Grison Claire M, Mazel Marine, Sellini Amandine, Escande Vincent, Biton Jacques, Grison Claude
Institut de Chimie Moléculaire et des Matériaux d'Orsay, Université Paris Sud, Rue du Doyen Georges Poitou, 91405, Orsay, Cedex, France.
Environ Sci Pollut Res Int. 2015 Apr;22(8):5667-76. doi: 10.1007/s11356-014-3605-1. Epub 2014 Sep 25.
Anthyllis vulneraria was highlighted here as a Zn-hyperaccumulator for the development of a pilot phytoextraction process in the mine site of Les Avinières in the district of Saint-Laurent-Le-Minier. A. vulneraria appeared to hyperaccumulate the highest concentration of Zn in shoots with a better metal selectivity relative to Cd and Pb than the reference Zn-hyperaccumulator Noccea caerulescens. A bigger biomass production associated to a higher Zn concentration conducted A. vulneraria to the highest total zinc gain per hectare per year. As a legume, A. vulneraria was infected by rhizobia symbionts. Inoculation of A. vulneraria seeds showed a positive impact on Zn hyperaccumulation. A large-scale culture process of symbiotic rhizobia of A. vulneraria was investigated and optimized to allow large-scale inoculation process. Contaminated shoots of A. vulneraria were not considered as wastes and were recovered as Eco-Zn catalyst in particular, examples of organic synthesis, electrophilic aromatic substitution. Eco-Zn catalyst was much more efficient than conventional catalysts and allowed greener chemical processes.
在圣洛朗 - 勒 - 米尼耶区的莱萨维尼耶矿场,伏翼岩黄芪被视为一种锌超积累植物,用于开发植物提取工艺试点。与参考锌超积累植物天蓝遏蓝菜相比,伏翼岩黄芪地上部分积累的锌浓度最高,对镉和铅具有更好的金属选择性。更大的生物量产量与更高的锌浓度相结合,使得伏翼岩黄芪每年每公顷的总锌积累量最高。作为一种豆科植物,伏翼岩黄芪受到根瘤菌共生体的感染。接种伏翼岩黄芪种子对锌超积累有积极影响。研究并优化了伏翼岩黄芪共生根瘤菌的大规模培养过程,以实现大规模接种。伏翼岩黄芪受污染的地上部分不被视为废物,特别是作为生态锌催化剂回收利用,用于有机合成、亲电芳香取代等示例。生态锌催化剂比传统催化剂效率更高,可实现更环保的化学过程。