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Green synthesis of iron nano-materials by plants and their use in removal of pollutants from wastewaters – a review

机译:植物对铁纳米材料的绿色合成及其在去除废水中污染物中的用途-综述

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Nano-materials are defined as structured components with dimensions ranging from approximately 1-100 nm. Because a smaller mass of material has increased specific surface area compared with conventional macroscale materials that can achieve the same objective, the consumption of raw materials is minimized significantly, with cost savings. Nano-sized iron in particular has many applications in the medical, biosensing, food, energy, and environmental fields because of its versatile properties and high level of catalytic activity. The green synthesis of nano-scale iron materials, especially from plants, has garnered substantial attention due to its ease of application, eco-friendly nature, and economy. Researchers and scientists worldwide have sought to assess the synthesis of iron nano-materials and the effectiveness of iron synthesized as such for the removal of environmental pollutants. These research efforts have involved numerous laboratory and field techniques. Green synthesis involves mostly the use of plants and the application of nano-sized iron materials for the removal of heavy metals, metal ions, dyes, chlorinated organic compounds, bacteria, and other pollutants such as nitrate, phosphate, chemical oxygen demand, and total organic carbon present in industrial wastewater, surface water, and groundwater. These themes will be explored in this paper.
机译:纳米材料被定义为尺寸约为1-100 nm的结构化组件。由于与可以实现相同目标的常规宏观材料相比,较小质量的材料具有增加的比表面积,因此可以显着最小化原材料的消耗,并节省成本。纳米铁由于其广泛的性能和高催化活性,尤其在医学,生物传感,食品,能源和环境领域具有许多应用。纳米级铁材料的绿色合成,尤其是来自植物的绿色合成,由于其易于使用,生态友好和经济的特性而受到了广泛的关注。世界各地的研究人员和科学家都试图评估铁纳米材料的合成以及合成的铁对去除环境污染物的有效性。这些研究工作涉及许多实验室和现场技术。绿色合成主要涉及植物的使用和纳米铁材料的应用,以去除重金属,金属离子,染料,氯代有机化合物,细菌和其他污染物,例如硝酸盐,磷酸盐,化学需氧量和总污染物。工业废水,地表水和地下水中存在的有机碳。这些主题将在本文中进行探讨。

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