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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >The role of operating parameters and irradiation on the electrochemical degradation of tetracycline on boron doped diamond anode in environmentally relevant matrices
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The role of operating parameters and irradiation on the electrochemical degradation of tetracycline on boron doped diamond anode in environmentally relevant matrices

机译:操作参数和辐射对环境相关矩阵中硼掺杂金刚石阳极对四环素电化学降解的作用

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摘要

BACKGROUND Nowadays, due to the inappropriate use of antibiotics, significant quantities have been detected in environmental samples. Therefore there is a need for a technology to eliminate the accumulation of pharmaceuticals in receiving water bodies. In recent years electrochemical oxidation showed superior efficiency for the purification of water from pharmaceuticals. RESULTS CONCLUSIONS boron doped diamond (BDD) showed better efficiency than platinum electrode and stainless steel for the degradation of 500 mu g L-1 tetracycline (TC) with 0.1 mol L-1 center dot Na2SO4. The presence of 200 mg L-1 bicarbonates decreased the apparent kinetic constant from 0.328 to 0212 min(-1). Instead, the addition of 200 mg L-1 NaCl increased the kinetic constant by almost four times, while the presence of 10 mg L-1 of humic acid decreased the kinetic constant by 18%. The process was favored in real environmental matrices like bottled water and wastewater in comparison with ultrapure water. The use of BDD as both anode and cathode enhanced the efficiency by almost 20%. The presence of UVA or solar radiation increased the decomposition of tetracycline by 14%. Changes in toxicity to Vibrio fisheri bacteria during treatment of TC in the secondary effluent are mainly attributed to the formation of intermediates of the water matrix itself and does not follow the TC removal. Electrochemical oxidation was favored for removal of TC in real water matrices due to the presence of chlorides. The use of BDD as both anode and cathode with simultaneous solar irradiation is a promising technology for water remediation from TC. (c) 2018 Society of Chemical Industry
机译:背景技术如今,由于抗生素的使用不当,在环境样品中检测到大量数量。因此,需要一种技术来消除药物在接收水体中的积累。近年来,电化学氧化显示出纯化药物的水纯化效率。结果结论硼掺杂金刚石(BDD)显示出比铂电极和不锈钢的效率更好,用于用0.1mol L-1中心点Na 2 SO 4降解500μmg1-1四环素(Tc)。 200mg L-1碳酸氢盐的存在从0.328至0212 min(-1)降低表观动力学常数。相反,加入200mg L-1 NaCl几乎四次,而10mg L-1的存在率降低了18%的动力酸降低。与瓶装水和废水相比,该过程有利于真实的环境基质,与超纯水相比。使用BDD作为阳极和阴极的使用将效率提高了近20%。 UVA或太阳辐射的存在增加了四环素的分解14%。在二次出水中治疗TC期间毒性毒性的毒性变化主要归因于水基质本身的中间体,并且不遵循TC去除。由于氯化物存在,电化学氧化是有利于除去真实水基质中的Tc。使用BDD作为阳极和阴极,同时太阳照射是一种有前途的措施从TC的水处理。 (c)2018化学工业协会

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