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生物炭衍生溶解有机物对对硝基苯酚的降解机制。

The mechanism of p-nitrophenol degradation by dissolved organic matter derived from biochar.

作者信息

Zhang Peng, Zhang Peng Jim, Feng Shihui, Li Hao, Li Jing, Du Wei, Duan Wenyan, Li Xiaohan, Zhang Chan, Li Hanxue, Song Shuangjie, Pan Bo

机构信息

Yunnan Provincial Key Laboratory of Soil Carbon Sequestration and Pollution Control, Faculty of Environmental Science & Engineering, Kunming University of Science & Technology, Kunming 650500, China.

Institute of Surface-Earth System Science, School of Earth System Science, Tianjin University, Tianjin 300072, China.

出版信息

Sci Total Environ. 2023 Apr 10;868:161693. doi: 10.1016/j.scitotenv.2023.161693. Epub 2023 Jan 19.

Abstract

Recently, p-nitrophenol (PNP), a common organic environmental pollutant, has been reported to be degraded by biochar. Although the degradation mechanism of PNP by biochar has been explored, the role of biochar-derived dissolved organic matter (BDOM) in PNP degradation remains unclear. Two BDOM samples were prepared in this study, and their PNP degradation performance was analyzed. BDOM5 (prepared at 500 °C) exhibited higher PNP degradation ratio than BDOM7 (prepared at 700 °C). The extent of PNP degradation per unit of BDOM5 and BDOM7 reached 9.54 and 4.19 mg/mg, respectively. Gas chromatography-mass spectrometry (GC-MS) analysis showed that both oxidative and reductive processes contributed to the PNP degradation by BDOM. Compared with BDOM7, the higher PNP removal of BDOM5 was due to the higher electron exchange capacity. Furthermore, hydroxyl radicals (OH) played a critical role in the oxidative degradation process of PNP by BDOM. This study sheds light on the phenomenon of PNP degradation by BDOM and these results may be useful for accurately assessing the environmental impact of biochar application.

摘要

最近,对硝基苯酚(PNP)作为一种常见的有机环境污染物,已有报道称其可被生物炭降解。尽管已经探究了生物炭对PNP的降解机制,但生物炭衍生的溶解有机物(BDOM)在PNP降解中的作用仍不明确。本研究制备了两个BDOM样品,并分析了它们对PNP的降解性能。BDOM5(在500℃下制备)表现出比BDOM7(在700℃下制备)更高的PNP降解率。每单位BDOM5和BDOM7的PNP降解程度分别达到9.54和4.19毫克/毫克。气相色谱-质谱联用(GC-MS)分析表明,氧化和还原过程均有助于BDOM对PNP的降解。与BDOM7相比,BDOM5对PNP的去除率更高是由于其具有更高的电子交换容量。此外,羟基自由基(OH)在BDOM对PNP的氧化降解过程中起关键作用。本研究揭示了BDOM对PNP的降解现象,这些结果可能有助于准确评估生物炭应用对环境的影响。

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