面向区域气候变率的印度尼西亚热带水域海洋酸化监测系统的建立

H. Prayitno, R. Puspitasari, Suppakarn Jandang, K. Triana, E. Taufiqurrahman, Lestari, Afdal, I. Wulandari, Harmesa, H. Meirinawati, Suci Lastrini, M. T. Kaisupy, A. J. Wahyudi
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引用次数: 4

摘要

温室气体的排放,包括高二氧化碳和其他物质,引发了全球变暖和气候变化。大气中的二氧化碳影响海水的碳酸盐系统,导致海洋酸化(OA)。OA直接影响海洋生物,也影响人类的经济和生态。考虑到OA的高度影响,并遵循联合国可持续发展目标,印度尼西亚有必要对OA进行系统研究和监测,其海洋在这一新兴现象中发挥着重要作用。本文讨论了OA监测系统的紧迫性,并提出了碳酸盐系统监测和碳生物地球化学的建议。OA显著影响海洋生产和改变生态系统服务,并可能对生境从钙化向非钙化转变和降低底栖生物复杂性产生影响。它对钙化生物的影响也可以被发现,即珊瑚钙化和/或钙化生物的CaCO3溶解。酸度(pH)以及海水的碳酸盐系统变量是波动的,特别是随着空间和时间的变化。直接受陆地输入影响的沿海生态系统将具有波动较大的碳酸盐系统变量。海水pH的年递减率,特别是在开阔的大空间尺度上,可能预示着OA。因此,必须建立一个监控系统,以获得系统、全面的OA信息。在这里,我们还介绍了龙目岛OA的生物地球化学监测倡议,并建立了协议。分析仪器、分析方法、样品处理、采样频率等方面的改进将为OA的进一步研究和监测提供新的视角。
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Establishing an Ocean Acidification Monitoring System for the Tropical Waters of Indonesia Facing Regional Climate Variability
The emission of greenhouse gases, including high CO2 and other materials, initiates global warming and climate change. Atmospheric CO2 that affects the carbonate system of seawater causes ocean acidification (OA). OA affects marine organisms directly, as well as humans economically and ecologically. Considering the high impact of OA and following the United Nations' Sustainable Development Goals, systematic research and monitoring of OA is necessary in Indonesia, whose seas play an important role in this emerging phenomenon. This review discusses the urgency of OA monitoring systems and suggests carbonate system monitoring, as well as carbon biogeochemistry. OA significantly affects marine production and alters ecosystem services, and it is likely to have an impact on habitats shifting from calcified to non-calcified and reducing benthic complexity. Its effect on calcifying organisms can also be found, i.e., coral calcification and/or dissolution of CaCO3 of calcifying organisms. Acidity (pH), as well as the carbonate system variables of seawater, fluctuate, especially with variations in space and time. Coastal ecosystems that are directly affected by terrestrial input will have carbonate system variables that fluctuate more. The annual rate of decreasing seawater pH, especially over an open and large spatial scale, may indicate OA. Therefore, a monitoring system must be implemented to obtain systematic and comprehensive information on OA. Here, we also introduce a biogeochemical monitoring initiative for OA in Lombok with the established protocols. Improvement of many aspects, including analysis instruments, analysis methods, sample treatment, and sampling frequency will provide new insight into further research and monitoring of OA.
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来源期刊
Asean Journal on Science and Technology for Development
Asean Journal on Science and Technology for Development Environmental Science-Waste Management and Disposal
CiteScore
1.50
自引率
0.00%
发文量
10
审稿时长
14 weeks
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