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葡萄糖衍生的含碳材料促进高锰酸盐高效降解苯酚和对硝基苯酚:羟基自由基的形成和含碳材料的多种作用。

Permanganate activation by glucose-derived carbonaceous materials for highly efficient degradation of phenol and p-nitrophenol: Formation of hydroxyl radicals and multiple roles of carbonaceous materials.

机构信息

School of Environment, Tsinghua University, Beijing, China.

Institute of Environmental Engineering, National Sun Yat-Sen University Kaohsiung, Taiwan.

出版信息

Chemosphere. 2023 Sep;334:138859. doi: 10.1016/j.chemosphere.2023.138859. Epub 2023 May 9.

Abstract

Owing to its inertness toward refractory organic pollutants and the release of Mn, the use of permanganate was limited in soil and groundwater remediation. The present study proposed an improvement strategy based on glucose-derived carbonaceous materials, which enhanced the potential of permanganate degrading organic pollutants. The glucose-derived carbonaceous material with 1000 °C charring temperature was named C1000, which was exploited in activating KMnO for the elimination of refractory organic contaminants. The addition of C1000 in the KMnO system triggered the degradation of refractory p-nitrophenol and quicken phenol degradation. Unlike the detection of Mn(III) species in a solo KMnO system, the presence of C1000 facilitated the formation of OH in the KMnO system, which was confirmed by the use of quenchers such as methanol, benzoic acid, tertiary butanol, and carbonate. Additionally, the glucose-derived carbonaceous material played multiple roles in improving the performance of permanganate, including the enrichment of organic pollutants, donation of electrons to permanganate, and acting as an electron shuttle to facilitate the oxidation of organic pollutants by permanganate. The study's novel findings have the potential to expand the use of permanganate in the remediation of organic pollutants.

摘要

由于其对难处理的有机污染物的惰性和锰的释放,高锰酸盐在土壤和地下水修复中的应用受到限制。本研究提出了一种基于葡萄糖衍生的碳质材料的改进策略,该策略增强了高锰酸盐降解有机污染物的潜力。在 1000°C 碳化温度下得到的葡萄糖衍生碳质材料命名为 C1000,它被用于激活 KMnO4 以去除难处理的有机污染物。在 KMnO4 体系中添加 C1000 引发了难处理的对硝基苯酚的降解,并加速了苯酚的降解。与单独的 KMnO4 体系中检测到的 Mn(III)物种不同,C1000 的存在促进了 KMnO4 体系中 OH 的形成,这可以通过使用甲醇、苯甲酸、叔丁醇和碳酸盐等猝灭剂来证实。此外,葡萄糖衍生的碳质材料在改善高锰酸盐性能方面发挥了多种作用,包括有机污染物的富集、向高锰酸盐提供电子以及作为电子穿梭体促进高锰酸盐对有机污染物的氧化。该研究的新发现有可能扩大高锰酸盐在有机污染物修复中的应用。

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