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碳酸钠/生物炭负载海藻酸钠修饰纳米零价铁用于水溶液中四环素的完全吸附与降解。

Sodium carbonate/biochar-supported sodium alginate-modified nano zero-valent iron for complete adsorption and degradation of tetracycline in aqueous solution.

机构信息

Faculty of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming, 650500, China.

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin, 150090, China.

出版信息

Environ Sci Pollut Res Int. 2024 Jan;31(3):3641-3655. doi: 10.1007/s11356-023-31273-2. Epub 2023 Dec 12.

DOI:10.1007/s11356-023-31273-2
PMID:38085486
Abstract

The aggregation of nanoscale zero-valent iron (NZVI) is one of the biggest challenges for its application when treating contaminants in aquatic environment. We report a study on synthesis of sodium carbonate-modified biochar (BC-600) combined with sodium alginate (SA)-modified NZVI (SA/NZVI@BC-600) for the removal of tetracycline (TC). When the initial concentration of TC was 20 mg/L, 100% TC was removed by SA/NZVI@BC-600 at an initial pH of 7 under room temperature of 25 °C within 90 min. In addition, the reactivity of the SA/NZVI@BC-600 composites toward TC removal was not obviously declined after 4 cycles. SA/NZVI@BC-600 shows high reactivity, stability, and reusability. This excellent performance of SA/NZVI@BC-600 was related to the addition of SA and BC-600. The best performance of the SA/NZVI@BC-600 system was observed under weakly acidic and neutral conditions. Increasing the initial concentration and lowering the reaction temperature had a slight negative effect on the removal of TC by SA/NZVI@BC-600. In addition, the presence of CO and HCO had a significant negative effect on the degradation of TC. Meanwhile, ·OH and ·O played the leading role in TC degradation. This study not only reported a novel strategy of synthesizing an excellent BC modified NZVI based catalyst but also evaluated its promising application for antibiotic degradation in aqueous solution.

摘要

纳米零价铁(NZVI)的聚集是其在处理水环境污染污染物时应用的最大挑战之一。我们报告了一种合成碳酸钠修饰生物炭(BC-600)与海藻酸钠(SA)修饰 NZVI(SA/NZVI@BC-600)的研究,用于去除四环素(TC)。当 TC 的初始浓度为 20mg/L 时,在室温 25°C 下,初始 pH 值为 7 时,SA/NZVI@BC-600 在 90min 内可将 100%的 TC 去除。此外,SA/NZVI@BC-600 复合材料对 TC 去除的反应性在 4 次循环后没有明显下降。SA/NZVI@BC-600 表现出高反应性、稳定性和可重复使用性。SA/NZVI@BC-600 的这种优异性能与添加 SA 和 BC-600 有关。在弱酸性和中性条件下,SA/NZVI@BC-600 体系表现出最佳性能。增加初始浓度和降低反应温度对 SA/NZVI@BC-600 去除 TC 有轻微的负面影响。此外,CO 和 HCO 的存在对 TC 的降解有显著的负面影响。同时,·OH 和·O 在 TC 降解中起主导作用。本研究不仅报道了一种合成基于 BC 修饰 NZVI 的优良催化剂的新策略,还评价了其在水溶液中抗生素降解方面的潜在应用。

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