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密西西比湾蓝藻水华的时空特征及其与博尼特卡雷泄洪口开启的关系。

Spatial and temporal characterization of cyanobacteria blooms in the Mississippi Sound and their relationship to the Bonnet Carré Spillway openings.

机构信息

GESTAR II, Morgan State University, Baltimore, MD, USA; Ocean Ecology Laboratory, NASA/Goddard Space Flight Center, Greenbelt, MD, USA.

Skidmore College, NASA Goddard Space Flight Center Office of STEM Engagement (OSTEM) Internship Program, Greenbelt, MD, USA.

出版信息

Harmful Algae. 2023 Aug;127:102472. doi: 10.1016/j.hal.2023.102472. Epub 2023 Jun 13.

Abstract

During the spring and summer of 2019, an unprecedented cyanobacterial harmful algal bloom (cyanoHAB) was responsible for beach advisories on 25 beaches along the Mississippi Sound for over 3 months. Due to the preceding heavy rainfall and flooding within the Mississippi River watershed, for the first time in history, the Bonnet Carré Spillway (BCS) opened twice in one year during 2019. The coastal cyanoHAB coincided with the second BCS opening. The main objectives of this study were: (1) to investigate the potential for using the National Aeronautics and Space Administration (NASA) ocean color standard Cyanobacteria Index (CI) algorithm to characterize the spatial and temporal extent of the 2019 cyanoHAB; (2) to couple the CI data with river discharge, salinity, and modeled-wind data to study the conditions leading to the cyanoHAB and factors aiding the advection and persistence of the bloom within the Mississippi Sound, including a possible relationship to the BCS; (3) to further investigate the relationship with the BCS by repeating the methods using data from 2018, which was a year when the BCS was opened but no evidence of cyanoHABs was reported along the Mississippi coast. Weekly means and monthly frequency CI images, river discharge, salinity, and modeled-wind data from February to September of 2018 and 2019 were analyzed, which coincide with three BCS openings. In March 2018, a cyanobacteria bloom was observed within Lake Pontchartrain coinciding with the BCS opening; however, the month-long bloom was contained to the lake. Two distinct cyanoHABs were observed in 2019 and both blooms were advected into the Mississippi Sound, and likely contributed to the 3-month-long beach water advisories of 2019 along the Mississippi coastline. From March to mid-July 2019, salinity at stations within the Mississippi Sound was consistently near zero indicating high levels of freshwater. During that time, winds were predominantly northwestward, preventing the BCS waters from flushing into the Mississippi Shelf and resulting in BCS waters remaining longer within the estuarine lakes and Mississippi Sound. Although the BCS had an undeniable impact on the presence of the coastal cyanoHAB of 2019, other variables including wind direction, water flow, mixing, and persistence of freshwater within the Sound can determine the intensity and extent of the cyanoHABs. Coupling in situ phytoplankton information from freshwater water bodies to the marine continuum along with water flow, wind data, and satellite imagery could help identify cyanoHABs at early stages and forecast their trajectory and potential impacts on coastal areas.

摘要

2019 年春夏两季,密西西比湾沿岸 25 处海滩因蓝藻水华(cyanoHAB)而发布了超过 3 个月的海滩预警。由于密西西比河流域先前的强降雨和洪水,历史上首次在 2019 年一年中,博内尔克里克泄洪道(BCS)两次开放。沿海蓝藻水华与第二次 BCS 开放同时发生。本研究的主要目的是:(1)研究利用美国国家航空航天局(NASA)海洋颜色标准蓝藻指数(CI)算法来描述 2019 年蓝藻水华的时空范围;(2)将 CI 数据与河流流量、盐度和模拟风数据相结合,研究导致水华的条件以及水华在密西西比湾内的输运和持续存在的因素,包括与 BCS 可能存在的关系;(3)通过使用 2018 年的数据重复这些方法进一步研究与 BCS 的关系,2018 年 BCS 虽然开放,但密西西比海岸没有报告蓝藻水华。对 2018 年和 2019 年 2 月至 9 月的每周平均值和月度频率 CI 图像、河流流量、盐度和模拟风数据进行了分析,这与三次 BCS 开放相对应。2018 年 3 月,观察到庞恰特雷恩湖内的蓝藻水华与 BCS 开放相对应;然而,为期一个月的水华被限制在湖中。2019 年观察到两次明显的蓝藻水华,两次水华均被输运到密西西比湾,可能导致 2019 年密西西比海岸长达 3 个月的海滩水预警。2019 年 3 月至 7 月中旬,密西西比湾内各站盐度持续接近零,表明淡水含量高。在此期间,风向主要为西北方向,阻止了 BCS 水进入密西西比大陆架,导致 BCS 水在河口湖泊和密西西比湾停留时间更长。尽管 BCS 对 2019 年沿海蓝藻水华的存在无疑有影响,但其他变量,包括风向、水流、混合和密西西比湾内淡水的持续存在,都可以决定蓝藻水华的强度和范围。将来自淡水水体的原位浮游植物信息与沿海水域的海洋连续体相结合,结合水流、风数据和卫星图像,可以帮助在早期阶段识别蓝藻水华,并预测其轨迹和对沿海地区的潜在影响。

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