2018ChemistrySelectRequires access

A New Resin Containing Aminopropylphosphonate Chelating Ligand for High‐Performance Mitigation of Heavy Metal Ions

Izzat Wajih Kazi, Nisar Ullah, Shaikh A. Ali

Open publisher page 3 citations

Abstract

Abstract Cyclopolymerization, initiated by t‐butylhydroperoxide, of an aqueous solution of N ‐(3‐phosphonopropyl)diallylammonium hydrochloride and cross‐linker tetraallylpiperazinium dichloride in 9:1 mol ratio, led to a pH‐responsive cross‐linked resin (80% yield). The resin showed exceptional efficiency for entrapping toxic metal ions from aqueous systems. Using Langmuir adsorption isotherm, the respective maximum uptake ( Q m ) of Pb 2+ and Cu 2+ ions was determined to be 7.18 and 6.76 mmol g −1 . The very impressive performance accorded the resin a prestigious place among many sorbents in recent works. The adsorption data fitted second‐order kinetics with respective E a of 35.5 and 31.1 kJ mol −1 for Pb 2+ and Cu 2+ ions. While the initial rapid adsorption of metal ions was due to film diffusion, the slower adsorption followed intraparticle diffusion. SEM and EDX analyses confirmed the metal ions’ adsorption onto sorbent. The negative Δ G ° and positive Δ H ° values demonstrated the endothermic adsorption as a favorable process. The sorbent is recyclable as evinced by the excellent adsorption/desorption process.

About this research paper

What this paper is about

Abstract Cyclopolymerization, initiated by t‐butylhydroperoxide, of an aqueous solution of N ‐(3‐phosphonopropyl)diallylammonium hydrochloride and cross‐linker tetraallylpiperazinium dichloride in 9:1 mol ratio, led to a pH‐responsive cross‐linked resin (80% yield). The resin showed exceptional efficiency for entrapping toxic metal ions from aqueous systems. Using Langmuir adsorption isotherm, the respective maximum uptake ( Q m ) of Pb 2+ and Cu 2+ ions was determined to be 7.18 and 6.76 mmol g −1 . The very impressive performance accorded the resin a prestigious place among many sorbents in recent works. The adsorption data fitted second‐order kinetics with respective E a of 35.5 and 31.1 kJ mol −1 for Pb 2+ and Cu 2+ ions. While the initial rapid adsorption of metal ions was due to film diffusion, the slower adsorption followed intraparticle diffusion. SEM and EDX analyses confirmed the metal ions’ adsorption onto sorbent. The negative Δ G ° and positive Δ H ° values demonstrated the endothermic adsorption as a favorable process. The sorbent is recyclable as evinced by the excellent adsorption/desorption process.

Why it matters

OpenAlex reports 3 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Abstract Cyclopolymerization, initiated by t‐butylhydroperoxide, of an aqueous solution of N ‐(3‐phosphonopropyl)diallylammonium hydrochloride and cross‐linker tetraallylpiperazinium dichloride in 9:1 mol ratio, led to a pH‐responsive cross‐linked resin (80% yield). The resin showed exceptional efficiency for entrapping toxic metal ions from aqueous systems. Using Langmuir adsorption isotherm, the respective maximum uptake ( Q m ) of Pb 2+ and Cu 2+ ions was determined to be 7.18 and 6.76 mmol g −1 . The very impressive performance accorded the resin a prestigious place among many sorbents in recent works. The adsorption data fitted second‐order kinetics with respective E a of 35.5 and 31.1 kJ mol −1 for Pb 2+ and Cu 2+ ions. While the initial rapid adsorption of metal ions was due to film diffusion, the slower adsorption followed intraparticle diffusion. SEM and EDX analyses confirmed the metal ions’ adsorption onto sorbent. The negative Δ G ° and positive Δ H ° values demonstrated the endothermic adsorption as a favorable process. The sorbent is recyclable as evinced by the excellent adsorption/desorption process.

Key concepts: Adsorption, Sorbent, Aqueous solution, Chemistry, Metal ions in aqueous solution, Desorption, Endothermic process, Metal

Related papers

Back to paper searchBrowse research topicsOriginal source
A New Resin Containing Aminopropylphosphonate Chelating Ligand for High‐Performance Mitigation of Heavy Metal Ions — Research Paper | ScholarLens