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首页> 外文期刊>Chemical engineering journal >Combined adsorption and catalytic ozonation for removal of sulfamethoxazole using Fe2O3/CeO2 loaded activated carbon
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Combined adsorption and catalytic ozonation for removal of sulfamethoxazole using Fe2O3/CeO2 loaded activated carbon

机译:负载Fe2O3 / CeO2的活性炭结合吸附和催化臭氧氧化去除磺胺甲基恶唑。

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Treatment of sulfamethoxazole (SMX) in terms of total organic carbon (TOC) by combined adsorption and catalytic ozonation by commercial activated carbon (PAC) and Fe2O3/CeO2 loaded activated carbon (MOPAC) has been investigated. Adsorbent dosage of 2 g/L, initial pH~6.5 and contact time = 50 min were found optimum for adsorption studies. Among various models, experimental data was well fitted by pseudo second-order model while Langmuir isotherm model represented equilibrium adsorption of SMX on both adsorbents. Adsorption of SMX was influenced by surface and intraparticle diffusion. The change in enthalpy (ΔH°) and entropy (ΔS°) for adsorption of SMX onto PAC and MOPAC were estimated as 105 kJ/mol and 396 J/mol K; and 21 kJ/mol and 131 J/mol K, respectively. The values of ΔG° decreased slightly as a function of temperature that showed spontaneity of adsorption process. According to ozonation study, the removal of SMX was higher in MOPAC/O3 combination compared to PAC/O3 combination for low pH values. However, the effect of catalyst type was minimal at pH values of 7.5. Similarly, mechanism study suggested the enhancement in removal of SMX in the presence of MOPAC/O3 combination. Ozone consumption experiments also confirmed better consumption of ozone gas in case of MOPAC/O3 combination.
机译:研究了通过商业活性炭(PAC)和负载Fe2O3 / CeO2的活性炭(MOPAC)的组合吸附和催化臭氧化处理总有机碳(TOC)中的磺胺甲恶唑(SMX)。吸附量为2 g / L,初始pH〜6.5,接触时间= 50分钟,是吸附研究的最佳选择。在各种模型中,实验数据通过伪二级模型很好地拟合,而Langmuir等温线模型表示SMX在两种吸附剂上的平衡吸附。 SMX的吸附受表面和颗粒内扩散的影响。 SMX吸附在PAC和MOPAC上的焓(ΔH°)和熵(ΔS°)的变化估计为105 kJ / mol和396 J / mol K;分别为21 kJ / mol和131 J / molK。 ΔG°的值随温度的变化而略有下降,这表明了吸附过程的自发性。根据臭氧化研究,对于低pH值,与PAC / O3组合相比,MOPAC / O3组合中SMX的去除率更高。但是,催化剂类型的影响在​​pH值为7.5时最小。同样,机理研究表明,在存在MOPAC / O3组合的情况下,去除SMX的能力增强。臭氧消耗实验还证实了在MOPAC / O3组合的情况下,臭氧气体的消耗更好。

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