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面向前体的纳米氧化铝设计用于高效去除抗生素。

Precursor-oriented design of nano-alumina for efficient removal of antibiotics.

机构信息

Research Center for Analytical Sciences, College of Chemistry, Nankai University, Tianjin Key Laboratory of Biosensing and Molecular Recognition, Tianjin 300071, China.

School of Food Engineering, Tianjin Tianshi College, Tianjin 301700, China.

出版信息

Sci Total Environ. 2024 Jan 20;909:168490. doi: 10.1016/j.scitotenv.2023.168490. Epub 2023 Nov 11.

Abstract

Rapid and efficient removal of environmental antibiotics is vital to curb bacterial resistance. Through rational precursors-oriented design, we attain the best AlO absorbent by 500 °C calcination of ammonium aluminium carbonate hydroxide (AACH) precursor from NHHCO route (AACH-NHHCO-500) for fast and efficient removal of tetracycline (TC) and other antibiotics from environmental waters including high-salinity wastewater. AACH-NHHCO-500 (0.25 g·L) can remove (69.92 ± 1.78)% of aqueous TC (0.025 g·L) within 5 min and (97.62 ± 2.75)% within 2 h, and the adsorption capacity is 444.4 mg·g, which is the highest q of TC for the 2 h-adsorptions among numerous adsorbents. AACH-NHHCO-500 has fine tolerance to the coexisting substances, and can be easily regenerated and reused, and has no harm even discarded. The relations among the synthetic methods, the structural features, and the adsorption functions of AlO are disclosed through a systematic comparison of the commercial AlO and different AlO nanomaterials attained from three precursors produced by five different routes. The reasons behind the exceptional adsorption performance are discussed throughout. Our findings would facilitate the development of excellent adsorbents for removal of other pollutants.

摘要

快速高效去除环境抗生素对于遏制细菌耐药性至关重要。通过合理的前体导向设计,我们通过 NHHCO 路线(AACH-NHHCO-500)从铵铝碳酸羟氨(AACH)前体制备出 500°C 煅烧的最佳 AlO 吸附剂,用于快速高效去除环境水中的四环素(TC)和其他抗生素,包括高盐废水。AACH-NHHCO-500(0.25 g·L)可在 5 分钟内去除(69.92±1.78)%的水相 TC(0.025 g·L),2 小时内去除(97.62±2.75)%,吸附容量为 444.4 mg·g,这是众多吸附剂中 2 小时吸附 TC 的最高 q 值。AACH-NHHCO-500 对共存物质具有良好的耐受性,可轻松再生和重复使用,即使丢弃也没有危害。通过对通过五种不同路线制备的三种前体获得的商业 AlO 和不同 AlO 纳米材料进行系统比较,揭示了 AlO 的合成方法、结构特征和吸附功能之间的关系。讨论了异常吸附性能背后的原因。我们的研究结果将有助于开发用于去除其他污染物的优秀吸附剂。

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Precursor-oriented design of nano-alumina for efficient removal of antibiotics.面向前体的纳米氧化铝设计用于高效去除抗生素。
Sci Total Environ. 2024 Jan 20;909:168490. doi: 10.1016/j.scitotenv.2023.168490. Epub 2023 Nov 11.
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Adsorptive removal of antibiotics from water over natural and modified adsorbents.天然和改性吸附剂对水中抗生素的吸附去除。
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