Cross-linked-substituted (esterified/etherified) starch derivatives as aqueous heavy metal ion adsorbent: a review

Author:

Akinterinwa Ayodele1,Oladele Ebun2,Adebayo Albert2,Gurgur Emmanuel2,Iyanu Omotunde Oluwatoyin3,Ajayi Olubode2

Affiliation:

1. Modibbo Adama University of Technology, Yola, Nigeria

2. Federal University of Technology, Akure, Nigeria

3. Federal University Oye, Oye-Ekiti, Nigeria

Abstract

Abstract Starch is a biopolymer with outstanding economic and environmentally friendly attributes which has driven technological innovations to enhance its applications in food and non-food industries. Starch is constituted by O-H groups with valency and electronic characteristics that can initiate adsorption of aqueous heavy metal ions (AHMIs). However, this can be enhanced using various modification sequences. A common procedure is the cross-linking and substitution of the O-H groups via esterification and/or etherification reactions to produce starch derivative adsorbents (SDAs) with improved structural and functional properties for adsorption of AHMIs. The efficiency of SDAs developed using these procedures depends on the botanical source of the native starch base, porosity and structural stability of the derivative (i.e. degree of cross-linking), substituted functional group(s), degree of substitution and the steric/conformation effects of the substituted groups. Many works have been done to optimize these factors, and this review highlighted some of the tailored procedures and the results obtained.

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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