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Improved arsenic phytoextraction by combined use of mobilizing chemicals and autochthonous soil bacteria

机译:通过结合使用动员化学物质和土生土细菌来改善砷的植物提取

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摘要

Proper plant selection and application of suitable strategies are key factors to ensure the effectiveness of a reclamation via phytoremediation approach. In this study, micro- and meso-cosmscale experimentation has been realized to address a persistent contamination by arsenic on a disused industrial site through an assisted phytoremediation intervention. Three crop species, namely Brassica juncea, Helianthus annuus and Zea mays, have been considered and the addition of K2HPO4, a common mobilizing agent for As, or (NH4)S2O3, a promising additive for As mobilization in case of mercury co-presence, evaluated. The use of these additives significantly enhanced the bioavailability of the target contaminant and therefore its phytoextraction up to 80%. Furthermore, in order to maximize the extraction efficiency of the plants, the influence of five indigenous Plant Growth Promoting Bacteria (PGPB), in combination with the mobilizing agents, was measured. The addition of the microbial consortium led to a further increase in the total uptake of arsenic, especially in B. juncea (up to 140%). The combined strategy supports and enhances the arsenic phytoextraction together with an improvement of the soil quality, as shown by phytotoxicity tests. (C) 2018 Elsevier B.V. All rights reserved.
机译:正确的植物选择和适当策略的应用是确保通过植物修复方法进行复垦的有效性的关键因素。在这项研究中,已经实现了微观和中尺度的实验,以通过辅助的植物修复干预措施来解决废弃工业场地上砷的持续污染。已经考虑了三种作物,分别是芥菜,向日葵和玉米,并且添加了K2HPO4(一种常见的As迁移剂)或(NH4)S2O3,在汞共存的情况下,As迁移的一种有希望的添加剂,评估。这些添加剂的使用显着提高了目标污染物的生物利用度,因此其植物提取率高达80%。此外,为了最大化植物的提取效率,测量了五种本土植物生长促进细菌(PGPB)以及动员剂的影响。微生物聚生体的添加导致砷的总摄入量进一步增加,特别是在芥菜型油菜中(高达140%)。如植物毒性试验所示,这种联合策略可支持并增强砷的植物提取作用,并改善土壤质量。 (C)2018 Elsevier B.V.保留所有权利。

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