首页> 外文期刊>Journal of Environmental Management >Absolute removal of ciprofloxacin and its degraded byproducts in aqueous solution using an efficient electrochemical oxidation process coupled with adsorption treatment technique
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Absolute removal of ciprofloxacin and its degraded byproducts in aqueous solution using an efficient electrochemical oxidation process coupled with adsorption treatment technique

机译:采用高效电化学氧化工艺和吸附处理技术,可绝对去除水溶液中的环丙沙星及其降解副产物

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摘要

Pharmaceutical-based contaminants are the major reasons for morbidity and mortality in aquatic animals and lead to several side effects and diseases in human community. Availability of proper, efficient, and cost-effective treatment technologies is still scarce. In this study, an efficient combined treatment technique (electrochemical oxidation and adsorption processes) was developed for the complete detoxification of most commonly used antibiotic, ciprofloxacin in aqueous solution. Electrochemical degradation of ciprofloxacin was performed using titanium-based tri-metal oxide mesh type anode, and the effective oxidative potential, electrolysis time, and pH for the degradation of ciprofloxacin were thoroughly evaluated. Sulfate, fluoride ions and toxic byproducts generated during electrochemical oxidation of ciprofloxacin were subsequently removed through a simple adsorption treatment using activated charcoal for 90 min. Further, the toxicity of the treated water was assessed with the nematode Caenorhabditis elegans species at different time intervals by observing the expressions of important stress-responsive genes viz., sod-3, hsp-16.2, ctl-1,2,3 and gst-4. The results exhibited that the combined process of electrochemical oxidation and adsorption treatment is simple, low-cost as well as effective to eliminate ciprofloxacin and its toxic byproducts in aqueous solution.
机译:药物污染物是水生动物发病和死亡的主要原因,并导致人类社区的多种副作用和疾病。适当,有效和具有成本效益的治疗技术的可用性仍然稀缺。在这项研究中,开发了一种有效的联合处理技术(电化学氧化和吸附过程),用于将最常用的抗生素环丙沙星在水溶液中完全排毒。使用钛基三金属氧化物网状阳极进行环丙沙星的电化学降解,并全面评估了环丙沙星降解的有效氧化电位,电解时间和pH。环丙沙星电化学氧化过程中产生的硫酸根,氟离子和有毒副产物随后通过使用活性炭进行简单吸附处理90分钟而去除。此外,通过观察重要应激反应基因即sod-3,hsp-16.2,ctl-1、2、3和gst的表达,在不同的时间间隔用线虫秀丽隐杆线虫物种评估了处理后水的毒性。 -4。结果表明,电化学氧化与吸附处理相结合的过程简单,成本低廉,并且能有效消除水溶液中的环丙沙星及其有毒副产物。

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