Skip to main navigation Skip to search Skip to main content

Pilot-scale bioelectrochemical system for efficient conversion of 4-chloronitrobenzene

  • Harbin Institute of Technology

Research output: Contribution to journalArticlepeer-review

Abstract

4-Chloronitrobenzene (4-CNB) is one of the highly toxic contaminants that may lead to acute, chronic or persistent physiological toxicity to ecology and environment. Conventional methods for removing 4-CNB from aquatic environment may be problematic due to inefficiency, high cost and low sustainability. This study develops a pilot-scale bioelectrochemical system (BES, effective volume of 18L) and examines its performance of bioelectrochemical transformation of 4-CNB to 4-chloroaniline (4-CAN) under continuous operation. The results demonstrate that the initial 4-CNB concentration in the influent and hydraulic retention time (HRT) has a significant impact on 4-CNB reduction and 4-CAN formation. Compared with the conventional anaerobic process in the absence of external power supplied, the 4-CNB conversion efficiency can be enhanced with power supplied due to microbial-mediated electron transfer at the negative cathode potential. At a voltage of 0.4V and HRT of 48h, the 4-CNB reduction and 4-CAN formation efficiency reached 99% and 94.1%, respectively. Based on a small external voltage applied, the pilot-scale BES is effective in the conversion of 4-CNB to 4-CAN, an intermediate that is of less toxicity and higher bioavailability for subsequent treatment. This study provides a new strategy and methods for eliminating 4-CNB, making wastewater treatment more economical and more sustainable.

Original languageEnglish
Pages (from-to)1847-1854
Number of pages8
JournalEnvironmental Technology (United Kingdom)
Volume36
Issue number14
DOIs
StatePublished - 18 Jul 2015

Keywords

  • 4-chloronitrobenzene
  • electrochemical transformation
  • pilot-scale bioelectrochemical system

Fingerprint

Dive into the research topics of 'Pilot-scale bioelectrochemical system for efficient conversion of 4-chloronitrobenzene'. Together they form a unique fingerprint.

Cite this