2013
DOI: 10.13005/ojc/290238
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Water Soluble Iron aminoclay for Catalytic Reduction of Nitrophenol

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Cited by 9 publications
(3 citation statements)
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“…6.8% chemisorbed water molecules were present in AC. The second major weight loss around 400°C, is associated with the degradation of propylamine group (Vandarkuzhali and Radha 2013). Above 750°C the system exhibited 60.2% as a weight residue remained.…”
Section: Tga Profilementioning
confidence: 99%
See 1 more Smart Citation
“…6.8% chemisorbed water molecules were present in AC. The second major weight loss around 400°C, is associated with the degradation of propylamine group (Vandarkuzhali and Radha 2013). Above 750°C the system exhibited 60.2% as a weight residue remained.…”
Section: Tga Profilementioning
confidence: 99%
“…Reductive decontamination of nitrophenol was done with the aid of Mg-AC . Other authors (Vandarkuzhali and Radha 2013;Liu et al 2016;Celebi et al 2016) also reported about the catalytic activity of metal nanoparticle immobilized AC. By thorough literature survey, it was found that the catalyst was deactivated fast due to leach of metal nanoparticles into the reaction medium in the subsequent runs and hence it leads to the low % of aimed product.…”
Section: Introductionmentioning
confidence: 96%
“…Hence, the reduction of NiP using various catalyst systems is the only way to reduce the pollution caused by the NiP. Currently, various catalyst systems such as iron niobate [6], hydroxyapatite [7], Au nanoparticles (NP) [8], Au-SiO 2 [9], layered double hydroxides (LDH) [10], TiO 2 [11], Al 2 O 3 [12], Pd-Ag [13], AC-Ag [14], Au-CeO 2 [15], aminoclay-Fe NP [16], Clay-Pt [17], Fe 3 O 4 [18], Ni-Se [19] and Ni-P [20] are used for the reduction of NiP. Through study of the literature, any report based on the Cu and Al nanoparticles as a catalyst for the reduction of NiP in the presence of NaBH 4 is not found.…”
Section: Introductionmentioning
confidence: 99%