International Joint Laboratory of Watershed Ecological Security and Collaborative Innovation Center of Water Security for Water Source Region of Middle Route Project of South-North Water Diversion in Henan Province, College of Water Resource and Environment Engineering, Nanyang Normal University, Nanyang 473061, China.
Qushou Branch Bureau of Construction and Administration Bureau of South-to-North Water Division Project, Nanyang 473000, China.
Int J Environ Res Public Health. 2022 Mar 30;19(7):4089. doi: 10.3390/ijerph19074089.
The Middle Route Project of the South-to-North Water Diversion is an artificially independent system that does not connect to other surface waters. Excessive periphyton proliferation causes a series of environmental problems in the canal. In this study, the periphyton community and environmental factors on the left and right banks of the canal in the algal growing area were investigated and sampled six times (June, September, and November of 2019 and 2020). The succession pattern of the attached organism community in the artificial canal was analyzed, and the key factors affecting the algal community were analyzed using RDA and GAM. The results showed that the seasonal variability of the environmental factors was more significant than the spatial variability. A total of 114 taxa of periphytic algae were found, belonging to seven phyla and 69 genera, and mainly composed of Bacillariophyta. Species richness was ranked as Bacillariophyta (60 taxa), Chlorophyta (31 taxa) and Cyanobacteria (15 taxa), and higher in autumn than in summer. The dominant taxa were sp., sp., sp. and sp. The abundance of periphytic algal varied from 0.07 × 10 to 8.99 × 10 ind./cm, with trends similar to that of species richness. The redundancy analysis and generalized additive model showed that water temperature and nutrient concentration were the key factors influencing the structure of the algal community, followed by discharge rate and velocity, which were the determinants of the spatial and temporal patterns of the algal community. In view of the influence of discharge and velocity on the structure of algal communities, it is suggested that ecological scheduling could be used to regulate the structure of the algal community on the canal wall in the operation of later water division projects to ensure the safety of water division.
南水北调中线工程是一个独立的人工系统,与其他地表水没有连接。过量的周丛藻类增殖会导致运河内一系列环境问题。本研究对南水北调中线工程藻类生长区渠道左右岸进行了 6 次(2019 年 6 月、9 月和 11 月以及 2020 年 6 月、9 月和 11 月)实地调查和采样。分析了人工运河附着生物群落的演替模式,并采用 RDA 和 GAM 分析了影响藻类群落的关键因素。结果表明,环境因子的季节性变化比空间变化更为显著。共发现周丛藻类 114 种,隶属于 7 门 69 属,以硅藻为主。物种丰富度依次为硅藻(60 种)、绿藻(31 种)和蓝藻(15 种),秋季高于夏季。优势种为 sp.、 sp.、 sp.和 sp.。周丛藻类的丰度范围为 0.07×10~8.99×10 ind./cm,变化趋势与物种丰富度相似。冗余分析和广义加性模型表明,水温、养分浓度是影响藻类群落结构的关键因素,其次是流量和流速,这是藻类群落时空格局的决定因素。鉴于流量和流速对藻类群落结构的影响,建议在后续调水工程运行中,利用生态调度来调节渠道壁藻类群落的结构,以确保调水安全。