丹江口水库氮素时空分布特征OA
Spatiotemporal Distribution Characteristics of Nitrogen in Danjiangkou Reservoir
氮素是天然水体的关键限制性营养盐,其时空分布特征深刻影响着丹江口水库水环境质量及其富营养化演变进程,对南水北调中线工程核心水源区的水质安全具有重要战略意义.于2024年3月份(非汛期)和9月份(汛期)系统采集丹江口水库入库支流表层水样及库区表、中、底三层剖面水样,通过测定总氮、硝氮、氨氮以及溶解性有机氮浓度,解析不同形态氮素时空分异规律,并探讨其成因.结果表明:硝态氮是水库非汛期水体氮的主要赋存形态,而进入汛期后,溶解性有机氮含量显著上升,并与硝态氮共同主导水体氮素赋存.在纵向空间上,汉库来水入库后,硝态氮浓度总体沿水流运动方向呈递减趋势,反映水动力过程对氮素输移的调控作用;而在垂向空间上,硝态氮浓度均值在非汛期与汛期均表现为底层>中层>表层的典型特征,且汛期垂向差异更为显著,推测与表层水体中光化学反硝化作用消减硝态氮,叠加汛期水体热分层抑制垂向混合密切相关.此外,非汛期汉库溶解性有机氮浓度显著高于丹库,并在垂向上呈现向底层减少的趋势,而丹库呈现向底层增加的趋势,推测与丹库缓流条件下细颗粒悬浮物对溶解性有机氮的吸附-沉降效应有关.
[Objective]Nitrogen,a critical limiting nutrient in aquatic ecosystems,exhibits spatiotemporal hetero-geneity that profoundly influences water quality dynamics and eutrophication evolution in the Danjiangkou Reservoir.This study aims to clarify the spatiotemporal differentiation patterns and driving mechanisms of key nitrogen forms in Danjiangkou Reservoir,focusing on seasonal(non-flood vs.flood)and vertical(surface,middle,bottom)varia-tions.It focuses on critical yet underexplored issues,including seasonal dynamics of nitrogen forms,vertical data gaps,and tributary-reservoir coupling,to directly support the water quality security goals of the South-to-North Wa-ter Diversion Project.[Methods]This study systematically collected surface water samples from tributaries dischar-ging into the reservoir and stratified samples(surface,middle,and bottom layers)during the non-flood(March 2024)and the flood(September 2024)seasons.By quantifying total nitrogen,nitrate,ammonium,and dissolved organic nitrogen,we investigated the spatiotemporal differentiation mechanisms of nitrogen forms.[Results]In the non-flood season,nitrate nitrogen(NO3--N)was the dominant form of nitrogen in the water of the Danjiangkou Reservoir area and its inflow tributaries,accounting for 63.3%to 88.6%of the total nitrogen and holding an abso-lute advantage.In the longitudinal direction of the reservoir area,after the inflow from the Han Reservoir entered the Danjiangkou Reservoir,the concentration of NO3--N generally showed a decreasing trend along the direction of water flow.In the vertical direction,the average concentration of NO3--N followed the order of bottom layer>mid-dle layer>surface layer,which may be attributed to photochemical denitrification in the surface water.Dissolved organic nitrogen(DON)was the second most abundant form of nitrogen;its concentration in the Han Reservoir was significantly higher than that in the Dan Reservoir.Vertically,DON concentration showed a decreasing trend toward the bottom in the Han Reservoir,while it showed an increasing trend toward the bottom in the Dan Reservoir.This phenomenon may be caused by the adsorption of DON by fine suspended sediments and their transport to the reser-voir bottom under the slow flow conditions of the Dan Reservoir.After entering the flood season,DON concentra-tions in the inflow tributaries increased significantly.In both the Danjiangkou Reservoir area and its tributaries,the dominant forms of nitrogen became NO3--N and DON,with NO3--N accounting for 13.90%to 90.44%and DON ac-counting for 1.04%to 74.18%.Compared with the non-flood season,the content of NO3--N decreased significantly,which may be due to the enhanced photochemical denitrification in the surface water and microbial denitrification in the bottom water of the reservoir during the flood season.In the longitudinal direction,the distribution of NO3--N showed no obvious regularity;however,in the vertical direction,the average concentration of NO3--N still followed the order of bottom layer>middle layer>surface layer.[Conclusion]The results show that nitrate nitrogen is the main form of nitrogen in the water body during the non-flood season of the reservoir.After entering the flood season,the content of dissolved organic nitrogen increases significantly and jointly dominates the occurrence of nitrogen in the water body with nitrate nitrogen.Longitudinally,after the water from the Han Reservoir enters the Danjiangkou Reservoir,the concentration of nitrate nitrogen generally shows a decreasing trend along the direction of water flow,reflecting the regulatory effect of the hydrodynamic process on the transport of nitrogen.Vertically,the average con-centration of nitrate nitrogen in both the non-flood season and the flood season shows the typical pattern of bottom layer>middle layer>surface layer,and the vertical difference in the flood season is more significant.This pattern may be closely related to the reduction of nitrate nitrogen by photochemical denitrification in the surface water body and the inhibition of vertical mixing due to thermal stratification in the flood season.
程靖华;潘雄;秦赫;靖争;金海洋;林家新;谭皓月
南水北调中线水源有限责任公司,湖北十堰 442799长江科学院流域水环境研究所,武汉 430010南水北调中线水源有限责任公司,湖北十堰 442799长江科学院流域水环境研究所,武汉 430010长江科学院流域水环境研究所,武汉 430010长江科学院流域水环境研究所,武汉 430010长江科学院流域水环境研究所,武汉 430010
资源环境
丹江口水库氮素形态时间分布空间分布成因分析
Danjiangkou Reservoirnitrogen formstemporal distributionspatial distributioncausal analysis
《长江科学院院报》 2026 (8)
80-88,9
湖北省自然科学基金十堰创新发展联合基金重点项目(2025AFD186)南水北调中线水源有限责任公司科研专项(ZSY/YG-ZX(2023)022)
评论