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Applications of Organic and Inorganic Amendments Induce Changes in the Mobility of Mercury and Macro- and Micronutrients of Soils

机译:有机和无机修正的应用诱导汞和微量营养和微量营养的流动性变化

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Both soil organic matter and sulfur (S) can reduce or even suppress mercury (Hg) mobility and bioavailability in soil. A batch incubation experiment was conducted with a Chernozem and a Luvisol artificially contaminated by 440 mg·kg−1 Hg showing wide differences in their physicochemical properties and available nutrients. The individual treatments were (i) digestate from the anaerobic fermentation of biowaste; (ii) fly ash from wood chip combustion; and (iii) ammonium sulfate, and every treatment was added with the same amount of S. The mobile Hg portion in Chernozem was highly reduced by adding digestate, even after 1 day of incubation, compared to control. Meanwhile, the outcome of these treatments was a decrease of mobile Hg forms as a function of incubation time whereas the contents of magnesium (Mg), potassium (K), iron (Fe), manganese (Mn), copper (Cu), zinc (Zn), and phosphorus (P) were stimulated by the addition of digestate in both soils. The available calcium (Ca) contents were not affected by the digestate addition. The experiment proved digestate application as the efficient measure for fast reduction of mobile Hg at extremely contaminated soils. Moreover, the decrease of the mobile mercury portion was followed by improvement of the nutrient status of the soils.
机译:土壤有机物和硫都可以降低甚至抑制土壤中的汞(Hg)迁移率和生物利用度。用Chernozem和Luvisol的批量孵育实验人为污染440mg·kg-1 hg,显示出它们的物理化学性质和可用营养物质的宽差。个体治疗是(i)从Biowaste的厌氧发酵消化; (ii)从木屑燃烧中粉煤灰; (iii)硫酸铵,并加入相同量的硫酸铵,并且每种处理量加入相同量的Chernozem中的流动Hg部分通过添加消化物,即使在孵育后的1天后,与对照相比,也能够高度降低。同时,这些治疗的结果是作为孵育时间的函数的移动HG形式的降低,而镁(Mg),钾(K),铁(Fe),锰(Mn),铜(Cu),锌的含量(Zn),通过在两种土壤中添加消化来刺激磷(P)。可用的钙(CA)内容物不受消化添加的影响。该实验证明了消化应用作为在极端污染的土壤中快速减少移动HG的有效措施。此外,移动汞部分的减少随后改善了土壤的营养状态。

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