CAS Key Laboratory of Urban Pollutant Conversion, Department of Chemistry, University of Science &Technology of China, Hefei, 230026, China.
College of Agriculture - Laboratory for Soil Microbiology, Purdue University, West Lafayette, IN 47907, USA.
Sci Rep. 2016 Jun 16;6:28069. doi: 10.1038/srep28069.
Fullerene C60 nanoparticles are being used in broad range of applications. It is important to assess their potential impacts in the environment. We evaluated the effects of C60 introduced as aqueous suspensions of nC60 aggregates of different particle size or via organic solvents on soils with different organic matter contents in this study. Impacts of the application were evaluated by measuring total microbial biomass, metabolic activity and bacterial community structure. Results show that nC60 aggregates, introduced as an aqueous suspension, had size-dependent effects on soil bacterial community composition in the low organic matter system, but induced minimal change in the microbial biomass and metabolic activity in soils with both high and low organic matter contents. Fullerene C60, co-introduced via an organic solvent, did not influence the response of soil microbes to the organic solvents. Our results suggest that nC60 aggregates of smaller size may have negative impact on soil biota and soil organic matter may play a key role in modulating the environmental effect of nanomaterials.
富勒烯 C60 纳米颗粒正在被广泛应用。评估其在环境中的潜在影响非常重要。在本研究中,我们通过测量总微生物生物量、代谢活性和细菌群落结构,评估了 C60 以不同粒径的 nC60 聚集体的水溶液或有机溶剂形式引入到具有不同有机质含量的土壤中的影响。结果表明,nC60 聚集体以水溶液形式引入时,对低有机质系统土壤细菌群落组成具有尺寸依赖性的影响,但对高和低有机质含量土壤中的微生物生物量和代谢活性的变化影响很小。通过有机溶剂共同引入的富勒烯 C60 对土壤微生物对有机溶剂的响应没有影响。我们的结果表明,较小尺寸的 nC60 聚集体可能对土壤生物群具有负面影响,而土壤有机质可能在调节纳米材料的环境效应方面发挥关键作用。