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In-situ identification of iron electrocoagulation speciation and application for natural organic matter (NOM) removal

机译:铁电凝形态的原位鉴定及其在天然有机物去除中的应用

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In this work, iron speciation in electrocoagulation (EC) was studied to determine the impact of operating parameters on natural organic matter (NOM) removal from natural water. Two electrochemical EC parameters, current density (ⅰ) and charge loading rate (CLR), were investigated. Variation of these parameters led to a near unity current efficiency (φ = 0.957 ± 0.03), at any combination of i in a range of 1-25 mA/cm~2 and CLR in a range of 12-300 C/L/min. Higher i and CLR led to a higher bulk pH and limited the amount of dissolved oxygen (DO) reduced at the cathode surface due to mass transfer limitations. A low i (1 mA/cm~2) and intermediate CLR (60 C/L/min) resulted in low bulk DO (<2.5 mg/L), where green rust (GR) was identified by in-situ Raman spectroscopy as the primary crystalline electrochemical product. Longer electrolysis times at higher i led to magnetite (Fe_3O_4) formation. Both higher (300 C/L/min) and lower (12 C/L/min) CLR values led to increased DO and/or increased pH, with lepidocrocite (γ-FeOOH) as the only crystalline species observed. The NOM removal of the three identified species was compared, with conditions leading to GR formation showing the greatest dissolved organic carbon removal, and highest removal of the low apparent molecular weight (<550 Da) chromophoric NOM fraction, determined by high performance size exclusion chromatography.
机译:在这项工作中,研究了电凝(EC)中的铁形态,以确定操作参数对从天然水中去除天然有机物(NOM)的影响。研究了两个电化学EC参数,电流密度(ⅰ)和电荷加载速率(CLR)。这些参数的变化导致i处于1-25 mA / cm〜2范围内的CLR和12-300 C / L / min范围内的CLR的任意组合导致接近单位电流效率(φ= 0.957±0.03) 。较高的i和CLR导致较高的整体pH值,并由于传质限制而限制了在阴极表面还原的溶解氧(DO)的量。低i(1 mA / cm〜2)和中等CLR(60 C / L / min)导致低散装DO(<2.5 mg / L),其中通过原位拉曼光谱法鉴定为绿锈(GR)为初级结晶电化学产物。较高的电解时间会导致形成磁铁矿(Fe_3O_4)。较高的(300 C / L / min)和较低的(12 C / L / min)CLR值均导致DO升高和/或pH值升高,其中仅铁水辉石(γ-FeOOH)是观察到的唯一结晶物种。比较了三种鉴定出的物种的NOM去除率,其中导致GR形成的条件显示出最大的溶解有机碳去除率,以及通过高效尺寸排阻色谱法测定的最低表观分子量(<550 Da)发色NOM分数的去除率最高。

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