The adsorption properties of the corm tunic structure of Crocus (Iridaceae) and its use as a biomarker for the environmental concentration of uranium

Author:

Koçak Nurdan,Çoktaş Fatma,Şimşek SelçukORCID

Abstract

AbstractIn this study, we investigated whether the corm tunic structure, which is the underground part of the Crocus (Iridaceae) plant, can be used for adsorption and recovery/removal of uranium from an aqueous solution. The characterization of this structure, which has not been studied for its interaction with metals before, has been elucidated by point zero charge (PZC), FTIR, and SEM analyses. Extensive investigations were conducted on the adsorption properties of the biomass used and the pH, temperature, time, adsorbent dosage, and uranyl ion concentration variables were optimized. The experimental data were interpreted using theoretical adsorption models. The Langmuir model revealed a maximum adsorption capacity of the material to be 0.286 mol kg−1. Adsorption kinetics were also described using pseudo-first order, pseudo-second order, Elovich, and intra-particular diffusion models. It is shown that the adsorption pH reaches the highest adsorption at the natural pH of the uranium solution. Experimental studies showed that the adsorption was endothermic and spontaneous. It has been shown that this biomaterial can be used as an adsorbent for the removal of uranium as well as a biomarker for determining the environmental uranium concentration.

Funder

Sivas Cumhuriyet University

Publisher

Springer Science and Business Media LLC

Reference40 articles.

1. Gilman AP, Villeneuve DC, Secours VE, Yagminas AP, Tracy BL, Quinn JM, Vall VE et al (1998) Uranyl nitrate: 28-day and 91-day toxicity studies in the Sprague-Dawley rat. Toxicol Sci 41(1):117–128

2. Keith LS, Faroon OM, Fowler BA (2007) Uranium. In: Berlin M, Zalups RK, Fowler BA (eds) Handbook on the Toxicology of Metals. Academic Press, Denmark, pp 880–903

3. Aly MM, Hamza MF (2013) A review: studies on uranium removal using different techniques. Overview. J Dispers Sci Technol 34(2):182–213

4. Şimşek S, Baybaş D, Koçyiğit MÇ, Yıldırım H (2014) Organoclay modified with lignin as a new adsorbent for removal of Pb2+ and UO22+. J Radioanal Nucl Chem 299:283–292

5. Zhao D, Gao X, Chen S, Xie F, Feng S, Alsaedi A, Hayat T, Chen C (2018) Interaction between U (VI) with sulfhydryl groups functionalized graphene oxides investigated by batch and spectroscopic techniques. J Colloid Interface Sci 524:129–138

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