长江流域资源与环境 >> 2022, Vol. 31 >> Issue (1): 148-155.doi: 10.11870/cjlyzyyhj202201014

• 生态环境 • 上一篇    下一篇

太湖流域养殖池塘的氮磷污染负荷估算

徐责茗1,2,3,崔  桢2,3,高俊峰2,3,李国柱1*,黄佳聪2,3*   

  1. (1. 吉林师范大学旅游与地理科学学院,吉林 四平 136000; 2. 中国科学院南京地理与湖泊研究所,江苏  南京 210008; 3.中国科学院流域地理学重点实验室,江苏 南京 210008)
  • 出版日期:2022-01-20 发布日期:2022-02-09

Quantifying Nitrogen and Phosphorus Loading from Aquaculture Ponds in Lake Taihu Basin

XU Ze-ming1,2,3, CUI Zhen2,3, GAO Jun-feng2,3, LI Guo-zhu1, HUANG Jia-cong2,3   

  1. (1. College of Tourism and Geographic Science, Jilin Normal University, Siping 136000, China; 2. Nanjing Institute of Geography and Limnology,Chinese Academy of Sciences,Nanjing 210008,China; 3.Key Laboratory of Watershed Geographic Sciences,Chinese Academy of Sciences,Nanjing 210008,China)
  • Online:2022-01-20 Published:2022-02-09

摘要: 太湖流域平原区河网密集、渔业发达,其中池塘养殖是渔业的主要模式,而养殖池塘的污水排放是其周边河湖富营养化与蓝藻水华的重要原因之一,因此,精细化估算流域养殖池塘的氮磷污染负荷,对区域氮磷污染来源的精准解析与科学防控具有重要意义。以太湖流域养殖池塘为研究对象,通过解译2019年的高分辨率遥感影像,获取养殖池塘的空间分布,同时发展了基于归一化植被指数区分养殖池塘类型的方法,估算了两种类型养殖池塘(鱼塘和虾蟹塘)的面积与分布;采用氮磷污染排放系数法,估算了养殖池塘的氮磷污染负荷,分析其空间差异。研究结果表明:2019年,太湖流域养殖池塘总面积为 1 308.6 km2,其中鱼塘872.6 km2,虾蟹塘436.0 km2,养殖池塘氮排放量为 11 013.5 t,磷排放量为 1 626.8 t。养殖池塘污染负荷空间分布和养殖池塘规模分布比较一致,太湖南部的湖州市辖区、吴江市和德清县是养殖池塘氮磷污染较为严重地区,其氮污染负荷分别为 1 214.8、1 004.4 和792.2 t,磷污染负荷分别为179.7、146.3和117.7 t,主要原因是当地池塘养殖业发达,并且氮磷污染负荷系数大于虾蟹塘的鱼塘比例较高。

Abstract: In the plain area of Lake Taihu Basin, the river network is dense and the fishery is developed, among which pond culture is the main mode of fishery, and the sewage discharge of the aquaculture pond is one of the important reasons for eutrophication and cyanobacteria bloom in the surrounding rivers and lakes. Therefore, the precise estimation of the nitrogen and phosphorus pollution load of the aquaculture pond in Lake Taihu Basin is of great significance for the accurate analysis of the source of regional nitrogen and phosphorus pollution and scientific prevention and control. Taking aquaculture ponds in The Lake Taihu Basin as the research object, the spatial information of aquaculture ponds was obtained by interpreting highresolution remote sensing images in 2019, and a method for distinguishing the types of aquaculture ponds based on normalized difference vegetation index was explored and developed to verify and analyze the area and distribution of two types of aquaculture ponds (fish ponds and shrimp crab ponds)Nitrogen and phosphorus pollution load coefficient method was used to estimate the nitrogen and phosphorus pollution load of aquaculture ponds and analyze the spatial difference.The results show that: the total area of aquaculture ponds in Lake Taihu Basin in 2019 is 1 308.6 km2, including fish ponds of 872.6 km2, shrimp and crab ponds of 436 km2. The emission of nitrogen pollution and phosphorus pollution in Lake Taihu Basin are 11 013.5 and 1 626.8 t respectively. The results showed that the spatial distribution of pollution load of pond culture was consistent with that of pond culture scale. Huzhou, Wujiang and Deqing in the south of Lake Taihu were the most severe polluted areas of nitrogen and phosphorus pollution in Lake Taihu Basin. The nitrogen pollution load was 1 214.8, 1 004.4 and 792.2 t, respectively, and the phosphorus pollution load was 179.7, 146.3 and 117.7 t, respectively. The main reason is that the local pond aquaculture industry is developed, too much feed input, and the proportion of fish ponds with higher nitrogen and phosphorus pollution load coefficient than shrimp and crab ponds is higher.

No related articles found!
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
[1] 袁博, 郭梦京, 周孝德, 郑兴. 气候变化及人类活动对河流溶解性有机质(DOM)影响的研究进展[J]. 长江流域资源与环境, 2018, 27(07): 1440 .
[2] 张路路, 郑新奇, 蔡玉梅.  基于投影寻踪模型的湖南省土地多功能时空演变分析[J]. 长江流域资源与环境, 2018, 27(08): 1754 .
[3] 廖炜, 李璐, 杨伟, 吴宜进. 城镇化过程中的流域面源污染时空变化[J]. 长江流域资源与环境, 2018, 27(08): 1776 .
[4] 奚世军 安裕伦 李阳兵 蔡沛伶 李瑞 龙立美 陈啟英. 基于景观格局的喀斯特山区流域生态风险评估 ——以贵州省乌江流域为例[J]. 长江流域资源与环境, , (): 0 .
[5] 张亚飞 廖和平 李义龙. 基于反规划与FLUS模型的城市增长边界划定研究——以重庆市渝北区为例[J]. 长江流域资源与环境, , (): 0 .
[6] 王先甲 秦颖 杨文俊 袁睢秋. 湖库泥沙资源化多目标优化配置研究综述[J]. 长江流域资源与环境, , (): 0 .
[7] 王凯, 王玉杰, 王彬, 张守红, 王云琦, 王晨沣. 黄壤坡面土壤分离速率研究[J]. 长江流域资源与环境, 2018, 27(09): 2114 -2121 .
[8] 秦立 吴起鑫. 赤水河流域土地利用结构对氮素输出的影响[J]. 长江流域资源与环境, , (): 0 .
[9] 刘晋高, 诸葛亦斯, 刘德富, 张佳磊, 马骏, 余晓.  

防控三峡水库支流水华的生态约束型优化调度 [J]. 长江流域资源与环境, 2018, 27(10): 2379 .

[10] 袁凯华, 张 苗, 甘臣林, 陈银蓉, 朱庆莹, 杨慧琳. 基于碳减排目标的省域碳生态补偿研究[J]. 长江流域资源与环境, 2019, 28(01): 21 -29 .