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分光光度法对白洋淀各形态氮磷分布特征及源解析的研究
引用本文:姚珊,张璇凌,蔡雨欣,何连琼,李佳潼,王小龙,刘颖. 分光光度法对白洋淀各形态氮磷分布特征及源解析的研究[J]. 光谱学与光谱分析, 2022, 42(4): 1306-1312. DOI: 10.3964/j.issn.1000-0593(2022)04-1306-07
作者姓名:姚珊  张璇凌  蔡雨欣  何连琼  李佳潼  王小龙  刘颖
作者单位:1. 中央民族大学生命与环境科学学院,北京 100081
2. 中央民族大学北京市食品环境与健康工程技术研究中心,北京 100081
基金项目:中央民族大学大学生创新训练计划项目;中央民族大学校级交叉学科研究专项;中央民族大学校级青年教师科研能力提升计划项目;国家自然科学基金
摘    要:氮磷是引起湖泊富营养化的关键限制因子,对于水体和底泥中各形态氮磷的分布特征和源解析的研究能有效地揭示水体富营养化的过程与机制并分析其污染来源.白洋淀作为雄安新区最重要的水源之一,其水体富营养化状况严重,氮磷污染不容乐观.对于各形态氮磷含量分布特征及源解析的研究有助于全面分析该地区氮磷污染状况及污染来源,而目前同时研究底...

关 键 词:分光光度法  水体  底泥  形态氮磷  主成分分析  APCS-MLR模型
收稿时间:2021-04-19

Study on Distribution Characteristics of Different Nitrogen and Phosphorus Fractions by Spectrophotometry in Baiyangdian Lake and Source Analysis
YAO Shan,ZHANG Xuan-ling,CAI Yu-xin,HE Lian-qiong,LI Jia-tong,WANG Xiao-long,LIU Ying. Study on Distribution Characteristics of Different Nitrogen and Phosphorus Fractions by Spectrophotometry in Baiyangdian Lake and Source Analysis[J]. Spectroscopy and Spectral Analysis, 2022, 42(4): 1306-1312. DOI: 10.3964/j.issn.1000-0593(2022)04-1306-07
Authors:YAO Shan  ZHANG Xuan-ling  CAI Yu-xin  HE Lian-qiong  LI Jia-tong  WANG Xiao-long  LIU Ying
Affiliation:1. College of Life and Environmental Sciences, Minzu University of China, Beijing 100081, China2. Beijing Engineering Research Center of Food Environment and Public Health, Minzu University of China, Beijing 100081, China
Abstract:Nitrogen and phosphorus are the key limiting factors of lake eutrophication. The study on the distribution characteristics and source analysis of nitrogen and phosphorus fractions in water and sediment can effectively reveal the process and mechanism of water eutrophication and analyze the pollution sources. As one of the most important water sources in the Xiongan New Area, the eutrophication of Baiyangdian Lake is serious, and the pollution of nitrogen and phosphorus is not optimistic. The study on the distribution characteristics and source analysis of nitrogen and phosphorus fractions is helpful to the analysis of nitrogen and phosphorus pollution in this area. However, there are few studies on the distribution of nitrogen and phosphorus fractions in sediment and water simultaneously, and the quantitative analysis of the contribution of nitrogen and phosphorus fractions by various pollution sources using models. In this study, the distribution characteristics of nitrogen and phosphorus in water and sediments of Baiyangdian Lake were studied by spectrophotometry. The contribution of different sources to nitrogen and phosphorus fractions was analyzed based on absolute principle components score combined with multivariate linear regression (APCS-MLR) model. The results showed that the content of total nitrogen (TN) (1.41~4.64 mg·L-1) in the water of Baiyangdian Lake exceeded the environmental quality standards and were all heavy eutrophication; the total phosphorus (TP) content (0.043~0.273 mg·L-1) in the water was also relatively seriously polluted, 95.8% of the sampling point were water quality of Class Ⅳ and above. The total proportion of ammonia nitrogen (NH+4-N) and nitrate nitrogen (NO-3-N) that could be directly absorbed and utilized by algae and plants reached 54.9%. In addition, the dissolved inorganic phosphorus (DIP) and dissolved organic phosphorus (DOP), which contributed a great deal to the eutrophication of water accounted for 52.8%. The distribution regularity of nitrogen and phosphorus total amount and fractions showed that the eutrophication of Baiyangdian Lake was not optimistic, the pollution of Baiyangdian scenic area and margin area was relatively serious, and the proportion of nitrogen and phosphorus fractions which had great influence on water eutrophication was large. The ratio of bioavailable nitrogen (the sum of EN and HCl-N) to TN was 17.9%~66.4%, and the proportion of bioavailable phosphorus (BAP) in TP was 8.50%~28.0%. These results indicated a great risk of nitrogen and phosphorus release in the sediments of Baiyangdian Lake. The results of the principal component analysis showed that nitrogen and phosphorus pollution in Baiyangdian scenic area was more serious than that in other areas. The results of the APCS-MLR model showed that the contribution of domestic source pollution to nitrogen and phosphorus fractions were large, especially in sediments, agricultural pollution, animal and plant residues decomposition and aquaculture also contributed significantly to the content of different nitrogen and phosphorus fractions.
Keywords:Spectrophotometry   Water   Sediments   Nitrogen and phosphorus fractions   Principal component analysis   APCS-MLR model  
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