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Analysis of spatio-temporal variation in phytoplankton and its relationship with water quality parameters in the South-to-North Water Diversion Project of China

机译:浮游植物的时空变异及其与中国南水北调项目水质参数的时空变化分析

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摘要

The Middle Route of the South-to-North Water Diversion Project of China (MRSNWDPC), the longest trans-basin water diversion project in the world, has been in operation for over 6 years. The water quality of this mega hydro-project affects the safety of more than 60 million people and the health of an ecosystem over 160,000 km(2). Abnormal algal proliferation can cause water quality deterioration, eutrophication, and hydro-project operation issues. However, few studies have investigated and reported planktonic algae and their relationship with the water quality of this trans-basin water diversion project. Here, spatio-temporal characteristics of algal cell density (ACD) and 11 water quality parameters, including water temperature (WT), pH, dissolved oxygen (DO), permanganate index (CODMn), 5-day biochemical oxygen demand (BOD5), fecal coliforms (F. coli), total phosphorus (TP), total nitrogen (TN), ammonia nitrogen (NH3-N), fluoride (F-), and sulfate (SO42-) in the MRSNWDPC from May 2015 to February 2019 were determined using multivariate statistical approaches. Consistent seasonal variation in ACD was observed each year, which grew in spring and then continuously decreased from summer to winter. Summer and winter are the seasons with the highest and lowest ACDs, with average values of 572.95 x 10(4) cell/L and 157.09 x 10(4) cell/L, respectively. The NH3-N was positively correlated with ACD growth in all seasons, with Pearson correlation coefficients ranging from 0.594 to 0.738 (P 0.01). The results of the principal component analysis show that the sources affecting the water quality variation in this project are complex, and NH3-N was the most critical water quality parameter affecting ACD variation, which was linked to ACD in four seasons with strong positive loadings ranging from 0.754 to 0.882, followed by CODMn. The management department of the MRSNWDPC should focus on key periods of phytoplankton control in spring and summer; in addition, variation in the concentrations of NH3-N and CODMn merits special attention. This study provides a helpful reference for the water quality security and algae control strategy of the MRSNWDPC and similar projects in the world.
机译:中国南北方水流项目中的中间路线(MRSNWDPC)是世界上最长的跨盆地进水项目,已在运营超过6年。该巨型水电项目的水质影响了6000多万人的安全和生态系统的健康,超过160,000公里(2)。异常藻类增殖可导致水质恶化,富营养化和水力项目运行问题。然而,很少有研究已经研究过,并报告了浮游藻类及其与该跨盆地进水项目的水质的关系。这里,藻类细胞密度(ACD)和11个水质参数的时空特征,包括水温(WT),pH值,溶解氧(DO),高锰酸盐指数(CODMN),5天生物化学需氧量(BOD5), 2015年5月至2019年5月,MRSNWDPC中,粪便大肠杆菌(F.COLI),总磷(TP),总氮(TN),氨氮(SO42-)(SO42-)是2019年2月使用多元统计方法确定。每年观察到ACD的一致季节性变化,在春天增长,然后从夏天到冬天不断下降。夏季和冬季是具有最高和最低ACD的季节,平均值为572.95 x 10(4)个单元/ L和157.09 x 10(4)个单元/ L. NH3-N与所有季节的ACD生长呈正相关,Pearson相关系数范围为0.594至0.738(P <0.01)。主成分分析的结果表明,影响该项目水质变化的源是复杂的,NH3-N是影响ACD变异的最关键的水质参数,这与四季的ACD相关联从0.754到0.882,然后是Codmn。 MRSNWDPC的管理部门应侧重于春夏浮游植物的关键期限;此外,NH3-N和CODMN浓度的变化值得特别关注。本研究为MRSNWDPC的水质安全和藻类控制策略和世界上类似的项目提供了有用的参考。

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