Experimental study and mathematical modeling of the electrochemical degradation of dyeing wastewaters in presence of?chloride ion with dimensional stable anodes (DSA) of expanded?meshes in a FM01-LC reactor
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Experimental study and mathematical modeling of the electrochemical degradation of dyeing wastewaters in presence of?chloride ion with dimensional stable anodes (DSA) of expanded?meshes in a FM01-LC reactor

机译:在膨胀型α致铬离子存在下染色废水的电化学降解的实验研究和数学建模膨胀α(DSA)在FM01-LC反应器中的网眼啮合

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AbstractIn the present work an experimental study and mathematical modeling of the indirect electrochemical oxidation of dyeing wastewaters in presence of chloride ion in a FM01-LC reactor in undivided mode coupled to Continuous Stirring Tank (CST) was carried out. As anode five titanium expanded meshes coated with IrO2-SnO2doped with Sb2O5and five stainless steel expanded meshes as cathode were used. The reactor operated as a batch recirculation system under galvanostatic conditions, the electrolyses were carried out at two current densities, 132 and 200 A?m?2, with 1.0?mM of indigo carmine dye and 0.05?M of NaCl; four liquid flow rates: 0.9, 1.8, 2.7, and 3.6?L?min?1were used. The transient mathematical model for FM01-LC reactor takes into account the liquid flow pattern through axial dispersion coefficient (Dax), the electro-oxidation (pseudo first order kinetic) of chloride ions in the anode side (CCl?), the electrochemical reduction of chlorine oxidizing species (Cox) under mass transport control (mass transfer coefficient) in cathode side; while in the CST the chemical oxidation reactions between active chlorine?species and organic matter through homogeneous second order kinetics were considered, which were evaluated through consumption of the chemical oxygen demand (CCOD) and the color decay (Ccol). It was observed that the proposed mathematical model describe adequately the experimental evolution of different chemical species (CCl?, CCOD,and Ccol). Also the constant values determined under conditions?here worked:kCl?=(3.2·103to4.9·103)s?1;kox=3.5·105to4.6·105s?1;kCOD=1.16·105to4.
机译:<![CDATA [ 抽象 在本作中的实验研究和数学建模在氯离子存在下染色废水的间接电化学氧化在未分割的模式下,在连接到连续搅拌罐(CST)的FM01-LC反应器中进行。由于阳极五钛膨胀网涂有IRO 2 -SNO 2 掺杂有SB 2 O 5 和5个不锈钢膨胀网格作为阴极。在电流静止条件下作为批量再循环系统操作的反应器,电解于电流密度,132和200aΔmΔ2,带1.0?靛蓝胭脂红染料和0.05?m的NaCl;四个液体流量:0.9,1.8,2.7和3.6?l?min 1 。 FM01-LC反应器的瞬态数学模型通过轴分散系数考虑了液体流动模式( D AX ),电氧化在阳极侧的氯离子(C的(伪一级动力学) <?CE:SUP LOC = “POST”> < / Ce:sup>),氯氧化物种的电化学还原(c ox )下;在CST中,通过消耗化学需氧量(C COD )和颜色衰减(C COL )。据观察,所提出的数学模型充分描述了不同化学物质的实验演化(C CL ,c cod,和c col )。此外,在条件下确定的常量值?此处工作: k cl = 3.2 · 10 3 < / mml:mtext> 4.9 mml:mmn>101a 3 < MML:MSUP> S MO>? 1 ; k ox = 3.5 · 10 5 4.6 · 10 5 < MML:MSUP> S MO>? 1 ; k cod = 1.16 · < MML:msup> 10 5 4。

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