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Research on the influence of anaerobic stabilization of various dairy sewage sludge on biodegradation of polycyclic aromatic hydrocarbons PAHs with the use of effective microorganisms

机译:利用有效微生物厌氧稳定各种乳化污泥对多环芳烃PAHs生物降解的影响

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Sewage sludge was taken from a dairy WWTP belonging to Mlekovita Cooperative in Wysokie Mazowieckie. There were excess sludge, flotation sludge and a mixture of excess and flotation sludge from pre-treatment of dairy sewage. The initial content of 16 PAHs in excess sludge before fermentation was approximately 689 µg·kg~(-1) in dry mass, whereas in post-flotation sludge (which constituted around 30% of raw sludge) it was approximately 95 µg•kg~(-1) in dry mass. A mixture of excess and flotation sludge had the content of 497,7 µg•kg~(-1) in dry mass. Through comparison of particular hydrocarbons content in raw sewage sludge to the total PAHs content, it was shown that tricyclic compounds, which constituted 46,3% of the PAHs sum (excess sludge), and tetracyclic compounds, which constituted 60,0% of the PAHs sum (flotation sludge), were the dominating fractions. In the sludge subjected to fermentation in reactors with mixed sludge and surplus activated sludge, the general trend of the course of changes in concentrations of PAHs was similar. Both in the sludge inoculated with EM and in that not inoculated with EM, a significant increase in the total PAHs contents was observed in the first fermentation phase (acidic fermentation) after 7 days of the process. Addition of EM into the sludge did not prevent the PAHs release, and therefore higher concentrations of PAHs sum were recorded during the hydrolysis stage than in sludge before fermentation. A decrease in the sum of PAHs was observed after 2 weeks of fermentation in relation to the quantity observed after 1 week of fermentation (except from post-flotation sludge). In the following weeks, there was further decrease in the concentration of the 16 PAHs sum in all sludge types. However, in sludge without EM inoculation, it was lower than in sludge with EM inoculation. The loss of the majority of tested hydrocarbons was reported in the final phase of fermentation.
机译:污水污泥取自Wysokie Mazowieckie的Mlekovita合作社的乳品厂WWTP。奶牛场污水预处理产生了过量的污泥,浮选污泥和过量的浮选污泥的混合物。发酵前剩余污泥中16种PAHs的初始含量以干重计约为689 µg·kg〜(-1),而浮选后污泥(约占原污泥的30%)约为95 µg•kg〜。 (-1)干重。剩余污泥和浮选污泥的混合物干重为479.7 µg•kg〜(-1)。通过比较原始污水污泥中的特定碳氢化合物含量与总PAHs含量,可以发现三环化合物占PAHs总和(过量污泥)的46.3%,四环化合物占PAHs总和的60.0%。 PAHs总和(浮选污泥)是主要部分。在带有混合污泥和剩余活性污泥的反应器中发酵的污泥中,PAHs浓度变化过程的总体趋势是相似的。在接种EM的污泥和未接种EM的污泥中,在该过程7天后的第一发酵阶段(酸性发酵)中,总PAHs含量均显着增加。向污泥中添加EM并不能阻止PAHs的释放,因此在水解阶段所记录的PAHs总浓度要高于发酵前的污泥。与发酵1周后观察到的数量相比,发酵2周后观察到PAHs总量的减少(浮选后污泥除外)。在接下来的几周中,所有类型的污泥中16种多环芳烃的浓度进一步降低。然而,在没有EM接种的污泥中,其比在有EM接种的污泥中低。据报道,在发酵的最后阶段损失了大多数测试烃。

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