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Pollutant Removal from Synthetic Aqueous Solutions with a Combined Electrochemical Oxidation and Adsorption Method

机译:电化学氧化与吸附相结合的方法去除合成水溶液中的污染物

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摘要

Eliminating organic and inorganic pollutants from water is a worldwide concern. In this study, we applied electrochemical oxidation (EO) and adsorption techniques to eliminate ammonia, phenols, and Mo(VI) from aqueous solutions. We analyzed the first stage (EO) with response surface methodology, where the reaction time (1–3 h), initial contaminant concentration (10–50 mg/L), and pH (3–6) were the three independent factors. Sodium sulfate (as an electrolyte) and Ti/RuO2–IrO2 (as an electrode) were used in the EO system. Based on preliminary experiments, the current and voltage were set to 50 mA and 7 V, respectively. The optimum EO conditions included a reaction time, initial contaminant concentration, and pH of 2.4 h, 27.4 mg/L, and 4.9, respectively. The ammonia, phenols, and Mo elimination efficiencies were 79.4%, 48.0%, and 55.9%, respectively. After treating water under the optimum EO conditions, the solution was transferred to a granular composite adsorbent column containing bentonite, limestone, zeolite, cockleshell, activated carbon, and Portland cement (i.e., BAZLSC), which improved the elimination efficiencies of ammonia, phenols, and molybdenum(VI) to 99.9%. The energy consumption value (8.0 kWh kg−1 N) was detected at the optimum operating conditions.
机译:从水中消除有机和无机污染物已成为世界关注的问题。在这项研究中,我们应用了电化学氧化(EO)和吸附技术从水溶液中消除氨,酚和Mo(VI)。我们使用响应面方法分析了第一阶段(EO),其中反应时间(1-3 h),初始污染物浓度(10-50 mg / L)和pH(3-6)是三个独立的因素。 EO系统使用硫酸钠(作为电解质)和Ti / RuO2-IrO2(作为电极)。根据初步实验,电流和电压分别设置为50 mA和7V。最佳的EO条件包括反应时间,初始污染物浓度和pH分别为2.4 h,27.4 mg / L和4.9。氨,苯酚和Mo的去除效率分别为79.4%,48.0%和55.9%。在最佳EO条件下对水进行处理后,将溶液转移到包含膨润土,石灰石,沸石,海扇壳,活性炭和波特兰水泥(即BAZLSC)的颗粒状复合吸附柱中,从而提高了氨,酚,和钼(VI)至99.9%。在最佳运行条件下检测到能耗值(8.0 kWh kg -1 N)。

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