首页> 外文期刊>Biogeosciences Discussions >Impact of small-scale disturbances on geochemical conditions, biogeochemical processes and element fluxes in surface sediments of the eastern Clarion–Clipperton Zone, Pacific Ocean
【24h】

Impact of small-scale disturbances on geochemical conditions, biogeochemical processes and element fluxes in surface sediments of the eastern Clarion–Clipperton Zone, Pacific Ocean

机译:小型障碍对地球化学条件,生物地球化学工艺及地表沉积物中的地球化学条件,生物地球化学过程和元素势态的影响 - 太平洋海洋区

获取原文
           

摘要

The thriving interest in harvesting deep-sea mineral resources, such as polymetallic nodules, calls for environmental impact studies and, ultimately, for regulations for environmental protection. Industrial-scale deep-sea mining of polymetallic nodules most likely has severe consequences for the natural environment. However, the effects of mining activities on deep-sea ecosystems, sediment geochemistry and element fluxes are still poorly understood. Predicting the environmental impact is challenging due to the scarcity of environmental baseline studies as well as the lack of mining trials with industrial mining equipment in the deep sea. Thus, currently we have to rely on small-scale disturbances simulating deep-sea mining activities as a first-order approximation to study the expected impacts on the abyssal environment. Here, we investigate surface sediments in disturbance tracks of seven small-scale benthic impact experiments, which have been performed in four European contract areas for the exploration of polymetallic nodules in the Clarion–Clipperton Zone (CCZ) in the NE Pacific. These small-scale disturbance experiments were performed 1d to 37?years prior to our sampling program in the German, Polish, Belgian and French contract areas using different disturbance devices. We show that the depth distribution of solid-phase Mn in the upper 20cm of the sediments in the CCZ provides a reliable tool for the determination of the disturbance depth, which has been proposed in a previous study from the SE Pacific (Paul et al., 2018). We found that the upper 5–15cm of the sediments was removed during various small-scale disturbance experiments in the different exploration contract areas. Transient transport-reaction modeling for the Polish and German contract areas reveals that the removal of the surface sediments is associated with the loss of the reactive labile total organic carbon (TOC) fraction. As a result, oxygen consumption rates decrease significantly after the removal of the surface sediments, and, consequently, oxygen penetrates up to 10-fold deeper into the sediments, inhibiting denitrification and Mn(IV) reduction. Our model results show that the return to steady-state geochemical conditions after the disturbance is controlled by diffusion until the reactive labile TOC fraction in the surface sediments is partly re-established and the biogeochemical processes commence. While the re-establishment of bioturbation is essential, steady-state geochemical conditions are ultimately controlled by the delivery rate of organic matter to the seafloor. Hence, under current depositional conditions, new steady-state geochemical conditions in the sediments of the CCZ are reached only on a millennium scale even for these small-scale disturbances simulating deep-sea mining activities.
机译:蓬勃发展的利益收获深海矿产资源,如多金属结节,呼吁环境影响研究,并最终是为了环境保护法规。 Polymetallic Nodules的工业规模深海挖掘最有可能对自然环境产生严重的后果。然而,采矿活动对深海生态系统,沉积地球化学和元素势态的影响仍然很差。预测环境影响是挑战,由于环境基准研究的稀缺以及深海工业采矿设备缺乏采矿试验。因此,目前我们必须依靠小型扰动模拟深海挖掘活动作为研究预期影响对深度环境的一阶近似。在这里,我们研究了七个小型底栖影响实验的扰动轨迹的表面沉积物,这是在Ne Pacific中克拉利奥克顿区(CCZ)中的四个欧洲合同领域进行了四个欧洲合同领域。在使用不同的干扰装置的德国,波兰语,比利时和法国合同区域进行比赛计划之前,这些小规模的扰动实验进行了1D至37岁。我们表明,CCZ中沉积物的上部20cm的固相Mn的深度分布提供了用于确定干扰深度的可靠工具,该扰动深度已经在SE Pacific(Paul等人。 ,2018)。我们发现在不同勘探合同区域的各种小规模扰动实验期间除去了沉积物的较高5-15cm。波兰和德国合同区域的瞬态运输反应建模揭示了表面沉积物的去除与反应性不稳定总有机碳(TOC)级分的损失有关。结果,在去除表面沉积物之后氧气消耗率显着降低,因此,氧气渗透到沉积物中高达10倍,抑制反硝化和Mn(IV)减少。我们的模型结果表明,通过扩散控制干扰后恢复稳态地球化学条件,直到表面沉积物中的反应不稳定TOC部分被部分重新建立,并且生物地球化学过程开始。虽然生物扰动的重建是必不可少的,但最终通过对海底的有机物质的输送速度来控制稳态地球化学条件。因此,在目前的沉积条件下,即使对于模拟深海采矿活动的小规模障碍,CCZ沉积物中的新稳态地球化学条件也仅达到了千年级。

著录项

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