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首页> 外文期刊>Journal of environmental monitoring: JEM >Apparatus for in situ monitoring of copper in coastal waters
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Apparatus for in situ monitoring of copper in coastal waters

机译:沿海水域铜现场监测设备

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Apparatus is designed and tested to determine metals in situ in seawater. Voltammetry with a vibrating gold microwire electrode (VGME) is combined with a battery powered potentiostat and a processor board and is tested for in situ monitoring of copper (Cu) in coastal waters. The VGME was combined with solid state reference and counter electrodes to make a single vibrating probe which was rated up to a depth of 40 m. The measuring mode for Cu was square-wave anodic stripping voltammetry whilst dissolved oxygen (DO) was monitored by a linear sweep scan in a negative potential direction. The working electrode was reactivated between measurements using a suitable potential sequence. The novelties of this work are the field-testing of apparatus incorporating a VGME for copper monitoring, which eliminates the need for pumping and reagents, but has sufficient sensitivity for low ambient levels of copper, and the use of a novel potential sequence to stabilise the response over a long time period. The apparatus has a measuring time of about 6 weeks and a measuring frequency of 12 h ~(-1). Measurement is reagent-free and power use is low as no pump is required. Experiments are carried out to test the stability of response of the system at various temperatures and its robustness with respect to long-term copper monitoring. Preliminary data were obtained during autonomous deployment over several weeks on a buoy in the Irish Sea. Vertical movement of the buoy caused individual measurements to have a variability of about 15%. It was found that longer term variability of the electrode could be minimised by normalisation of the Cu response over that of DO as the response was related to diffusion through the electrode surface which was similarly affected. The detected fraction of Cu (labile Cu) amounted to 1.5-4 nM during different deployments at a total Cu concentration of ~10 nM. The same ratio was found by voltammetry in samples taken to the laboratory. The new apparatus has demonstrated that metals in coastal waters can be monitored at trace level, much facilitating the monitoring of outfalls and local water contamination. Because of its sensitivity the apparatus would be of use in estuarine as well as coastal waters, with the aim of monitoring intermittent variability in the copper concentration.
机译:设计并测试了仪器,以确定海水中的原位金属。带有振动金微丝电极(VGME)的伏安法与电池供电的恒电位仪和处理器板结合使用,并经过测试可就地监测沿海水域中的铜(Cu)。 VGME与固态参比电极和对电极结合在一起,制成了一个额定振动深度达40 m的单个振动探头。 Cu的测量模式是方波阳极溶出伏安法,而溶解氧(DO)则通过线性扫描在负电势方向上进行监控。在测量之间使用合适的电位序列重新激活工作电极。这项工作的新颖之处在于对装有用于铜监测的VGME的设备进行了现场测试,该设备无需泵送和试剂,但对低环境铜浓度具有足够的灵敏度,并使用了新颖的电势序列来稳定铜。长时间响应。该设备的测量时间约为6周,测量频率为12 h〜(-1)。无需试剂即可进行测量,并且由于不需要泵,因此耗电量低。进行实验以测试系统在各种温度下的响应稳定性以及相对于长期铜监测的稳健性。初步数据是在爱尔兰海中一个浮标上数周的自主部署过程中获得的。浮标的垂直运动导致单个测量值的变化约为15%。已经发现,通过使Cu响应相对于DO响应标准化,可以使电极的长期可变性最小化,因为响应与通过类似地受到影响的穿过电极表面的扩散有关。在总浓度为〜10 nM的不同部署下,检测到的Cu(不稳定的Cu)分数为1.5-4 nM。通过伏安法在送往实验室的样品中发现了相同的比率。新设备证明,可以对痕量水域中的沿海金属进行监测,极大地方便了排水口和局部水污染的监测。由于其灵敏度高,该设备可用于河口以及沿海水域,目的是监测铜浓度的间歇性变化。

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