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Carbon nanotubes: Carbon-14 labeling and ecological availability.

机译:碳纳米管:碳14标记和生态可用性。

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摘要

Carbon nanotubes comprise a class of nanomaterials having demonstrated promise for broad ranges of potential applications. The ecological and human health risks these nanomaterials may pose after release into environmental systems, however, are yet largely unknown.; The lack of an adequate method for quantifying carbon nanotubes in environmental media has been a principal challenge associated with determining their environmental behaviors. To address this problem, a modified chemical vapor deposition process employing carbon-14 labeled methane was used to synthesize radioactively labeled single- and multi-walled carbon nanotubes (SWNTs and MWNTs). These nanotubes were used to show that HeLa cells rapidly and apparently irreversibly assimilated unmodified MWNTs.; Given these results, previous qualitative detections of nanotubes in ecological receptors, and shared chemical properties with polycyclic aromatic hydrocarbons (PAHs), the bioaccumulation potential of nanotubes was investigated. The labeled nanotubes and a representative PAH, pyrene, were individually spiked to identical sediment and soil samples. The uptake and depuration behaviors of these compounds by the earthworm Eisenia foetida and the oligochaete Lumbriculus variegatus, potential entry points to terrestrial and aquatic food chains, were then assessed. Bioaccumulation values determined for the nanotubes were almost two orders of magnitude smaller than those measured for pyrene, indicating that purified nanotubes, unlike pyrene, are not readily absorbed into organisms.; Carbon nanotubes are also commonly physically and chemically altered, and these modifications can change their physicochemical properties and possibly also their environmental behaviors. Purified MWNTs were treated with a 3:1 mixture of sulfuric to nitric acid, a process that made the nanotubes more hydrophilic. These nanotubes were similarly spiked to soils and sediments, but their ecological uptake was determined to be the same as that for the unmodified nanotubes.; The octanol-water distribution coefficient, kow, represents a chemical property known to relate to bioaccumulation and is frequently employed for predictions thereof. A modified shake-flask method was used to measure the distributions of purified and 3:1 acid modified MWNTs between water and octanol. While their bioaccumulation behaviors were similar, different distribution coefficients were found for these nanotubes thus suggesting that, unlike typical hydrophobic organic chemicals, kow coefficients may not predict such behaviors for nanotubes.
机译:碳纳米管包括一类纳米材料,已被证明具有广泛的潜在应用前景。这些纳米材料释放到环境系统中后可能造成的生态和人类健康风险,但是,在很大程度上尚不清楚。缺乏量化环境介质中碳纳米管的适当方法一直是与确定其环境行为相关的主要挑战。为了解决这个问题,使用了采用碳14标记的甲烷的改良化学气相沉积工艺来合成放射性标记的单壁和多壁碳纳米管(SWNT和MWNT)。这些纳米管用于显示HeLa细胞迅速且显然不可逆地同化未修饰的MWNT。鉴于这些结果,先前对生态受体中的纳米管进行了定性检测,并与多环芳烃(PAH)共享了化学性质,因此研究了纳米管的生物蓄积潜力。将标记的纳米管和代表性的PAH pyr分别掺入相同的沉积物和土壤样品中。然后评估了EEisenia foetida和杂食小夜蛾Lumbriculus variegatus对这些化合物的吸收和净化行为,这是陆生和水生食物链的潜在进入点。纳米管测定的生物蓄积值比pyr测定的生物蓄积值小将近两个数量级,这表明与pyr不同,纯化的纳米管不容易被生物吸收。碳纳米管也通常在物理和化学上发生改变,这些修饰可以改变其理化性质,还可能改变其环境行为。用硫酸与硝酸的3:1混合物处理纯化的MWNT,该工艺使纳米管更具亲水性。这些纳米管同样被钉在土壤和沉积物上,但确定其生态吸收与未改性的纳米管相同。辛醇-水的分配系数kow代表已知与生物蓄积有关的化学性质,并经常用于预测其生物蓄积性。改进的摇瓶法用于测量纯水和3:1酸改性的MWNT在水和辛醇之间的分布。尽管它们的生物蓄积行为相似,但发现这些纳米管具有不同的分布系数,因此表明与典型的疏水有机化学物质不同,kow系数可能无法预测纳米管的这种行为。

著录项

  • 作者

    Petersen, Elijah Joel.;

  • 作者单位

    University of Michigan.;

  • 授予单位 University of Michigan.;
  • 学科 Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 124 p.
  • 总页数 124
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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