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Do tubificid worms influence the fate of organic matter and pollutants in stormwater sediments?

机译:蠕虫蠕虫会影响雨水沉积物中有机物和污染物的命运吗?

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In urban area, management of stormwater leads to the accumulation of polluted sediments at the water-sediment interface of various aquatic ecosystems. In many cases, these sediments are colonised by dense populations of tubificid worms. However, the influence of tubificid worms on the fate of stormwater sediments has never been tackled. The aim of this study was to measure in sediment columns the influence of tubificid worms on sediment reworking, organic matter processing (O-2 uptake and release of NH4+, NO3-, PO43-, and dissolved organic carbon), release of hydrocarbons and heavy metals, and microbial characteristics. Results showed that tubificid worms increased the release of NH4+, PO43-, and dissolved organic carbon by 2-, 4-, and 3-fold, respectively. O-2 uptake also increased by more than 35% due to tubificid activity. The increase in the percentages of active bacteria and hydrolytic activity in the presence of worms indicated that the higher sediment respiration was caused by the stimulation of microbial communities. A reduction of the number of sulphate-reducing bacteria in the uppermost layers of the sediment was attributed to the penetration of O-2 due to worm activity. These significant effects of tubificid worms were probably linked to the dense network of burrows, which enhanced the exchange surface between the water column and the sediment. No release of heavy metals and hydrocarbons to the water phase was detected in the sediment columns. Understanding the fate and effect of organic stormwater sediments in the natural environment requires the integration of the role of bioturbation in urban pollution studies. (C) 2004 Elsevier Ltd. All rights reserved.
机译:在城市地区,雨水的管理导致各种水生生态系统的水-沉积物界面处沉积污染的沉积物。在许多情况下,这些沉积物被致密的管状蠕虫种群定居。但是,从未解决过蠕虫蠕虫对雨水沉积物命运的影响。这项研究的目的是测量沉积物柱中蠕虫蠕虫对沉积物返工,有机物加工(O-2的吸收和释放NH4 +,NO3-,PO43-和溶解的有机碳),碳氢化合物和重质释放的影响。金属和微生物特征。结果显示,蠕虫蠕虫使NH4 +,PO43-和溶解的有机碳的释放分别增加了2倍,4倍和3倍。由于微管活性,O-2的吸收也增加了35%以上。在蠕虫的存在下,活性细菌百分比和水解活性的增加表明较高的沉积物呼吸作用是由微生物群落的刺激引起的。沉积物最上层中减少硫酸盐还原细菌的数量减少归因于蠕虫活动导致O-2的渗透。蠕虫蠕虫的这些重要影响可能与洞穴的密集网络有关,从而增强了水柱与沉积物之间的交换表面。在沉淀柱中未检测到重金属和碳氢化合物向水相的释放。要了解有机雨水沉积物在自然环境中的命运和影响,就需要将生物扰动在城市污染研究中的作用综合起来。 (C)2004 Elsevier Ltd.保留所有权利。

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