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Natural and Modified Nanomaterials as Sorbents of Environmental Contaminants

机译:天然和改性纳米材料作为环境污染物的吸收剂

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Nanotechnology is a revolutionary scientific and engineering concept that will have a large impact on our life. A core piece of this technology is the production of nanomaterials for electronic, chemical, medical, pharmaceutical, and environmental applications. In the last case, natural and modified natural nanomaterials would be good reference points for comparison of the functionality, cost, and potential ecological implications of synthetic nanomaterials. Here we investigated the performance of natural and modified nanomaterials (an allophane and a surface-modified smectite) in adsorbing copper (a common heavy metal contaminant), naphthalene (a representative polycyclic aromatic hydrocarbon), or 17β-estradiol (an endocrine-disrupting chemical). Allophane is an effective sorbent of copper (Cu): at pH 5.5 it can take up 4448 mg Cu/kg at the equilibrium concentration of 10 mg Cu/L. On the other hand, the surface-modified smectite is an excellent sorbent for naphthalene and 17β-estradiol. It can sorb 1180 mg naphthalene/kg at the equilibrium concentration of 1 mg/L or remove 98% of 17β-estradiol from a solution after 4 h of reaction. While the environmental impact and health effects of synthetic nanomaterials are essentially unknown and their use is of concern, natural nanomaterials (e.g., allophane and smectites) have been part of human existence since antiquity. As such, they do not pose much risk either to the physical environment or to human health.
机译:纳米技术是一种革命性的科学和工程概念,将对我们的生活产生重大影响。该技术的核心是生产用于电子,化学,医疗,制药和环境应用的纳米材料。在最后一种情况下,天然和改性天然纳米材料将是比较合成纳米材料的功能,成本和潜在生态影响的良好参考点。在这里,我们研究了天然和改性的纳米材料(一种铝脲烷和一种表面改性的蒙脱石)在吸附铜(一种常见的重金属污染物),萘(一种代表性的多环芳烃)或17β-雌二醇(一种破坏内分泌的化学物质)方面的性能。 )。 Allophane是一种有效的铜(Cu)吸附剂:在pH 5.5时,在10 mg Cu / L的平衡浓度下可吸收4448 mg Cu / kg。另一方面,经表面改性的蒙脱石对萘和17β-雌二醇是极好的吸附剂。反应4小时后,它可以以1 mg / L的平衡浓度吸收1180 mg萘/ kg或从溶液中除去98%的17β-雌二醇。尽管合成纳米材料对环境的影响和对健康的影响基本上是未知的,并且令人关注,但自古以来,天然纳米材料(例如,四氢铝镁石和绿土)一直是人类生存的一部分。这样,它们对物理环境或人类健康都不会构成太大的风险。

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