Kerstin Hund‐Rinke
Datos Biográficos
| ID | 7850237 |
|---|---|
| NOMBRE | Kerstin Hund‐Rinke |
| NOMBRES | Kerstin |
| APELLIDO | Hund‐Rinke |
| FIRMA | RINKE K H |
| AFILIACIONES | Fraunhofer Institute for Molecular Biology and Applied Ecology |
| ORCID | 0000-0002-1569-6720 |
| VERIFICADO | Sí |
| TOTAL DE OBRAS | 3 |
| TOTAL DE CITAS | 0 |
| TOTAL COMO AUTOR | 3 |
| TOTAL COMO EDITOR | 0 |
| PRIMER AÑO DE PUBLICACIÓN | 2015 |
| AÑO MÁS RECIENTE DE PUBLICACIÓN | 2017 |
| ÍNDICE H | 0 |
Environmental Risk Assessment Strategy for Nanomaterials
An Environmental Risk Assessment (ERA) for nanomaterials (NMs) is outlined in this paper. Contrary to other recent papers on the subject, the main data requirements, models and advancement within each of the four risk assessment domains are described, i.e., in the: (i) materials, (ii) release, fate and exposure, (iii) hazard and (iv) risk characterisation domains. The material, which is obviously the foundation for any risk assessment, should be …
The Marina Risk Assessment Strategy
An engineered nanomaterial (ENM) may actually consist of a population of primary particles, aggregates and agglomerates of various sizes. Furthermore, their physico-chemical characteristics may change during the various life-cycle stages. It will probably not be feasible to test all varieties of all ENMs for possible health and environmental risks. There is therefore a need to further develop the approaches for risk assessment of ENMs. Within the…
Grouping and Read-Across Approaches for Risk Assessment of Nanomaterials
Physicochemical properties of chemicals affect their exposure, toxicokinetics/fate and hazard, and for nanomaterials, the variation of these properties results in a wide variety of materials with potentially different risks. To limit the amount of testing for risk assessment, the information gathering process for nanomaterials needs to be efficient. At the same time, sufficient information to assess the safety of human health and the environment …
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The Marina Risk Assessment Strategy
An engineered nanomaterial (ENM) may actually consist of a population of primary particles, aggregates and agglomerates of various sizes. Furthermore, their physico-chemical characteristics may change during the various life-cycle stages. It will probably not be feasible to test all varieties of all ENMs for possible health and environmental risks. There is therefore a need to further develop the approaches for risk assessment of ENMs. Within the…
Grouping and Read-Across Approaches for Risk Assessment of Nanomaterials
Physicochemical properties of chemicals affect their exposure, toxicokinetics/fate and hazard, and for nanomaterials, the variation of these properties results in a wide variety of materials with potentially different risks. To limit the amount of testing for risk assessment, the information gathering process for nanomaterials needs to be efficient. At the same time, sufficient information to assess the safety of human health and the environment …
Environmental Risk Assessment Strategy for Nanomaterials
An Environmental Risk Assessment (ERA) for nanomaterials (NMs) is outlined in this paper. Contrary to other recent papers on the subject, the main data requirements, models and advancement within each of the four risk assessment domains are described, i.e., in the: (i) materials, (ii) release, fate and exposure, (iii) hazard and (iv) risk characterisation domains. The material, which is obviously the foundation for any risk assessment, should be …
Business (3 obras) · Computer Science (3 obras) · Engineering (3 obras) · Hazard (3 obras) · Hazard analysis (3 obras) · Nanoparticles: synthesis and applications (3 obras) · Reliability engineering (3 obras) · Risk analysis (engineering (3 obras) · Risk assessment (3 obras) · Biology (2 obras)