Title : Enhanced removal of As (V) from aqueous solution using modified hydrous ferric oxide nanoparticles.

Pub. Date : 2017 Jan 18

PMID : 28098196






5 Functional Relationships(s)
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Protein Name
Organism
1 Hydrous ferric oxide (HFO) is most effective with high treatment capacity on arsenate [As(V)] sorption although its transformation and aggregation nature need further improvement. ferric oxide SRC proto-oncogene, non-receptor tyrosine kinase Homo sapiens
2 Hydrous ferric oxide (HFO) is most effective with high treatment capacity on arsenate [As(V)] sorption although its transformation and aggregation nature need further improvement. ferric oxide SRC proto-oncogene, non-receptor tyrosine kinase Homo sapiens
3 Here, HFO nanoparticles with carboxymethyl cellulose (CMC) or starch as modifier was synthesized for the purpose of stability improvement and As(V) removal from water. ferric oxide SRC proto-oncogene, non-receptor tyrosine kinase Homo sapiens
4 The large-pore structure, high surface specific area, and the non-aggregated nature of CMC-HFO lead to increased adsorption sites, and thus high adsorption capacities of As(V) without pre-treatment (355 mg g-1), which is much greater than those reported in previous studies. ferric oxide SRC proto-oncogene, non-receptor tyrosine kinase Homo sapiens
5 FTIR, XPS and XRD analyses suggested that precipitation and surface complexation were primary mechanisms for As(V) removal by CMC modified HFO nanoparticles. ferric oxide SRC proto-oncogene, non-receptor tyrosine kinase Homo sapiens