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Carbofuran degradation by the application of MW-assisted H2O2 process

机译:MW辅助H 2 O 2 工艺降解呋喃丹

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Carbofuran removal performance of a microwave (MW)-assisted H2O2 system under different MW-power levels (300-900 W) was investigated. Batch experiments were conducted at 100 mg/L carbofuran concentration using a modified-MW reactor with 2450 MHz of fixed frequency. As a precursor, control experiments were carried out with H2O2 alone, MW alone and conventional heating (CH). A maximum carbofuran removal of 14 % was observed in both H2O2 alone and CH systems. On the other hand, only 2 % removal was observed in the MW alone system irrespective of the operation-mode, i.e. continuous or pulsed. The combination of MW and H2O2 produced 100 % carbofuran removal in all the MW-assisted experiments. The MW-assisted system operated under continuous-mode and at 750 W has showed rapid carbofuran degradation, i.e. 30 sec, with the highest first-order removal rate constant of 25.82/min. However, 97 % carbon oxygen demand (COD) removal was observed in the same system only after 30 min. On the other hand, 100 % carbofuran removal and 49 % COD removal were observed in the pulsed-mode MW-assisted H2O2 system after 10 and 30 min, respectively. Carbofuran mineralization in the system was evidenced by the formation of ammonium and nitrate, and carbofuran intermediates.
机译:研究了微波(MW)辅助的H 2 O 2 系统在不同MW功率水平(300-900 W)下对呋喃丹的去除性能。使用改良的MW反应器(固定频率为2450 MHz)以100 mg / L的呋喃丹浓度进行批量实验。作为前体,仅使用H 2 O 2 ,单独使用MW和常规加热(CH)进行了对照实验。在单独的H 2 O 2 和CH系统中,最大的呋喃呋喃去除率为14%。另一方面,在单独的MW系统中,仅观察到2%的去除,而不管操作模式,即连续或脉冲模式。 MW和H 2 O 2 的组合在所有MW辅助实验中均产生100%的呋喃丹去除。在连续模式和750 W下运行的MW辅助系统显示出迅速的呋喃呋喃降解,即30秒,一级去除率常数最高,为25.82 / min。但是,仅在30分钟后,在同一系统中才观察到97%的碳氧需求(COD)去除。另一方面,在脉冲模式MW辅助的H 2 O 2 系统中,分别在10分钟和30分钟后观察到100%的呋喃丹和49%的COD去除。 。铵盐和硝酸盐以及呋喃中间体的形成证明了系统中呋喃丹的矿化作用。

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