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Effects of live wetland plant macrophytes on acidification, redox potential and sulphate content in acid sulphate soils

机译:活湿地植物宏观物质对酸硫酸盐土壤酸化,氧化还原电位和硫酸盐含量的影响

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Unless properly managed, acid sulphate soils can exert a range of negative environmental impacts, including soil acidification and mobilization of metals and metalloids. Incorporation of organic matter in the form of plant mulches can substantially neutralize sulphuric soils and prevent the oxidation of sulphidic soils. These positive effects of dead plants are largely mediated by bacterial reduction of sulphates to sulphides, using the organic matter as a microbial nutrient source. However, very little is known about the effects of live plants on acid sulphate soils. In this study, we compared pH, Eh and sulphate content of sulphidic and sulphuric soils that were not planted (i.e. unplanted) with those soils planted with the following three common wetland plants: Phragmites, Melaleuca and Typha. Each of these plants is capable of growth in aerobic and flooded soils. In all our experiments, the presence of plants correlated with an increase in soil acidification rather than neutralizing soil acidity when compared to unplanted controls. The mechanism for this appears to be transport of oxygen down the soil profile by aerenchymatous tissue formed in these species, and the release of oxygen into the rhizosphere.
机译:除非妥善管理,除非酸性硫酸盐土壤可以施加一系列负面环境影响,包括土壤酸化和金属和金属的动员。以植物覆盖物的形式掺入有机物可以基本上中和硫污垢并防止磺化土壤的氧化。使用有机物质作为微生物营养源,死亡植物的这些积极效应大致通过细菌还原到硫化物。然而,很少是关于活植物对酸硫酸盐土壤的影响。在这项研究中,我们将pH,eh和硫酸盐的含量进行比较,硫酸盐和硫酸盐未种植(即浮雕),这些土壤与以下三种常见的湿地植物种植:芦苇,melaleuca和汤匙。这些植物中的每一个能够在有氧和泛滥的土壤中生长。在我们的所有实验中,与融合对照相比,植物的存在与土壤酸化的增加而不是中和土酸度。这样的机制似乎是通过在这些物种中形成的雾化组织和氧气释放到根际的氧气细胞上的氧气曲线的运输。

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