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Aluminium mobilization from acidic forest soils in Leigongshan area, southwestern China: Laboratory and field study

机译:中国西南地区雷公山地区酸性森林土壤中的铝动员:实验室和田间研究

摘要

Aluminium mobilization from acidic forest soils in the remote Leigongshan area in southwestern China was investigated in the field and by a laboratory batch experiment using sequential extractions with HCl solutions with pH of approximately 3.4. Experimental data showed that strongly organically bound aluminium (Alp-Alcu) decreased significantly after sequential extraction, whereas exchangeable aluminium (Alex) increased in all three horizons. In the A-horizon with higher base saturation (BS), dissolved aluminium exchanged with base cations (BCs) on soil complex, causing lower aluminium release but significant leaching of BCs. In AB- and B-horizon with lower BS, more dissolved aluminium remained in solution. Al3+ activities in both experimental soil extracts and field soil waters strongly deviated from those predicted by the gibbsite model (i.e., pAl = pKsp + 3.0 pH) despite a significant increase in Al3+ with a decrease in pH. The soil organic-bound aluminium model, using Alcu and Alp to account for differences in the size of available Al pools in the soil, gave considerably better fits to both experimental and field data. SOM-Al model, approved by using Alex instead of organically bound aluminium (i.e., Alp and Alcu), could depict the changes in Al activities most successfully. We have concluded that Alp-Alcu is the main source of aqueous aluminium, whereas Alex plays an important role in regulating aluminium solubility during soil acidification.
机译:在中国西南部偏远的雷公山地区,从酸性森林土壤中动员了铝,并通过实验室分批实验进行了研究,使用pH值约为3.4的HCl溶液进行了连续萃取。实验数据表明,强有机结合的铝(Alp-Alcu)在顺序萃取后显着降低,而可交换铝(Alex)在所有三个层中均增加。在具有较高碱饱和度(BS)的A水平仪中,溶解的铝与土壤复合物上的碱阳离子(BCs)交换,导致铝释放量降低,但BCs的浸出量显着增加。在具有较低BS的AB和B地平线中,更多的溶解铝保留在溶液中。尽管Al3 +显着增加且pH值降低,但实验土壤提取物和田间土壤水中的Al3 +活性均与三水铝石模型所预测的Al3 +活性强烈偏离(即pAl = pKsp + 3.0 pH)。土壤有机结合的铝模型,使用Alcu和Alp来解释土壤中可用的Al池大小的差异,对实验数据和现场数据都具有更好的拟合度。通过使用Alex代替有机结合的铝(即Alp和Alcu)批准的SOM-Al模型可以最成功地描述Al活性的变化。我们得出的结论是,Alp-Alcu是铝水溶液的主要来源,而Alex在土壤酸化过程中在调节铝溶解度方面起着重要作用。

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