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Dissolution of Aluminum in Variably Charged Soils as Affected by Low-Molecular-Weight Organic Acids

机译:低分子量有机酸对铝在可变电荷土壤中的溶解

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Low-molecular-weight (LMW) organic acids exist widely in soils and play an important role in soil processes such as mineral weathering, nutrient mobilization and Al detoxification. In this research, a batch experiment was conducted to examine the effects of LMW organic acids on dissolution of aluminum in two variably charged soils, an Ultisol and an Oxisol. The results showed that the LMW organic acids enhanced the dissolution of Al in the two investigated soils in the following order: citric > oxalic > malonic > malic > tartaric > salicylic > lactic > maleic. This was generally in agreement with the magnitude of the stability constants for the Al-organic complexes. The effects of LMW organic acids on Al dissolution were greater in the Ultisol than in the Oxisol as compared to their controls. Also, the accelerating effects of citric and oxalic acids on dissolution of Al increased with an increase in pH, while the effects of lactic and salicylic acids decreased. Additionally, when the organic acid concentration was less than 0.2 mmol L~(-1), the dissolution of Al changed little with increase in acid concentration. However, when the organic acid concentration was greater than 0.2 mmol L~(-1), the dissolution of Al increased with increase in acid concentration. In addition to the acid first dissociation constant and stability constant of Al-organic complexes, the promoting effects of LMW organic acids on dissolution of Al were also related to their sorption-desorption equilibrium in the soils.
机译:低分子量(LMW)有机酸广泛存在于土壤中,并在土壤过程中发挥重要作用,例如矿物风化,养分动员和铝排毒。在这项研究中,进行了分批实验,以检查LMW有机酸对铝在两种不同电荷的土壤(Ultisol和Oxisol)中溶解铝的影响。结果表明,LMW有机酸按以下顺序增加了Al在两种土壤中的溶解度:柠檬酸>草酸>丙二酸>苹果酸>酒石酸>水杨酸>乳酸>马来酸。这通常与铝有机配合物的稳定常数的大小一致。与对照相比,LMW有机酸在Ultisol中对Al溶解的影响大于在Oxisol中。而且,柠檬酸和草酸对铝溶解的促进作用随pH的增加而增加,而乳酸和水杨酸的作用则减少。另外,当有机酸浓度小于0.2mmol L〜(-1)时,Al的溶解度随酸浓度的增加而变化不大。然而,当有机酸浓度大于0.2 mmol L〜(-1)时,Al的溶解度随酸浓度的增加而增加。除铝有机配合物的酸第一解离常数和稳定性常数外,LMW有机酸对铝溶解的促进作用还与它们在土壤中的吸附-解吸平衡有关。

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