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A laboratory study of the presence and transformation of dissolved Mn(Ⅲ) across the sediment-water interface of an anoxic freshwater body

机译:缺氧淡水水体沉积-水界面中溶解态Mn(Ⅲ)的存在与转化的室内研究

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Dissolved Mn(III) has been verified to be an important component of Mn cycling in a natural water system. However, the existence and stability of dissolved Mn(III) and its interactions with environmental factors, such as pH, dissolved oxygen (DO), oxidation-reduction potential (ORP) and dissolved organic carbon (DOC) in freshwater body are still not clear. In this paper, the dynamic characteristics of dissolved Mn (Mn-diss), Mn(III), pH, DO, ORP and DOC across the sediment-water interface of anoxic freshwater environment (Wangjuan Reservoir of Qingdao City) were studied through laboratory experiments. The correlations between Mn-diss and these key environmental factors, as well as between Mn(III) and environmental factors were quantitatively analyzed. The results indicated that concentration gradient was the main driving force of Mn-diss and Mn(III) of each layer overlying water, and there were obvious differences between the concentrations of Mn-diss and Mn(III) of overlying and pore water. In sediment pore water, dissolved Mn(III) concentrations were as high as 9.35mg/L and constituted up to 23% of the total dissolved Mn pool, indicating that dissolved Mn(III) could stably exist in anoxic freshwater body and mainly came from the reduction process of Mn oxides in sediment. According to data analysis results, both the concentrations of Mn-diss and Mn(III) of pore water had significant correlations with the values of pH, ORP, and DOC of sediment pore water. The correlation coefficients of Mn-diss with the three factors were -0.861, -0.882 and -0.934, respectively, while, the correlation coefficients of Mn(III) with them were -0.836, -0.671 and -0.851, respectively.
机译:已证实溶解的Mn(III)是天然水系统中Mn循环的重要组成部分。然而,目前尚不清楚溶解态Mn(III)的存在和稳定性以及与淡水体中pH,溶解氧(DO),氧化还原电位(ORP)和溶解有机碳(DOC)等环境因素的相互作用。 。通过室内实验研究了缺氧淡水环境(青岛市王ju水库)沉积物-水界面中溶解态Mn(Mn-diss),Mn(III),pH,DO,ORP和DOC的动态特征。 。定量分析了Mn-diss与这些关键环境因素之间的相关性,以及Mn(III)与环境因素之间的相关性。结果表明,浓度梯度是上覆各层水的Mn-diss和Mn(III)的主要驱动力,上覆水和孔隙水中Mn-diss和Mn(III)的浓度存在明显差异。在沉积物孔隙水中,溶解态Mn(III)的浓度高达9.35mg / L,占溶解态Mn池总量的23%,表明溶解态Mn(III)可以稳定存在于缺氧淡水体中,且主要来自沉积物中锰氧化物的还原过程。根据数据分析结果,孔隙水的Mn-diss和Mn(III)浓度均与沉积物孔隙水的pH,ORP和DOC值显着相关。 Mn-diss与这三个因素的相关系数分别为-0.861,-0.882和-0.934,而Mn(III)与它们的相关系数分别为-0.836,-0.671和-0.851。

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