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Electrochemical treatment of wastewater from almond industry using DSA-type anodes: Direct connection to a PV generator

机译:使用DSA型阳极对杏仁工业废水进行电化学处理:直接连接至PV发生器

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Food industries such as almond industry generate large volumes of wastewater in their processes and common techniques are not always efficient for treating this kind of effluents. In this work, the feasibility of a treatment for pollutants removal of a real industrial wastewater by electrochemical oxidations studied at laboratory scale and then scaled-up to pre-industrial scale. The first stage of the work was performed at laboratory scale, using a 63 cm2 cell, where different anodes (Ti/Pt, and DSA anodes (Ti/RuO2 and Ti/IrO2)) and the optimal experimental conditions (pH, current density, temperature and [Cl~-]) were studied and established. By using a DSA-Cl2 anode (Ti/RuO2), pH 9, j = 50 mA cm~(-2), [Cl~-] = 2000 mg L~(-1) and room temperature, chemical oxygen demand (COD) was removed up to 75% and results show that electrooxidation can remove organic pollutants. In the second stage the scaling-up of the process from laboratory to pre-industrial scale was performed, by using a 3300 cm~2 cell. The electrochemical reactor was finally powered by a photovoltaic generator directly connected, in order to operate by using a renewable energy and a COD elimination of 80% was achieved.
机译:食品工业(例如杏仁工业)在其过程中会产生大量废水,而通用技术并不总是有效地处理这类废水。在这项工作中,在实验室规模下研究通过电化学氧化处理去除实际工业废水中污染物的可行性,然后扩大到工业化前规模。工作的第一阶段是在实验室规模下使用63 cm2的电池进行的,其中使用不同的阳极(Ti / Pt和DSA阳极(Ti / RuO2和Ti / IrO2))和最佳实验条件(pH,电流密度,研究并确定温度和[Cl〜-])。通过使用DSA-Cl2阳极(Ti / RuO2),pH 9,j = 50 mA cm〜(-2),[Cl〜-] = 2000 mg L〜(-1)和室温,化学需氧量(COD )的去除率高达75%,结果表明电氧化可以去除有机污染物。在第二阶段,通过使用3300 cm〜2的电池,将过程从实验室规模扩大到工业化前规模。电化学反应器最终由直接连接的光伏发电机供电,以使用可再生能源运行,并实现了80%的COD消除。

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