© 2017 Canadian Institute of Mining, Metallurgy and Petroleum Arsenic adversely affects gold mining operations by interfering with the extraction of gold, as well as posing a significant health and environmental hazard. While a number of technologies are available for removing arsenic, none of them is effective under all conditions. Although adsorption is a promising approach, most methods focus on the purification of water under neutral or acidic conditions and tend to be less effective in gold mining process waters, operating under highly alkaline conditions. In this study, the removal of As(III) and As(V) from both arsenic-only solutions and simulated process waters using composite magnetic nanoparticles was investigated. The nanoparticl...
The interaction of arsenite (As(III)) and arsenate (As(V)) with magnetite nanoparticles has been stu...
Conventional adsorbents for decontaminating arsenic exhibit low efficacy for the removal of arsenite...
Multiwalled boron nitride nanotubes (BNNTs) functionalized with Fe(3)O(4) nanoparticles (NPs) were u...
Arsenic is a problem in gold mining, as it can adversely affect operations and poses a health hazard...
Higher environmental standards have made the removal of arsenic from water an important problem for ...
Arsenic, one of the main environmental pollutants and potent natural poison, is a chemical element t...
Arsenic in water is currently a global concern due to the long-term exposure that could affect human...
Nanomaterials (typically 1~100nm in diameter) have been of considerable environmental attention due ...
The removal of arsenic contamination from the aqueous environment is of great importance in the cons...
Magnetic nanoparticles (MNPs) modified simultaneously with amorphous Fe and Mn oxides (Mag-Fe-Mn) we...
In this paper, the use of titania functionalised magnetic nanosorbents for rapid removal of arsenic ...
The present study focuses on the application of iron oxide nanomaterial for the abetment of arsenic...
In this study a novel adsorbent, maghemite nanoparticles (gamma-Fe2O3), is used for As(V) removal. M...
The development of magnetic nanoparticles by ACCVD is a powerful technique to synthesize material wi...
Cerium-based magnetic adsorbents (referred to as Fe3O4@CeO2/(OH)x) were synthesised via a simple che...
The interaction of arsenite (As(III)) and arsenate (As(V)) with magnetite nanoparticles has been stu...
Conventional adsorbents for decontaminating arsenic exhibit low efficacy for the removal of arsenite...
Multiwalled boron nitride nanotubes (BNNTs) functionalized with Fe(3)O(4) nanoparticles (NPs) were u...
Arsenic is a problem in gold mining, as it can adversely affect operations and poses a health hazard...
Higher environmental standards have made the removal of arsenic from water an important problem for ...
Arsenic, one of the main environmental pollutants and potent natural poison, is a chemical element t...
Arsenic in water is currently a global concern due to the long-term exposure that could affect human...
Nanomaterials (typically 1~100nm in diameter) have been of considerable environmental attention due ...
The removal of arsenic contamination from the aqueous environment is of great importance in the cons...
Magnetic nanoparticles (MNPs) modified simultaneously with amorphous Fe and Mn oxides (Mag-Fe-Mn) we...
In this paper, the use of titania functionalised magnetic nanosorbents for rapid removal of arsenic ...
The present study focuses on the application of iron oxide nanomaterial for the abetment of arsenic...
In this study a novel adsorbent, maghemite nanoparticles (gamma-Fe2O3), is used for As(V) removal. M...
The development of magnetic nanoparticles by ACCVD is a powerful technique to synthesize material wi...
Cerium-based magnetic adsorbents (referred to as Fe3O4@CeO2/(OH)x) were synthesised via a simple che...
The interaction of arsenite (As(III)) and arsenate (As(V)) with magnetite nanoparticles has been stu...
Conventional adsorbents for decontaminating arsenic exhibit low efficacy for the removal of arsenite...
Multiwalled boron nitride nanotubes (BNNTs) functionalized with Fe(3)O(4) nanoparticles (NPs) were u...