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Spatial-temporal water column monitoring using multiple, low-cost GasPro-pCO2 sensors: implications for monitoring, modelling, and potential impact.

机译:使用多重低成本的GasPro-PCO2传感器的空间颞下水柱监测:对监测,建模和潜在影响的影响。

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Monitoring of the water column in the vicinity of offshore Carbon Capture and Storage (CCS) sites is needed to ensure site integrity and to protect the surrounding marine ecosystem. In this regard, the use of continuous, autonomous systems is considered greatly advantageous due to the costs and limitations of periodic, ship-based sampling campaigns. While various geochemical monitoring tools have been developed their elevated costs and complexities mean that typically only one unit can be deployed at a time, yielding single point temporal data but no spatial data. To address this the authors have developed low-cost pCO2 sensors (GasPro-pCO2) that are small, robust, stable, and which have a low power consumption, characteristics which allow for the deployment of numerous units to monitor the spatial-temporal distribution of pCO2, temperature, and water pressure in surface water environments. The present article details the results of three field deployments at the natural, CO2-leaking site near Panarea, Island. While the first consisted of 6 probes placed on the sea floor for a 2.5 month period, the other two involved the deployment of 20 GasPro units along a transect through the water column in the vicinity of active CO2 seeps over 2-4 days. Results show both transport and mixing processes and highlight the dynamic nature of the leakage-induced marine geochemical anomalies. Implications for monitoring programs as well as potential impacts are discussed.
机译:需要监测海上碳捕获和储存(CCS)站点的水柱,以确保地点完整性和保护周围的海洋生态系统。在这方面,由于周期性,基于船舶的采样活动的成本和局限性,使用连续的自主系统的使用被认为是大大有利的。虽然已经开发了各种地球化学监控工具的升高成本和复杂性,但通常只能一次部署一个单位,产生单点时间数据但没有空间数据。为了解决这个问题,作者已经开发出小型,稳健,稳定的低成本PCO2传感器(GasPro-PCO2),具有低功耗,特性,允许部署许多单位来监测空间 - 时间分布表面水环境中的PCO2,温度和水压。本文详细说明了在Panarea,岛附近的自然,二氧化碳泄漏场地的三个现场部署结果。虽然第一个由6个探头组成,但在海底上放置了2.5个月的时间,而另外两个涉及通过在活性CO 2附近的水柱横断调横转部署20个Gaspro单元。结果表明,运输和混合过程均突出渗漏诱导的海洋地球化学异常的动态性质。讨论了对监测计划以及潜在影响的影响。

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