Analytical chemistry council

METHODS AND OBJECTS OF CHEMICAL ANALYSIS

 

An international journal devoted to all aspects of analytical chemistry

ISSN 2413-6166 (Online), ISSN 1991-0290 (Print)

Kiev University
    Ukr | En
Home Current issue Call for papers ReceivedContact us
cover

Quantitative Analysis of Titanium Dioxide (TiO2) Levels as Food Additives in Various Food Samples from the Jordanian Market

Hanan O. Abuzaid†, Abdelmnim M. Altwaiq†*, Leen N. Ali†, Manal Alkhabbas‡, Sa’ib Khouri§

† Chemistry Department, University of Petra, Amman, Jordan;
‡ Chemistry Department, Isra University, Amman, Jordan;
§ Department of Basic Sciences, American University of Madaba (AUM), Madaba, Jordan;

* Corresponding authors

*e-mail: aaltweiq@uop.edu.jo

Methods Objects Chem. Anal., 2025, 20(2), p. 135-142

https://doi.org/10.17721/moca.2025.135-142

The article is distributed under open access Creative Commons Attribution License CC BY 4.0.

download the article

download the references

supplementary materials

Abstract

This study presents a quantitative determination of titanium dioxide (TiO2, E171) in food products frequently consumed by children. An optimized acid digestion method using concentrated sulfuric acid, nitric acid, and hydrogen peroxide at 200 °C for 45 minutes was developed to efficiently extract TiO2 from food matrices. The recovered TiO2 was quantified using Inductively Coupled Plasma Optical Emission Spectrometry (ICP-OES) and UV–Visible spectrophotometry. Both methods were successfully applied to twentyfive food products from the Jordanian market, including chewing gums, candies, and powdered juices. Structural and morphological characterization of the extracted TiO2 was carried out using Fourier Transform Infrared Spectroscopy (FTIR), Scanning Electron Microscopy (SEM), X-ray Diffraction (XRD), and Dynamic Light Scattering (DLS). XRD confirmed the presence of both anatase and rutile crystalline phases, while SEM revealed irregular particle morphology. FTIR spectra showed characteristic Ti–O vibrations, and DLS analysis indicated that the particle sizes were in the micrometer range, with no evidence of engineered nanoparticles. The proposed approach enables accurate monitoring of TiO2 content in foods and supports regulatory efforts to evaluate consumer exposure to E171, particularly in products marketed to children.

Keywords: titanium dioxide; E171; food additives; ICP-OES; UV-Visible spectrophotometry

Article language: En.


Publisher: Taras Shevchenko National University, Kiev Ukraine

(Analytical chemistry department at Taras Shevchenko National University, 64 Vladimirskaya STR., Kiev, 01601 UKRAINE)
analysis@univ.kiev.ua, www.univ.kiev.ua, +380 (44) 2393444

The journal is indexed in SCOPUS and Web of Science

The journal website: www.moca.net.ua

The articles in this journal are licensed under CC BY 4.0