BioFREE: An International Study of Biofouling Impacts on the Marine Renewable Energy Industry

A. Want, J. Porter
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引用次数: 5

Abstract

The success of the marine renewable energy (MRE) industry is dependent upon maximising energy capture and minimising down-time. Device performance is negatively impacted by the growth of fouling organisms, leading to reduced efficiency and reliability; anti-fouling strategies are costly and time consuming. Biofouling also reduces accuracy of data buoys and sensors used to assess the hydrodynamic resource and device performance. While biofouling has been a recognised problem for centuries, deployment of MRE devices creates several unique issues. Additional concerns exist over the role that MRE infrastructure may play as ‘stepping-stones’ promoting the spread of non-native and invasive species. A paucity of published studies exists concerning biofouling in this sector. With a general trend towards stricter environmental controls, it is essential that the MRE industry demonstrate commitments that minimise disturbance and promote positive impacts. Given small margins for MRE, there are potentially substantive benefits from tackling biofouling in terms of increased investor confidence. The BioFREE project (a collaboration between Heriot-Watt University and the European Marine Energy Centre (EMEC) in the UK) is addressing these issues by detailed characterisation of the biofouling communities from multiple habitats used by the MRE sector, and monitoring benthic impacts following deployment and decommissioning. BioFREE is developing a workable Standard Monitoring System designed to facilitate data collection using practical and effective methods. Frames are populated with settlement panels, data loggers, and components comprised of materials of greatest concern to MRE developers. Components of this system can be treated with anti-fouling coatings. Frames are being deployed in a variety of habitats at additional test centres and research institutes located in Japan, Chile, France, and the USA; organisms are recorded quarterly to identify the major foulants, determine the rate of settlement and growth, and study successional changes. These studies indicate strong species-specific seasonal settlement patterns. Fouling communities vary between deployment habitats depending on factors such as hydrodynamic conditions, water depth, and substrate type. These findings will allow recommendations for test centres and developers to minimise the impacts of fouling, chiefly through selective scheduling of deployments and maintenance, in different habitats, to times when the settlement of fouling organisms will be minimal or their removal will be least costly. In addition, BioFREE has created training materials to help inform the MRE industry of ways to better capture biofouling information when conducting operations at sea. Practical suggestions are informed by recent maintenance and decommissioning operations conducted on MRE infrastructure. These studies have identified structural areas and materials of particular concern from the impacts of biofouling. The lead role of EMEC, as a representative of MRE developers in the sector, is allowing promotion of project outputs within the industry and between test centres. These findings are being disseminated through conference presentations, technical reports, scientific publications, public engagement, and webinars planned for the near future.
BioFREE:生物污染对海洋可再生能源产业影响的国际研究
海洋可再生能源(MRE)产业的成功取决于最大限度地获取能源和最大限度地减少停机时间。设备性能受到污染生物生长的负面影响,导致效率和可靠性降低;防污策略既昂贵又耗时。生物污垢还降低了用于评估流体动力资源和设备性能的数据浮标和传感器的准确性。虽然几个世纪以来,生物污染一直是一个公认的问题,但MRE设备的部署产生了几个独特的问题。此外,人们还担心MRE基础设施可能会成为促进非本地和入侵物种传播的“垫脚石”。关于该领域生物污染的已发表研究很少。随着更严格的环境控制的大趋势,MRE行业必须表现出减少干扰和促进积极影响的承诺。考虑到MRE的利润很小,从提高投资者信心的角度来看,解决生物污染问题可能会带来实质性的好处。BioFREE项目(Heriot-Watt University和英国欧洲海洋能源中心(EMEC)的合作项目)正在通过详细描述MRE部门使用的多个栖息地的生物污染群落特征,以及监测部署和退役后底栖生物的影响来解决这些问题。BioFREE正在开发一个可行的标准监测系统,旨在使用实用有效的方法促进数据收集。框架中填充了沉降面板、数据记录器和由MRE开发人员最关心的材料组成的组件。该系统的组件可以用防污涂层处理。框架正在日本、智利、法国和美国的其他测试中心和研究机构的各种栖息地部署;每季度记录一次生物,以确定主要污染物,确定沉降和生长速度,并研究演替变化。这些研究表明了强烈的物种特异性季节性定居模式。根据水动力条件、水深和基质类型等因素的不同,不同的部署栖息地的污垢群落也有所不同。这些发现将为测试中心和开发人员提供建议,以最大限度地减少污染的影响,主要是通过在不同的栖息地中选择性地安排部署和维护,以达到污染生物沉降最少或去除成本最低的时间。此外,BioFREE还编写了培训材料,帮助MRE行业了解在海上作业时更好地获取生物污垢信息的方法。根据最近对MRE基础设施进行的维护和退役操作,提出了切实可行的建议。这些研究已经从生物污染的影响中确定了特别关注的结构区域和材料。作为MRE开发人员在该领域的代表,EMEC的主导作用是促进行业内和测试中心之间的项目产出。这些发现正在通过会议演讲、技术报告、科学出版物、公众参与和计划在不久的将来举行的网络研讨会进行传播。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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