Bioaccumulation and ecotoxicity of carbon nanotubes
Биоаккумуляция и экотоксичность углеродных нанотрубок
2013-09-13
SCID: 54.1/wpj7v7mk
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aquatic organismsbioaccumulationcarbon nanotubesecotoxicityenvironmental no-effect concentrations
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Abstract (AI)
Carbon nanotubes (CNT) have numerous industrial applications and may be released to the environment. In the aquatic environment, pristine or functionalized CNT have different dispersion behavior, potentially leading to different risks of exposure along the water column. Data included in this review indicate that CNT do not cross biological barriers readily. When internalized, only a minimal fraction of CNT translocate into organism body compartments. The reported CNT toxicity depends on exposure conditions, model organism, CNT-type, dispersion state and concentration. In the ecotoxicological tests, the aquatic organisms were generally found to be more sensitive than terrestrial organisms. Invertebrates were more sensitive than vertebrates. Single-walled CNT were found to be more toxic than double-/multi-walled CNT. Generally, the effect concentrations documented in literature were above current modeled average environmental concentrations. Measurement data are needed for estimation of environmental no-effect concentrations. Future studies with benchmark materials are needed to generate comparable results. Studies have to include better characterization of the starting materials, of the dispersions and of the biological fate, to obtain better knowledge of the exposure/effect relationships.
Key Findings
1
Aquatic organisms are generally more sensitive than terrestrial organisms, invertebrates more sensitive than vertebrates, and single-walled nanotubes more toxic than double- or multi-walled nanotubes.
2
Carbon nanotubes generally do not readily cross biological barriers; after internalization, only a minimal fraction translocates into organism compartments.
3
Pristine and functionalized carbon nanotubes exhibit different dispersion behaviors in aquatic systems, affecting exposure risks throughout the water column.
4
Reported carbon nanotube toxicity varies with exposure conditions, organism model, nanotube type, dispersion state, and concentration.
5
Reported effect concentrations generally exceed modeled average environmental concentrations, but measured environmental data and benchmark materials are needed to establish reliable no-effect concentrations and comparable results.
Research Object
carbon nanotubes (CNT) in aquatic and terrestrial environments and their interactions with organisms
Research Subject
CNT bioaccumulation, biological translocation, and ecotoxicity, including how toxicity varies with exposure conditions, organism type, CNT structure, dispersion state, and concentration
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2013-09-13
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