跨界河流的水化学评价(以纳尔瓦河为例)

Pub Date : 2023-01-01 DOI:10.21638/spbu07.2023.108
T. Potapova, Olga V. Zadonskaja, Tatyana V. Parshina
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引用次数: 0

摘要

研究的目的是建立纳尔瓦河生物成因机制的形成规律。根据1992 - 2019年长期观察期化学元素浓度测定实验数据,揭示了近14年来生物源元素含量降低的趋势。这是由于重建爱沙尼亚和俄罗斯两方面的处理设施而减少了人为负荷的结果。生物源元素含量的年际变化分析表明,高水期径流量最大,氮化合物含量稳定增加,秋季磷含量增加。这表明沛浦斯湖和纳尔瓦水库的水有重大影响,它们决定了在暖季结束时加剧的水库内过程。基于1992 - 2019年平均年用水量实验数据和月矿物、生物和有机物质浓度测定的径流计算根据波罗的海地区径流指标的背景值,径流指标的计算值为:离子径流43.1 t/km2,总磷9.8 kg/km2,总氮142 kg/km2,有机碳2.75 t/km2。值得注意的是,1993年至2006年期间;与文献数据相对应的是,开垦农业区径流中磷和硝态氮的径流量显著增加,这也表明在2006年至2019年的过去十年中,纳尔瓦河的生物负荷显著减少。
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Hydrochemical assessment of transboundary rivers (on the example of the Narva border river)
The purpose of the study is to establish the regularities of the formation of the biogenic regime of the Narva River. Based on experimental data on the determination of concentrations of chemical elements for the long-term observation period from 1992 to 2019, a trend of reducing the content of biogenic elements over the past 14 years has been revealed. This is a consequence of reducing the anthropogenic load due to the reconstruction of treatment facilities on the Estonian and Russian sides. Analysis of intra-annual changes in the content of biogenic elements showed a steady increase in the content of nitrogen compounds during high water with maximum water runoff and an increase in phosphorus content in the autumn period. This indicates a significant influence of the waters of Lake Peipus and the Narva reservoir, which determine the intra-reservoir processes that intensify at the end of the warm season. The calculation of runoff based on experimental data of average annual water consumption and monthly determinations of concentrations of mineral, biogenic and organic substances for the period from 1992 to 2019. The calculated values of the runoff indicators are: ionic runoff 43,1 t/km2, total phosphorus 9,8 kg/km2, total nitrogen 142 kg/km2, organic carbon 2,75 t/km2, according to the background values of the runoff indicators of the Baltic region. It is important to note that for the period from 1993 to 2006; significantly higher runoff rates for phosphorus phosphates and nitrogen nitrates corresponded to the literature data on runoff from reclaimed agricultural areas, which also indicates a significant decrease in the biogenic load on the Narva River in the last decade from 2006 to 2019.
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