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Towards a European Coastal Observing Network to provide better answer to science and to societal challenges; the JERICO/JERICO-NEXT Research Infrastructure.

机译:建立欧洲沿海观测网,以更好地应对科学和社会挑战; JERICO / JERICO-NEXT研究基础架构。

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The coastal area is the most productive and dynamic environment of the world ocean, offering significant resources and services for mankind. As exemplified by the UN Sustainable Development Goals, it has a tremendous potential for innovation and growth in blue economy sectors. A major challenge for the scientific community making observations of the coastal marine environment is to integrate observations of Essential Ocean Variables for physical, biogeochemical and biological processes on appropriate spatial and temporal scales, and in a sustained and scientifically based manner. Coastal observations are important for improving our understanding of the complex biotic and abiotic processes in many fields of research such as ecosystem science, habitat protection, and climate change impacts. They are also important for improving our understanding of the impacts of human activities such as fishing and aquaculture, and underpin risk monitoring and assessment. The observations enable us to better understand ecosystems and the societal consequences of overfishing, disease (particularly shellfish), loss of biodiversity, coastline withdrawal and ocean acidification, amongst others. The European coastal observing infrastructure JERICO-RI, has gathered and organized key communities embracing new technologies and providing a future strategy, with recommendations on the way forward and on governance. The JERICO community acknowledges that the main providers of coastal observations are: 1) research infrastructures, 2) national monitoring programs and 3) monitoring activities performed by marine industries. The scope of this paper is to present some key elements of coastal science strategy to build it on long term. It describes how the pan-European JERICO community is building an integrated and innovation-driven coastal research infrastructure for Europe. The RI embraces emerging technologies which will revolutionize the way the ocean is observed. Developments in biotechnology (molecular and optical sensors, omics-based biology) will soon provide direct and online access to chemical and biological variables including in-situ quantification of harmful algae and contaminants. Using artificial intelligence (AI), Internet of Things will soon provide operational platforms and autonomous and remotely operated smart sensors. Embracing key technologies, high quality open access data, modelling and satellite observations, it will support sustainable blue growth, warning and forecasting coastal services and healthy marine ecosystem.
机译:沿海地区是世界海洋中生产力最高,最活跃的环境,为人类提供了重要的资源和服务。正如联合国可持续发展目标所体现的那样,它在蓝色经济领域具有巨大的创新和增长潜力。科学界对沿海海洋环境进行观测的一个主要挑战是,以适当的时空尺度,以持续的,基于科学的方式,整合对物理,生物地球化学和生物过程的基本海洋变量的观测。沿海观测对于增进我们对生态系统科学,栖息地保护和气候变化影响等许多研究领域中复杂的生物和非生物过程的理解非常重要。它们对于增进我们对捕鱼和水产养殖等人类活动的影响的理解以及支持风险监测和评估也很重要。这些观察使我们能够更好地了解生态系统以及过度捕捞,疾病(尤其是贝类),生物多样性丧失,海岸线撤离和海洋酸化等社会后果。欧洲沿海观测基础设施JERICO-RI收集并组织了采用新技术并提供未来战略的关键社区,并就前进的道路和治理提出了建议。 JERICO社区承认,沿海观测的主要提供者是:1)研究基础设施,2)国家监测计划和3)海洋工业开展的监测活动。本文的范围是提出沿海科学策略的一些关键要素,以长期为基础。它描述了泛欧洲的JERICO社区如何为欧洲构建一个以创新为导向的整合型沿海研究基础设施。 RI包含新兴技术,这些技术将彻底改变观察海洋的方式。生物技术的发展(分子和光学传感器,基于组学的生物学)很快将提供直接和在线访问化学和生物变量的方法,包括对有害藻类和污染物的就地定量。借助人工智能(AI),物联网将很快提供操作平台以及自主和远程操作的智能传感器。包含关键技术,高质量的开放访问数据,建模和卫星观测,它将支持可持续的蓝色增长,警告和预报沿海服务以及健康的海洋生态系统。

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