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Massive shellfish farming might accelerate coastal acidification: A case study on carbonate system dynamics in a bay scallop (Argopecten irradians) farming area, North Yellow Sea

机译:巨大的贝类农业可能会加速沿海酸化:湾扇贝(Argopecten Irradians)农业地区碳酸盐系统动态的案例研究

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摘要

Seven cruises were carried out in a bay scallop (Argopecten irradians) farming area and its surrounding waters, North Yellow Sea, from March to November 2017 to study the dynamics of the carbonate system and its controlling factors. Results indicated that the studied parameters were highly variability over a range of spatiotemporal scales, comprehensively forced by various physical and biological processes. Mixing effect and scallop calcification played the most important role in the seasonal variation of total alkalinity (TAlk). For dissolved inorganic carbon (DIC), in addition to mixing, air-sea exchange and microbial activity, e.g. photosynthesis and microbial respiration processes, had more important effects on its dynamics. Different from the former, the changes of water pH_T, partial pressure of CO_2 (pCO_2) and aragonite saturation state (Ω_A) were mainly controlled by the combining of the temperature, air-sea exchange, microbial activity and scallop metabolic activities. In addition, the results indicated that massive scallop farming can significantly increase the DIC/TAlk ratio by reducing the TAlk concentration in seawater, thereby reducing the buffering capacity of the carbonate system in seawater especially for Ω_A. Preliminary calculated, ~75.7 and ~45.5 μmol kg~(-1) of TAlk were removed from the surface and bottom waters respectively in one scallop cultivating cycle. If these carbonates cannot be replenished in time, it is likely to accelerate the acidification process of coastal waters. This study highlighted the control mechanism of the carbonate system under the influence of bay scallop farming, and provided useful information for revealing the potential link between human activities (shelled-mollusc mariculture) and coastal acidification.
机译:从3月到2017年3月到2017年11月,在海湾扇贝(Argopecten Irradians)农业地区及其周围水域,北黄海,北黄海,从2017年至11月开始进行七个游轮研究碳酸盐系统的动态及其控制因素。结果表明,研究的参数在一系列不可变异性上,各种物理和生物过程全面强制。混合效果和扇贝钙化在总碱度的季节性变化(谈话)中起最重要的作用。对于溶解的无机碳(DIC),除了混合,空中交换和微生物活动之外,例如,光合作用和微生物呼吸过程对其动力学具有更重要的影响。与前者不同,水pH_T的变化,CO_2(PCO_2)和金属石饱和状态(ω_A)的分压主要是由温度,空中交换,微生物活性和扇贝代谢活性的组合来控制的。此外,结果表明,大规模的扇贝农业可以通过降低海水中的谈话浓度来显着提高DIC /谈话比,从而降低海水中碳酸盐系统的缓冲能力,特别是ω_a。在一个扇贝培养循环中,分别从表面和底部水分中除去初步计算,〜75.7和〜45.5μmolkg〜(-1)。如果不能及时补充这些碳酸盐,则可能加速沿海水域的酸化过程。本研究强调了碳酸盐盐系统在湾扇贝农业的影响下的控制机制,并提供了揭示人类活动(壳 - 软体动物养殖)和沿海酸化之间潜在联系的有用信息。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|149214.1-149214.15|共15页
  • 作者单位

    CAS Key Laboratory of Coastal Zone Environmental Processes and Ecological Remediation Yantai Institute of CoastalZone Research Chinese Academy of Sciences Yantai Shandong 264003 China University of Chinese Academy of Sciences Beijing 100049 China Center for Ocean Mega-Science Chinese Academy of Sciences Qingdao Shandong 266071 China;

    CAS Key Laboratory of Coastal Zone Environmental Processes and Ecological Remediation Yantai Institute of CoastalZone Research Chinese Academy of Sciences Yantai Shandong 264003 China University of Chinese Academy of Sciences Beijing 100049 China Center for Ocean Mega-Science Chinese Academy of Sciences Qingdao Shandong 266071 China;

    CAS Key Laboratory of Coastal Zone Environmental Processes and Ecological Remediation Yantai Institute of CoastalZone Research Chinese Academy of Sciences Yantai Shandong 264003 China University of Chinese Academy of Sciences Beijing 100049 China Center for Ocean Mega-Science Chinese Academy of Sciences Qingdao Shandong 266071 China;

    CAS Key Laboratory of Coastal Zone Environmental Processes and Ecological Remediation Yantai Institute of CoastalZone Research Chinese Academy of Sciences Yantai Shandong 264003 China University of Chinese Academy of Sciences Beijing 100049 China;

    Department of Oceanography National Sun Yat-sen University Kaohsiung 80424 Taiwan;

    Department of Oceanography National Sun Yat-sen University Kaohsiung 80424 Taiwan;

    Department of Oceanography National Sun Yat-sen University Kaohsiung 80424 Taiwan;

    CAS Key Laboratory of Coastal Zone Environmental Processes and Ecological Remediation Yantai Institute of CoastalZone Research Chinese Academy of Sciences Yantai Shandong 264003 China Center for Ocean Mega-Science Chinese Academy of Sciences Qingdao Shandong 266071 China;

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

    Carbonate system; Scallop farming; Photosynthesis; Respiration; Calcification; Coastal acidification;

    机译:碳酸盐系统;扇贝农业;光合作用;呼吸;钙化;沿海酸化;

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