Department of Civil and Environmental Engineering, Tufts University, 200 College Avenue, Medford, Massachusetts 02155, USA.
Environ Sci Technol. 2012 Nov 6;46(21):11761-9. doi: 10.1021/es302541g. Epub 2012 Oct 10.
Experimental and mathematical modeling studies were performed to examine the effects of stabilizing agents on the transport and retention of fullerene nanoparticles (nC(60)) in water-saturated quartz sand. Three stabilizing systems were considered: naturally occurring compounds known to stabilize nanoparticles (Suwannee river humic acid (SRHA) and fulvic acid (SRFA)), synthetic additives used to enhance nanoparticle stability (Tween 80, a nonionic surfactant), and residual contaminants resulting from the manufacturing process (tetrahydrofuran (THF)). The results of column experiments demonstrated that the presence of THF, at concentrations up to 44.5 mg/L, did not alter nC(60) transport and retention behavior, whereas addition of SRHA (20 mg C/L), SRFA (20 mg C/L), or Tween 80 (1000 mg/L) to the influent nC(60) suspensions dramatically increased the mobility of nC(60), as demonstrated by coincidental nanoparticle and nonreactive tracer effluent breakthrough curves (BTCs) and minimal nC(60) retention. When columns were preflushed with surfactant, nC(60) transport was significantly enhanced compared to that in the absence of a stabilizing agent. The presence of adsorbed Tween 80 resulted in nC(60) BTCs characterized by a declining plateau and retention profiles that exhibited hyperexponential decay. The observed nC(60) transport and retention behavior was accurately captured by a mathematical model that accounted for coupled surfactant adsorption-desorption dynamics, surfactant-nanoparticle interactions, and particle attachment kinetics.
进行了实验和数学建模研究,以考察稳定剂对富勒烯纳米颗粒(nC(60))在水饱和石英砂中传输和保留的影响。考虑了三种稳定系统:已知稳定纳米颗粒的天然化合物(苏万尼河腐殖酸(SRHA)和腐殖酸(SRFA))、用于增强纳米颗粒稳定性的合成添加剂(吐温 80,一种非离子表面活性剂)以及制造过程中残留的污染物(四氢呋喃(THF))。柱实验的结果表明,THF 的存在(浓度高达 44.5mg/L)不会改变 nC(60)的传输和保留行为,而向进水中添加 SRHA(20mgC/L)、SRFA(20mgC/L)或 Tween 80(1000mg/L)则会极大地增加 nC(60)的迁移性,这表现为纳米颗粒和非反应示踪剂的同时穿透曲线(BTC)和最小的 nC(60)保留。当柱体用表面活性剂预冲洗时,与没有稳定剂的情况相比,nC(60)的传输得到了显著增强。吸附的 Tween 80 的存在导致 nC(60)BTC 呈现出下降的平台和保留曲线,表现出超指数衰减。观察到的 nC(60)传输和保留行为被一个数学模型准确地捕捉到,该模型考虑了耦合的表面活性剂吸附-解吸动力学、表面活性剂-纳米颗粒相互作用和颗粒附着动力学。