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合成的零价铁纳米颗粒在淡水微观生态系统中的稳定性和归宿

The stability and fate of synthesized zero-valent iron nanoparticles in freshwater microcosm system.

作者信息

Kumar Deepak, Parashar Abhinav, Chandrasekaran Natarajan, Mukherjee Amitava

机构信息

Centre for Nanobiotechnology, VIT University, Vellore, 632014, India.

出版信息

3 Biotech. 2017 Jul;7(3):227. doi: 10.1007/s13205-017-0869-4. Epub 2017 Jul 5.

Abstract

Zero-valent iron nanoparticles are used for the degradation of organic compounds and the immobilization of metals and metalloids. The lack of information on the effect of nZVI in freshwater system necessitated the risk assessment of zero-valent iron nanoparticles in lake water environment. The present study deals with the stability and fate of synthesized zero-valent iron nanoparticles in the upper and lower layers of freshwater microcosm system at a concentration of 1000 mg L. The study was divided into two different exposure periods: short-term exposure, up to 24 h after the introduction of nanoparticles, and long-term exposure period up to 180 days (4416 h). Aggregation kinetics of nZVI in freshwater microcosm was studied by measuring the mean hydrodynamic size of the nanoparticles with respect to time. A gradual increase in the particle size with time was observed up to 14 h. The algal population and total chlorophyll content declined for the short exposure period, i.e., 2-24 h, while in the case of longer exposure period, i.e., 24 h to 180 days (4416 h), a gradual increase of both the algal population and total chlorophyll was noted. Five different physico-chemical parameters such as pH, temperature, conductivity, salinity, and total dissolved solids were recorded for 180 days (6 calendar months). The study suggested that the nanoscale zero-valent iron did not exhibit significant toxicity at an exposure concentration of 1000 mg L on the resident algal population in the microcosm system over the longer exposure period tested.

摘要

零价铁纳米颗粒用于有机化合物的降解以及金属和类金属的固定。由于缺乏关于纳米零价铁在淡水系统中影响的信息,因此有必要对其在湖泊水环境中的风险进行评估。本研究探讨了合成的零价铁纳米颗粒在浓度为1000 mg/L的淡水微观系统上层和下层中的稳定性和归宿。该研究分为两个不同的暴露期:短期暴露,即纳米颗粒引入后长达24小时;长期暴露期长达180天(4416小时)。通过测量纳米颗粒的平均流体动力学尺寸随时间的变化,研究了纳米零价铁在淡水微观系统中的聚集动力学。观察到粒径随时间逐渐增加,直至14小时。在短暴露期(即2 - 24小时)内,藻类种群和总叶绿素含量下降,而在较长暴露期(即24小时至180天(4416小时))内,藻类种群和总叶绿素均逐渐增加。记录了180天(6个历月)内五个不同的物理化学参数,如pH值、温度、电导率、盐度和总溶解固体。该研究表明,在所测试的较长暴露期内,纳米级零价铁在1000 mg/L的暴露浓度下对微观系统中的本地藻类种群未表现出显著毒性。

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