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MariaBox: First prototype of a novel instrument to observe natural and chemical pollutants in seawater

机译:MariaBox:用于观测海水中自然和化学污染物的新型仪器的首个原型

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摘要

The MariaBox project, funded by the European Commission (Contract 614088), is developing an autonomous, analytical device, based on novel biosensors, for monitoring chemical and biological pollutants in sea water. The device, currently at first prototype level, is suitable for installation in free floating devices, buoys or ships. The main, high-level user requirements for the system are for the device to be of high-sensitivity, portable and capable of repeating measurements over a long time, allowing long-term deployment at sea. The first phase of the project, “user requirements collection”, was dedicated to understanding the current needs of water monitoring through institutions in different areas of Europe, at different location types. The locations in which the research was focused are also the ones in which the field validation of MariaBox will take place: a sea water lagoon in Spain with different characteristics of water salinity and natural environment, currently exploited for shellfish farming; a natural site in Ireland (Galway bay); the Skagerrak, a sea arm between Norway, Denmark and Sweden; and a harbour area close to industrial facilities in Cyprus. The analytes of interest for the monitoring institutions are coherent to the list of pollutants to be monitored by the European Commission. A first trade-off between end-user requirements and engineering feasibility, available time and final system cost had to be made. On one hand, the MariaBox device is intended to be portable and its size must be such as to allow permanent positioning inside sea buoys. Several modules are required to achieve the aim of monitoring, in an autonomous and unattended way, all selected target analytes for a period of several months. Energy expenditure is a relevant constraint. Nevertheless, being a device deployed at sea, energy scavenging is a real option to guarantee the system autonomy or, at least, to keep the system operating at a minimum level, that is, to maintain the biosensors and the biochemical reactants in a controlled and safe environment. This controlled environment is managed by the analytical core unit of MariaBox, that acts as a cooler or heater depending on the external temperatures (from -10°C up to +50°C). The system design has been confronted with all of these challenging requirements. The device is intended to provide not only scientific data but also early warnings in relation to both algal blooming and production of toxins, as well as to chemical, man-made pollutants (heavy metals, camphechlor, naphthalene, PFOS). This means that considering the European thresholds for pollutants is not enough. The MariaBox detection capacity has to be under the legal threshold, so as to enable early warnings and the possibility to prevent the pollution with adequate countermeasures. The first MariaBox prototype has been recently produced and is currently being tested and validated in the lab. Within 2017, the device will be replicated and 4 replicas will be installed in the 4 selected pilot locations.
机译:由欧洲委员会(合同号614088)资助的MariaBox项目正在开发一种基于新型生物传感器的自主分析设备,用于监测海水中的化学和生物污染物。该设备目前处于原型阶段,适合安装在自由浮动设备,浮标或船上。该系统对用户的主要高级要求是该设备具有高灵敏度,便携式且能够长时间重复测量,从而可以在海上长期部署。该项目的第一阶段“用户需求收集”致力于通过欧洲不同地区,不同地点类型的机构来了解当前的水监控需求。研究的重点还包括将对MariaBox进行现场验证的地点:西班牙的海水泻湖,具有不同的盐度和自然环境特征,目前已用于贝类养殖;爱尔兰的自然景点(戈尔韦湾); Skagerrak,挪威,丹麦和瑞典之间的海上力量;以及靠近塞浦路斯工业设施的海港区。监测机构感兴趣的分析物与欧盟委员会要监测的污染物清单保持一致。必须在最终用户需求和工程可行性,可用时间和最终系统成本之间进行权衡。一方面,MariaBox设备旨在便携式,其尺寸必须能够永久固定在海浮标内。需要几个模块来实现以自主和无人值守的方式监视所有选定目标分析物几个月的目的。能源消耗是一个相关的约束。然而,作为一种海上部署的设备,能量清除是保证系统自治或至少将系统保持在最低水平运行(即将生物传感器和生化反应物保持在受控且可控的状态)的真正选择。安全的环境。此受控环境由MariaBox的分析核心单元管理,该核心单元根据外部温度(-10°C至+ 50°C)充当冷却器或加热器。系统设计面临所有这些挑战性要求。该设备不仅旨在提供科学数据,而且还提供有关藻类开花和毒素产生以及化学,人为污染物(重金属,樟脑,萘,PFOS)的预警。这意味着仅考虑欧洲的污染物阈值还不够。 MariaBox的检测能力必须在法定阈值以下,以便能够发出预警,并有可能采取适当的对策防止污染。第一个MariaBox原型是最近生产的,目前正在实验室中进行测试和验证。在2017年内,该设备将被复制,并且将在选定的4个试验位置安装4个副本。

著录项

  • 来源
    《OCEANS 2017 - Aberdeen》|2017年|1-5|共5页
  • 会议地点 Aberdeen(GB)
  • 作者单位

    Kontor 46 SaS, Turin, Italy;

    Kontor 46 SaS, Turin, Italy;

    FUN - Università di Napoli Federico II, Napoli, Italy;

    FUN - Università di Napoli Federico II, Napoli, Italy;

    CyRIC - Cyprus research and Innovation Center Ltd, Cyprus;

    CyRIC - Cyprus research and Innovation Center Ltd, Cyprus;

    Institute of Food Science, CNR - Consiglio Nazionale delle Ricerche, Avellino, Italy;

    Institute of Food Science, CNR - Consiglio Nazionale delle Ricerche, Avellino, Italy;

    Institute of Food Science, CNR - Consiglio Nazionale delle Ricerche, Avellino, Italy;

    Institute of Food Science, CNR - Consiglio Nazionale delle Ricerche, Avellino, Italy;

    DCU Water Institute, School of Chemical Sciences, School of Biotechnology, School of Physics, Dublin City University, Glasneovin, Dublin 9, Ireland;

    DCU Water Institute, School of Chemical Sciences, School of Biotechnology, School of Physics, Dublin City University, Glasneovin, Dublin 9, Ireland;

    DCU Water Institute, School of Chemical Sciences, School of Biotechnology, School of Physics, Dublin City University, Glasneovin, Dublin 9, Ireland;

    DCU Water Institute, School of Chemical Sciences, School of Biotechnology, School of Physics, Dublin City University, Glasneovin, Dublin 9, Ireland;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biosensors; Monitoring; Metals; Chemicals; Europe; Water pollution; Pollution measurement;

    机译:生物传感器;监测;金属;化工;欧洲;水污染;污染测量;;

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