Kubra et al., 2021 - Google Patents
Utilizing an alternative composite material for effective copper (II) ion capturing from wastewaterKubra et al., 2021
- Document ID
- 14557298938632581305
- Author
- Kubra K
- Salman M
- Hasan M
- Islam A
- Hasan M
- Awual M
- Publication year
- Publication venue
- Journal of Molecular Liquids
External Links
Snippet
The novel ligand based functionalized composite materials (CpMA) was fabricated using a highly porous silica and deployed as an effective materials for the effective monitoring and adsorption of copper (Cu (II)) ions from contaminated water. The application of CpMA was …
- 239000002131 composite material 0 title abstract description 160
Similar Documents
Publication | Publication Date | Title |
---|---|---|
Kubra et al. | Utilizing an alternative composite material for effective copper (II) ion capturing from wastewater | |
Awual | Mesoporous composite material for efficient lead (II) detection and removal from aqueous media | |
Awual | Novel ligand functionalized composite material for efficient copper (II) capturing from wastewater sample | |
Jamali et al. | Application of thiophene-2-carbaldehyde-modified mesoporous silica as a new sorbent for separation and preconcentration of palladium prior to inductively coupled plasma atomic emission spectrometric determination | |
Hasan et al. | Sustainable composite sensor material for optical cadmium (II) monitoring and capturing from wastewater | |
Awual et al. | Offering an innovative composited material for effective lead (II) monitoring and removal from polluted water | |
Habuda-Stanić et al. | Quality of groundwater in eastern Croatia. The problem of arsenic pollution | |
Iida et al. | Effect of surface property of activated carbon on adsorption of nitrate ion | |
Nadeem et al. | Sorption of lead from aqueous solution by chemically modified carbon adsorbents | |
Pandey et al. | Biosorptive removal of arsenic from drinking water | |
Asmaly et al. | Enhanced adsorption of phenols from liquids by aluminum oxide/carbon nanotubes: comprehensive study from synthesis to surface properties | |
Gupta et al. | Concurrent removal of As (III) and As (V) using green low cost functionalized biosorbent–Saccharum officinarum bagasse | |
Naushad et al. | Removal of Bromate from Water Using De‐Acidite FF‐IP Resin and Determination by Ultra‐Performance Liquid Chromatography‐Tandem Mass Spectrometry | |
Ololade et al. | Influence of oxic/anoxic condition on sorption behavior of PFOS in sediment | |
Iovino et al. | Single and competitive adsorption of toluene and naphthalene onto activated carbon | |
Premkumar et al. | Comparative studies on the removal of chromium (VI) from aqueous solutions using raw and modified Citrus Limettioides peel | |
Vasu | Adsorption of Ni (II), Cu (II) and Fe (III) from aqueous solutions using activated carbon | |
Olorundare et al. | Preparation and use of maize tassels’ activated carbon for the adsorption of phenolic compounds in environmental waste water samples | |
Ismail et al. | Dynamic behaviour of Cd2+ adsorption in equilibrium batch studies by CaCO3−-rich Corbicula fluminea shell | |
Kuśmierek et al. | Removal of 2, 4, 6-trichlorophenol from aqueous solutions using agricultural waste as low-cost adsorbents | |
Yayayürük et al. | Determination of mercury (ii) in the presence of methylmercury after preconcentration using poly (acrylamide) grafted onto cross-linked poly (4-vinyl pyridine): application to mercury speciation | |
Kyzas et al. | Copper removal from aqueous systems with coffee wastes as low-cost materials | |
Fan et al. | Preparation of ionic porous polymers for extraction of four phenolic endocrine disrupting chemicals from fish and water samples | |
Wu et al. | Removal of aniline and phenol from water using raw and aluminum hydroxide-modified diatomite | |
Eun et al. | Removal of perfluoroalkyl substances from water by activated carbons: Adsorption of perfluorooctane sulfonate and perfluorooctanoic acid |