Faculty of Chemical Engineering, Kunming University of Science and Technology, Kunming, Yunnan 650500, China.
Faculty of Chemical Engineering, Kunming University of Science and Technology, Kunming, Yunnan 650500, China.
J Hazard Mater. 2021 Aug 15;416:126046. doi: 10.1016/j.jhazmat.2021.126046. Epub 2021 May 7.
Efficient removal of antibiotics from aqueous solution is of fundamental importance due to the increasingly severe antibiotic-related pollution. Herein, a high-performance Fe-ZIF-8-500 adsorbent was synthesized by Fe-doping strategy and subsequent activation with high-temperature. In order to evaluate the feasibility of Fe-ZIF-8-500 as an adsorbent for tetracycline (TC) removal, the adsorption properties of Fe-ZIF-8-500 were systematically explored. The results showed that the Fe-ZIF-8-500 exhibited ultrahigh adsorption capacity for TC with a record-high value of 867 mg g. Additionally, the adsorption kinetics and isotherms for TC onto the Fe-ZIF-8-500 can be well-fitted by the pseudo-second-order kinetics model and the Freundlich model, respectively. The ultrahigh adsorption capacity of Fe-ZIF-8-500 can be explained by the synergistic effect of multi-affinities, i.e., surface complexation, electrostatic attraction, π-π interaction and hydrogen bonding. After being used for four cycles the adsorption capacity of Fe-ZIF-8-500 remains a high level, demonstrating its outstanding reusability. The ultrahigh adsorption capacity, excellent reusability, satisfactory water stability and easy-preparation nature of Fe-ZIF-8-500 highlight its bright prospect for removing tetracycline pollutant from wastewater.
由于日益严重的抗生素相关污染,从水溶液中高效去除抗生素至关重要。本文通过铁掺杂策略和随后的高温活化合成了一种高性能的 Fe-ZIF-8-500 吸附剂。为了评估 Fe-ZIF-8-500 作为四环素 (TC) 去除吸附剂的可行性,系统地研究了 Fe-ZIF-8-500 的吸附性能。结果表明,Fe-ZIF-8-500 对 TC 具有超高的吸附容量,达到了创纪录的 867mg/g。此外,TC 吸附到 Fe-ZIF-8-500 的吸附动力学和等温线可以分别通过准二级动力学模型和 Freundlich 模型很好地拟合。Fe-ZIF-8-500 的超高吸附容量可以通过多种亲和力的协同作用来解释,即表面络合、静电吸引、π-π 相互作用和氢键。在使用四次后,Fe-ZIF-8-500 的吸附容量仍保持在较高水平,表现出出色的可重复使用性。Fe-ZIF-8-500 超高的吸附容量、优异的可重复使用性、令人满意的水稳定性和易于制备的特性,突显了其在去除废水中四环素污染物方面的广阔前景。