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Distribution of Polybrominated Diphenyl Ethers in Sewage Sludge, Sediments, and Fish from Latvia

机译:拉脱维亚的污水污泥,沉积物和鱼类中多溴联苯醚的分布

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The polybrominated diphenyl ethers (PBDEs) are bioaccumulative, persistent, and toxic. They have a high risk of emission into the environment via volatile losses and diffuse sources, such as commercial product disposal or the use of sewage sludge. The PBDEs’ congeners were analyzed in municipal waste water treatment plant (WWTP) sludge, river and lake water, sediment, and fish samples, to investigate the concentrations in urban and natural locations. The sum of eight PBDE congener (∑ 8 PBDE 28, 47, 99, 100, 153, 154, 183, 209) concentrations in WWTP sludge varied from 78 ng·g ?1 DW, to 714 ng·g ?1 DW. The BDE 209 constituted up to 93%–98% of ∑ 8 PBDE. In water, the concentrations of all of the measured PBDE congeners were below the limit of detection. Similarly, the concentration of BDE 209 in the sediments was below the limit of detection in all samples. The sum of seven PBDE congener concentrations in the sediments varied from 0.01 to 0.13 ng·g ?1 DW. The sum of eight PBDE congener concentrations in fish (European perch) tissues varied from 0.13 to 0.82 ng·g ?1 WW. As was recorded for the WWTP sludge, the BDE 209 was the dominant congener, constituting 24%–93% of ∑ 8 PBDE. The sum of seven PBDE congener concentrations, excluding BDE 209, as well as the concentrations of BDE 209 that were measured in WWTP sludge, exhibited a weak negative correlation (Pearson’s r = ?0.56, p = 0.1509 and r = ?0.48, p = 0.2256, respectively) with the content of dry matter in the sludge. The sum of seven PBDE congener concentrations measured in sediments exhibited a strong negative correlation (Pearson’s r = ?0.82, p = 0.0006) with the content of dry matter in the sediments, and a strong positive correlation (Pearson’s r = 0.68, p = 0.0109) with the total carbon content. The obtained results indicated that the fine-grained WWTP sludge particles, with a larger relative surface area, adsorbed BDE 209 the most effectively. This finding was supported by the relatively low environmental concentrations of PBDE congeners, especially BDE 209, which can be explained by the lack of using sewage sludge in agricultural application in Latvia. Furthermore, it seems that, at present, the observed differences in the PBDE congener concentrations in sediments can be attributed to differences in the physical-chemical properties of sediments.
机译:多溴二苯醚(PBDEs)具有生物蓄积性,持久性和毒性。它们具有挥发性损失和扩散源(例如商业产品处置或污水污泥的使用)散发到环境中的高风险。在市政废水处理厂(WWTP)的污泥,河流和湖泊水,沉积物和鱼类样品中分析了多溴二苯醚的同源物,以研究城市和自然环境中的浓度。污水处理厂污泥中八种多溴二苯醚同源物的总和(∑ 8 PBDE 28、47、99、100、153、154、183、209)浓度从78 ng·g≤1 DW到714 ng·g≤1 DW不等。 BDE 209占∑ 8 PBDE的93%–98%。在水中,所有测得的多溴二苯醚同源物的浓度均低于检出限。同样,沉积物中BDE 209的浓度也低于所有样品的检出限。沉积物中的七种多溴二苯醚同源物浓度之和在0.01至0.13 ng·g?1 DW之间变化。鱼类(欧洲鲈鱼)组织中八种多溴二苯醚同系物浓度的总和在0.13至0.82 ng·g?1 WW之间变化。根据污水处理厂污泥的记录,BDE 209是主要的同类物,占∑ 8 PBDE的24%–93%。除BDE 209以外的7种PBDE同源物浓度以及在WWTP污泥中测得的BDE 209浓度之和均表现出弱的负相关性(Pearson's r =?0.56,p = 0.1509和r =?0.48,p =分别为0.2256)和污泥中干物质的含量。沉积物中测得的七种多溴二苯醚同系物浓度的总和与沉积物中干物质的含量具有很强的负相关性(Pearson r = 0.82,p = 0.0006),并且有很强的正相关性(Pearson r = 0.68,p = 0.0109) )与总碳含量。所得结果表明,具有较大相对表面积的细粒WWTP污泥颗粒最有效地吸附了BDE 209。多溴二苯醚同系物,特别是BDE 209的相对较低的环境浓度支持了这一发现,这可以通过拉脱维亚在农业应用中缺乏污水污泥来解释。此外,目前看来,在沉积物中发现的多溴二苯醚同系物浓度差异可归因于沉积物的物理化学性质差异。

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