treatment processes for the removal contaminants, such as fluoride and ...
Hydroxyapatite sorption is considered to be a cost effective treatment process for removing excess f...
In recent years, there has been an increase in public perception of the detrimental side-effects of ...
The new nanocomposite of NaP-Hydroxyapatite (NaP:HAp) has been developed for removal of fluoride fro...
Excess fluoride (F?) in drinking water leads to detrimental health effects including dental and skel...
Hydroxyapatite (Ca10(PO4)6(OH)2) calcium phosphate is a robust and viable magnetic material for the ...
Hydroxyapatite (Ca<sub>10</sub>(PO<sub>4</sub>)<sub>6</sub>(OH)<sub>2</sub>, HAP), both as a synthet...
Fluoride (F-) is one of the most significant inorganic contaminants endemic to groundwaters worldwid...
Fluoride excess in water represents an environmental issue and a risk for human health since it can ...
This research article was published by Elsevier, 2022The present study describes the synthesis and c...
Fluoride is a critical micronutrient for human health and is usually ingested through food and drink...
The growing demand for water purification provided the initial momentum to produce lanthanide-incorp...
Highly ordered pore mesoporous silica composites, like SBA-3 and hydroxyapatite (HaP) nanocrystals, ...
Fluoride contamination in water due to natural and anthropogenic activities has been documented as s...
A novel nanocomposite (BT-HAp) was developed by chemical synthesis using hydroxyapatite nanoparticle...
The development of effective treatment processes for the removal contaminants, such as fluoride and ...
Hydroxyapatite sorption is considered to be a cost effective treatment process for removing excess f...
In recent years, there has been an increase in public perception of the detrimental side-effects of ...
The new nanocomposite of NaP-Hydroxyapatite (NaP:HAp) has been developed for removal of fluoride fro...
Excess fluoride (F?) in drinking water leads to detrimental health effects including dental and skel...
Hydroxyapatite (Ca10(PO4)6(OH)2) calcium phosphate is a robust and viable magnetic material for the ...
Hydroxyapatite (Ca<sub>10</sub>(PO<sub>4</sub>)<sub>6</sub>(OH)<sub>2</sub>, HAP), both as a synthet...
Fluoride (F-) is one of the most significant inorganic contaminants endemic to groundwaters worldwid...
Fluoride excess in water represents an environmental issue and a risk for human health since it can ...
This research article was published by Elsevier, 2022The present study describes the synthesis and c...
Fluoride is a critical micronutrient for human health and is usually ingested through food and drink...