...
首页> 外文期刊>Journal of Geophysical Research, C. Oceans: JGR >Spatiotemporal variations of dissolved organic carbon and carbon monoxide in first‐year sea ice in the western Canadian Arctic
【24h】

Spatiotemporal variations of dissolved organic carbon and carbon monoxide in first‐year sea ice in the western Canadian Arctic

机译:加拿大西部北极地区第一年海冰中溶解有机碳和一氧化碳的时空变化

获取原文
获取原文并翻译 | 示例

摘要

[1] We monitored the spatiotemporal progression of dissolved organic carbon (DOC) and carbon monoxide (CO), along with general meteorological, hydrographic, and biological variables, in first‐year sea ice in the western Canadian Arctic between mid‐March and early July 2008. DOC and CO concentrations fluctuated irregularly in surface ice, but followed the concentration of ice algae in bottom ice, i.e., low at the start of ice algal accumulation, highly enriched during the peak‐bloom and early post‐bloom, and depleted again during sea ice melt. Vertical profiles of DOC and CO typically decreased downward in early spring and were variable in the melting season. In the presence of high bottom ice algal biomass in mid‐spring, DOC and CO exhibited high concentrations in the bottom (DOC: 563 ± 434 mmol L~(?1); CO: 82.9 ± 84 nmol L~(?1)) relative to the surface (DOC: 56 ± 26 mmol L~(?1); CO: 16.8 ± 7 nmol L~(?1)). Landfast ice contained higher levels of DOC and CO than drifting ice. Cruise‐mean DOC and CO inventories in sea ice were 87 ± 51 mmol m~(?2) and 13.9 ± 10 mmol m~(?2), respectively. Net productions of DOC and CO linked to the ice algal bloom were assessed to be 75 mmol m~(?2) and 13.2 mmol m~(?2). Sea ice in the study area was estimated to contribute 7.4 × 10~7 moles of CO a~(?1) to the atmosphere. This study suggests that sea ice plays important roles in the cycling of organic carbon and trace gases.
机译:[1]我们在3月中旬至3月中旬在加拿大西部北极地区的第一年海冰中监测了溶解有机碳(DOC)和一氧化碳(CO)的时空变化以及一般的气象,水文和生物变量2008年7月。地表冰中的DOC和CO浓度不规则地波动,但跟随底冰中冰藻的浓度,即在冰藻积累开始时较低,在高峰期和高峰期后高度富集,并耗尽再次在海冰融化。 DOC和CO的垂直剖面通常在初春时下降,并在融化季节变化。在春季中期存在高底部冰藻生物量的情况下,DOC和CO在底部呈现出高浓度(DOC:563±434 mmol L〜(?1); CO:82.9±84 nmol L〜(?1))相对于表面(DOC:56±26mmol L·(α1); CO:16.8±7nmol L·(α1))。与流冰相比,陆冰中的DOC和CO含量更高。海冰中的巡航平均DOC和CO库存分别为87±51 mmol m〜(?2)和13.9±10 mmol m〜(?2)。估计与冰藻开花有关的DOC和CO的净产量分别为75 mmol m〜(?2)和13.2 mmol m〜(?2)。据估计,研究区的海冰向大气中贡献了7.4×10〜7摩尔的CO a〜(?1)。这项研究表明,海冰在有机碳和微量气体的循环中起着重要作用。

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