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利用废源表面再工程化硅砂进行环保修复,从受污染的水中去除四环素抗生素。

Eco-friendly remediation of tetracycline antibiotic from polluted water using waste-derived surface re-engineered silica sand.

机构信息

Babylon Water Directorate, Babylon, 51001, Iraq.

Faculty of Engineering and Technology, School of Civil Engineering and Built Environment, Liverpool John Moores University, Liverpool, L3 3AF, UK.

出版信息

Sci Rep. 2023 Aug 12;13(1):13148. doi: 10.1038/s41598-023-37503-4.

Abstract

A new green reactive adsorbent (calcium ferric oxide silica sand (CFO-SS)) made from wastepaper sludge ash and ferric ions was synthesised and shown to remove tetracycline antibiotics (TC) from contaminated water effectively. The synthesised sand was dried at 95 °C, and a series of batch and fixed bed experiments were performed to determine the optimum operating conditions. Results showed that the adsorption capacity of the CFO-SS increases with the concentration gradient between the solid and liquid phases. 0.3 g of the new adsorbent was proven sufficient to remove more than 90% of the TC at a pollutant dose of 50 mg/L in 50 mL of simulated groundwater with an agitation speed of 200 rpm for 3 h. The adsorption isotherm followed the Langmuir isotherm model, with a loading capacity of 21.96 mg/g at pH 7, while the Pseudo second-order model best described the absorption kinetics. The adsorption mechanisms proposed included electrostatic interaction, intraparticle diffusion, hydrogen bonding, and cation-π interactions. Characterisation investigations revealed that the newly precipitated oxides on silica sand play an essential role in TC adsorption support. In fixed-bed experiments, it was discovered that reducing the flow rate and inflow concentration of TC and increasing the sorbent mass significantly extended the lifetime of the produced sorbent in the packed column. The measured breakthrough curves were best fit with the Adams-Bohart and the Clark models, as they provided the highest square root number (R) values. Finally, considering the efficacy of CFO-SS in TC adsorption performance, it can be noted that the novel synthesised reactive material is an efficient and environmentally friendly material for TC removal, and it presents a potential solution to resolving the challenge of TC-rich groundwater.

摘要

一种由废纸污泥灰和铁离子合成的新型绿色反应吸附剂(铁酸钙硅砂(CFO-SS))被合成,并被证明能有效地从受污染的水中去除四环素抗生素(TC)。合成的砂在 95°C 下干燥,并进行了一系列批处理和固定床实验,以确定最佳操作条件。结果表明,CFO-SS 的吸附能力随固液相之间的浓度梯度而增加。在 200rpm 搅拌速度下,用 50mg/L 的污染物剂量在 50mL 模拟地下水中处理 3 小时,证明 0.3g 的新型吸附剂足以去除超过 90%的 TC。吸附等温线遵循朗缪尔等温线模型,在 pH7 时的负载容量为 21.96mg/g,而伪二阶模型最能描述吸收动力学。提出的吸附机制包括静电相互作用、内扩散、氢键和阳离子-π 相互作用。特征研究表明,硅砂上新沉淀的氧化物在 TC 吸附支持中起着重要作用。在固定床实验中,发现降低 TC 的流速和流入浓度以及增加吸附剂质量可以显著延长填充柱中产生的吸附剂的寿命。测量的穿透曲线与 Adams-Bohart 和 Clark 模型拟合得最好,因为它们提供了最高的平方根数(R)值。最后,考虑到 CFO-SS 在 TC 吸附性能方面的功效,可以注意到,这种新型合成反应材料是一种有效且环保的 TC 去除材料,它为解决富含 TC 的地下水问题提供了一种潜在的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/083f/10423248/02f1aaa97383/41598_2023_37503_Fig1_HTML.jpg

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