首页> 美国卫生研究院文献>Nanomaterials >Fitting Biochars and Activated Carbons from Residues of the Olive Oil Industry as Supports of Fe- Catalysts for the Heterogeneous Fenton-Like Treatment of Simulated Olive Mill Wastewater
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Fitting Biochars and Activated Carbons from Residues of the Olive Oil Industry as Supports of Fe- Catalysts for the Heterogeneous Fenton-Like Treatment of Simulated Olive Mill Wastewater

机译:拟合橄榄油工业残渣中的生物炭和活性炭作为铁催化剂的支持用于类似Fenton的模拟橄榄磨坊废水的多相处理

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摘要

A series of biochars and activated carbons (ACs) was prepared combining carbonization and physical or chemical activation of cheap and abundant residues of the olive oil industry. These materials were used as Fe-support to develop low-cost catalysts for the heterogeneous Fenton-like oxidation of simulated olive mill wastewater (OMW), the highly pollutant effluent generated by this agroindustry. Commercial ACs were also used as reference. All catalysts prepared were extensively characterized and results related with their performances in the catalytic wet peroxide oxidation (CWPO). Results showed a linear relationship of the textural properties of the catalysts with the adsorptive and catalytic performance, as well as the preferential adsorption and degradation of some phenolic compounds (caffeic and gallic acids) by specific interactions with the catalysts’ surface. Despite the best performance of catalysts developed using commercial supports, those prepared from agro-industrial residues present some advantages, including a smaller catalyst deactivation by iron leaching. CWPO results show that catalysts from physically activated olive stones are the most promising materials, reaching total organic carbon and toxicity reductions of 35% and 60%, respectively, as well an efficient use of H O , comparable with those obtained using commercial supports. This approach showed that the optimized treatment of this type of residues will allow their integration in the circular economic process of the olive oil production.
机译:结合碳化和橄榄油行业廉价而丰富的残渣的物理或化学活化,制备了一系列生物炭和活性炭(AC)。这些材料被用作铁载体,以开发低成本催化剂,用于模拟橄榄磨坊废水(OMW)的非均质类Fenton氧化,该废水是由该农用工业产生的高度污染的废水。商业AC也用作参考。制备的所有催化剂均经过广泛表征,其结果与它们在催化湿式过氧化物氧化(CWPO)中的性能有关。结果表明,催化剂的结构性质与吸附和催化性能以及某些酚类化合物(咖啡酸和没食子酸)通过与催化剂表面的特定相互作用而优先吸附和降解之间存在线性关系。尽管使用商业载体开发的催化剂具有最佳性能,但由农用工业残留物制备的催化剂仍具有一些优势,包括较小的因铁浸出而引起的催化剂失活。 CWPO结果表明,来自物理活化橄榄石的催化剂是最有前途的材料,与使用商业载体获得的催化剂相比,有机碳总量和毒性降低分别达到35%和60%,以及H O的有效利用。该方法表明,对此类残留物的优化处理将使其整合到橄榄油生产的循环经济过程中。

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