利用声学测量技术评估水库中蓝藻的空间分布,以加强水质管理

IF 5.8 Q1 MICROBIOLOGY
Taisei Sugawara , Kenji Minami , Sangyeob Kim , Takashi Inagawa , Jiro Okitsu , Shougo Sakamoto , Tomonori Osugi , Nobuyuki Azuma , Yanhui Zhu , Kazushi Miyashita
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引用次数: 0

摘要

由于气候变化导致水温升高,预计将导致包括水库在内的各种淡水水体中蓝藻大量繁殖,这对水质管理构成了重大挑战。因此,需要详细了解水体中蓝藻的动态,以增加我们对蓝藻的认识。在本研究中,我们试图通过声学技术确定水体中蓝藻的空间分布,并了解蓝藻的分布及其受水环境的影响。同时,验证了蓝细菌声学测量的有效性。通过声学测量估计的蓝藻丰度与测量的蓝藻色素值之间的比较显示两者呈正相关,表明声学测量蓝藻是有效的。实地调查为我们提供了大量的数据,使我们能够绘制水体中蓝藻的空间分布。结果表明,蓝藻是通过水库水质控制设施和水环境进行繁殖或输送的。特别是,水库与自然环境不同,由于水质控制措施等人工设施,预计会发生严重的环境变化,因此利用声学技术继续对蓝藻进行详细的监测非常重要。在这一领域的持续研究预计将导致更有效的战略管理水体和减轻蓝藻华。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Assessing cyanobacterial spatial distribution in reservoirs using acoustic survey techniques for enhanced water quality management

Assessing cyanobacterial spatial distribution in reservoirs using acoustic survey techniques for enhanced water quality management
Increases in water temperature due to climate change are expected to lead to cyanobacterial blooms in various freshwater bodies, including reservoirs, posing a major challenge in terms of water quality management. Therefore, a detailed understanding of the dynamics of cyanobacteria in water bodies is required to increase our knowledge of cyanobacteria. In this study, we attempted to determine the spatial distribution of cyanobacteria in a water body by acoustic techniques, and to understand the distribution of cyanobacteria and how it is affected by the water environment. At the same time, the validity of acoustic measurements of cyanobacteria was verified. Comparison of the estimated abundance of cyanobacteria by acoustic measurements and the measured pigment values of cyanobacteria showed a positive correlation between them, suggesting that acoustic measurements of cyanobacteria are effective. The field survey provided us with a large number of data and allowed us to map the spatial distribution of cyanobacteria in the water body. The results suggest that cyanobacteria are propagated or transported by the water quality control facilities of the reservoir and the water environment. In particular, unlike natural environments, reservoirs are expected to undergo severe environmental changes due to artificial facilities such as water quality control measures, and it will be important to continue monitoring cyanobacteria on a detailed scale using acoustic techniques. Continued research in this area is anticipated to lead to more effective strategies for managing water bodies and mitigating cyanobacterial blooms.
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来源期刊
Current Research in Microbial Sciences
Current Research in Microbial Sciences Immunology and Microbiology-Immunology and Microbiology (miscellaneous)
CiteScore
7.90
自引率
0.00%
发文量
81
审稿时长
66 days
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