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Evaluating the effects of sub-zero temperature cycling on mercury flux from soils

机译:评估零以下温度循环对土壤汞通量的影响

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A number of mechanisms have been shown to facilitate the flux of mercury from soils, although at subzero temperatures, there is evidence to suggest that alternate mechanisms may exist. Field studies at sub-zero temperatures have observed spikes in flux under certain conditions however very little laboratory work has been done to characterize the specific effects or mechanisms. A Dynamic Flux Chamber (DFC) and Tekran Model 2537A were used to analyse mercury flux from a naturally enriched soil. Soil moisture contents were varied between 30%, 60%, and 75% of field capacity while temperatures were cycled between 0 and -25 ℃. The results, which were compared to room temperature baseline runs, showed that, at sub-zero temperatures, the mercury flux was suppressed in general. However, during the temperature cycling runs, soil flux spikes were evident during positive temperature change or warming. A one-way ANOVA by ranks proved that statistically significant fluxes were occurring during the runs at 30% and 60% of field capacity for positive rates of temperature changes. Arrhenius plots showed that for positive soil temperatures flux and temperature correlated well with the Arrhenius relationship. At subzero conditions however, no relationship was present, indicating another mechanism was present. The proposed mechanism for this enhanced flux is the physical evacuation of interstitial pore space gaseous mercury by the expansion and contraction of the freeze-thaw cycle.
机译:尽管在零度以下的温度,有许多机制显示出促进汞从土壤中释放的机制,但有证据表明可能存在其他机制。在低于零温度的现场研究已经观察到在某些条件下的通量峰值,但是很少进行实验室工作来表征特定的作用或机理。使用动态通量室(DFC)和Tekran 2537A型分析自然富集土壤中的汞通量。土壤水分含量在田间持水量的30%,60%和75%之间变化,而温度在0到-25℃之间循环。与室温基准运行进行比较的结果表明,在低于零的温度下,汞通量总体上受到抑制。然而,在温度循环过程中,在正温度变化或变暖期间土壤通量峰值明显。单次方差分析表明,在运行过程中,当温度变化为正值时,在场容量的30%和60%处发生了统计上显着的通量。 Arrhenius曲线表明,对于正向土壤温度,通量和温度与Arrhenius关系密切相关。但是,在零以下条件下,不存在任何关系,表明存在其他机制。提出的这种提高通量的机制是通过冻融循环的膨胀和收缩来物理疏散间隙孔空间气态汞。

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