Variation Analysis of Long-term TN concentration and influencing factors in Miyun Reservoir in China

IF 1 4区 环境科学与生态学 Q4 ENVIRONMENTAL SCIENCES Global Nest Journal Pub Date : 2023-10-23 DOI:10.30955/gnj.005059
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Abstract

The total nitrogen (TN) is the key indicator for the eutrophication of Miyun Reservoir. Base on the long-term series of remote sensing, hydrological and water quality observation data, this paper comprehensively analyzed the trend of water quality especially the TN concentration and its influencing factors over 30 years in Miyun reservoir. The development trends of the TN concentration during the 14th Five Year Plan Period were predicate with the designed water quality scenarios simulations. The results showed that the water covered area of Miyun reservoir was reduced from 1986 to 2004 and enlarged from 2004 to 2020, and the smallest water covered area was about 56.4km2 in 2004 while the largest was about 170.7km2 in 2020. For the regional rainfall and artificial water storage, the inflow of Miyun reservoir is much greater than the water intake, and this is the main reason for the water covered area increased. From 1988 to 2020, TN contents in the inflow water of Chaohe river and Baihe river were generally in upward trends, with annual upward rates of 0.16 mg/L and 0.05 mg/L at the 99% confidence levels separately. However, the TN concentrations from Chaohe river and Baihe river presented downward trends for the recent 5 years. And this is own to the emission control and river ecological control measures in the upstream basin of Miyun reservoir. From 1988 to 2020, the annual averaged TN concentration of the main dams in Chaohe and Baihe (BHZB and CHZB) was 1.10±0.32 mg/L and 1.17±0.31 mg/L respectively and in recent 5 years, and significant positive trends were also identified at both two stations with the steadily rising the water level and volume in Miyun reservoir. The lightly increase of TN concentration in recent years in Miyun reservoir was the comprehensive results of external input and self purification capacity. Based on the MIKE21 model of four scenario simulations, the TN concentration of Miyun reservoir will meet the class Ⅱ water quality level (China’s Environmental Quality Standards for Surface Waters, GB3838-2002) under the comprehensive implementation of rural domestic source control and agricultural non-point emission control measures in the upstream basin of Miyun reservoir during the 14th Five Year Plan period.

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密云水库长期全氮浓度变化及影响因素分析
总氮(TN)是密云水库富营养化的关键指标。基于密云水库长期的一系列遥感、水文和水质观测资料,综合分析了密云水库近30年来水质特别是总氮浓度的变化趋势及其影响因素。通过所设计的水质情景模拟,预测了“十四五”期间全氮浓度的变化趋势。结果表明:密云水库的水覆盖面积在1986 - 2004年呈减小趋势,在2004 - 2020年呈增大趋势,2004年最小的水覆盖面积约56.4km2, 2020年最大的水覆盖面积约170.7km2;由于区域降雨和人工蓄水,密云水库的入水量远大于进水量,这是密云水库水覆盖面积增加的主要原因。1988 ~ 2020年,潮河、白河来水TN含量总体呈上升趋势,在99%置信水平上年均上升0.16 mg/L,年均上升0.05 mg/L。近5年来,潮河、白河总氮浓度呈下降趋势。这与密云水库上游流域的排放控制和河流生态控制措施有关。1988 - 2020年,巢河和白河主坝(BHZB和CHZB)的年平均总氮浓度分别为1.10±0.32 mg/L和1.17±0.31 mg/L,近5年呈显著的正趋势,密云水库水位和蓄水量稳步上升。密云水库近年来TN浓度的小幅上升是外部输入和自净能力综合作用的结果。基于四种情景模拟的MIKE21模型,“十四五”期间密云水库上游流域综合实施农村生活源控制和农业非点源排放控制措施后,密云水库TN浓度将达到Ⅱ类水质水平(中国地表水环境质量标准GB3838-2002)。</p>
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来源期刊
Global Nest Journal
Global Nest Journal 环境科学-环境科学
CiteScore
1.50
自引率
9.10%
发文量
100
审稿时长
>12 weeks
期刊介绍: Global Network of Environmental Science and Technology Journal (Global NEST Journal) is a scientific source of information for professionals in a wide range of environmental disciplines. The Journal is published both in print and online. Global NEST Journal constitutes an international effort of scientists, technologists, engineers and other interested groups involved in all scientific and technological aspects of the environment, as well, as in application techniques aiming at the development of sustainable solutions. Its main target is to support and assist the dissemination of information regarding the most contemporary methods for improving quality of life through the development and application of technologies and policies friendly to the environment
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