文章摘要
吴正华, 钱益武, 刘小勇, 李 梅, 曹 毅, 孔美玲.基于水质三维荧光技术的城市河流水质污染分析Journal of Water Resources and Water Engineering[J].,2020,31(6):41-46
基于水质三维荧光技术的城市河流水质污染分析
Analysis of urban river water pollution based on three-dimensional fluorescence spectrometry of water quality
  
DOI:10.11705/j.issn.1672-643X.2020.06.07
中文关键词: 三维荧光技术; 水质污染分析; 荧光强度; 特征峰  城市河流
英文关键词: three-dimensional fluorescence technology  water quality pollution analysis  fluorescence intensity  characteristic peak  urban river
基金项目:国家自然科学基金青年科学基金项目(51701105)
Author NameAffiliation
WU Zhenghua, QIAN Yiwu, LIU Xiaoyong, LI Mei, CAO Yi, KONG Meiling (清华大学合肥公共安全研究院 安徽 合肥 230601) 
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中文摘要:
      城市河流影响着城市的发展与未来,对河流的水质监测已成为重要的环保工作。为了了解城市河流的水质变化情况及荧光技术在河流水体监测中的应用效果,采用三维荧光光谱技术(3DEEM),对某一城市河流进行实验分析。结果表明:实验河流水体共有3个典型荧光特征峰,即类腐殖质荧光峰A1λexem=275 nm/360 nm)、类蛋白质荧光峰A2λexem=230 nm/350 nm)和类蛋白质荧光峰A3λexem=275 nm/310 nm);河流从上游至下游方向,水体所含蛋白质类荧光物质逐渐增加,推断沿河有少量生活污水汇入。此外,河流水质荧光峰强度与氨氮间表现为极显著线性关系,与COD及总磷无明显相关性。
英文摘要:
      Urban rivers affect the development and future of the city. The water quality monitoring of rivers has become an important link in environmental protection. In order to understand the water quality changes of urban rivers and the application effect of fluorescence technology in river water monitoring, three-dimensional excitation-emission matrix spectra (3DEEM) technology is used to conduct experimental analysis on a certain urban river. The results show that there are three typical fluorescent characteristic peaks in the river water. The peak A1 (λexem =275 nm/360 nm) is UV-type humic-like, the peak A2 (λexem=230 nm/350 nm) is tryptophan-like, and the peak A3 (λexem =275 nm/310 nm) is tyrosine-like. Besides, from upstream to downstream of the river, the protein-like fluorescent substances in the water body gradually increase, which is inferred that a small amount of domestic sewage flows in along the river. Furthermore, the fluorescence peak intensity of river water is significantly and linearly correlated with ammonia nitrogen, but has no significant correlation with COD and total phosphorus.
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