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基于中国湖泊生态区域的湖泊营养物控制策略

[Strategies of nutrients control in lakes based on ecoregions of lakes in China].

作者信息

Diao Xiao-jun, Xi Bei-dou, He Lian-sheng, Deng Xiang-zheng, Wu Feng, Wang Peng-teng

机构信息

Laboratory of Water Environmental Systems Engineering, Chinese Research of Academy of Environmental Sciences, Beijing 100012, China.

出版信息

Huan Jing Ke Xue. 2013 May;34(5):1687-94.

Abstract

In order to better reduce lake eutrophication, based on five ecoregions of lakes, the relationships of total nitrogen (TN), total phosphorus (TP), and TN/TP ratio with chlorophyll-a (Chl-a) in 100 lakes were discussed, furthermore, strategies of nutrient control were proposed respectively. Results showed that among the five ecoregions, the lake eutrophication level was the lowest in Dongbei ecoregion and the highest in Huabei ecoregion, but the eutrophication level in lakes of all the five ecoregions is increasing in recent years. Algal growth in lakes of Dongbei and Huabei ecoregions was limited by phosphorus, while it was simultaneously limited by nitogen and phosphorus in lakes of other three ecoregions (Zhongdongbu, Yungui and Mengxin). In lakes with TN/TP < 10, significant correlation between Chl-a concentration and TN was found in lakes of the five ecoregions except for Huabei ecoregion, and significant correlation between Chl-a concentration and TP was found in lakes of Dongbei and Mengxin ecoregions. In lakes with TN/TP > 17, significant correlation between Chl-a concentration and TP was found in lakes of the five ecoregions except for Mengxin ecoregion, and significant correlation between Chl-a concentration and TN was found in lakes of Zhongdongbu, Yungui and Mengxin ecoregions. In lakes with 10 < TN/TP < 17, no significant correlation between Chl-a and TN (or TP) was found in lakes of all ecoregions except for Zhongdongbu ecoregion where Chl-a concentration was significantly affected by TN. As for strategies of nutrient control and reduction in the five ecoregions, lakes of Huabei ecoregion should adopt TP control in priority, and in Dongbei ecoregion, TP and TN should be controlled simultaneously in lakes with TN/TP < 10, while other lakes should focus on TP control. Lakes in other three ecoregions (Zhongdongbu, Mengxin and Yungui) should control TP and TN simultaneously.

摘要

为了更好地减少湖泊富营养化,基于湖泊的五个生态区域,探讨了100个湖泊中总氮(TN)、总磷(TP)以及TN/TP比值与叶绿素a(Chl-a)之间的关系,并分别提出了营养控制策略。结果表明,在五个生态区域中,东北生态区域的湖泊富营养化水平最低,华北生态区域的湖泊富营养化水平最高,但近年来所有五个生态区域湖泊的富营养化水平都在上升。东北和华北生态区域湖泊中的藻类生长受磷限制,而其他三个生态区域(中东部、云贵和蒙新)湖泊中的藻类生长同时受氮和磷限制。在TN/TP<10的湖泊中,除华北生态区域外,其他四个生态区域湖泊的Chl-a浓度与TN之间存在显著相关性,东北和蒙新生态区域湖泊的Chl-a浓度与TP之间存在显著相关性。在TN/TP>17的湖泊中,除蒙新生态区域外,其他四个生态区域湖泊的Chl-a浓度与TP之间存在显著相关性,中东部、云贵和蒙新生态区域湖泊的Chl-a浓度与TN之间存在显著相关性。在10<TN/TP<17的湖泊中,除中东部生态区域Chl-a浓度受TN显著影响外,其他生态区域湖泊的Chl-a与TN(或TP)之间均无显著相关性。至于五个生态区域的营养控制和削减策略,华北生态区域的湖泊应优先控制TP,在东北生态区域,TN/TP<10的湖泊应同时控制TP和TN,而其他湖泊应重点控制TP。其他三个生态区域(中东部、蒙新和云贵)的湖泊应同时控制TP和TN。

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