首页> 外文期刊>Journal of oceanography >Primary productivity at the time-series stations in the northwestern Pacific Ocean: is the subtropical station unproductive?
【24h】

Primary productivity at the time-series stations in the northwestern Pacific Ocean: is the subtropical station unproductive?

机译:西北太平洋时间序列站的初级生产力:亚热带站没有生产力吗?

获取原文
           

摘要

A comparative study of primary productivity in the northwestern Pacific Ocean was conducted at time-series stations K2 and S1 in the nutrient-rich subarctic gyre and oligotrophic subtropical gyre, respectively. The estimated annual means of net primary production (NPP) at the two stations were virtually identical: 292?mg?C?m?2?day?1 at K2 and 303?mg?C?m?2?day?1 at S1, whereas the annual mean of gross primary production (GPP) at S1 was 1.5 times that at K2. NPP was very much limited by the supply of nutrients, typified by nitrate at S1, although it was enhanced during winter due to mitigation of nutrient limitation. The NPP/GPP ratios were remarkably lower at S1 during the spring-to-autumn time interval than in winter. The reduced NPP/GPP ratio means that photosynthetically assimilated carbon was lost at a higher rate via respiration and extracellular release of dissolved organic carbon (DOC). The carbon loss (difference between GPP and NPP) was higher at S1 than at K2, probably because of the enhanced respiration due to the relatively high temperature throughout the year, as well as the enhanced DOC release by nutrient limitation. The released DOC should be accounted for as primary production, because it contributes to oceanic biogeochemistry in a manner similar to the photosynthesized compounds. Consequently, total primary production, the sum of NPP and DOC release, was higher at S1 than at K2.
机译:分别在营养丰富的亚北极回旋和贫营养亚热带回旋的时间序列站K2和S1进行了西北太平洋初级生产力的比较研究。两个站点的估计年净初级生产(NPP)年均值几乎相同:K2为292 mg?C?m?2?day?1,S1为303?mg?C?m?2?day?1 ,而S1的年平均初级生产总值(GPP)是K2的1.5倍。 NPP受到养分供应的极大限制,以S1时期的硝酸盐为代表,尽管由于缓解了养分限制,冬季NPP有所提高。在春季至秋季的时间间隔内,S1的NPP / GPP比值明显低于冬季。降低的NPP / GPP比值意味着光合作用的碳通过呼吸和溶解性有机碳(DOC)的细胞外释放以更高的速率损失。 S1的碳损失(GPP与NPP之间的差异)高于K2,这可能是由于全年相对较高的温度导致呼吸增强,以及由于养分限制而导致的DOC释放增加。释放的DOC应该被视为主要产物,因为它以类似于光合化合物的方式促进了海洋生物地球化学。因此,S1的总初级产量,NPP和DOC释放总量之和高于K2。

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