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Modelling of risk effect of mercury on nutrient transformation in lake sediments

机译:汞对湖泊沉积物中养分转化的风险影响建模

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The influence of mercury on the transformation processes in the waters and the sediments in the reservoir of a small hydroelectric power plant (SHPP) Lakatnik was simulated in laboratory conditions. SHPP Lakatnik is the first (of nine similar) SHPPs put into exploitation in the middle part of the Iskar River (Bulgaria). In previous studies of the sediments in the reservoir of SHPP Lakatnik, our team found high concentrations of mercury, sometimes exceeding maximum concentration limit (MCL). In model bioreactors we studied the effect of mercury on the dynamics of the following hydrochemical and microbiological indicators: NH 4 + , NO 3 ?¢???? , NO 2 ?¢???? , PO 4 3?¢???? , chemical oxygen demand (COD), total organic carbon (TOC); aerobic and anaerobic heterotrophs (AH and AnH), Pseudomonas spp. (Ps.), Acinetobacter spp. (Ac.), sulphate-reducing bacteria (SR), denitrifying microorganisms (Dn). We looked for linear correlations among the studied indicators in order to find quick, mutual replaceability among them. The extent to which mercury affects the amount of key microbial groups and the rate of transformation of biogenic elements was calculated in percentages. The microorganism dynamics showed that AH, AnH and Ps. adapt more quickly and their number increased more in the presence of mercury, whereas SR, Dn and Ac. were inhibited to a greater extent by the presence of mercury. Mercury had a marked stimulating effect on Ps., which showed a 312% increase in number at the 192nd hour. The obtained results can be used when decisions have to be taken in risky situations related to increased concentrations of mercury in the sediments.
机译:在实验室条件下,模拟了汞对Lakatnik小型水力发电厂(SHPP)的水域和沉积物中转化过程的影响。 SHPP Lakatnik是在Iskar河(保加利亚)中部开采的第一个(九个类似的)SHPP。在先前对SHPP Lakatnik水库中沉积物的研究中,我们的团队发现了高浓度的汞,有时超过了最大浓度限值(MCL)。在模型生物反应器中,我们研究了汞对以下水化学和微生物指标动力学的影响:NH 4 +,NO 3? ,NO 2?¢ ???? ,PO 4 3?¢ ???? ,化学需氧量(COD),总有机碳(TOC);有氧和无氧异养菌(AH和AnH),假单胞菌属。 (Ps。),不动杆菌属。 (Ac。),还原硫酸盐细菌(SR),反硝化微生物(Dn)。我们在研究的指标之间寻找线性相关性,以便找到它们之间的快速,相互替换性。汞对关键微生物群数量的影响程度和生物元素转化率以百分比计算。微生物动力学表明AH,AnH和Ps。汞存在时适应性更强,它们的数量增加更多,而SR,Dn和Ac则更大。汞的存在在更大程度上抑制了汞的吸收。汞对PS有明显的刺激作用,在第192小时,汞的数量增加了312%。当在与沉积物中汞浓度增加有关的危险情况下必须做出决定时,可以使用获得的结果。

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