POTENTIAL VALORISATION OF PROTOBIND 1000 AS ADSORBENT FOR Pb2+ AND Zn2+

Author:

TROFIN Alina Elena1ORCID,UNGUREANU Elena1ORCID,TRINCA Lucia Carmen1ORCID,FORTUNA Maria Emiliana2ORCID,EPERJESSY Diana Beatrice3

Affiliation:

1. "Ion Ionescu de la Brad" University of Life Sciences, Faculty of Horticulture, Department of Exact Sciences, 3, Mihail Sadoveanu Alley, 700490, Iasi, Romania

2. "Petru Poni" Institute of Macromolecular Chemistry, 41A, Grigore Ghica Voda Al., 700487, Iasi, Romania

3. "Saint Mary" Emergency Children Hospital, 62, Vasile Lupu Str., 700309, Iasi, Romania

Abstract

The adsorption of metal ions from increasing concentrations in aqueous solutions by modified straw lignin Protobind 1000 was studied. The effect of metallic ion concentrations (from 20.72 to 207.2 mg·L-1 for Pb2+ and from 6.538 to 65.38 mg·L-1 for Zn2+) and contact time (30, 60 and 90 minutes) were studied at pH = 6 and 200C. Langmuir and Freundlich isotherm equations were applied to assess equilibrium data and the kinetics of the adsorption processes were analysed using Lagergren pseudo first order and Ho&McKay pseudo second order models. The results show that the adsorption processes reached equilibrium after 90 minutes, but similar values were registered after 60 minutes. The Freundlich isotherm described the process better, denoting chemisorption with the formation of ion-lignin complex structures. The Ho&McKay model fit the adsorption data better with regression coefficients equal to 1 compared to the Lagergren model, where the regression factors varied between 0.72 and 0.95. For the maximum concentration of lead solution and the longest adsorption time of 90 minutes, the Ho&McKay model predicted an equilibrium capacity qe of 13.1406 mg·g-1 compared to the 13.1398 mg·g-1 obtained. For zinc adsorption, the same maximum concentration and time were considered, and the pseudo-second order model predicted a qe of 12.6743 mg·g-1 compared to the obtained value of 12.6714 mg·g-1. The uptake of lead was greater on 0.15 g of adsorbent (a maximum of 27.23 mg·g-1) than the zinc uptake (a maximum of 8.28 mg·g-1), for all analysed concentrations.

Publisher

University of Life Sciences in lasi

Cited by 1 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. CORNHUSK POWDERS AS ADSORBENTS FOR NITRITES IN SOLUTION: A THERMODYNAMIC AND KINETIC APPROACH;Journal of Applied Life Sciences and Environment;2023-10-04

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