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Seasonal dynamics of microbial mercury transformations in sediments and water column of Gulf of Trieste (northern Adriatic Sea)

机译:的里雅斯特湾(北亚得里亚海)沉积物和水柱中微生物汞转化的季节动态

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A series of relatively simple incubation experiments to assess and evaluate microbial mercury (Hg) transformations in water column and sediments were performed monthly or bimonthly in a period from March 2011 to December 2011. Sampling campaigns were performed at station F in the southeastern part of Gulf of Trieste, northern Adriatic Sea. Gulf of Trieste has been for the last 500 year continuously impacted with inflow of Hg, originating from the Idrija Hg mine. The microbial mercury transformations were assessed using a short-lived (t1/2=64.12 h) radioisotope 197Hg. Calculated activities of microbial Hg reduction and methylation were correlated with other environmental factors, such as temperature, nutrient availability, oxygenation, organic matter, substrate (Hg in bioavailable chemical form) availability, structure of microbial community and presence of mer operon. Preliminary results show that in water column a substantial Hg reduction occurs, whereas methylation was not observed. On the other hand, long-term incubation experiments with sediments show that methylation process is active however preliminary results also suggest a significant MeHg degradation.Key words: mercury / microbial transformation / water column / sediments / radiotracer
机译:在2011年3月至2011年12月期间,每月或每两个月进行一系列相对简单的孵化实验,以评估和评估水柱和沉积物中微生物汞的转化。在墨西哥湾东南部的F站进行了采样活动亚得里亚海北部的里雅斯特市。的里雅斯特湾过去500年来一直受到源自Idrija汞矿的汞流入的持续影响。使用短寿命(t1 / 2 = 64.12 h)放射性同位素197 Hg评估微生物汞的转化。计算得出的微生物汞还原和甲基化活性与其他环境因素相关,例如温度,养分利用率,氧合,有机质,底物(以生物可利用的化学形式存在的汞)的利用率,微生物群落的结构和mer operon的存在。初步结果表明,在水柱中Hg大量降低,而未观察到甲基化。另一方面,与沉积物的长期温育实验表明甲基化过程很活跃,但初步结果也表明MeHg的降解显着。关键词:汞/微生物转化/水柱/沉积物/放射性示踪剂

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