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Organic and inorganic amendment application on mercury-polluted soils: effects on soil chemical and biochemical properties

机译:有机和无机改良剂在汞污染土壤上的应用:对土壤化学和生化特性的影响

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On the basis of a previous study performed in our laboratory, the use of organic and inorganic amendments can significantly modify the Hg mobility in soil. We have compared the effectiveness of organic and inorganic amendments such as digestate and fly ash, respectively, reducing the Hg mobility in Chernozem and Luvisol soils differing in their physicochemical properties. Hence, the aim of this work was to compare the impact of digestate and fly ash application on the chemical and biochemical parameters in these two mercury-contaminated soils in a model batch experiment. Chernozem and Luvisol soils were artificially contaminated with Hg and then incubated under controlled conditions for 21 days. Digestate and fly ash were applied to both soils in a dose of 10 and 1.5 %, respectively, and soil samples were collected after 1, 7, 14, and 21 days of incubation. The presence of Hg in both soils negatively affected to processes such as nitrification, provoked a decline in the soil microbial biomass C (soil microbial biomass C (MBC)), and the microbial activities (arylsulfatase, and beta-glucosaminidase) in both soils. Meanwhile, the digestate addition to Chernozem and Luvisol soils contaminated with Hg improved the soil chemical properties (pH, dissolved organic carbon (DOC), N (N-tot), inorganic-N forms (N-NH4 (+) and N-NO3 (-))), as consequence of high content in C and N contained in digestate. Likewise, the soil MBC and soil microbial activities (dehydrogenase, arylsulfatase, and beta-glucosaminidase) were greatly enhanced by the digestate application in both soils. In contrast, fly ash application did not have a remarkable positive effect when compared to digestate in Chernozem and Luvisol soil contaminated with mercury. These results may indicate that the use of organic amendments such as digestate considerably improved the soil health in Chernozem and Luvisol compared with fly ash, alleviating the detrimental impact of Hg. Probably, the chemical properties present in digestate may determine its use as a suitable amendment for the assisted-natural attenuation of mercury-polluted soils.
机译:根据我们实验室先前的研究,使用有机和无机改性剂可以显着改变土壤中汞的迁移率。我们分别比较了有机和无机改良剂(例如消化灰和粉煤灰)的有效性,它们分别降低了其物理化学性质不同的切尔诺泽姆和卢维索土壤中的汞迁移率。因此,这项工作的目的是在模型分批实验中比较消化和粉煤灰施用对这两种汞污染土壤中化学和生化参数的影响。将黑钙土和Luvisol土壤人为污染,然后在受控条件下孵育21天。分别以10%和1.5%的剂量对两种土壤施用Digestate和粉煤灰,并在孵育1、7、14和21天后收集土壤样品。两种土壤中Hg的存在均对硝化等过程产生负面影响,导致土壤微生物量C(土壤微生物量C(MBC))和微生物活性(芳基硫酸酯酶和β-氨基葡萄糖苷酶)下降。同时,消化物添加到被汞污染的黑钙土和卢维索尔土壤中改善了土壤的化学特性(pH,溶解性有机碳(DOC),氮(N-tot),无机氮形态(N-NH4(+)和N-NO3) (-))),因为消化物中的C和N含量高。同样,通过在两种土壤中施用酶,极大地提高了土壤MBC和土壤微生物活性(脱氢酶,芳基硫酸酯酶和β-氨基葡萄糖苷酶)。相反,与在被汞污染的切尔诺泽姆和卢维索尔土壤中进行消化相比,施用粉煤灰没有明显的积极作用。这些结果可能表明,与粉煤灰相比,使用有机物改良剂(如消化液)可显着改善切尔诺泽姆和卢维索尔的土壤健康,减轻了汞的有害影响。消化物中存在的化学性质可能会决定其用途,以作为汞自然污染的辅助自然衰减的适当改良剂。

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