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Biomass waste-derived porous carbon efficient for simultaneous removal of chlortetracycline and hexavalent chromium

机译:生物质废物衍生的多孔碳效率用于同时去除氯化碳酰胺和六价铬

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摘要

The simultaneous removal of mixed containments of antibiotics and heavy metals is still a big challenge in wastewater treatment. Herein, we report the successful synthesis of N-doped porous carbon (abbreviated as NC) from straw waste through the Maillard reaction to activate sp3-sp2 conversion efficient for the simultaneous removal of chlortetracycline (CTC) and hexavalent chromium (Cr(VI)). In 200 min, 96.9% of Cr(VI) was reduced into Cr(III) and 93.1% of CTC was oxidatively degraded. Reactive substances (e.g., h+, e−1, ⋅OH, and ⋅O2-) were verified for the photocatalytic reactions. Besides, the possible degradation intermediates of CTC were analyzed with ultra performance liquid chromatography-mass spectrometry (UPLC-MS/MS), and the mechanism of photocatalytic degradation of CTC was then proposed. The synthesized bifunctional NC materials could also be applied for the similar system; this will open the door for promising practical applications.
机译:同时去除混合抑制抑菌和重金属仍然是废水处理中的一个重要挑战。在此,我们将通过美丽的反应从秸秆废物中成功地合成从秸秆废物中的秸秆废物,以激活SP3-SP2转化效率,以同时除去氯化碳酰胺(CTC)和六价铬(Cr(VI)) 。在200分钟内,将96.9%的Cr(VI)降低至Cr(III),93.1%的CTC氧化降解。验证了反应性物质(例如,H +,E-1,⋅OH和⋅O2-)用于光催化反应。此外,用超液相色谱 - 质谱(UPLC-MS / MS)分析CTC的可能降解中间体,然后提出了CTC的光催化降解的机理。合成的双功能NC材料也可以应用于类似的系统;这将打开门,以便有希望的实际应用。

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