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Removal of paracetamol on biomass-derived activated carbon: Modeling the fixed bed breakthrough curves using batch adsorption experiments

机译:去除生物量衍生的活性炭上对乙酰氨基酚:使用分批吸附实验模拟固定床穿透曲线

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摘要

The remediation of paracetamol (PA), an emerging contaminant frequently found in wastewater treatment plants, has been studied in the low concentration range (0.3–10 mg L−1) using as adsorbent a biomass-derived activated carbon. PA uptake of up to 100 mg g−1 over the activated carbon has been obtained, with the adsorption isotherms being fairly explained by the Langmuir model. The application of Reichemberg and the Vermeulen equations to the batch kinetics experiments allowed estimating homogeneous and heterogeneous diffusion coefficients, reflecting the dependence of diffusion with the surface coverage of PA. A series of rapid small-scale column tests were carried out to determine the breakthrough curves under different operational conditions (temperature, PA concentration, flow rate, bed length). The suitability of the proposed adsorbent for the remediation of PA in fixed-bed adsorption was proven by the high PA adsorption capacity along with the fast adsorption and the reduced height of the mass transfer zone of the columns. We have demonstrated that, thanks to the use of the heterogeneous diffusion coefficient, the proposed mathematical approach for the numerical solution to the mass balance of the column provides a reliable description of the breakthrough profiles and the design parameters, being much more accurate than models based in the classical linear driving force.
机译:在低浓度范围(0.3-10 mg L-1)中,使用生物质衍生的活性炭作为吸附剂,研究了对乙酰氨基酚(PA)的修复,该对乙酰氨基酚是在废水处理厂中经常发现的新兴污染物。通过活性炭,PA吸收量高达100 mg g-1,Langmuir模型可以很好地解释吸附等温线。通过将Reichemberg和Vermeulen方程应用于批处理动力学实验,可以估算均相和非均相扩散系数,反映出扩散与PA表面覆盖率的相关性。进行了一系列快速的小型色谱柱测试,以确定在不同操作条件下(温度,PA浓度,流速,床长)的穿透曲线。通过高的PA吸附容量以及快速的吸附和降低的色谱柱传质区高度,证明了所提出的吸附剂适用于固定床吸附中的PA修复。我们已经证明,由于使用了非均质扩散系数,所提出的用于色谱柱质量平衡数值解的数学方法提供了对突破曲线和设计参数的可靠描述,比基于模型的模型更准确在经典的线性驱动力中。

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