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small_combustion:commercial_and_institutional_-_stationary_combustion [2021/01/15 00:19] – kotzulla | small_combustion:commercial_and_institutional_-_stationary_combustion [2021/01/15 16:24] (current) – removed kotzulla | ||
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- | === Short description === | ||
- | [[f> | ||
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- | In source category //1.A.4.a.i - Commercial and Institutional: | ||
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- | ^ Method | ||
- | | T2, T3 | NS | CS | **L & T**: NMVOC, CO, Pb, PCDD/F, TSP; **L**: | ||
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- | === Method === | ||
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- | For **activity data** and **emission factors** see [[1.A.4. - Other: Stationary Combustion]]. | ||
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- | __Table 1: Emission factors for commercial and institutional combustion installations__ | ||
- | ||= **Pollutant** ||~ NO,,x,, ||~ SO,,x,, ||~ CO ||~ NMVOC ||~ TSP ||~ PM,,10,, ||~ PM,,2.5,, ||~ PAH ||~ PCDD/F || | ||
- | ||= **Fuel** ||||||||||||||= [kg/TJ] ||= [mg/TJ] ||= [µg/TJ] || | ||
- | ||~ Hard Coal ||> 89.8 ||> 331.7 ||> 2,162 ||> 30.3 ||> 18.5 ||> 17.6 ||> 15.7 ||> 60,000 ||> 16.3 || | ||
- | ||~ Residual Wood ||> 92.7 ||> 8.2 ||> 931.5 ||> 66.8 ||> 46.5 ||> 44.6 ||> 40.0 ||> 430,000 ||> 355.3 || | ||
- | ||~ Light Heating Oil ||> 43.7 ||> 3.3 ||> 11.9 ||> 2.3 ||> 1.0 ||> 1.0 ||> 1.0 ||> 160.7 ||> 2.7 || | ||
- | ||~ Natural Gas ||> 22.0 ||> 0.1 ||> 12.0 ||> 0.4 ||> 0.03 ||> 0.03 ||> 0.03 ||> 40.0 ||> 1.6 || | ||
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- | TSP and PM emission factors are to a large extend based on measurements without condensed compounds, according to CEN-TS 15883, annex I. | ||
- | PAH measurement data contain the following individual substances: Benzo(a)pyrene, | ||
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- | === Trend Discussion for Key Sources === | ||
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- | The following charts give an overview and assistance for explaining dominant emission trends of selected pollutants. | ||
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- | == Fuel Consumption == | ||
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- | [[gallery size=" | ||
- | : 1A4ai_AR_L.PNG | ||
- | : 1A4ai_AR_HC.PNG | ||
- | : 1A4ai_AR_OG.PNG | ||
- | : 1A4ai_AR_Bio.png | ||
- | [[/ | ||
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- | Annual fluctuations of all fuel types in source category //1.A.4// depend on heat demand subject to winter temperatures. From 1990 to the present time, fuel use changed considerably from coal & lignite to natural gas. The consumption of light heating oil decreased as well. As the activity data for light heating oil is based on the sold amount, it fluctuates due to fuel prices and changing storage amounts. | ||
- | The remarkable decrease of hard coal consumption in 2012 is caused by a change in statistics (data source). It's planned to revise the NEB back to 2003 in order to assure time series consistency. | ||
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- | == Non-Methane Volatile Organic Compounds - NMVOC and Carbon monoxide - CO == | ||
- | [[gallery size=" | ||
- | : 1A4ai_EM_NMVOC.png | ||
- | : 1A4ai_EM_CO.PNG | ||
- | [[/ | ||
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- | Main driver of the NMVOC and CO emission trends is the decreasing lignite consumption: | ||
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- | == Particulate Matter == | ||
- | [[gallery size=" | ||
- | : 1A4ai_EM_PM2.5.PNG | ||
- | : 1A4ai_EM_PM10.png | ||
- | : 1A4ai_EM_TSP.PNG | ||
- | [[/ | ||
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- | The emission trends for PM< | ||
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- | == Persistent Organic Pollutants == | ||
- | [[gallery size=" | ||
- | : 1A4ai_EM_PCDDF.PNG | ||
- | : 1A4ai_EM_PAH.PNG | ||
- | [[/ | ||
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- | The main driver of the POPs emission trend are coal and fuel-wood. PCDD/F emissions decrease from 1990 to 2003 due to decreasing lignite consumption. The use of firewood and therefore PCDD/F emissions from wood combustion show a constant development. | ||
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- | === Recalculations === | ||
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- | Recalculations were necessary for the latest reference year (2017) due to the availability of the National Energy Balance. Germany has a federal structure which causes a time lack of the National Energy Balance. Therefore recalculations are always necessary. Further recalculations are a result of the Revision of biomass data from 2003 onwards. | ||
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- | > For specific **information on recalculated emission estimates for Base Year and 2018**, please see the pollutant specific recalculation tables following chapter [[[recalculations | 8.1 - Recalculations]]]. | ||
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- | === Planned improvements === | ||
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- | > There are no sub-sector specific improvements planned at the moment. |