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估算土壤汞通量的经验模型。

Empirical models for estimating mercury flux from soils.

机构信息

Department of Civil Engineering, Lamar University, Beaumont, Texas 77710, USA.

出版信息

Environ Sci Technol. 2010 Nov 15;44(22):8522-8. doi: 10.1021/es1021735. Epub 2010 Oct 21.

Abstract

Multiple parameters have been suggested to influence the exchange of mercury (Hg) between the atmosphere and soils. However, models applied for estimating soil Hg flux are simple and do not consider the potential synergistic and antagonist relationships between factors controlling the exchange. This study applied a two-level factorial experimental design in a gas exchange chamber (GEC) to investigate the individual and combined effects of three environmental factors (temperature, light, and soil moisture) on soil Hg flux. It was shown that individually irradiation, soil moisture, and air temperature all significantly enhance Hg evasive flux (by 90-140%). Synergistic effects (20-30% of additional flux enhancement) were observed for all two-factor interactions, with air temperature/soil moisture and air temperature/irradiation being the most significant. Results from the factorial experiments suggest that a model incorporating the second-order interactions can appropriately explain the flux response to the changes of the studied factors. Based on the factorial experiment results and using the flux data for twelve soil materials measured with a dynamic flux chamber (DFC) at various temperatures, soil moisture contents, solar radiation exposures, and soil Hg contents, two empirical models for estimating Hg flux from soils were developed. Model verification with ambient flux data not used to develop the models suggested that the models were capable of estimating dry soil Hg flux with a high degree of predictability (r ∼ 0.9).

摘要

已经提出了多种参数来影响大气和土壤之间汞(Hg)的交换。然而,用于估算土壤 Hg 通量的模型较为简单,并未考虑控制交换的因素之间潜在的协同和拮抗关系。本研究在气体交换室(GEC)中应用了两级析因实验设计,以研究三个环境因素(温度、光照和土壤湿度)对土壤 Hg 通量的单独和综合影响。结果表明,单独的辐射、土壤湿度和空气温度均显著增强了 Hg 的逸出通量(增强了 90-140%)。所有两个因素相互作用均观察到协同效应(额外通量增强的 20-30%),其中空气温度/土壤湿度和空气温度/辐射的影响最大。析因实验的结果表明,一个包含二阶相互作用的模型可以适当地解释通量对所研究因素变化的响应。基于析因实验结果,并利用在不同温度、土壤湿度、太阳辐射暴露和土壤 Hg 含量下用动态通量室(DFC)测量的十二种土壤材料的通量数据,开发了两种估算土壤 Hg 通量的经验模型。使用未用于开发模型的环境通量数据进行模型验证表明,这些模型能够以较高的可预测性(r∼0.9)估算干燥土壤 Hg 通量。

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