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Degradation of atrazine by catalytic ozonation in the presence of iron scraps: performance, transformation pathway, and acute toxicity

机译:铁屑存在下催化臭氧氧化降解on去津的性能,转化途径和急性毒性

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Degradation of atrazine by catalytic ozonation in the presence of iron scraps (ZVI/O-3) was carried out. The key operational parameters (i.e., initial pH, ZVI dosage, and ozone dosage) were optimized by the batch experiments, respectively. This ZVI/O-3 system exhibited much higher degradation efficiency of atrazine than the single ozonation, ZVI, and traditional ZVI/O-2 systems. The result shows that the pseudo-first-order constant (0.0927 min(-1)) and TOC removal rate (86.6%) obtained by the ZVI/O-3 process were much higher than those of the three control experiments. In addition, X-ray diffraction (XRD) analysis indicates that slight of gamma-FeOOH and Fe2O3 were formed on the surface of iron scrap after ZVI/O-3 treatment. These corrosion products exhibit high catalytic ability for ozone decomposition, which could generate more hydroxyl radical (HO center dot) to degrade atrazine. Six transformation intermediates were identified by liquid chromatography-mass spectrometry (LC-MS) analysis in ZVI/O-3 system, and the degradation pathway of atrazine was proposed. Toxicity tests based on the inhibition of the luminescence emitted by Photobacterium phosphoreum and Vibrio fischeri indicate the detoxification of atrazine by ZVI/O-3 system. Finally, reused experiments indicate the approving recyclability of iron scraps. Consequently, the ZVI/O-3 system could be as an effective and promising technology for pesticide wastewater treatment.
机译:在铁屑(ZVI / O-3)存在下,通过催化臭氧化降解了去津。通过批处理实验分别优化了关键的操作参数(即初始pH,ZVI剂量和臭氧剂量)。该ZVI / O-3系统显示的r去津降解效率比单臭氧,ZVI和传统ZVI / O-2系统高。结果表明,通过ZVI / O-3工艺获得的拟一阶常数(0.0927 min(-1))和TOC去除率(86.6%)远高于三个对照实验。另外,X射线衍射(XRD)分析表明,在ZVI / O-3处理后,在废铁的表面上形成了少量的γ-FeOOH和Fe2O3。这些腐蚀产物显示出高的臭氧分解催化能力,可产生更多的羟基(HO中心点)降解阿特拉津。在ZVI / O-3体系中通过液相色谱-质谱法(LC-MS)分析鉴定了6种转化中间体,提出了at去津的降解途径。基于对光致发光细菌和费氏弧菌的发光抑制作用的毒性试验表明,ZVI / O-3系统可将at去津解毒。最后,重复使用的实验表明了铁屑的可回收性。因此,ZVI / O-3系统可作为一种有效且有前途的农药废水处理技术。

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