国内刊号:11-2201/X
国际刊号:1000-6923
发布日期:
作者:孟江槐, 肖尚斌, 康满春, 刘佳, 纪道斌, 龙良红, 朱怡帆, 付陈乐, 韩燕星
单位:1. 三峡大学水利与环境学院, 湖北 宜昌 443002;2. 三峡水库生态系统湖北省野外科学观测研究站, 湖北 宜昌 443002;3. 中国电力工程顾问集团中南电力设计院有限公司, 湖北 武汉 430071
关键词:丹江口水库,溶存CH4,水体综合营养级指标,溶解氧,pH值
基金:国家自然科学基金项目(51979148,51809149);湖北省自然科学基金创新发展联合基金(2022CFD032)
This study focuses on the dissolved CH4 concentration (CCH4), CH4 diffusive flux at the water-air interface (FCH4) and the physicochemical properties of the water body in Danjiangkou Reservoir. Using high-resolution equipment (FaRAGE), a two-day monitoring campaign was conducted from August 20th to 22nd, 2023 in the Langhe Bay, including continuous monitoring at a certain site and vertical profile monitoring at multiple sites. The results showed that the surface CCH4 and FCH4 in the reservoir bay exhibited significant spatial variability, with mean values of (0.54±0.16) μmol/L and (89.35±27.23) μg/(m2·h), respectively, and FCH4 was comparable to other water source reservoirs but generally lower than non-water-source reservoirs. Vertically, CCH4 was stratified with low levels in the surface water and high levels in the bottom water. Temporally, the nocturnal surface CCH4 and FCH4 were higher than those during the day. The results of the structural equation model indicated that spatial variations of surface CCH4 in the reservoir bay could be attributed to pH with an explanation degree of 39.17%. Vertically, water temperature and dissolved oxygen (DO) mainly drove CCH4, explaining 56.14% and 35.25% of the variance of CCH4, respectively, while 52.32% of variance of diurnal CCH4 resulted dominantly from DO. Water quality in the reservoir bay was classified as the oligotrophic status based on the comprehensive trophic level index (TLI(Σ)), and TLI(Σ) of the surface water gradually decreased longitudinally from site LH00 to LH05, with an average of (47.36±8.28). Vertically, TLI(Σ) (the mean was less than 50) was lower in the middle layer than both at the surface and bottom layers of the water column. There was no significant positive correlation between CCH4 and TLI(Σ) in the Danjiangkou Reservoir, which was different from the findings in other studies. The mesotrophic water in source reservoirs reduced the risk of algal blooms, and thereby maintained the water quality and low CH4 emissions; however, evaluating CH4 emissions using TLI(Σ) was not suitable for mesotrophic reservoirs. Key words:Danjiangkou Reservoir;dissolved CH4;comprehensive trophic level index;dissolved oxygen;pH value
来源:2024年第11期
《中国环境科学》期刊编辑部