Distributing sulfidized nanoscale zerovalent iron onto phosphorus-functionalized biochar for enhanced removal of antibiotic florfenicol

Jiang Xu, Zhen Cao, Yan Wang, Yilin Zhang, Xiaoyu Gao, Mohammad Boshir Ahmed, Jing Zhang, Yi Yang, John L. Zhou, Gregory V. Lowry

Research output: Journal PublicationArticlepeer-review

145 Citations (Scopus)

Abstract

Aggregation of nZVI and sulfur-modified nZVI (S-nZVI) can lower its reactivity with contaminants in water. To overcome this limitation, we synthesized biochar-supported nZVI and S-nZVI using a phosphate pretreatment of the biochar (pBC) to uniformly distribute the nZVI and S-nZVI onto the biochar support. The participation of phosphorus groups in the synthesis, and the good distribution of S-nZVI on the pBC were confirmed by FTIR, SEM, XRD, and XPS. Pretreatment of the biochar led to smaller well-dispersed S-nZVI compared to S-nZVI supported on untreated biochar. This increased the surface area of the S-nZVI and the reaction rate with the antibiotic florfenicol (FF). The removal rate of FF by pBC-S-nZVI was 4.3 times higher than that by unsupported S-nZVI. Even though FF strongly adsorbed to the pBC support, FF was fully degraded based on the mass balance results. Surface area normalized reaction rate constants (kSA) for FF removal by S-nZVI, BC-S-nZVI, and pBC-S-nZVI were similar, suggesting that the enhanced reactivity is due to the greater dispersion of S-nZVI on the treated biochar. These results provide a simple pretreatment method for dispersing nZVI or S-nZVI onto biochar supports.

Original languageEnglish
Pages (from-to)713-722
Number of pages10
JournalChemical Engineering Journal
Volume359
DOIs
Publication statusPublished - 1 Mar 2019
Externally publishedYes

Keywords

  • Antibiotic removal
  • Dechlorination
  • Phosphorus functionalization of biochar
  • Sulfidized nanoscale zero-valent iron

ASJC Scopus subject areas

  • General Chemistry
  • Environmental Chemistry
  • General Chemical Engineering
  • Industrial and Manufacturing Engineering

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