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Optimization of electro-Fenton process for the removal of non-biodegradable organic compounds in instant coffee production wastewater using composite Fe3O4-Mn3O4 nanoparticle catalyst

机译:用复合Fe3O4-MN3O4纳米粒子催化剂在速溶于咖啡生产废水中除去非生物降解有机化合物的电气芬顿工艺优化

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摘要

Wastewater from instant coffee production has high organic content. The non-biodegradable compounds of the organic portion, such as caffeine, trigonelline, and diterpene, are difficult to be removed by conventional processes. Electro-Fenton (EF) with particulate catalyst has been found to be a promising method to treat such compounds. Comparing with homogenous Fenton process, EF uses fewer chemicals and generated less sludge. The catalysts can be easily recovered by magnets if they have magnetic properties. In this study, 30-60 nm composite Fe3O4-Mn3O4 nanoparticles were prepared and used as EF catalyst for the treatment of non-biodegradable organic matters in biologically pre-treated wastewater from instant coffee production. These particles were found to contain Fe3O4, gamma-Fe2O3, and Mn3O4, which were effective metal sources for Fenton reactions. The correlations between three important operating parameters (i.e., pH, catalyst concentration, and current density) and the treatment efficiency of the non-biodegradable compounds were elucidated by response surface method (Box-Behnken design) via Modde software. An optimal condition was found at a pH of 3.8, a Fe3O4-Mn3O4 concentration of 0.5 g/L, and a current density of 19.6 mA/cm(2). After 60 min of treatment at this condition, the highest removal efficiencies of chemical oxygen demand (COD), color, and total organic carbon in the wastewater were 88%, 98%, and 93%, respectively. With this degree of treatment, the COD and color in treated wastewater met the highest treatment level of Vietnam National Technical Regulation on Industrial Wastewater (QCVN 40:2011, column A, 75 mgO(2)/L for COD, and 50 Pt-Co for color).
机译:速溶咖啡生产的废水具有高有机含量。有机部分的非可生物降解的化合物,例如咖啡因,三合植物和二萜,常规方法难以除去。已发现具有颗粒催化剂的电芬顿(EF)是治疗这些化合物的有希望的方法。与均质FENTON工艺相比,EF使用较少的化学品并产生较少的污泥。如果它们具有磁性,则可以通过磁体容易地回收催化剂。在该研究中,制备30-60nm复合Fe3O4-Mn3O4纳米颗粒并用作EF催化剂,用于处理来自速溶咖啡生产的生物学预先处理的废水中的非生物降解有机物。发现这些颗粒含有Fe3O4,γ-Fe 2 O 3和Mn3O4,其是用于芬顿反应的有效金属来源。通过Modde软件(Box-Behnken Design)通过Modde软件阐明了三种重要操作参数(即pH,催化剂浓度和电流密度)和非可生物降解化合物的处理效率之间的相关性。在pH为3.8的pH值下发现最佳条件,Fe 3 O 4 -MN3O4浓度为0.5g / L,电流密度为19.6mA / cm(2)。在此条件下治疗60分钟后,废水中的化学需氧量(COD),颜色和总有机碳的最高去除效率分别为88%,98%和93%。随着这种治疗程度,治疗废水中的COD和颜色达到了越南国家技术规制的最高治疗水平(QCVN 40:2011,A,75 MgO(2)/ L用于COD的QCV,以及50 PT-CO用于颜色)。

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