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应用生态学报 ›› 2023, Vol. 34 ›› Issue (8): 2178-2184.doi: 10.13287/j.1001-9332.202308.014

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不同培肥模式下腐殖酸对二氯喹啉酸光降解的影响

沈蝶, 代静玉*, 季跃飞   

  1. 南京农业大学资源与环境科学学院, 南京 210095
  • 收稿日期:2023-03-30 接受日期:2023-07-01 出版日期:2023-08-15 发布日期:2024-02-15
  • 通讯作者: *E-mail: daijy@njau.edu.cn
  • 作者简介:沈 蝶, 女, 1997年生, 硕士研究生。主要从事环境污染控制与生物修复研究。E-mail: 1638629685@qq.com
  • 基金资助:
    江苏省重点研发项目(BE2019386)

Effect of humus on photodegradation of quinclorac under different fertilization modes

SHEN Die, DAI Jingyu*, JI Yuefei   

  1. College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095, China
  • Received:2023-03-30 Accepted:2023-07-01 Online:2023-08-15 Published:2024-02-15

摘要: 腐殖酸作为土壤中广泛存在的一种特异性有机质,其性质显著影响污染物在环境中的归趋。本研究探究了在水稻轮作系统中有机肥和有机-无机肥模式对土壤胡敏酸(HA)和富里酸(FA)含量、光谱性质、光化学活性以及光敏化二氯喹啉酸(QNC)效能的影响。结果表明: 稻菜轮作模式下,与单施化肥相比,施用有机肥土壤HA的腐殖化程度和分子量降低,但提高了其含氧官能团数量及其光致生成羟基自由基(HO·)、单线态氧自由基(1O2)和光敏化QNC的能力;而施用有机肥土壤FA的分子量增加,氧化还原官能团数量及其光致生成HO·、1O2和光敏化QNC的能力降低。在稻虾轮作模式下,与单施化肥相比,施用有机-无机肥提高了土壤HA的腐殖化程度、分子量、氧化还原官能团和含氧官能团数量及其光致生成1O2的能力,降低了其光致生成HO·和光敏化QNC的能力;而对于土壤FA,有机-无机肥模式则提高了其腐殖化程度和分子量,降低了其光致生成HO·、1O2和光敏化QNC的能力。综上,有机肥能显著提高腐殖酸的光化学活性和光敏化效能,并进一步促进环境中QNC的光降解。

关键词: 培肥模式, 腐殖酸, 二氯喹啉酸, 光降解

Abstract: Humus is a specific kind of organic matter widely distributed in soils. The characteristics of humus have significant impacts on the fate of pollutants in the environment. In this study, we examined the effects of fertilization modes from rice rotation systems on the contents, spectral properties, photochemical activity, and photosensitization of quinclorac (QNC) of humic (HA) and fulvic acids (FA). The results showed that under the rice-vegetable rotation system, organic fertilizer treatment decreased the humification degree and molecular weight of HA, but increased the number of oxygen-containing functional groups and the abilities of photoproducing hydroxyl radical (HO·), singlet oxygen (1O2) and photosensitizing QNC, compared with chemical fertilizer treatment. Under organic fertilization mode, the molecular weight of FA was increased, but the number of redox functional groups and the abilities of photoinducing HO· and 1O2 and photosensitizing QNC were decreased. Under rice-shrimp cultivation system, organic-inorganic fertilizer treatment increased the humification degree, molecular weight, number of redox functional groups and oxygen-containing functional groups, and 1O2 photogeneration of HA, but decreased the abilities of photoproducing HO· and photosensitizing QNC, as compared with chemical fertilizer treatment. The humification degree and molecular weight of FA under organic-inorganic fertilization mode were increased, while the abilities of photoproducing HO· and 1O2 and photosensitizing QNC were decreased. In conclusion, organic fertilization could enhance the photochemical activity and photosensitizing efficiency of humus, and further promote the photodegradation of QNC in the environment.

Key words: fertilization mode, humus, quinclorac, photodegradation.