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Harnessing of carboxy containing starch nanoparticles as an adsorbent for Cd (II) ions and methylene blue from waste water effluent: synthesis, metrological characterization and properties

Khaled Mostafa (Materials Testing and Surface Chemical Analysis Lab, National Institute for Standards (NIS), Giza, Egypt)
Azza El-Sanabary (Pigments and Polymers Department, National Research Center, Giza, Egypt)

Pigment & Resin Technology

ISSN: 0369-9420

Article publication date: 1 March 2024

19

Abstract

Purpose

The novelty addressed here is undertaken by using tailor-made and fully characterized starch nanoparticles (SNPs) having a particle size ranging from 80 to 100 nm with a larger surface area, biodegradability and high reactivity as a starting substrate for cadmium ions and basic dye removal from wastewater effluent. This was done via carboxylation of SNPs with citric acid via esterification reaction using the dry preparation technique, in which a simple, energy-safe and sustainable process concerning a small amount of water, energy and toxic chemicals was used. The obtained adsorbent is designated as cross-linked esterified starch nanoparticles (CESNPs).

Design/methodology/approach

The batch technique was used to determine the CESNPs adsorption capacity, whereas atomic adsorption spectrometry was used to determine the residual cadmium ions concentration in the filtrate before and after adsorption. Different factors affecting adsorption were examined concerning pH, contact time, adsorbent dose and degree of carboxylation. Besides, to validate the esterification reaction and existence of carboxylic groups in the adsorbent, CESNPs were characterized metrologically via analytical tools for carboxyl content estimation and instrumental tools using Fourier-transform infrared spectroscopy (FTIR) spectra and scanning electron microscopy (SEM) morphological analysis.

Findings

The overall adsorption potential of CESNPs was found to be 136 mg/g when a 0.1 g adsorbent dose having 190.8 meq/100 g sample carboxyl content at pH 5 for 60 min contact time was used. Besides, increasing the degree of carboxylation of the CESNPs expressed as carboxyl content would lead to the higher adsorption capacity of cadmium ions. FTIR spectroscopy analysis elucidates the esterification reaction with the appearance of a new intense peak C=O ester at 1,700 cm−1, whereas SEM observations reveal some atomic/molecules disorder after esterification.

Originality/value

The innovation addressed here is undertaken by studying the consequence of altering the extent of carboxylation reaction expressed as carboxyl contents on the prepared CESNPs via a simple dry technique with a small amount of water, energy and toxic chemicals that were used as a sustainable bio nano polymer for cadmium ions and basic dye removal from wastewater effluent in comparison with other counterparts published in the literature.

Keywords

Acknowledgements

Ethical approval: (applicable for both human and/or animal studies. Ethical committees, Internal Review Boards and guidelines followed must be named. When applicable, additional headings with statements on consent to participate and consent to publish are also required).

This declaration is “not applicable.”

Competing interests: (always applicable and includes interests of a financial or personal nature).

There are no competing interests in this manuscript, i.e. there is no conflict of interest in this manuscript.

Authors’ contributions: (applicable for submissions with multiple authors).

The authors contribute to the conception, design, analysis and writing of the study as well as the collection of data and other routine work.

Funding: (details of any funding received).

There is no funding of this manuscript.

Availability of data and materials: (a statement on how any data sets used can be accessed).

The data that support the findings of this study are available in the manuscript.

Citation

Mostafa, K. and El-Sanabary, A. (2024), "Harnessing of carboxy containing starch nanoparticles as an adsorbent for Cd (II) ions and methylene blue from waste water effluent: synthesis, metrological characterization and properties", Pigment & Resin Technology, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1108/PRT-12-2023-0113

Publisher

:

Emerald Publishing Limited

Copyright © 2024, Emerald Publishing Limited

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