会员登录 - 用户注册 - 设为首页 - 加入收藏 - 网站地图 物对的反海洋浮游植应酸化!

物对的反海洋浮游植应酸化

时间:2025-05-07 00:14:38 来源:浓抹淡妆网 作者:探索 阅读:884次
在实验室中所做实验对了解这个问题几乎没有帮助,浮游反通过分析当代表层海水样本和化石沉积芯,植物溶解的对海CO2的增加引起钙化速度的加快,是洋酸预测未来碳循环及其对由人类活动造成的变化的反馈的关键。然而,浮游反因为它们通常所跟踪的植物只是所选择的某一种生物对少数几种变化了的参数做出的反应。

 

生物探索推荐英文论文摘要:

 

Sensitivity of coccolithophores to carbonate chemistry and 对海ocean acidification

Abstract:

About one-third of the carbon dioxide (CO2) released into the atmosphere as a result of human activity has been absorbed by the oceans, where it partitions into the constituent ions of carbonic acid. This leads to ocean acidification, one of the major threats to marine ecosystems and particularly to calcifying organisms such as corals, foraminifera and coccolithophores. Coccolithophores are abundant phytoplankton that are responsible for a large part of modern oceanic carbonate production. Culture experiments investigating the physiological response of coccolithophore calcification to increased CO2 have yielded contradictory results between and even within species. Here we quantified the calcite mass of dominant coccolithophores in the present ocean and over the past forty thousand years, and found a marked pattern of decreasing calcification with increasing partial pressure of CO2 and concomitant decreasing concentrations of CO32−. Our analyses revealed that differentially calcified species and morphotypes are distributed in the ocean according to carbonate chemistry. A substantial impact on the marine carbon cycle might be expected upon extrapolation of this correlation to predicted ocean acidification in the future. However, our discovery of a heavily calcified Emiliania huxleyi morphotype in modern waters with low pH highlights the complexity of assemblage-level responses to environmental forcing factors.

Figure 1: Relationships between coccolith mass and carbonate chemistry.

Figure 2: Variation of coccolith mass, species composition and CO2concentration over the last 40 kyr.

Figure 3: Physico-chemical and coccolithophore variability along an east–west acidity gradient in the south-east Pacific.

Beaufort等人发现,洋酸而重度钙化的浮游反“颗石藻”形态的丰富程度则依赖于碳酸盐化学。在具有低pH值的植物现代水域中重度钙化的“赫氏颗石藻”(Emiliania huxleyi)的意外发现,

摘要:如“颗石藻”等钙化生物对因大气中二氧化碳浓度增加而发生的对海海洋酸化的反应的性质,却表明海洋对CO2增加的洋酸反应是复杂的。

Nature:浮游植物对海洋酸化的浮游反反应

2011-08-04 09:40 · fiona

在具有低pH值的现代水域中重度钙化的“赫氏颗石藻”(Emiliania huxleyi)的意外发现,却表明海洋对CO2增加的植物反应是复杂的。

(责任编辑:探索)

相关内容
  • 枞晨公司登陆“科技创新板”
  • 珠海透水事故14人被困已投入超千人救援
  • 港商振奋:国际航运“拍住上”
  • 解码“白鹤滩”:300米级大坝无一毫米级温度裂缝
  • 安庆华翔充气设备有限公司正式投产运营
  • 解码“白鹤滩”:300米级大坝无一毫米级温度裂缝
  • 极端天气/北涝南旱频“造访” 专家:警惕黑天鹅/大公报记者 江鑫娴
  • 多地积极探索开展暑期托管服务 专家提醒:不得暗中变复习班补习班
推荐内容
  • 县委办公室荣获“全国网民留言办理工作先进单位”称号
  • 海南自贸港129个大项目开建
  • 外交部:绝不容许任何国家插手台湾问题
  • 中国跨境电商5年增10倍
  • 第十四片区召开县城文明创建工作推进会
  • 享受“乘风破浪”快感 又能强身健体