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sector:ippu:mineral_industry:glass_production:start [2021/02/03 12:22] – [Emission factors] gniffkesector:ippu:mineral_industry:glass_production:start [2021/12/15 20:00] – external edit 127.0.0.1
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 ===== Short description ===== ===== Short description =====
- +Category Code   Method                                ||||^  AD                                ||||^  EF                                  ||||| 
-^  Method   AD  ^  EF  ^  Key Category                +| 2.A.3        |  T2                                    |||||  AS                                |||||  CS                                  ||||| 
-|  T2      |  AS  |  CS  |  **T:** SO₂, TSP  | +^  Key Category   SO₂      NOₓ  ^  NH₃  ^  NMVOC  ^  CO    BC    Pb    Hg    Cd    Diox  ^  PAH  ^  HCB  ^  TSP  ^  PM₁₀  ^  PM₂ ₅  
 +| 2.A.3           |  L/-        |  -/-  |  -/-  |  -/-    |  -    |  -    |  -/-  |  -    |  -/-  |  -      -    |  -    |  -/-  |  -/-    -/-    |
 {{page>general:Misc:LegendEIT:start}} {{page>general:Misc:LegendEIT:start}}
 \\ \\
 Germany's glass industry produces a wide range of different glass types that differ in their chemical composition. Germany's glass sector comprises the following sub-sectors: container glass, flat glass, domestic glass, special glass and mineral fibres (glass and stone wool). The largest production quantities are found in the sectors of container glass and flat glass. Further processing and treatment of glass and glass objects are not considered. Germany's glass industry produces a wide range of different glass types that differ in their chemical composition. Germany's glass sector comprises the following sub-sectors: container glass, flat glass, domestic glass, special glass and mineral fibres (glass and stone wool). The largest production quantities are found in the sectors of container glass and flat glass. Further processing and treatment of glass and glass objects are not considered.
-Information about the key source relevance can be found in [[sector:ippu:mineral_industry:start|2.A - Mineral Industry]]. 
- 
 ===== Methodology ===== ===== Methodology =====
  
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 __Table 1: Overview of applied emission factors__ __Table 1: Overview of applied emission factors__
-||Pollutant||Products || EF || unit||Current trend || +Pollutant     ^^ Products            ^^  EF             ^^  Unit      ^^  Current trend      ^^ 
-|| NOₓ || all glass types || 1.0-3.4|| kg/t || constant || +NOₓ           ^| all glass types     ||  1.0-3.4        ||  kg/t      ||  constant           || 
-|| SO₂ || all glass types || 0.39-1.9|| kg/t || constant || +SO₂           ^| all glass types     ||  0.39-1.9       ||  kg/t      ||  constant           || 
-|| NMVOC || all glass types || 0.96 || kg/t || constant || +NMVOC         ^| all glass types     ||  0.96           ||  kg/t      ||  constant           || 
-|| NH₃ || all glass types || 0.03-0.7 || kg/t || constant || +NH₃           ^two glass types     ||  0.03/0.7       ||  kg/t      ||  constant           || 
-|| TSP || all glass types || 0.02-0.04|| kg/t || constant || +TSP           ^| all glass types     ||  0.02-0.04      ||  kg/t      ||  constant           || 
-|| PM₁₀ || all glass types || 0.01-0.03|| kg/t || constant || +PM₁₀          ^| all glass types     ||  0.01-0.03      ||  kg/t      ||  constant           || 
-|| PM₂.₅ || all glass types || 0.01-0.02|| kg/t || constant || +PM₂.₅         ^| all glass types     ||  0.01-0.02      ||  kg/t      ||  constant           || 
-|| As || container glass || 0.04-0.13|| g/t || rising || +As            ^| container glass     ||  0.079      ||  g/t       ||  constant           || 
-|| Pb || container glass || 0.22-0.41|| g/t || rising || +Pb            ^| container glass     ||  0.41      ||  g/t       ||  constant           || 
-|| Cd || container glass || 0.01-0.04|| g/t || rising || +Cd            ^| container glass     ||  0.04      ||  g/t       ||  constant           || 
-|| Cr || container glass || 0.03-0.07|| g/t || falling || +Cr            ^| container glass     ||  0.04      ||  g/t       ||  constant           || 
-|| Cu || container glass || 0.10-0.23|| g/t || falling || +Cu            ^| container glass     ||  0.10      ||  g/t       ||  constant           || 
-|| Ni || container glass || 0.01-0.02|| g/t || erratic || +Ni            ^| container glass     ||  0.014      ||  g/t       ||  constant           || 
-|| Se || container glass || 0.8-1.9|| g/t || erratic ||+Se            ^| container glass     ||  1.4        ||  g/t       ||  constant           ||
  
 ===== Trends in emissions ===== ===== Trends in emissions =====
  
-Trends in emissions correspond to trends of emission factors and of activity data. The resulting trends are not constant, but complex result of different EF for various glass types. So emissions of SO₂ could rising due to increased production Level of a relevant product. +Trends in emissions correspond to trends of emission factors and of production development. The resulting trends are not constant, as a result of different EF for various glass types. So emissions of SO₂ couldn't decrease due to increased production Level of a relevant product. 
- +[{{:sector:ippu:mineral_industry:em_2a3_since_1990.png|**Emission trends in NFR 2.A.3**}}]
-[{{EM_2A3_since_1990.PNG|**Emission trends in NFR 2.A.3**}}]+
  
  
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 =====Planned improvements ===== =====Planned improvements =====
  
-For purposes of updating the EF project has started in 2019, results are planned in 2020 [(ReFoPlan FKZ – 3719 52 1010: „Überarbeitung der Emissionsfaktoren für Luftschadstoffe in den Branchen Zementklinkerproduktion und Glasherstellung“)].+For purposes of updating the EF project has started in 2019, results from 2020 [(ReFoPlan FKZ – 3719 52 1010: „Überarbeitung der Emissionsfaktoren für Luftschadstoffe in den Branchen Zementklinkerproduktion und Glasherstellung“)] are planned to be use for Submission 2022.