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首页> 外文期刊>Estuaries and Coasts >Biocalcification in the Eastern Oyster (Crassostrea virginica) in Relation to Long-term Trends in Chesapeake Bay pH
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Biocalcification in the Eastern Oyster (Crassostrea virginica) in Relation to Long-term Trends in Chesapeake Bay pH

机译:东部牡蛎(Crassostrea virginica)的生物钙化与切萨皮克湾pH值的长期趋势相关

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摘要

Anthropogenic carbon dioxide (CO2) emissions reduce pH of marine waters due to the absorption of atmospheric CO2 and formation of carbonic acid. Estuarine waters are more susceptible to acidification because they are subject to multiple acid sources and are less buffered than marine waters. Consequently, estuarine shell forming species may experience acidification sooner than marine species although the tolerance of estuarine calcifiers to pH changes is poorly understood. We analyzed 23 years of Chesapeake Bay water quality monitoring data and found that daytime average pH significantly decreased across polyhaline waters although pH has not significantly changed across mesohaline waters. In some tributaries that once supported large oyster populations, pH is increasing. Current average conditions within some tributaries however correspond to values that we found in laboratory studies to reduce oyster biocalcification rates or resulted in net shell dissolution. Calcification rates of juvenile eastern oysters, Crassostrea virginica, were measured in laboratory studies in a three-way factorial design with 3 pH levels, two salinities, and two temperatures. Biocalcification declined significantly with a reduction of ∼0.5 pH units and higher temperature and salinity mitigated the decrease in biocalcification.
机译:由于大气中二氧化碳的吸收和碳酸的形成,人为排放的二氧化碳降低了海水的pH值。河口水较容易受到酸化的影响,因为它们受多种酸源的影响,并且与海水相比,缓冲能力更弱。因此,尽管人们对河口钙化剂对pH变化的耐受性了解得很少,但河口形成贝壳的物种可能比海洋物种更早发生酸化。我们分析了切萨皮克湾23年的水质监测数据,发现日间平均pH值在多卤水中显着降低,尽管pH在中卤水中没有显着变化。在曾经支配大量牡蛎种群的一些支流中,pH值正在增加。但是,一些支流中的当前平均状况与我们在实验室研究中发现的降低牡蛎生物钙化速率或导致贝壳净溶解的值相对应。在实验室研究中,采用3种pH值,两个盐度和两个温度的三向析因设计,对东部东部牡蛎Crassostrea virginica的钙化率进行了测量。生物钙化显着下降,pH值降低约0.5个单位,更高的温度和盐度减轻了生物钙化的降低。

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  • 来源
    《Estuaries and Coasts》 |2011年第2期|p.221-231|共11页
  • 作者单位

    College of Oceanic and Atmospheric Sciences, Oregon State University, 104 COAS Administration Building, Corvallis, OR, 97331, USA;

    Southeast Coast Inventory and Monitoring Network, Fort Sumter National Monument, Sullivan’s Island, SC, 29482, USA;

    College of Oceanic and Atmospheric Sciences, Oregon State University, 104 COAS Administration Building, Corvallis, OR, 97331, USA;

    Division of Natural Sciences, St. Joseph’s College of Maine, 278 Whites Bridge Road, Standish, ME, 04084, USA;

    Horn Point Laboratory, University of Maryland Center for Environmental Science, 2020 Horns Point Rd, Cambridge, MD, 21613, USA;

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

    Biocalcification; Bivalve; Chesapeake Bay; Estuarine acidification; Oyster; pH;

    机译:生物钙化;双壳类;切萨皮克湾;河口酸化;牡蛎;pH;

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