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Metabolic activity and pathway study of aspirin biodegradation using a microbial electrochemical system supplied by an alternating current

机译:使用交流电化学系统提供的微生物电化学系统对阿司匹林生物降解的代谢活性和途径研究

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摘要

The main aim of this study is to investigate the biodegradation of highly concentrated aspirin as an emerging pollutant from aqueous solution using an alternating current microbial electrochemical system. A single-chamber Plexiglas cylindrical reactor equipped with stainless steel mesh electrodes (18 cm height x 16 cm diameter) was applied as the bioreactor in batch mode with an effective volume of 5 L, height of 20 cm, and the diameter about 20 cm by AMPL = 2 V-pp, OFST = 0.1 V, waveform = sinusoidal, frequency = 10 Hz, and pH = 7. The process parameters including initial concentration (100-400 mg L-1), chemical oxygen demand (COD), activity of enzymes, biokinetic and pathway studies at very low voltage and very low frequency alternating current were investigated. The specific biodegradation rate of aspirin was calculated based on Michaelis-Menten model. The complete aspirin removal efficiency and the maximum enzymatic activity were achieved at 250 mg aspirin, voltage of 2 V-pp and applied current = 3 mA during 6 h. The bioassay of aspirin concentrations in biofllm of the system using flow cytometry analysis resulted in the live and necrotic cells shares of 96.2%, and 0.44%, respectively. Moreover, the LC and GC-MS analysis showed low molecular weight acids such as oxalic and acetic acid at 6 h time under the optimal conditions using very low applied voltage and frequency. Obtaining low reaction time for degradation, high potential in biodegradation, oxidation and mineralization ability were the novelty of treatment system with high concentration aspirin in the study. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究的主要目的是研究使用交流微生物电化学系统从水溶液中获得高浓度阿司匹林的生物降解。单室有机玻璃圆柱形反应器配备不锈钢网电极(18cm高度x 16cm直径),以批量模式施加生物反应器,有效体积为5升,高度为20厘米,直径约20cm SAMP = 2 V-PP,OFST = 0.1V,波形=正弦,频率= 10Hz,pH = 7.过程参数包括初始浓度(100-400mg L-1),化学需氧量(COD),活动研究了在非常低电压和非常低频交流电流下非常低的酶,生物素和途径研究。基于Michaelis-Menten模型计算了阿司匹林的特异性生物降解率。在250mg Aspirin,2V-PP的电压下实现完全阿司匹林去除效率和最大酶活性,并在6小时内施加电流= 3mA。使用流式细胞术分析的系统Biofllm的阿司匹林浓度的生物测定产生96.2%和0.44%的活性和坏死的细胞。此外,LC和GC-MS分析在使用非常低施加的电压和频率的最佳条件下在6小时内显示出低分子量酸,例如草酸和乙酸。获得降解的低反应时间,生物降解,氧化和矿化能力的高潜力是该研究中具有高浓度阿司匹林的治疗系统的新颖性。 (c)2019 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2019年第10期|35-44|共10页
  • 作者单位

    Tarbiat Modares Univ Fac Med Sci Dept Environm Hlth Engn Tehran Iran;

    Tarbiat Modares Univ Fac Med Sci Dept Environm Hlth Engn Tehran Iran;

    Tarbiat Modares Univ Fac Biol Sci Dept Plant Biol Tehran Iran;

    Iran Univ Med Sci Sch Publ Hlth Dept Environm Hlth Engn Tehran Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aspirin; Emerging pollutants; Microbial electrochemical system; Pathway;

    机译:阿司匹林;新兴污染物;微生物电化学系统;途径;

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