...
首页> 外文期刊>Global change biology >Long-term CO2 production from deeply weathered soils of a tropical rain forest: evidence for a potential positive feedback to climate warming
【24h】

Long-term CO2 production from deeply weathered soils of a tropical rain forest: evidence for a potential positive feedback to climate warming

机译:来自热带雨林深层风化土壤的长期CO2产生:证据表明对气候变暖有潜在的积极反馈

获取原文
获取原文并翻译 | 示例

摘要

Currently, it is unknown what role tropical forest soils will play in the future global carbon cycle under higher temperatures. Many tropical forests grow on deeply weathered soils and although it is generally accepted that soil carbon decomposition increases with higher temperatures, it is not known whether subsurface carbon pools are particularly responsive to increasing soil temperatures. Carbon dioxide (CO2) diffusing out of soils is an important flux in the global carbon. Although soil CO2 efflux has been the subject of many studies in recent years, it remains difficult to deduct controls of this flux because of the different sources that produce CO2 and because potential environmental controls like soil temperature and soil moisture often covary. Here, we report results of a 5-year study in which we measured soil CO2 production on two deeply weathered soil types at different depths in an old-growth tropical wet forest in Costa Rica. Three sites were developed on old river terraces (old alluvium) and the other three were developed on old lava flows (residual). Annual soil CO2 efflux varied between 2.8-3.6 mu mol CO2-C m(-2) s(-1) (old alluvium) and 3.4-3.9 mu mol CO2-C m(-2) s(-1) (residual). More than 75% of the CO2 was produced in the upper 0.5 m (including litter layer) and less than 7% originated from the soil below 1 m depth. This low contribution was explained by the lack of water stress in this tropical wet forest which has resulted in very low root biomass below 2 m depth. In the top 0.5 m CO2 production was positively correlated with both temperature and soil moisture; between 0.6 and 2 m depth CO2 production correlated negatively with soil moisture in one soil and positively with photosynthetically active radiation in the other soil type. Below 2 m soil CO2 production strongly increased with increasing temperature. In combination with reduced tree growth that has been shown for this ecosystem, this would be a strong positive feedback to ecosystem warming.
机译:目前,尚不清楚热带森林土壤在高温下将在未来的全球碳循环中扮演什么角色。许多热带森林生长在风化较深的土壤上,尽管人们普遍认为,土壤碳的分解会随着温度的升高而增加,但尚不清楚地下碳库是否对土壤温度的升高特别敏感。从土壤中扩散出来的二氧化碳是全球碳中的重要通量。尽管近年来土壤CO2外排一直是许多研究的主题,但是由于产生CO2的来源不同,并且由于潜在的环境控制(例如土壤温度和土壤湿度)经常变化,因此仍然难以对这种通量进行控制。在这里,我们报告了一项为期5年的研究结果,在该研究中,我们测量了哥斯达黎加一个古老的热带湿森林中不同深度的两种深度风化土壤类型上的土壤CO2产生。在旧河阶地(旧冲积层)开发了三个地点,在旧熔岩流(残渣)上开发了其他三个地点。年土壤CO2外排量在2.8-3.6μmol CO2-C m(-2)s(-1)(旧冲积层)和3.4-3.9μmol CO2-C m(-2)s(-1)(残留)之间变化。在上部0.5 m(包括垫料层)中产生了超过75%的CO2,而只有不到1 m的土壤中产生了不到7%的CO2。造成这种低贡献的原因是该热带湿林缺少水分胁迫,导致低于2 m深度的根系生物量非常低。在最上面的0.5 m,CO2的产生与温度和土壤湿度呈正相关。 0.6至2 m深度的CO2产生与一种土壤中的土壤水分呈负相关,而与另一种土壤中的光合有效辐射呈正相关。低于2 m的土壤CO2产量随着温度的升高而强烈增加。结合该生态系统显示的树木生长减少,这将是对生态系统变暖的强烈积极反馈。

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