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Reductive degradation of chloramphenicol in bioelectrochemical system
生物电化学系统还原降解氯霉素

Keywords: biocatalyzed electrolysis systems,biocathode,chloramphenicol,ohm resistance,low temperature
生物电化学系统,生物阴极,氯霉素,欧姆内阻,低温

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Abstract:

In this study, we investigated reductive degradation of nitroaromatic antibiotic chloramphenicol to non-effective antibacterial amine product in fed-batch biocatalyzed electrolysis systems (BES) (applied voltage was 0.5 V) under low temperature (12±2 °C). The ohm resistance of the whole BES reactor increased when the phosphate buffer solution concentrations decreased. Efficiencies (ErCAP) of chloramphenicol reduction with biocathode (PBS, 25 mmol/L) in presence of glucose was (86.3±1.69)% within 24 h and sludge fermentation liquor was (74.1±1.44)% within 24 h. While the ErCAP of abiotic cathode under the same condition was only (57.9±1.94)% within 24 h. It suggested that biocathode could be a promising technology for reductive biodegradation of nitroaromatic antibiotics-containing wastewater in areas with relatively low annual mean temperature.

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