卡塔尔粉尘对海洋浮游生物元素组成的影响

O. Yigiterhan, Jassem A. Al-Thani, S. Dib, H. Alsaadi, E. M. Al-Ansari
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摘要

卡塔尔的专属经济区(EEZ)受到极端粉尘和广泛工业化的影响,使其成为研究沿海过程对生物活动影响的理想地点,这极大地影响了海洋生物地球化学循环。本文研究了扬尘对浮游生物微量元素组成的影响,以及离岸距离对海洋浮游生物元素浓度的影响。2012年和2014年,采用网眼尺寸分别为50(散装浮游生物)和200(浮游动物)mm的网眼收集样本,以检验时空变化。样品经强酸消化,ICP-OES分析。采用微量金属清洁技术。微量金属的生物成因浓度是通过校正大块分析来确定的,以卡塔尔粉尘的铝含量为岩石成因示踪剂。卡塔尔专属经济区浮游生物的相对微量金属组成为Fe > Zn≈Cu > V≈Ni≈Cr≈As≈Mo > Cd≈Co,除Ba、Mn、Pb、Mo在浮游动物中高于整体浮游生物外,大小浮游动物的微量金属组成基本相同。目前尚不清楚这种变化是由于生物学的差异、靠近海岸还是年际影响。地球化学和统计分析表明,净拖浮游生物样品中Al、Fe、Cr、Co、Mn、Ni、Pb、Li的浓度主要为岩石质(粉尘)来源,Cd、Cu、Mo、Zn、Ca的浓度主要为生物/人为来源。相对于来自卡塔尔的平均粉尘,大多数元素(除Cd外)的过量浓度随着离海岸的距离而降低。这可能是由于污染或岩石校正的不确定性,或者由于我们的采样位置在边缘海,主要是灰尘输入。这是这项研究的一个值得进一步研究的方面。
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The Influence of Qatari Dust on the Element Composition of Marine Plankton
The Exclusive Economic Zone (EEZ) of Qatar is affected by extreme dust and extensive industrialization, making it an ideal location to examine influences of coastal processes on biological activity, which greatly affects marine biogeochemical cycling. In this study, the influence of dust on the trace element composition of plankton and how distance from shore effects elemental concentrations in marine plankton was investigated. Samples were collected using net tows with mesh sizes of 50 (bulkplankton) and 200 (zooplankton) mm size-fractions in 2012 and 2014 to examine temporal and spatial variabilities. The samples were strong acid digested and analyzed using ICP-OES. Trace metal clean techniques were used. The biogenic concentrations of trace metals were determined by correcting the bulk analyses for the lithogenic contribution using aluminum content of Qatari dust as a lithogenic tracer. The relative trace metal composition of plankton from EEZ of Qatar is Fe > Zn ≈ Cu > V ≈ Ni ≈ Cr ≈ As ≈ Mo > Cd ≈ Co. Small and large size planktonic compositions were similar, except for Ba, Mn, Pb, Mo which were higher in zooplankton than bulkplankton. It was not clear if the variability was due to differences in biology, proximity to the coast or interannual effects. The geochemical and statistical analysis suggested that the concentrations of Al, Fe, Cr, Co, Mn, Ni, Pb, Li in net-tow plankton samples were mostly of lithogenic (dust) and Cd, Cu, Mo, Zn, Ca are most likely of biogenic/anthropogenic origin. The excess concentrations relative to average dust from Qatar for most elements (except Cd) decreased with distance from shore. This may be due to contamination or uncertainties with the lithogenic correction or due to our sampling locations in a marginal sea, dominated by dust input. This is an aspect of this study that warrants more research.
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