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首页> 外文期刊>Electrochimica Acta >Electrooxidation of cardanol on mixed metal oxide (RuO2-TiO2 and IrO2-RuO2-TiO(2)le) coated titanium anodes: insights into recalcitrant phenolic compounds
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Electrooxidation of cardanol on mixed metal oxide (RuO2-TiO2 and IrO2-RuO2-TiO(2)le) coated titanium anodes: insights into recalcitrant phenolic compounds

机译:腰果酚在混合金属氧化物(RuO2-TiO2和IrO2-RuO2-TiO(2)le)涂层钛阳极上的电氧化:难降解酚类化合物的见解

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In Brazil, the cashew-nut industry has an important role in national economy, but the lack of suitable treatment of the residues generated by this activity represents a serious risk to the environment and biodiversity. Cardanol (CDN) is a highly toxic and recalcitrant phenolic compound, and it is the major component from this activity. This work evaluated, for first time, the performance of mixed metal oxide DSA1-type anodes (Ti/TiO2-RuO2 and Ti/TiO2-RuO2-IrO2) to develop a suitable electrochemical treatment for the cashew-nut industry residues, using CDN as model molecule. Results clearly showed that for both Ti/TiO2-RuO2 and Ti/TiO2-RuO2-IrO2 active anodes, an increase on the current densities (j) enhanced the percentage of total organic carbon (TOC) removal as a function of the electrolysis time (t). The complete TOC removal was efficiently achieved with Ti/TiO2-RuO2 (j >= 40mAcm(-2) and t >= 5.0 h) at 25 degrees C, although Ti/TiO2-RuO2-IrO2 ternary anode has also showed suitable performance for this purpose (j=60mAcm(-2) and t >= 4.0 h). UV-visible spectrophotometric data showed similarity between the CDN electrooxidation kinetics for both anodes, independently of the applied current density. Analyses performed by gas chromatography coupled to mass spectrometry confirmed the complete mineralization of CDN and its intermediates, mainly at higher densities. A positive effect in the degradation performances was achieved when an increase on the temperature was attained, at both anodes; despite the satisfactory results achieved at 25 degrees C, favor an affordable cost. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在巴西,腰果产业在国民经济中发挥着重要作用,但由于缺乏对这种活动产生的残留物的适当处理,对环境和生物多样性构成了严重威胁。腰果酚(CDN)是一种剧毒且难分解的酚类化合物,是该活性的主要成分。这项工作首次评估了混合金属氧化物DSA1型阳极(Ti / TiO2-RuO2和Ti / TiO2-RuO2-IrO2)的性能,从而开发了适用于腰果工业残留物的合适电化学处理,使用CDN作为模型分子。结果清楚地表明,对于Ti / TiO2-RuO2和Ti / TiO2-RuO2-IrO2活性阳极而言,电流密度(j)的增加都增加了总有机碳(TOC)去除百分比随电解时间的变化( t)。 Ti / TiO2-RuO2(j> = 40mAcm(-2)和t> = 5.0 h)在25摄氏度下可以有效地完全去除TOC,尽管Ti / TiO2-RuO2-IrO2三元阳极也显示出合适的性能为此目的(j = 60mAcm(-2)且t> = 4.0 h)。紫外可见分光光度数据显示两个阳极的CDN电氧化动力学之间的相似性,与施加的电流密度无关。通过气相色谱法和质谱法进行的分析证实了CDN及其中间体的完全矿化,主要是在较高密度下。当两个阳极的温度均升高时,对降解性能产生了积极的影响。尽管在25摄氏度下取得了令人满意的结果,但还是要负担得起的成本。 (C)2016 Elsevier Ltd.保留所有权利。

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