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首页> 外文期刊>Remote Sensing of Environment: An Interdisciplinary Journal >Twenty years of satellite and in situ observations of surface chlorophyll-a from the northern Bay of Biscay to the eastern English Channel. Is the water quality improving?
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Twenty years of satellite and in situ observations of surface chlorophyll-a from the northern Bay of Biscay to the eastern English Channel. Is the water quality improving?

机译:二十年的卫星和原位观察地表叶绿素-A从北部湾到东方英语渠道。 水质是否改善?

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摘要

The variability of the phytoplankton biomass derived from daily chlorophyll-a (Chl-a) satellite images was investigated over the period 1998-2017 in the surface waters of the English Channel and the northern Bay of Biscay. Merged satellite (SeaWiFS-MODIS/Aqua-MERIS-VIIRS) Chl-a was calculated using the OC5 Ifremer algorithm which is optimized for moderately-turbid waters. The seasonal cycle in satellite-derived Chl-a was compared with in situ measurements made at seven coastal stations located in the southern side of the English Channel and in the northern Bay of Biscay. The results firstly showed that the satellite Chl-a product, derived from a suite of space-borne marine reflectance data, is in agreement with the coastal observations. For compliance with the directives of the European Union on water quality, time-series of 6-year moving average of Chl-a were assessed over the region. A clear decline was observed in the mean and 90th percentile of Chl-a at stations located in the mixed waters of the English Channel. The time-series at the stations located in the Bay of Biscay showed yearly fluctuations which correlated well with river discharge, but no overall Chl-a trend was observed. In the English Channel, the shape of the seasonal cycle in Chl-a changed over time. Narrower peaks were observed in spring at the end of the studied period, indicating an earlier limitation by nutrients. Monthly averages of satellite Chl-a, over the periods 1998-2003 and 2012-2017, exhibited spatial and temporal patterns in the evolution of the phytoplankton biomass similar to these observed at the seven coastal stations. Both the in situ and satellite Chl-a times-series showed a decrease in Chl-a in the English Channel in May, June and July. This trend in phytoplankton biomass is correlated with lower river discharges at the end of the period and a constant reduction in the riverine input of phosphorus through improvements in the water quality of the surrounding river catchments.
机译:1998 - 2017年期间在英国频道的地表水域和北湾的北湾的北部北部的日期,研究了源自日常叶绿素-A(CHL-A)卫星图像的浮游植物生物量的可变性。合并卫星(SEAWIFS-MODIS / AQUA-MERIS-VIIRS)CHL-A使用OC5 IFREMER算法计算,该算法针对中间浊水域进行了优化。卫星衍生的CHL-A中的季节性周期与位于位于英语频道南侧的七个沿海车站和Biscay北部的沿海车站进行了比较。结果首先表明,卫星CHL-A产品来自一套空间海洋反射数据,与沿海观察一致。符合欧洲联盟对水质的指令,在该地区评估了CHL-A的6年6年级移动平均水平的时间系列。在位于英语频道的混合水域的车站的平均值和第90百分位中观察到明确的下降。位于比斯卡湾的电台的时间序列显示,随着河流排放,河流良好的波动,但没有观察到整体CHL-A趋势。在英语通道中,随着时间的推移,CHL-A的季节周期的形状。在研究期结束时在春季观察到较窄的峰,表明营养素的早期限制。在1998 - 2003年和2012-2017期间,卫星CHL-A的每月平均值在七个沿海站观察到的浮游植物生物量的演变中,在浮游植物的演变中表现出空间和时间模式。 AITU和卫星CHL-A时序系列在5月,6月和7月在英国频道中表现出CHL-A的减少。这种在浮游植物的这种趋势在周期结束时与河流排放的较低,通过改善周围的河流集水区的水质的河流投入持续减少。

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