首页> 外文期刊>Science in China. Series D, Earth sciences >Characteristics of pCO_2 in surface water of the Bering Abyssal Plain and their effects on carbon cycle in the western Arctic Ocean
【24h】

Characteristics of pCO_2 in surface water of the Bering Abyssal Plain and their effects on carbon cycle in the western Arctic Ocean

机译:北冰洋西部白令深海平原地表水中pCO_2的特征及其对碳循环的影响

获取原文
获取原文并翻译 | 示例
           

摘要

Characteristics of the pCO_2 distribution in surface water of the Bering Abyssal Plain and their relationships with the ambient hydrological conditions were discussed using variations of the partial pressure of CO_2 in surface water of the Bering Abyssal Plain and the Chukchi Sea. Data in this study are from a field investigation during the First Chinese National Arctic Research Expedition in 1999. Compared to the high productivity in the Bering Continental Shelf, much lower levels of chlorophyll a were observed in the Bering Abyssal Plain. The effect of hydrological factors on the pCO_2 distribution in surface seawater of the Plain in summer has become a major driving force and dominated over biological factors. The Plain also presents a High Nutrient Low Chlorophyll (HNLC). In addition, the pCO_2 distribution in the Bering Abyssal Plain has also been found to be influenced from the Bering Slope Current which would transform to the Anadyr Current when it inflows northwestward over the Plain. The Anadyr Current would bring a high nutrient water to the western Arctic Ocean where local nutrients are almost depleted in the surface water during the summer time. Resupplying nutrients would stimulate the growth of phytoplankton and enhance capacity of absorbing atmospheric CO_2 in the surface water. Otherwise, in the Bering Sea the dissolved inorganic carbon brought from freshwater are not deposited down to the deep sea water but most of them would be transported into the western Arctic Ocean by the Alaska Coastal Current to form a carbon sink there. Therefore, the two carbon sinks in the western Arctic Ocean, one carried by the Anadyr Current and another by the Alaska Costal Current, will implicate the western Arctic Ocean in global change.
机译:利用白令深渊平原和楚科奇海地表水中CO_2的分压变化,探讨了白令深渊平原地表水中pCO_2的分布特征及其与周围水文条件的关系。这项研究的数据来自1999年首次中国国家北极研究考察期间的现场调查。与白令大陆架的高生产力相比,在白令深渊平原观察到的叶绿素a水平要低得多。夏季水文因素对平原表层海水中pCO_2分布的影响已成为主要驱动力,并受生物因素的控制。平原还呈现出高营养低叶绿素(HNLC)。此外,还发现白令深渊平原中的pCO_2分布受到白令坡向洋流的影响,当白令坡流向西北方向流经平原时将转换为阿那德尔洋流。 Anadyr洋流将为北冰洋西部带来大量的营养水,在夏季,当地的营养几乎被耗尽。重新补充养分将刺激浮游植物的生长并增强吸收地表水中大气CO_2的能力。否则,在白令海中,从淡水带入的溶解的无机碳不会沉积到深海水中,但是它们中的大多数会被阿拉斯加沿海流运到北冰洋西部,在那里形成碳汇。因此,北冰洋西部的两个碳汇,一个由阿纳德尔洋流携带,另一个由阿拉斯加沿海流携带,将在全球变化中牵连北冰洋。

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