Issue 31, 2024, Issue in Progress

Preparation of a biochar-lignosulfonate composite material and its adsorption performance for Cu2+

Abstract

Biochar was prepared using peanut shells as raw materials, and then composite amino-functionalized lignosulfonate was used to prepare a biochar/lignosulfonate adsorbent (BC-CLS). The morphology and structure of BC-CLS were characterized using FT-IR, SEM, zeta potential, and XPS. The adsorption performance of BC-CLS was evaluated by batch adsorption experiments and dynamic adsorption experiments (adsorption column flow adsorption). The results showed that BC-CLS adsorbent exhibited significant adsorption performance for Cu2+, including a short equilibrium time (50 min), fast adsorption rate (11 mg g−1 min−1), and high static saturation adsorption capacity (354 mg g−1). Dynamic adsorption experiments indicated that the maximum adsorption capacity of BC-CLS adsorbent was approximately 280 mg g−1, with a removal rate of over 99% after five cycles, meeting the wastewater discharge standard (less than 1 mg L−1). The results demonstrated that the adsorption capacity of BC-CLS adsorbent for Cu2+ was controlled by multiple adsorption mechanisms, including electrostatic attraction, precipitation, and metal ion complexation. Additionally, under pH = 5 conditions, using a 40 mg per L Cu2+ solution, the adsorption performance of BC-CLS adsorbent remained above 60% after five adsorption–desorption experiments, indicating good cycling stability of BC-CLS adsorbent.

Graphical abstract: Preparation of a biochar-lignosulfonate composite material and its adsorption performance for Cu2+

Supplementary files

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Article information

Article type
Paper
Submitted
23 Jan 2024
Accepted
06 May 2024
First published
15 Jul 2024
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2024,14, 22335-22343

Preparation of a biochar-lignosulfonate composite material and its adsorption performance for Cu2+

Y. Zhang, Q. He, Y. Yang and Q. Bai, RSC Adv., 2024, 14, 22335 DOI: 10.1039/D4RA00588K

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