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| sector:waste:cremation:start [2026/03/11 14:10] – kotzulla | sector:waste:cremation:start [2026/04/01 13:27] (current) – [Activity data] kotzulla | ||
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| - | ^ NO< | + | ^ NO< |
| | -/- | -/- | -/- | | -/- | -/- | -/- | ||
| | {{page> | | {{page> | ||
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| __Table 1: Annual amount of cremated human bodies, in [kt]__ | __Table 1: Annual amount of cremated human bodies, in [kt]__ | ||
| - | ^ 1990 | + | ^ 1990 |
| - | | 13.55 | 25.32 | 26.24 | 29.22 | 34.18 | 45.88 | 56.77 | | + | | 13.55 | 25.32 | 26.24 | 29.22 | 34.18 | 45.88 | 56.77 | |
| - | Source: own calculation, | + | | data source: own calculation, |
| ====Emission factors==== | ====Emission factors==== | ||
| - | Emission factors used are default values from the EMEP/EEA air pollutant emission inventory guidebook 2023 [(EMEPEEA2023)] | + | Emission factors used are default values from the EMEP/EEA air pollutant emission inventory guidebook 2023 as well as national data for POPs from the research project "POP- und Hg-Emissionen aus abfallwirtschaftlichen Anlagen" |
| + | |||
| + | In 2018, the TERT noted that the German emission factor for Hg is 100 times smaller than the default value proposed in the 2016 EMEP/EEA Guidebook and the emission factors for Cd and Pb being 1,000 times smaller than the proposed default values. The EF set has now been updated. | ||
| - | In 2018, the TERT noted that the German emission factor for Hg is 100 times smaller than the default value proposed in the 2016 EMEP/EEA Guidebook and the emission factors for Cd and Pb being 1,000 times smaller than the proposed default values. | ||
| - | However, the EFs for Pb and Cd are based on national expert judgement assuming that a) the emissions behave similarly to dust and b) the dust limit value of the air pollution control specification (27th BImSchV) is complied with (to be confirmed on the basis of the new measurement data from 5 crematoria with different exhaust-gas cleaning systems). | ||
| In contrast, the country-specific emission factor for Hg was calculated on the basis of the German report on “OSPAR Recommendation 2003/4 on controlling the dispersal of mercury from crematoria" | In contrast, the country-specific emission factor for Hg was calculated on the basis of the German report on “OSPAR Recommendation 2003/4 on controlling the dispersal of mercury from crematoria" | ||
| Since the cremation duration is approximately one hour, the mean value per hour corresponds to the Hg load per cremation and is used accordingly for inventory calculation. | Since the cremation duration is approximately one hour, the mean value per hour corresponds to the Hg load per cremation and is used accordingly for inventory calculation. | ||
| - | As developement of state of the art, values are interpolated between 2010 and 2018 (from 0,0913 g/cremation to 0,0449 g/ | + | As developement of state of the art, values are interpolated between 2010 and 2018 (from 0,0913 g/cremation to 0,0447 g/ |
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| + | In 2025, we carried out a complete review of the emission factor (EF) references. This work resulted in a few minor changes to the time series, but most importantly, | ||
| + | The emission factors for Pb and Cd have been set to default values [(EMEPEEA2023)] due to a lack of country specific references. | ||
| Emission factors for TSP, PM< | Emission factors for TSP, PM< | ||
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| [{{: | [{{: | ||
| - | note: small changes for 2023 | ||
| ===== Recalculations ===== | ===== Recalculations ===== | ||
| - | <WRAP center round info 60%> | + | In addition to a number of marginal changes in the time series for several pollutants, there were significant changes in Pb and Cd. The increase over time is due to the replacement of decreasing EF with constant default values. |
| - | With **activity data and emission | + | |
| + | [{{: | ||
| + | |||
| + | <WRAP center round info 65%> | ||
| + | For **pollutant-specific information on recalculated | ||
| </ | </ | ||
| + | |||
| ===== Planned improvements ===== | ===== Planned improvements ===== | ||