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The state of understanding of the effects of beach nourishment activities on coastal biogeochemical processes and conditions

机译:对海滩营养活动对沿海生物地球化学过程和条件的影响的了解状态

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Sandy beaches are sites of significant exchange of matter and energy between water and sediment. This rapid exchange is attributed to the high permeability of sandy deposits and is one of the key ingredients in understanding how a given beach will respond to a nourishment event as a habitat for many important organisms. The response is driven by fundamental abiotically and biotically mediated chemical reactions that are profoundly affected by the ability of chemicals to accumulate or to be flushed out of a sandy column in the beach substrate. So while attention has correctly been paid to the effects of nourishment projects on infaunal communities and the upper levels of the food web, the chemical reactions connecting physics and geology on the one hand and ecology on the other are treated as a black box. We synthesize existing findings on biogeochemical processes at source areas and renourished beaches before, during, and after nourishment activities, and identify gaps in knowledge. Among other processes, we highlight how the exposure of reduced sediment to an oxic water column can initially increase oxygen demand, fuel microbial primary productivity, and drive the mobilization of potentially harmful contaminants. Restoration of oxic conditions in surficial sands can proceed rapidly through rapid exchange between sand and the oxygenated water column under the influence of physical forces, such as waves and currents, and high sand permeability. Based on our findings, we recommend foci for research, outreach, and broader impacts in this field as well as discuss coastal management needs for policy makers, planners, contractors, and the public to encourage information sharing.
机译:沙滩是水与沉积物之间物质和能量大量交换的场所。这种快速的交换归因于沙质沉积物的高渗透性,并且是理解给定的海滩如何响应作为许多重要生物栖息地的营养事件的关键因素之一。响应是由基本的非生物和生物介导的化学反应驱动的,这些化学反应对化学物质积累或被冲出海滩基质中的沙柱的能力产生了深远的影响。因此,尽管已经正确地注意了营养计划对不育社区和食物网上层的影响,但一方面将物理和地质联系起来,另一方面将生态联系起来的化学反应被视为黑匣子。我们对营养活动之前,期间和之后在源区和营养丰富的海滩上生物地球化学过程的现有发现进行了综合,并找出了知识差距。在其他过程中,我们强调了减少的沉积物暴露于含氧水塔中如何能够最初增加氧气需求,提高微生物的初级生产力并推动潜在有害污染物的转移。通过在波浪和水流等物理力和高砂渗透性的影响下,砂与含氧水柱之间的快速交换,可以快速进行表层砂中含氧条件的恢复。根据我们的发现,我们建议在此领域进行研究,推广和更广泛的影响,并为决策者,计划者,承包商和公众讨论沿海管理需求,以鼓励信息共享。

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