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有效的水华蓝藻有害藻华的空中监测依赖于对细胞迁移的理解。

Effective aerial monitoring of cyanobacterial harmful algal blooms is dependent on understanding cellular migration.

机构信息

Department of Biology, Queen's University, Kingston, ON, K7L 3N6, Canada.

Institute for Aerospace Studies, University of Toronto, Toronto, ON, M3H 5T6, Canada; College of Automation Engineering, Nanjing University of Aeronautics and Astronautics, Nanjing, 210016, China.

出版信息

Harmful Algae. 2019 Jul;87:101620. doi: 10.1016/j.hal.2019.101620. Epub 2019 Jul 5.

Abstract

Cyanobacterial harmful algal blooms (CHABs) degrade water quality and may produce toxins. The distribution of CHABs can change rapidly due to variations in population dynamics and environmental conditions. Biological and ecological aspects of CHABs were studied in order to better understand CHABs dynamics. Field experiments were conducted near Hartington, Ontario, Canada in ponds dominated by Microcystis aeruginosa and CHABs floating experiments were conducted at Lake Taihu during the summers of 2015 and 2016. Single colonies composed of hundreds to thousands of cells with an average median of 0.2-0.5 mm in diameter were the basic form assumed by the Microcystis, and this remained the same throughout the growing season. Thorough mixing of the water column followed by calm conditions resulted in over 90% of the cyanobacteria floating after 1 h. Multiple colonies floated on the water surface in four types of assemblages: aggregates, ribbons, patches, and mats. It is the mats that are conventionally considered the blooming stage of cyanobacteria. Presence of CHABs on open water surfaces also depends on environmental influences such as direct and indirect wind effects. For example, field tests revealed that the surface coverage of CHABs can be reduced to half within an hour at wind speeds of 0.5 m/s. Because our findings indicated that blooming involves surface display of cyanobacteria essentially presenting as a two-dimensional plane under defined conditions, the use of surface imagery to quantify CHABs was justified. This is particularly important in light of the fact that traditional detection methods do not provide accurate distribution information. Nor do they portray CHABs events in a real-time manner due to limitations in on-demand surveillance and delays between sample time and analyzed results. Therefore, a new CHAB detection method using small unmanned aerial systems with consumer-grade cameras was developed at a maximum detection altitude of 80 m. When cyanobacteria were floating on the surface, CHABs detection through RGB band cameras and spectral enhancement techniques was efficient and accurate. Small unmanned aerial systems were capable of providing coverage up to 1 km per mission and the short intervals between sampling and results (approx. 2 h) allowed for the rapid analysis of data and for implementing follow-up monitoring or treatments. This method is very cost-effective at an estimate of as low as $100 CAD per mission with an average cyanobacterial detection accuracy of 86%. Thus, it is a good candidate method to fill the urgent need for CHABs detection, providing cost effective, rapid, and accurate information to improve risk management at a local level as well as to help quickly allocate resources for purposes of mitigation.

摘要

蓝藻有害藻华 (CHABs) 会降低水质,并可能产生毒素。由于种群动态和环境条件的变化,CHABs 的分布可能会迅速变化。为了更好地了解 CHABs 动态,研究了 CHABs 的生物学和生态学方面。在加拿大安大略省哈廷顿附近进行了现场实验,并在 2015 年和 2016 年夏季在太湖进行了 CHABs 漂浮实验。由数百到数千个细胞组成的单细胞菌落,直径平均为 0.2-0.5 毫米,是微囊藻的基本形式,并且在整个生长季节都保持不变。在水柱充分混合后,在平静的条件下,1 小时后超过 90%的蓝藻漂浮。在四种类型的组合中,多个菌落漂浮在水面上:聚集物、丝带、斑块和垫。正是这些垫通常被认为是蓝藻的开花阶段。CHABs 出现在开阔水面上也取决于环境影响,例如直接和间接风的影响。例如,现场测试表明,在风速为 0.5 米/秒的情况下,CHABs 的表面覆盖率可以在一小时内减少到一半。由于我们的研究结果表明,开花涉及蓝藻表面显示,在定义的条件下基本上呈现为二维平面,因此使用表面图像来量化 CHABs 是合理的。鉴于传统检测方法无法提供准确的分布信息,这一点尤其重要。由于按需监测的限制以及样本时间和分析结果之间的延迟,它们也无法实时描述 CHABs 事件。因此,开发了一种使用消费级相机的小型无人机系统的新的 CHAB 检测方法,最大检测高度为 80 米。当蓝藻漂浮在水面上时,通过 RGB 带相机和光谱增强技术进行 CHABs 检测是高效和准确的。小型无人机系统能够在每次任务中提供高达 1 公里的覆盖范围,并且在采样和结果之间的时间间隔很短(约 2 小时),允许快速分析数据,并实施后续监测或处理。这种方法的估计成本非常低,每次任务仅需 100 加元,平均蓝藻检测准确率为 86%。因此,它是一种很好的候选方法,可以满足 CHABs 检测的迫切需求,提供经济高效、快速和准确的信息,以改善地方一级的风险管理,并帮助快速分配资源用于缓解。

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