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Bionanomining: biotechnological synthesis of metal nanoparticles from mining waste-opportunity for sustainable management of mining environmental liabilities

机译:BionanoMining:用于可持续管理采矿环境负债的采矿废物机会的金属纳米粒子的生物技术合成

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摘要

Mining is an important activity for many countries, especially some in development, such as Chile, where it is a pillar of its economy. However, it generates large impacts that are undesirable for the population such as the generation of polluting solid and effluents with a high content of heavy metals and metalloids, which are traditionally accumulated in deposits. In recent years, bionanomining emerged as a cutting-edge scientific-technological development associated with the application of micro- and macro-organisms to generate nanotechnological products by using mining and industrial wastes and wastewaters. Biomass of many species of bacteria, plants, algae and fungi have the ability to reduce or oxidise cations, which can physically be deposited as nanometric materials such as the nanoparticles. Nanoparticles are materials that are increasingly used, and therefore, their demand increase, based on the high surface area characteristics to improve thermal, electrical and optical properties of materials, and metallic ones have also antimicrobial activity. This review addresses the biosynthesis of metal nanoparticles, focusing on mining waste recovery strategies, which is an emerging reality in mining countries. Transformation of potentially hazardous waste into a valuable product through techniques that are eco-friendly is an opportunity to develop sustainably depressed or polluted sites.
机译:矿业是许多国家的重要活动,特别是在智利等发展中的一些重要活动,这是它的经济支柱。然而,它产生的巨大影响,这对于诸如具有高含量的重金属和金属含量的污染固体和流出物的污染,传统上积累在沉积物中。近年来,Bionanomining作为一种尖端的科技发展,与使用矿产和工业废物和废水产生微生物和宏生物以产生纳米技术产品的尖端科技发展。许多细菌,植物,藻类和真菌的生物量具有减少或氧化阳离子的能力,其可以物理地沉积为纳米粒子,例如纳米颗粒。纳米颗粒是越来越多地使用的材料,因此,它们的需求增加,基于高表面积特征,以改善材料的热,电气和光学性质,金属剂也具有抗微生物活性。该审查涉及金属纳米粒子的生物合成,重点是采矿废物回收策略,这是采矿国家的新兴现实。通过环保的技术将潜在危险废物的转变为有价值的产品,这是一种开发可持续抑郁或污染地点的机会。

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