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藻类分解作用驱动的动态硫铁循环促进了沉积物中磷的释放。

Dynamic sulfur-iron cycle promoted phosphorus mobilization in sediments driven by the algae decomposition.

机构信息

School of Environment, Nanjing Normal University, Jiangsu Center for Collaborative Innovation in Geographical Information Resource Development and Application, Jiangsu Key Laboratory of Environmental Change and Ecological Construction, Nanjing, 210023, China.

出版信息

Ecotoxicology. 2021 Oct;30(8):1662-1671. doi: 10.1007/s10646-020-02316-y. Epub 2020 Dec 2.

Abstract

Direct evidence of the algae bloom in eutrophic freshwater lakes on sulfur cycle and the subsequent iron oxide reduction and the iron oxides-bound phosphate (Fe-P) release in sediments is lacking. In this study, microcosms experiment was carried out to investigate the dynamic variations of S, Fe and P species in the water column and sediments as well as the sulfate reducing bacteria (SRB) abundance variation in the sediments during algae decomposition. The sulfate reduction was stimulated by the algae decomposition, which resulted in dramatic sulfate decline, sulfide increase and SRB growth. In addition, large amounts of acid volatile sulfide (AVS), pyrite sulfur (Pyrite-S) and elemental sulfur (S) accumulated in the sediment. In particular, the contents of sedimentary Fe(II) and Pyrite-S in surface sediments continuously accumulated until the end of the experiment. Moreover, the terminal Fe-P content reduced by 35.4% compared with the initial concentration at high algae density group. These results suggested the irreversible reduction of iron oxides and revealed iron chemical reduction mediated by sulfide during algae decomposition. In addition, the connection of sulfur-iron cycle and the significant promotion of Fe-P mobilization in sediments was established, which should be paid more attention in the eutrophic freshwater ecosystems.

摘要

在富营养化淡水湖中,藻类大量繁殖会直接影响硫循环,并导致随后沉积物中铁氧化物还原和铁氧化物结合态磷(Fe-P)的释放,但目前尚缺乏直接证据。本研究通过微宇宙实验,调查了藻类分解过程中水柱和沉积物中 S、Fe 和 P 物种的动态变化,以及沉积物中硫酸盐还原菌(SRB)丰度的变化。藻类分解刺激了硫酸盐还原作用,导致硫酸盐急剧下降、硫化物增加和 SRB 生长。此外,大量的酸可挥发性硫(AVS)、黄铁矿硫(Pyrite-S)和元素硫(S)在沉积物中积累。特别是,表层沉积物中沉积态 Fe(II)和 Pyrite-S 的含量持续积累,直到实验结束。此外,与高藻密度组相比,终态 Fe-P 含量比初始浓度降低了 35.4%。这些结果表明铁氧化物的不可逆还原以及藻类分解过程中硫介导的铁化学还原。此外,还建立了硫-铁循环的联系,并显著促进了沉积物中 Fe-P 的迁移,这在富营养化淡水生态系统中应引起更多关注。

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