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A unique temperate rocky coastal hydrothermal vent system (Whakaari-White Island, Bay of Plenty, New Zealand): constraints for ocean acidification studies

机译:独特的温带岩石沿海水热通风系统(Whakaari-White Island,湾湾,新西兰湾):海洋酸化研究的约束

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摘要

In situ effects of ocean acidification are increasingly studied at submarine CO_2 vents. Here we present a preliminary investigation into the water chemistry and biology of cool temperate CO_2 vents near Whakaari-White Island, New Zealand. Water samples were collected inside three vent shafts, within vents at a distance of 2mfrom the shaft and at control sites. Vent samples contained both seawater pH on the total scale (pH_T) and carbonate saturation states that were severely reduced, creating conditions as predicted for beyond the year 2100. Vent samples showed lower salinities, higher temperatures and greater nutrient concentrations. Sulfide levels were elevated and mercury levels were at concentrations considered toxic at all vent and control sites, but stable organic and inorganic ligands were present, as deduced from Cu speciation data, potentially mediating harmful effects on local organisms. The biological investigations focused on phytoplankton, zooplankton and macroalgae. Interestingly, we found lower abundances but higher diversity of phytoplankton and zooplankton at sites in the direct vicinity of Whakaari. Follow-up studies will need a combination of methods and approaches to attribute observations to specific drivers. The Whakaari vents represent a unique ecosystem with considerable biogeochemical complexity, which, like many other vent systems globally, require care in their use as a model of 'future oceans'.
机译:原位效应海洋酸化越来越多地研究了潜艇Co_2通风口。在这里,我们对Whakaari-White Island,新西兰Whakaari-White Island附近的凉爽温带Co_2通风口的水化学和生物学初步调查。在三个通气轴内收集水样,在轴和控制部位的2mm的通风口内。通风样品含有海水pH,含有严重减少的总尺度(pH_T)和碳酸盐饱和状态,这些饱和状态是严重减少的,创造了预测到2100年的预测条件。排气样品显示出低盐度,更高的温度和更高的营养浓度。硫化物水平升高,汞水平在所有通风口和对照位点被认为有毒的浓度,但是从Cu形状数据推导出稳定的有机和无机配体,可能导致对局部生物的有害影响。生物学调查专注于浮游植物,浮游植物和大理石。有趣的是,我们发现较低的丰富,但在Whakaari直接附近的景点中的浮游植物和Zooplankton的多样性。后续研究需要对特定驱动因素的分析观察的方法和方法组合。 Whakaari通风口代表了一个独特的生态系统,具有相当大的生物地球化学复杂性,与全球许多其他通风系统一样,需要照顾他们作为“未来海洋”的模型。

著录项

  • 来源
    《Marine & freshwater research》 |2020年第3期|共24页
  • 作者单位

    Department of Chemistry University of Otago PO Box 56 Dunedin 9054 New Zealand;

    Southern Seas Ecology Laboratories School of Biological Sciences University of Adelaide Adelaide SA 5005 Australia;

    School of Biological Sciences Victoria University of Wellington PO Box 600 Wellington 6140 New Zealand;

    National Institute for Water and Atmospheric (NIWA)/University of Otago Research Centre for Oceanography PO Box 56 Dunedin 9054 New Zealand;

    Australian Institute for Marine Science PMB 3 Townsville MC Qld 4810 Australia;

    Department of Botany University of Otago PO Box 54 Dunedin 9054 New Zealand;

    Department of Marine Science University of Otago PO Box 56 Dunedin 9054 New Zealand;

    Department of Chemistry University of Otago PO Box 56 Dunedin 9054 New Zealand;

    Australian Institute for Marine Science PMB 3 Townsville MC Qld 4810 Australia;

    Department of Chemistry University of Otago PO Box 56 Dunedin 9054 New Zealand;

    School of Biological Sciences University of Auckland Private Bag 92019 Auckland 1010 New Zealand;

    Leigh Marine Laboratory Institute of Marine Science University of Auckland 160 Goat Island Road Auckland 0985 New Zealand;

    School of Environmental Sciences University of Liverpool 74 Bedford Street Liverpool L69 7ZT UK;

    Department of Marine Science University of Otago PO Box 56 Dunedin 9054 New Zealand;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水文科学(水界物理学);
  • 关键词

    carbon dioxide; trace metal speciation; volcanic submarine vent;

    机译:二氧化碳;痕量金属形态;火山潜水艇通风口;
  • 入库时间 2022-08-20 04:02:53

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