...
首页> 外文期刊>Journal of Fish Diseases >Pan-Arctic sea ice-algal chl a biomass and suitable habitat are largely underestimated for multiyear ice
【24h】

Pan-Arctic sea ice-algal chl a biomass and suitable habitat are largely underestimated for multiyear ice

机译:泛北极海冰藻chl生物质和合适的栖息地大部分低估了多年冰

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

There is mounting evidence that multiyear ice (MYI) is a unique component of the Arctic Ocean and may play a more important ecological role than previously assumed. This study improves our understanding of the potential of MYI as a suitable habitat for sea ice algae on a pan-Arctic scale. We sampled sea ice cores from MYI and first-year sea ice (FYI) within the Lincoln Sea during four consecutive spring seasons. This included four MYI hummocks with a mean chl a biomass of 2.0 mg/m(2), a value significantly higher than FYI and MYI refrozen ponds. Our results support the hypothesis that MYI hummocks can host substantial ice-algal biomass and represent a reliable ice-algal habitat due to the (quasi-) permanent low-snow surface of these features. We identified an ice-algal habitat threshold value for calculated light transmittance of 0.014%. Ice classes and coverage of suitable ice-algal habitat were determined from snow and ice surveys. These ice classes and associated coverage of suitable habitat were applied to pan-Arctic CryoSat-2 snow and ice thickness data products. This habitat classification accounted for the variability of the snow and ice properties and showed an areal coverage of suitable ice-algal habitat within the MYI-covered region of 0.54 million km(2) (8.5% of total ice area). This is 27 times greater than the areal coverage of 0.02 million km(2) (0.3% of total ice area) determined using the conventional block-model classification, which assigns single-parameter values to each grid cell and does not account for subgrid cell variability. This emphasizes the importance of accounting for variable snow and ice conditions in all sea ice studies. Furthermore, our results indicate the loss of MYI will also mean the loss of reliable ice-algal habitat during spring when food is sparse and many organisms depend on ice-algae.
机译:多年冰(Myi)是北极海洋的独特组成的证据,可能比以前假设的更重要的生态作用。本研究提高了我们对Myi潜力的理解,作为泛北极级海冰藻类的合适栖息地。在连续四个春季赛季,我们在林肯海内的Myi和第一年海冰(FYI)采样海冰核心。这包括四个Myi Hummocks,其平均CHL是2.0 mg / m(2)的生物量,值明显高于FYI和Myi Refrozen Ponds。我们的研究结果支持Myi Hummocks可以主持大量冰藻生物量并代表这些特征(准)永久性低雪表面的可靠抗藻栖息地。我们鉴定了冰藻栖息地阈值,用于计算0.014%的透光率。从雪和冰调查中确定了合适的抗藻类栖息地的冰课程和覆盖范围。这些冰课程和相关栖息地的相关覆盖应用于泛北极低温-2雪和冰厚度数据产品。该栖息地分类占雪和冰属性的可变性,并在米西覆盖地区占合适的冰藻栖息地的区域覆盖范围(2)(占总冰面积的8.5%)。这比使用传统块模型分类确定的0.02亿公里(2)(占总冰面积的0.3%)的面积覆盖率大于27倍,这为每个网格单元分配单个参数值,并且不考虑底片变化性。这强调了所有海冰研究中会计变量雪和冰条件的重要性。此外,我们的结果表明,Myi的丧失也意味着当食物稀疏时春季期间可靠的抗藻类栖息地损失,许多生物依赖于冰藻。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号