Chongqing University, Chongqing, China.
Chongqing School, University of Chinese Academy of Sciences, Chongqing, China.
Water Environ Res. 2021 Jun;93(6):808-816. doi: 10.1002/wer.1465. Epub 2020 Nov 3.
Since the operation of the Three Gorges Reservoir, its tributaries have been eutrophic and flooded many times, the prompt and accurate eutrophication assessment is the foundation of water environmental management for this area. To address the problems existing in the fuzzy comprehensive evaluation, a novel method is proposed to adjust the indicator weight by using the analytic hierarchy process-entropy weight method, improve the fuzzy operation method, and take the weighted average as the basis of comprehensive evaluation. Through this method, the information of each indicator can be comprehensively used, and the subjectivity and blindness of evaluation can be effectively reduced. Then the eutrophication status of Hanfeng Lake is analyzed by it, and compares the results with that of conventional methods. The results show that Hanfeng lake is greatly affected by TN and TP, and it is generally in mesotrophic to mildly eutrophication. Eutrophication degree is as follows: Nanhe River > Donghe River > Regulating dam, so the control measures should be strengthened in Nanhe area. Combined with the water pollution control measures proposed in this paper, it can provide guidance for the monitoring and treatment of eutrophication in the Three Gorges Reservoir area and ensure the safety of the water environment. PRACTITIONER POINTS: This paper proposes to use the analytic hierarchy process-entropy weight method combined with the fuzzy operation method to assess the eutrophication status of tributaries of the Three Gorges Reservoir, in China. The results indicate that Hanfeng Lake is generally in a light eutrophication state, which is greatly affected by TN and TP, and the Nanhe River is in a relatively high degree of eutrophication, which need to be extra vigilant. The evaluation results are more conformable to reality than that of the traditional fuzzy comprehensive evaluation, which can provide guidance for comprehensive management of eutrophication.
自三峡水库运行以来,其支流多次发生富营养化和洪水,及时准确的富营养化评估是该地区水环境保护的基础。针对模糊综合评价中存在的问题,提出了一种利用层次分析法-熵权法调整指标权重、改进模糊运算方法、以加权平均值为综合评价基础的新方法。通过该方法,可以综合利用各指标信息,有效降低评价的主观性和盲目性。然后用该方法对汉丰湖的富营养化状况进行分析,并与常规方法的结果进行比较。结果表明,汉丰湖受 TN 和 TP 的影响较大,总体处于中营养至轻度富营养化状态。富营养化程度依次为:南河>东河>调节坝,因此应加强南河地区的控制措施。结合本文提出的水污染控制措施,可以为三峡库区富营养化监测与治理提供指导,确保水环境安全。
本文提出了一种利用层次分析法-熵权法结合模糊运算方法评价三峡水库支流富营养化状况的方法。结果表明,汉丰湖总体处于轻度富营养化状态,受 TN 和 TP 影响较大,南河处于较高的富营养化程度,需要特别警惕。评价结果比传统模糊综合评价更符合实际,可以为富营养化综合管理提供指导。