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利用水生植物水鳖对 Pb、Cr、Ni 和 Zn 的植物提取及其在废水处理中的潜在应用。

Phytoextraction of Pb, Cr, Ni, and Zn using the aquatic plant Limnobium laevigatum and its potential use in the treatment of wastewater.

机构信息

Multidisciplinary Institute of Plant Biology (IMBIV), CONICET and Faculty of Exact, Physical and Natural Sciences, National University of Córdoba, Av. Vélez Sarsfield 1611, Ciudad Universitaria (X5016GCA), Cordoba, Argentina.

Research Institute on Animal Production (INPA) UBA-CONICET, The Center and Institute for Transdisciplinary Water Studies (CETA) and Faculty of Veterinary Sciences of the University of Buenos Aires, Av. Chorroarín 280 (C1427CWO), Buenos Aires, Argentina.

出版信息

Environ Sci Pollut Res Int. 2017 Aug;24(22):18295-18308. doi: 10.1007/s11356-017-9464-9. Epub 2017 Jun 21.

Abstract

In order to study the bioaccumulation of Pb, Cr, Ni, and Zn and the stress response, the floating aquatic plant Limnobium laevigatum was exposed to increasing concentrations of a mixture of these metals for 28 days, and its potential use in the treatment of wastewater was evaluated. The metal concentrations of the treatment 1 (T1) were Pb 1 μg L, Cr 4 μg L, Ni 25 μg L, and Zn 30 μg L; of treatment 2 (T2) were Pb 70 μg L, Cr 70 μg L, Ni 70 μg L, and Zn 70 μg L; and of treatment 3 (T3) were Pb 1000 μg L, Cr 1000 μg L, Ni 500 μg L, and Zn 100 μg L, and there was also a control group (without added metal). The accumulation of Pb, Cr, Ni, and Zn in roots was higher than in leaves of L. laevigatum, and the bioconcentration factor revealed that the concentrations of Ni and Zn in the leaf and root exceeded by over a thousand times the concentrations of those in the culture medium (2000 in leaf and 6800 in root for Ni; 3300 in leaf and 11,500 in root for Zn). Thus, this species can be considered as a hyperaccumulator of these metals. In general, the changes observed in the morphological and physiological parameters and the formation of products of lipid peroxidation of membranes during the exposure to moderate concentrations (T2) of the mixture of metals did not cause harmful effects to the survival of the species within the first 14 days of exposure. Taking into account the accumulation capacity and tolerance to heavy metals, L. laevigatum is suitable for phytoremediation in aquatic environments contaminated with moderated concentrations of Cr, Ni, Pb, and Zn in the early stages of exposure.

摘要

为了研究 Pb、Cr、Ni 和 Zn 的生物累积和应激反应,将漂浮水生植物水蕹菜暴露于逐渐增加浓度的混合金属中 28 天,并评估其在处理废水方面的潜在应用。处理 1(T1)的金属浓度为 Pb 1μg/L、Cr 4μg/L、Ni 25μg/L 和 Zn 30μg/L;处理 2(T2)的金属浓度为 Pb 70μg/L、Cr 70μg/L、Ni 70μg/L 和 Zn 70μg/L;处理 3(T3)的金属浓度为 Pb 1000μg/L、Cr 1000μg/L、Ni 500μg/L 和 Zn 100μg/L,还有一个对照组(未添加金属)。Pb、Cr、Ni 和 Zn 在水蕹菜根部的积累量高于叶片,生物浓缩因子表明 Ni 和 Zn 在叶片和根部的浓度超过培养液浓度的数千倍(叶片中 Ni 为 2000,根部中 Ni 为 6800;叶片中 Zn 为 3300,根部中 Zn 为 11500)。因此,该物种可以被认为是这些金属的超积累植物。总的来说,在暴露于混合金属的中等浓度(T2)的前 14 天内,观察到的形态和生理参数的变化以及膜脂过氧化产物的形成并没有对该物种的生存造成有害影响。考虑到对重金属的积累能力和耐受性,水蕹菜适合在 Cr、Ni、Pb 和 Zn 浓度适中的水生环境中进行早期的植物修复。

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