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[陆地生态系统中溶解有机物的动态变化及其环境影响]

[Dynamics of dissolved organic matter in terrestrial ecosystem and its environmental impact].

作者信息

Wang Genmei, Zhou Lixiang

机构信息

College of Resources and Environmental Sciences, Nanjing Agricultural University, Nanjing 210095, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2003 Nov;14(11):2019-25.

Abstract

Dissolved organic matter (DOM), the most active organic carbon pool in terrestrial ecosystem, has a greater effect on the mobilization, translocation, and ecological toxicity of many inorganic and organic pollutants in environment. The DOM concentration in farmlands varies from 10 to 80 mgC.L-1, while most of wetlands contain 25-50 mgC.L-1 of DOM, which is similar to the leachate from forest soils. However, soil DOM can be increased to above 200-1000 mgC.L-1 in the rhizosphere or in the plots amended with organic manures. Generally, soil DOM containing a great deal of lower molecular weight fractions or hydrophilic fractions is more mobile and readily biodegradable, compared to the DOM with larger molecular weight or hydrophobic fractions. However, soils with lower pH and higher amount of oxides can adsorb DOM more strongly, and as a result, the mobile DOM in the soils will be reduced. Liming, water-logging, dry-wet recycling and higher temperature can increase the concentration of soil DOM. Furthermore, DOM can enhance the dissolution and translocation of inorganic and organic pollutants, due to the formation of DOM-pollutant complex, resulting in environmental risks. It was suggested that the dynamics of DOM in terrestrial ecosystem and the transportation flux and model of DOM or its associated pollutants from terrestrial to aquatic ecosystem should be considered in future research.

摘要

溶解有机物(DOM)是陆地生态系统中最活跃的有机碳库,对环境中许多无机和有机污染物的迁移、转运及生态毒性有较大影响。农田中DOM的浓度在10至80毫克碳/升之间,而大多数湿地含有25 - 50毫克碳/升的DOM,这与森林土壤的渗滤液相似。然而,在根际或施用有机肥的地块中,土壤DOM可增加到200 - 1000毫克碳/升以上。一般来说,与具有较大分子量或疏水组分的DOM相比,含有大量低分子量组分或亲水组分的土壤DOM更具流动性且更易生物降解。然而,pH值较低且氧化物含量较高的土壤对DOM的吸附更强,因此,土壤中可移动的DOM会减少。施用石灰、渍水、干湿循环和较高温度可增加土壤DOM的浓度。此外,由于形成了DOM - 污染物络合物,DOM可增强无机和有机污染物的溶解和转运,从而带来环境风险。建议在未来的研究中应考虑陆地生态系统中DOM的动态以及DOM或其相关污染物从陆地到水生生态系统的运输通量和模型。

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