Toolkit of the IEHIAS: Difference between revisions
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*Models and tools | *Models and tools | ||
{| {{prettytable}} | {| {{prettytable}} | ||
| Title | | '''Title''' | ||
| Category | | '''Category''' | ||
|---- | |---- | ||
| ConsExpo | | ConsExpo | ||
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*Worked examples of assessment techniques | *Worked examples of assessment techniques | ||
{| {{prettytable}} | |||
| Title | |||
|---- | |||
| Source characterisation | |||
|---- | |||
| Population modelling | |||
|---- | |||
| Evolution of ozone and particulate matter concentrations in Europe under climate change with the CHIMERE model | |||
|---- | |||
| Combining epidemiology and toxicology for the purpose of deriving ERFs: TCDD-induced dental aberrations | |||
|---- | |||
| Scoping | |||
|---- | |||
| Issue-framing | |||
|---- | |||
| Intake fractions of cadmium emissions from a large zinc smelter | |||
|---- | |||
| Scenarios | |||
|---- | |||
| Scoping the assessment: ultraviolet radiation (UVR) and future skin cancer | |||
|---- | |||
| Creating scenarios: an example for UVR and skin cancer | |||
|---- | |||
| Estimating health effects: UVR and skin cancer | |||
|---- | |||
| Downscaling IPCC SRES-population scenarios from OECD- to the city-level: London, Rome, Helsinki | |||
|---- | |||
| Modelling ultraviolet radiation exposures: a European case study | |||
|---- | |||
| Estimating baseline skin cancer incidence for London, Helsinki and Rome | |||
|---- | |||
| Health impact modelling: ultraviolet radiation and non-melanoma skin cancer | |||
|---- | |||
| Health impact modelling: ultraviolet radiation and melanoma skin cancer | |||
|---- | |||
| DALY calculations: UVR and skin cancer | |||
|---- | |||
| Sensitivity analysis: ultraviolet radiation (UVR) and skin cancer | |||
|---- | |||
| Health effects | |||
|---- | |||
| Stakeholder consultation and engagement | |||
|---- | |||
| Intake fraction: exposure to pesticides in food | |||
|---- | |||
| Using a PBPK model to assess population axposure to cadmium | |||
|---- | |||
| Expert elicitation: case study on ultrafine particles | |||
|---- | |||
| Using a Kalman filter to improve a real time air pollution model | |||
|---- | |||
| An algorithm for Monte Carlo analysis | |||
|---- | |||
| Qualitative uncertainly assessment: a worked example | |||
|---- | |||
|} | |||
*Worked examples of complete assessments | *Worked examples of complete assessments |
Revision as of 06:50, 15 June 2011
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Data:
- Context
- Environmental
- Exposure(info)/Dose(info)
- Effects and Impacts
Examples and case studies
- Examples of assessment methods
- Examples of integrated assessments
Models and methods
- Contains method and model fact sheets - e.g.
- Air pollution models
- Impact analysis methods and tools
- Noise models
Listings
- Case study summary reports
- Case study lead in Europe
- Case study pyrene exposure
- Changing ambient UVR and future skin cancer in London, Rome and Helsinki: melanoma skin cancer (CMM)
- Changing ambient UVR and future skin cancer in London, Rome and Helsinki: non-melanoma skin cancer (BCC and SCC)
- Current and Future Impacts of Heat on Mortality in three European cities
- Health impacts of agricultural land use change in Greece and Great Britain
- Health impacts of regulative policies on use of di-n-butylphthalate (DBP) in consumer products
- Health impacts of regulative policies on use of Formaldehyde in consumer products
- Integrated environmental and health impact assessment of waste management in Lazio (Italy)
- Integrated environmental health impact assessment for disinfection by-products in drinking water
- Modelling of ambient nitrogen dioxide concentrations in the city of Barcelona, with an application to assess the impact of a bicycle stimulation policy
- Transport case study report. Do the health benefits of cycling outweigh the risks?
- Transport case study report: evaluation of the health effects of the traffic circulation plan in the Hague
- Health impacts of agricultural land use change in Greece and Great Britain
- Health impacts of regulative policies on use of di-n-butylphthalate (DBP) in consumer products
- Models and tools
Title | Category |
ConsExpo | Exposure Model |
CalTOX | Environmental Fate Model, Exposure Model |
CHIMERE | Decision support tool, Environmental Fate Model |
Aguila | Uncertainly Tool |
CONTAM | Exposure Model |
EcoSenseWeb | Environmental Fate Model, Exposure Model, Impact Assesment/ Calculation, Whole Causal Chain |
Radiation models and online simulation tools | Exposure Model |
Physiologically based toxicokinetic (PBTK) model for dioxin | Pharmacokinetic Model |
Decision Support Tools metadatabase | Decision support tool |
RISK IAQ model | Exposure Model |
Focal sum modelling | Environmental Fate Model, Exposure Model, Impact Assesment/ Calculation |
dynamiCROP | Environmental Fate Model, Exposure Model, Impact Assesment/ Calculation, Model for Valuation |
PANGEA | Environmental Fate Model, Exposure Model, Impact Assesment/ Calculation, Model for Valuation |
Geomorf – Geographical Model of Radio-Frequency Power Density | Environmental Fate Model |
Indoor air pollution model (IndEx) |
- Worked examples of assessment techniques
Title |
Source characterisation |
Population modelling |
Evolution of ozone and particulate matter concentrations in Europe under climate change with the CHIMERE model |
Combining epidemiology and toxicology for the purpose of deriving ERFs: TCDD-induced dental aberrations |
Scoping |
Issue-framing |
Intake fractions of cadmium emissions from a large zinc smelter |
Scenarios |
Scoping the assessment: ultraviolet radiation (UVR) and future skin cancer |
Creating scenarios: an example for UVR and skin cancer |
Estimating health effects: UVR and skin cancer |
Downscaling IPCC SRES-population scenarios from OECD- to the city-level: London, Rome, Helsinki |
Modelling ultraviolet radiation exposures: a European case study |
Estimating baseline skin cancer incidence for London, Helsinki and Rome |
Health impact modelling: ultraviolet radiation and non-melanoma skin cancer |
Health impact modelling: ultraviolet radiation and melanoma skin cancer |
DALY calculations: UVR and skin cancer |
Sensitivity analysis: ultraviolet radiation (UVR) and skin cancer |
Health effects |
Stakeholder consultation and engagement |
Intake fraction: exposure to pesticides in food |
Using a PBPK model to assess population axposure to cadmium |
Expert elicitation: case study on ultrafine particles |
Using a Kalman filter to improve a real time air pollution model |
An algorithm for Monte Carlo analysis |
Qualitative uncertainly assessment: a worked example |
- Worked examples of complete assessments