Pristine and Fe-functionalized biochar for the simultaneous immobilization of arsenic and antimony in a contaminated mining soil

Copyright © 2024 Elsevier B.V. All rights reserved..

This study examined the effectiveness of pristine biochar (BC) and Fe-functionalized biochar (FBC) in remediating As-Sb co-contaminated soil, and revealed the resulting impact on soil enzymatic activities and bacterial communities. Results from incubation experiments showed that the 1.5% FBC treatment reduced the bioavailable As and Sb concentration by 13.5% and 27.1%, respectively, in compared to the control, and reduced the proportion of specifically adsorbed and amorphous Fe-Mn oxide-bound metal(loid) fractions in the treated soil. Among the BC treatments, only the 1.5% BC treatment resulted in a reduction of bioavailable As by 11.7% and Sb by 21.4%. The 0.5% BC treatment showed no significant difference. The FBC achieved high As/Sb immobilization efficiency through Fe-induced electrostatic attraction, π-π electron donor-acceptor coordination, and complexation (Fe-O(H)-As/Sb) mechanisms. Additionally, the 1.5% FBC treatment led to a 108.2% and 367.4% increase in the activities of N-acetyl-β-glucosaminidase and urease in soils, respectively, compared to the control. Furthermore, it significantly increased the abundance of Proteobacteria (15.2%), Actinobacteriota (37.0%), Chloroflexi (21.4%), and Gemmatimonadota (43.6%) at the phylum level. Co-occurrence network analysis showed that FBC was better than BC in increasing the complexity of bacterial communities. Partial least squares path modeling further indicated that the addition of biochar treatments can affect soil enzyme activities by altering soil bacterial composition. This study suggests that FBC application offers advantages in simultaneous As and Sb immobilization and restructuring the bacterial community composition in metal(loid)-contaminated soil.

Medienart:

E-Artikel

Erscheinungsjahr:

2024

Erschienen:

2024

Enthalten in:

Zur Gesamtaufnahme - volume:469

Enthalten in:

Journal of hazardous materials - 469(2024) vom: 05. Apr., Seite 133937

Sprache:

Englisch

Beteiligte Personen:

Li, Jiayi [VerfasserIn]
Gao, Yurong [VerfasserIn]
Li, Caibin [VerfasserIn]
Wang, Fenglin [VerfasserIn]
Chen, Hanbo [VerfasserIn]
Yang, Xing [VerfasserIn]
Jeyakumar, Paramsothy [VerfasserIn]
Sarkar, Binoy [VerfasserIn]
Luo, Zhenbao [VerfasserIn]
Bolan, Nanthi [VerfasserIn]
Li, Xiaofei [VerfasserIn]
Meng, Jun [VerfasserIn]
Wang, Hailong [VerfasserIn]

Links:

Volltext

Themen:

16291-96-6
9IT35J3UV3
Antimony
Arsenic
Biochar
Charcoal
Co-occurrence network analysis
Journal Article
Metal co-contamination
Microbial community
Modified biochar
N712M78A8G
Soil
Soil Pollutants
Soil remediation

Anmerkungen:

Date Completed 08.04.2024

Date Revised 08.04.2024

published: Print-Electronic

Citation Status MEDLINE

doi:

10.1016/j.jhazmat.2024.133937

funding:

Förderinstitution / Projekttitel:

PPN (Katalog-ID):

NLM369499883