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Sulfamethoxazole removal in membrane-photocatalytic reactor system - experimentation and modelling

机译:膜光催化反应器系统中磺胺甲恶唑的去除-实验与建模

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In this study, the efficacy of membrane-photocatalytic reactor (MPR) in sulfamethoxazole (SMX) removal was explored at a fixed initial SMX concentration, i.e. 100 mg/L. A supported catalyst, i.e. TiO2 on granular activated carbon (GAC-TiO2), was used for MPR experiments. The SMX removal efficiency of the MPR was investigated under a range of hydraulic retention time (i.e. HRT from 51 to 152.5 min) and TiO2 catalyst dosage (55-50 mg/L). A maximum SMX removal efficiency of 83.6% was observed under 220 mg/L catalyst dosage and 80 min HRT. The increase in catalyst dosage from 55 to 550 mg/L has increased the transmembrane pressure of the reactor from 9.8 to 22.2 kPa. A multiple non-linear regression model was developed based on the experimental data and its significance was analyzed using two-way ANOVA. Based on the model, the optimal HRT and catalyst dosage for complete SMX removal (100%) were found out. The comparison of photocatalytic degradation experiments with sorption experiments conducted earlier revealed that SMX removal in the MPR was mainly by photocatalytic degradation and not by adsorption onto GAC-TiO2 catalyst. However, the performance of MPR in removing other emerging pollutants from real-time wastewaters could be explored before its field-scale application.
机译:在这项研究中,研究了在固定的初始SMX浓度(即100 mg / L)下使用膜光催化反应器(MPR)去除磺胺甲恶唑(SMX)的功效。负载型催化剂,即颗粒状活性炭上的TiO2(GAC-TiO2),用于MPR实验。在一定的水力停留时间(即HRT为51至152.5分钟)和TiO2催化剂用量(55-50 mg / L)范围内研究了MPR的SMX去除效率。在220 mg / L的催化剂用量和80分钟的HRT下,观察到最大的SMX去除效率为83.6%。催化剂剂量从55mg / L增加到550mg / L已使反应器的跨膜压力从9.8kPa增加到22.2kPa。根据实验数据建立了多元非线性回归模型,并使用双向方差分析对其意义进行了分析。基于该模型,找到了完全去除SMX的最佳HRT和催化剂用量(100%)。将光催化降解实验与之前进行的吸附实验进行比较后发现,MPR中SMX的去除主要是通过光催化降解,而不是通过吸附在GAC-TiO2催化剂上。但是,在现场应用之前,可以探索MPR在从实时废水中去除其他新兴污染物的性能。

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