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The influence of sediment resuspension on the degradation of phenanthrene in flow-through microcosms

机译:悬浮物中悬浮物对菲降解的影响

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The effect of sediment resuspension on the mineralization of phenanthrene was examined in microcosms and sediment slurries. In computer-controlled, flow-through microcosms, ~(14)C-phenan-threne-amended sediments were resuspended into overlying oxic water at frequencies of 12, 4, 1, 0.25 and 0 d~(-1). In slurry bottle experiments ~(14)C-phenanthrene-amended sediments were continuously resuspended under oxic (excess air headspace) and anoxic (N_2 headspace) conditions and mineralization was measured at periods from 2 h to 7 days. Our main findings were: (1) mineralization rate constants from the microcosms ranged from 0.001 to 0.01 d~(-1) and increased with frequency of resuspension, (2) these rates fell between those measured in oxic and anoxic slurries and were predicted within a factor of 2.5 by a model in which mineralization depended on the degree of oxygen exposure, and (3) the phenanthrene-degrading bacterial community was more active in resuspended sediments incubated in the microcosms than in sediments which were not resuspended, or which were stored under refrigeration. We conclude from these experiments that the effects of sediment resuspension on phenanthrene degradation are consistent with a primary role of average oxygen exposure, and also an alteration in the PAH-degrading activity of microbial populations.
机译:在微观世界和沉积泥浆中研究了泥沙重悬对菲矿化的影响。在计算机控制的流通微观世界中,〜(14)C-苯并蒽改性的沉积物以12、4、1、0.25和0 d〜(-1)的频率重悬于上层含氧水中。在泥浆瓶实验中,〜(14)C-菲修饰的沉积物在有氧(空气顶空)和缺氧(N_2顶空)条件下连续重悬,并在2 h至7天的时间内测量了矿化度。我们的主要发现是:(1)微观范围内的矿化速率常数在0.001至0.01 d〜(-1)之间,并且随着重悬浮频率的增加而增加;(2)这些速率介于有氧和无氧浆料中测得的范围内,并且在取决于矿化程度取决于氧气暴露程度的模型的系数是2.5,并且(3)在微观世界中温育的重悬浮沉积物中,降解菲的细菌群落比未重悬浮或储存的沉积物更活跃在冷藏下。从这些实验中我们得出结论,沉积物重悬浮对菲降解的影响与平均氧气暴露的主要作用以及微生物种群PAH降解活性的改变是一致的。

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