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Rapid Alkalization in Lake Inawashiro, Fukushima, Japan: Implications for Future Changes in the Carbonate System of Terrestrial Waters

机译:日本福岛猪苗代代湖的快速碱化:对陆地水碳酸盐系统未来变化的启示

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摘要

The global carbon cycle, one of the important biogeochemical cycles controlling the surface environment of the Earth, has been greatly affected by human activity. Anthropogenic nutrient loading from urban sewage and agricultural runoff has caused eutrophication of aquatic systems. The impact of this eutrophication and consequent photosynthetic activity on CO2 exchange between freshwater systems and the atmosphere is unclear. In this study, we focused on how nutrient loading to lakes affects their carbonate system. Here, we report results of surveys of lakes in Japan at different stages of eutrophication. Alkalization due to photosynthetic activity and decreases in PCO2 had occurred in eutrophic lakes (e.g., Lake Kasumigaura), whereas in an acidotrophic lake (Lake Inawashiro) that was impacted by volcanic hot springs, nutrient loading was changing the pH and carbon cycling. When the influence of volcanic activity was stronger in the past in Lake Inawashiro, precipitation of volcanic-derived iron and aluminum had removed nutrients by co-precipitation. During the last three decades, volcanic activity has weakened and the lake water has become alkalized. We inferred that this rapid alkalization did not result just from the reduction in acid inputs but was also strongly affected by increased photosynthetic activity during this period. Human activities affect many lakes in the world. These lakes may play an important part in the global carbon cycle through their influence on CO2 exchange between freshwater and the atmosphere. Biogeochemical changes and processes in these systems have important implications for future changes in aquatic carbonate systems on land.
机译:全球碳循环是控制地球表面环境的重要生物地球化学循环之一,已受到人类活动的极大影响。城市污水和农业径流的人为养分负荷导致水生系统富营养化。这种富营养化和随之而来的光合作用活动对淡水系统与大气之间的CO2交换的影响尚不清楚。在这项研究中,我们集中于湖泊中养分的装载量如何影响其碳酸盐系统。在这里,我们报告了富营养化不同阶段日本湖泊的调查结果。在富营养化的湖泊(例如霞浦湖)中,由于光合作用和PCO2的减少而发生了碱化,而在受火山温泉影响的酸性营养化的湖泊(猪苗代湖)中,养分含量改变了pH值和碳循环。过去,猪苗代郎湖的火山活动影响较大时,来自火山的铁和铝的沉淀通过共沉淀去除了养分。在过去的三十年中,火山活动减弱,湖水被碱化。我们推断,这种快速碱化不仅是由于酸输入的减少,而且在此期间还受到光合作用增加的强烈影响。人类活动影响着世界上许多湖泊。这些湖泊通过影响淡水与大气之间的CO2交换,可能在全球碳循环中发挥重要作用。这些系统中的生物地球化学变化和过程对陆上水生碳酸盐系统的未来变化具有重要意义。

著录项

  • 来源
    《Aquatic Geochemistry》 |2013年第4期|281-302|共22页
  • 作者单位

    Atmosphere and Ocean Research Institute (AORI) The University of Tokyo">(1);

    Atmosphere and Ocean Research Institute (AORI) The University of Tokyo">(1);

    Atmosphere and Ocean Research Institute (AORI) The University of Tokyo">(1);

    Geological Survey of Japan National Institute of Advanced Industrial Science and Technology (AIST)">(2);

    Geological Survey of Japan National Institute of Advanced Industrial Science and Technology (AIST)">(2);

    Atmosphere and Ocean Research Institute (AORI) The University of Tokyo">(1);

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

    The global carbon cycle; Lake; Alkalization; Nutrient; PCO2;

    机译:全球碳循环;湖;碱化;养分;二氧化碳;
  • 入库时间 2022-08-18 00:08:22

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