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底拖网信号在沉积物中丢失:波罗的海南部受扰动沿海地区早期成岩作用的生物地球化学与建模相结合的方法

Bottom-trawling signals lost in sediment: A combined biogeochemical and modeling approach to early diagenesis in a perturbed coastal area of the southern Baltic Sea.

作者信息

Rooze Jurjen, Zeller Mary A, Gogina Mayya, Roeser Patricia, Kallmeyer Jens, Schönke Mischa, Radtke Hagen, Böttcher Michael Ernst

机构信息

Department of Physical Oceanography and Instrumentation, Leibniz Institute for Baltic Sea Research Warnemünde (IOW), 18119 Rostock, Germany; Department of Marine Geology, Leibniz Institute for Baltic Sea Research Warnemünde (IOW), 18119 Rostock, Germany.

Department of Marine Geology, Leibniz Institute for Baltic Sea Research Warnemünde (IOW), 18119 Rostock, Germany.

出版信息

Sci Total Environ. 2024 Jan 1;906:167551. doi: 10.1016/j.scitotenv.2023.167551. Epub 2023 Oct 5.

Abstract

Trawl-fishing is broadly considered to be one of the most destructive anthropogenic activities toward benthic ecosystems. In this study, we examine the effects of bottom-contact fishing by otter trawls on the geochemistry and macrofauna in sandy silt sediment in an area of the Baltic Sea where clear spatial patterns in trawling activity were previously identified by acoustic mapping. We calibrated an early diagenetic model to biogeochemical data from various coring locations. Fitting measured mercury profiles allowed for the determination of the sediment mixing and burial velocity. For all sites, independent of the trawl mark density, good fits were obtained by applying the model with the same organic matter loading and parameter values, while iron fluxes scaled linearly with the burial velocity. A sensitivity analysis revealed that the fitted sulfate reduction rate, solid sulfur contents, ammonium concentration, and both the isotopic composition and concentration of dissolved inorganic carbon provided reliable constraints for the total mineralization rate, which exhibited a narrow range of variability (around ±20 % from the mean) across the sites. Also, the trawling intensity did not significantly correlate with total organic carbon contents in surficial sediment, indicating limited loss of organic matter due to trawling. The fits to the reactive iron, acid volatile sulfur, chromium(II) reducible sulfur contents, and porewater composition demonstrate that sediment burial and mixing primarily determine the redox stratification. The mixing depth did not correlate with trawling intensity and is more likely the result of bioturbation, as the analyzed macrofaunal taxonomy and density showed a high potential for sediment reworking. The extraordinarily long-lived Arctica islandica bivalve dominated the infaunal biomass, despite the expectation that trawling leads to the succession from longer-lived to shorter-lived and bigger to smaller macrofauna. Our results further suggest that a clear geochemical footprint of bottom-trawling may not develop in sediments actively reworked by tenacious macrofauna.

摘要

拖网捕鱼被广泛认为是对底栖生态系统最具破坏性的人为活动之一。在本研究中,我们考察了水獭拖网进行的底接触式捕鱼对波罗的海某区域粉砂质砂沉积物中地球化学和大型底栖动物的影响,此前通过声学测绘已确定该区域拖网活动存在明显的空间格局。我们将一个早期成岩模型校准到来自不同取芯地点的生物地球化学数据。通过拟合实测汞剖面来确定沉积物混合和埋藏速度。对于所有站点,无论拖网痕迹密度如何,应用具有相同有机质负荷和参数值的模型都能得到良好的拟合结果,而铁通量与埋藏速度呈线性比例关系。敏感性分析表明,拟合得到的硫酸盐还原速率、固体硫含量、铵浓度以及溶解无机碳的同位素组成和浓度为总矿化速率提供了可靠的约束,总矿化速率在各站点间的变化范围较窄(相对于平均值约为±20%)。此外,拖网强度与表层沉积物中的总有机碳含量没有显著相关性,这表明拖网导致的有机质损失有限。对活性铁、酸挥发性硫、可还原铬(II)硫含量和孔隙水成分的拟合结果表明,沉积物埋藏和混合主要决定了氧化还原分层。混合深度与拖网强度无关,更可能是生物扰动的结果,因为分析的大型底栖动物分类和密度显示出沉积物再加工的潜力很大。尽管预期拖网会导致大型底栖动物从寿命较长向较短、个体从大向小演替,但寿命极长的冰岛北极蛤主导了底内生物量。我们的结果进一步表明,在被顽强的大型底栖动物积极改造的沉积物中,可能不会形成明显的底拖网地球化学足迹。

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