» Articles » PMID: 35789871

Preparation of Humic Acid-bentonite Polymer Composite: A Heavy Metal Ion Adsorbent

Overview
Journal Heliyon
Specialty Social Sciences
Date 2022 Jul 5
PMID 35789871
Authors
Affiliations
Soon will be listed here.
Abstract

Adsorbents for wastewater treatment have evolved from scientific adsorbents to natural adsorbents. In this study, a humic acid-bentonite polymer (HBP) composite comprising humic acid, bentonite, and anionic polyacrylamide was integrated into an anionic polyacrylamide (aPAM) polymer matrix as an adsorbent pellet with N, N-methylene-bis-acrylamide (MBA), sodium tetraborate pentahydrate and chromium chloride is used as a novel adsorbent to remove Ni, Cd and Pb ions from aqueous solution. Sorption of these ions onto HBP is studied as a function of pH, adsorbent dosage, initial metal ion concentration, humic acid, and bentonite properties to evaluate adsorption efficiency. The results showed that adsorption sharply depends on pH, metal ion concentration, and contact time, but is complemented by humic acid and bentonite properties. The adsorption increased from 8% to 94.7% in the first 30 min at respective pH values of 5.6 and 9 for (Ni, Cd, and Pb). The HBP sorption power decreased with increasing adsorbent dosage, while the adsorption efficiency increased in ascending order for the cations Pb, Ni and Cd with efficiencies up to 94.7%, 90.9%, and 90.2%. The experimental data for Ni, Pb adsorption fits the Langmuir isotherm, while that for Cd adsorption fits the Freundlich isotherm. HBP showed modest adsorption performance at low and high concentrations, this is attributed in large part to the humic acid and bentonite properties that affect HBP's unique performance.

Citing Articles

Research and Application of High-Pressure Rotary Jet Method in the Seepage Treatment of Heavy Metal Tailing Ponds of Southwest China.

Liang M, Jin C, Hou J, Wang M, Shi Y, Dong Z Materials (Basel). 2023; 16(9).

PMID: 37176333 PMC: 10180357. DOI: 10.3390/ma16093450.


Analysis of Changes in the Amount of Phytosterols after the Bleaching Process of Hemp Oils.

Kwasnica A, Teleszko M, Marcinkowski D, Kmiecik D, Grygier A, Golimowski W Molecules. 2022; 27(21).

PMID: 36364027 PMC: 9657619. DOI: 10.3390/molecules27217196.

References
1.
Al-Ghouti M, Al-Absi R . Mechanistic understanding of the adsorption and thermodynamic aspects of cationic methylene blue dye onto cellulosic olive stones biomass from wastewater. Sci Rep. 2020; 10(1):15928. PMC: 7522081. DOI: 10.1038/s41598-020-72996-3. View

2.
Gao J, Dou S, Wang Z . Structural Analysis of Humic Acid in Soil at Different Corn Straw Returning Modes through Fluorescence Spectroscopy and Infrared Spectroscopy. Int J Anal Chem. 2020; 2019:1086324. PMC: 7012235. DOI: 10.1155/2019/1086324. View

3.
Zhao G, Zhang H, Fan Q, Ren X, Li J, Chen Y . Sorption of copper(II) onto super-adsorbent of bentonite-polyacrylamide composites. J Hazard Mater. 2009; 173(1-3):661-8. DOI: 10.1016/j.jhazmat.2009.08.135. View

4.
Amari A, Alzahrani F, Katubi K, Alsaiari N, Tahoon M, Ben Rebah F . Clay-Polymer Nanocomposites: Preparations and Utilization for Pollutants Removal. Materials (Basel). 2021; 14(6). PMC: 8001741. DOI: 10.3390/ma14061365. View

5.
Zhang W, An Y, Li S, Liu Z, Chen Z, Ren Y . Enhanced heavy metal removal from an aqueous environment using an eco-friendly and sustainable adsorbent. Sci Rep. 2020; 10(1):16453. PMC: 7536411. DOI: 10.1038/s41598-020-73570-7. View