Efficacy of multicomponent adsorption of fluoroquinolone based antibiotics onto the wasted municipal sewage sludge: Experiments and modeling

Rajib Kumar Das, Ujjaini Sarkar, Rohit Bhagat Kalwar
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Abstract

Ciprofloxacin and ofloxacin are two important fluoroquinolone-based antibiotics that are heavily prescribed and consumed in Asian continent. Useful microbial consortium meant for biodegradation of sewage sludge get depleted in presence of these antibiotics. Additionally, the treated sewage wastewater, used in agricultural fields, municipal parks for gardening etc. still contain a large quantity of antibiotics. The specific objective of this piece of research work is to assess a specific scheme of in-situ batch equilibrium adsorption of these antibiotics using activated sludge at the specific sewage treatment works. Two models namely Modified competitive Langmuir-like model and LeVan-Vermeulen model are used for modelling the adsorption of ciprofloxacin and ofloxacin using activated sludge. Parameters from each of these models are evaluated using MATLAB and the fsolve MATLAB Library. The sludge and the post treated sludge after adsorption are characterized physically and chemically. A satisfactory fit for the Langmuir adsorption isotherm for both components in single component study implies the applicability of the multicomponent adsorption isotherm models in this study. Kinetics study, pore, and film diffusion models are also utilized. The goodness of the fits helps to conclude that film diffusion is the rate-controlling step for the adsorption of both ciprofloxacin and ofloxacin. Results demonstrate specific chemical interaction between ciprofloxacin with the negatively charged surface of the sewage sludge and surface complexation of ofloxacin with surface functional groups of the sewage sludge. Electrostatic interaction and surface coordination also show a vital role in the mechanism of adsorption of ciprofloxacin and ofloxacin onto the sludge.
多组分氟喹诺酮类抗生素在城市污水污泥上的吸附效果:实验与模拟
环丙沙星和氧氟沙星是两种重要的氟喹诺酮类抗生素,在亚洲大陆被大量开具和使用。在这些抗生素的存在下,用于污水污泥生物降解的有益微生物群被耗尽。此外,用于农田、市政公园园艺等的污水处理废水中仍含有大量抗生素。本研究工作的具体目的是评估在特定污水处理厂使用活性污泥原位批量平衡吸附这些抗生素的具体方案。采用改进的竞争性langmuir -类模型和LeVan-Vermeulen模型对活性污泥吸附环丙沙星和氧氟沙星进行了模拟。使用MATLAB和fsolve MATLAB库对每个模型的参数进行评估。对吸附后的污泥和后处理污泥进行物理和化学表征。单组分吸附等温线与Langmuir吸附等温线的拟合结果令人满意,说明多组分吸附等温线模型在本研究中的适用性。动力学研究,孔隙和膜扩散模型也被使用。良好的拟合有助于得出膜扩散是环丙沙星和氧氟沙星吸附的速率控制步骤的结论。结果表明,环丙沙星与污泥带负电荷的表面存在特殊的化学相互作用,氧氟沙星与污泥表面官能团存在表面络合作用。静电相互作用和表面配位在污泥吸附环丙沙星和氧氟沙星的机理中也起着重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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