[厦门西溪河口沉积物中活性磷的分布、迁移及转化机理]。

Feng Pan, Yu Cai, Zhan-Rong Guo, Xin-Hong Wang
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引用次数: 0

摘要

为探讨锰、铁、硫地球化学对不同河口地区沉积物中活性磷分布的影响,采用薄膜扩散梯度(DGT)采样技术,对厦门西溪河河口沉积物中有效磷(DGT- p)、锰、铁、硫进行了原位高分辨率监测。结果表明,DGT-P在垂直剖面上的分布与沉积物中铁和硫的氧化还原转化以及活性磷的背景值密切相关。磷的钝化/活化主要受铁氧化物对磷的氧化吸附/还原溶解和硫酸盐还原和硫化物积累诱导的磷活化控制。沿采样点DGT-P的平均浓度变化较大(0.075 ~ 0.80 mg·L-1),与盐度无关,但与氧化还原条件密切相关,即氧化带越深,DGT-P的平均浓度越低。模拟结果表明,表层沉积物对孔隙水的补磷能力与DGT-P浓度和氧化还原条件相关,即氧化环境不利于沉积物磷的解吸和补磷,而还原环境中与铁、硫地球化学的耦合有利于维持较高的稳定磷浓度和磷的持续释放。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Distribution, Migration, and Transformation Mechanism of Labile Phosphorus in Sediments of Xixi River Estuary, Xiamen].

To explore the effect of manganese, iron, and sulfur geochemistry on the distribution of labile phosphorus in different estuarine areas, the diffusion gradient in thin-film (DGT) sampling technique was used for in-situ high-resolution monitoring of available phosphorus (DGT-P), manganese, iron, and sulfur in sediments from Xixi River estuary in Xiamen. The results showed that the distribution of DGT-P in the vertical profile was closely related to the redox transformation of iron and sulfur and the background value of active phosphorus in sediments. The passivation/activation of phosphorus was mainly controlled by the oxidative adsorption/reductive dissolution of phosphorus by iron oxides and the activation of phosphorus induced by sulfate reduction and sulfide accumulation. Along the sampling sites, the average concentration of DGT-P varied greatly (0.075-0.80 mg·L-1), which was not related to salinity but closely related to redox conditions, that is, the deeper the oxidation zone, the lower the average concentration of DGT-P. The simulation results showed that the phosphorus resupply capacity from surface sediments to porewater was correlated with DGT-P concentration and redox conditions, that is, the oxidative environment was unconducive to the desorption and resupply of sediment phosphorus, whereas the coupling with iron and sulfur geochemistry in the reducing environment was conducive to the maintenance of high labile phosphorus concentration and the continuous release of phosphorus.

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