首页> 外文OA文献 >Estimate of carbonate production by scleractinian corals at Luhuitou fringing reef, Sanya, China
【2h】

Estimate of carbonate production by scleractinian corals at Luhuitou fringing reef, Sanya, China

机译:三亚鹿回头边缘珊瑚礁中碳酸盐岩生产的估算

摘要

Carbonate production by scleractinian corals not only maintains coral reef growth, but also represents an important source of atmospheric carbon dioxide. In this paper the carbonate production by scleractinian corals at Luhuitou fringing reef, Sanya, Hainan Island, China, is investigated with an ecological census-based method. Averaged carbonate production is 1.16 +/- 0.55 kg center dot m(-2) center dot a(-1) and 3.52 +/- 1.32 kg center dot m(-2) center dot a(-1) on the reef flat and reef slope, respectively, depending on the composition and distribution of corals and the intergeneric difference of skeletal growth. In response to the rapidly increasing human impacts, coral carbonate production has decreased by 80%-89% at this fringing reef since the 1960s; as a result, the reef accretion rate declined and became lower than the rate of sea level rise. Further development of the Luhuitou fringing reef will switch significantly from lateral extension seawards to vertical growth, reflecting a response of coral reef bio-geomorphic process to strong human impacts under the background of global sea level rise. In addition, decrease in coral carbonate production reduced CO2 release from this fringing reef. In the future, it is likely that the role played by coral reefs, especially of fringing reefs, in the ocean and even in the global carbon cycle will be modified or weakened by the increasing human impacts.
机译:巩膜珊瑚产生的碳酸盐不仅维持珊瑚礁的生长,而且是大气中二氧化碳的重要来源。本文采用生态普查的方法研究了海南岛三亚鹿回头边缘礁的巩膜珊瑚产生的碳酸盐。在礁滩上,平均碳酸盐产量为1.16 +/- 0.55 kg中心点m(-2)中心点a(-1)和3.52 +/- 1.32 kg中心点m(-2)中心点a(-1)和礁的坡度分别取决于珊瑚的组成和分布以及骨骼生长的属间差异。自从1960年代以来,为了应对人类迅速增加的影响,该边缘珊瑚礁的碳酸钙产量下降了80%-89%。结果,珊瑚礁的吸收率下降了,变得低于海平面上升的速度。鹿回头边缘礁的进一步发展将从侧向延伸的海域向垂直方向显着转变,这反映了在全球海平面上升的背景下,珊瑚礁生物地貌过程对人类强烈影响的反应。另外,珊瑚碳酸盐产量的减少也减少了该礁石的二氧化碳释放。将来,随着人类影响的增加,珊瑚礁,特别是边缘礁在海洋中甚至在全球碳循环中所扮演的角色很可能会被改变或削弱。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

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