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Degradation of recalcitrant organic contaminants by solar photocatalysis

机译:太阳光催化降解难分解的有机污染物

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Biological pre-treated landfill leachates of Djebel Chakir contains some macromolecular organic substances that are resistant to biological degradation. The aim of the present work is to assess the feasibility of removing refractory organic pollutants in biological pre-treated landfill leachate by solar photocatalyse process. Leachate pollutant contents are studied to assess their contribution to leachate pollution and their treatability by solar photocatalyse process. Phenol is chosen as model of pollutants, to evaluate its removal and the efficiency of the photocatalytic system. The experiments were carried out in suspended photocatalytic reactor, using TiO2 Degussa P25, under sunlight illumination (UV-A: 15–31 W/cm2). Under optimum operational conditions, applied to single reactant (phenol), the system presents a TOC removal of 90% (the degradation follows a first-order kinetic). Based on the TOC removal, the results shows that the degradation of biological pre-treated leachate follows a zero-order kinetic. After 5 h of sunlight exposure, 74% of COT is removed. The TOC removal is the best without any correction of the pH and at the TiO2 concentration of 2.5 g/L. The photocatalytic degradation of organic contaminants as well as the formation and disappearance of the by-products were followed by GC/MS. The solar photocatalysis processes induce several modifications of the matrix leading to more biodegradable forms: all the remaining and new compounds generated after the biological pre-treatment of leachate are degraded and other types of organics appear, mainly carboxylic acid, aliphatic hydrocarbons and phtalic acids.
机译:Djebel Chakir经过生物预处理的垃圾填埋场渗滤液中含有一些对生物降解具有抵抗力的大分子有机物质。本工作的目的是评估通过太阳能光催化工艺去除生物预处理垃圾渗滤液中难降解有机污染物的可行性。研究了渗滤液中污染物的含量,以评估其对渗滤液污染的贡献及其通过太阳光催化过程的可处理性。选择苯酚作为污染物的模型,以评估其去除和光催化系统的效率。实验是在TiO2 Degussa P25悬浮光催化反应器中,在阳光照射下(UV-A:15-31 W / cm2)进行的。在最佳操作条件下,应用于单一反应物(苯酚)时,系统的TOC去除率为90%(降解遵循一级动力学)。基于TOC去除,结果表明生物预处理渗滤液的降解遵循零级动力学。在阳光照射5小时后,去除了74%的COT。在不对pH进行任何校正且TiO2浓度为2.5 g / L的情况下,TOC去除效果最好。 GC / MS跟踪有机污染物的光催化降解以及副产物的形成和消失。太阳光催化过程对基质进行了多种修饰,从而导致了更多可生物降解的形式:对渗滤液进行生物预处理后产生的所有剩余化合物和新化合物均被降解,并出现了其他类型的有机物,主要是羧酸,脂肪烃和邻苯二甲酸。

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