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首页> 外文期刊>Chemical engineering journal >The biochar-supported iron-copper bimetallic composite activating oxygen system for simultaneous adsorption and degradation of tetracycline
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The biochar-supported iron-copper bimetallic composite activating oxygen system for simultaneous adsorption and degradation of tetracycline

机译:Biochar负载的铁铜双金属复合活化氧系统,用于同时吸附和降解四环素

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摘要

An economical biochar-supported iron-copper bimetallic composite (BC-FeCu) was successfully prepared and used to remove tetracycline (TC) from water. The experiment results expressed that BC-FeCu exhibited higher removal (92.50%) than FeCu (67.30%) under the same condition (pH 4.50, TC concentration 10 mg/L, and catalyst dose 0.05 g/L). Moreover, the TC removal by BC-FeCu constantly increased with the pH value from 4.50 to 9.03. Desorption experiments showed that adsorption and degradation accounted for 26.09% and 73.91% of the total TC removal by BC-FeCu, respectively. N-2 sparging experiments concluded that the degradation led by dissolved oxygen (DO) and the direct degradation by BC-FeCu accounted for 17.02% and 56.89% of the total TC removal, respectively. The existence of O2 center dot(-), center dot OH, O-1(2) was testified by electron spin resonance (ESR) analysis. And O-2 center dot(-) was proved to be the dominating active substance for TC degradation by BC-FeCu through quenching experiments. It could be that the electron transferred from -COOH, -OH and Cu/Cu+ in BC-FeCu to O-2 to form O-2 center dot(-), thus realizing the activation of O-2. Finally, three possible TC degradation ways were presented through the analysis of eight intermediates.
机译:成功制备了经济的生物炭支持的铁铜双金属复合材料(BC-FECU)并用于从水中除去四环素(TC)。实验结果表明,BC-FECU在相同条件下(pH 4.50,TC浓度10mg / L和催化剂剂量为0.05g / L),BC-FECU比FECU(67.30%)更高的去除(67.30%)。此外,BC-FECU的TC除去不断增加,pH值从4.50到9.03。解吸实验表明,BC-FECU分别占总TC除去的26.09%和73.91%。 N-2喷射实验得出结论,通过溶解氧(DO)引导的降解和BC-FECU的直接降解分别占总TC去除的17.02%和56.89%。通过电子自旋共振(ESR)分析证明O2中心点( - ),中心点OH,O-1(2)的存在。并证明了O-2中心点( - )是通过淬火实验通过BC-FECU进行TC降解的主导活性物质。可以是从-COOH,-OH和Cu / Cu +中转移的电子在BC-FECU至O-2中形成O-2中心点( - ),从而实现O-2的活化。最后,通过分析八种中间体,提出了三种可能的TC劣化方式。

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