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Schimbari Climatice / ROU-2013-2011-v2.2.xls
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ting, make offsetting deductions for fuel consumption (e.g. natural gas) in Ammonia Production, first for feedstock use of the fuel, and then for a sequestering use of the feedstock.Emissions: Under Emissions the final emissions (after subtracting the amounts of emission recovery, oxidation, destruction or transformation) should be reported. Recovery: Amount of emission recovery, oxidation, destruction or transformation.IEF: The IEFs are estimated on the basis of gross emissions as follows: IEF = (emissions plus amounts recovered, oxidized, destroyed or transformed) / activity data.
L50 2.B.2 Nitric Acid Production/2011:Emissions have been calculated by multiplying annual nitric acid production by an emission factor (in line with IPCC and Corinair methodology), which reflects the process type. Also the emissions have been estimated at plant level, considering the N20 and NOx abatement technology installed at each plant.
L51 2.B.3 Adipic Acid Production:Provide references to relevant sections of the NIR if any additional information and/or further details are needed to understand the content of this data grid. Confidentiality: Where only aggregate figures for activity data are provided, e.g. due to reasons of confidentiality, a note indicating this should be provided in the documentation box.
L52 2.B.3 Adipic Acid Production/2011:Starting with 1998, the National Institute for Statistics does not report any adipic acid production. The local Environment Protection Agencies were requested to provide information on this activity. The adipic acid production was stopped at the end of 2001. The local EPA provided the AD for 1998-2001 based on plants data..
L53 2.C Metal Production:A surrogate method has been used to estimate AD for limestone and dolomite use. Because the use of limestone and dolomite is related to iron and steel production, the trend for iron production was used to estimate AD for limestone and dolomite use.
L54 2.C.2 Ferroalloys Production:AD: Specify the activity data used in order to make the choice of emission factor more transparent and to facilitate comparisons of implied emission factors. Emissions: Under Emissions the final emissions (after subtracting the amounts of emission recovery, oxidation, destruction or transformation) should be reported. Recovery: Amount of emission recovery, oxidation, destruction or transformation.IEF: The IEFs are estimated on the basis of gross emissions as follows: IEF = (emissions plus amounts recovered, oxidized, destroyed or transformed) / activity data.
L55 2.C.3 Aluminium Production:AD: Specify the activity data used in order to make the choice of emission factor more transparent and to facilitate comparisons of implied emission factors. Emissions: Under Emissions the final emissions (after subtracting the amounts of emission recovery, oxidation, destruction or transformation) should be reported. Recovery: Amount of emission recovery, oxidation, destruction or transformation.IEF: The IEFs are estimated on the basis of gross emissions as follows: IEF = (emissions plus amounts recovered, oxidized, destroyed or transformed) / activity data.
L56 2.C.3 Aluminium Production/2011:CWPB technology type
L57 2.D.1 Pulp and Paper:AD: Specify the activity data used in order to make the choice of emission factor more transparent and to facilitate comparisons of implied emission factors. Emissions: Under Emissions the final emissions (after subtracting the amounts of emission recovery, oxidation, destruction or transformation) should be reported. Recovery: Amount of emission recovery, oxidation, destruction or transformation.IEF: The IEFs are estimated on the basis of gross emissions as follows: IEF = (emissions plus amounts recovered, oxidized, destroyed or transformed) / activity data.
L58 2.D.2 Food and Drink:This source category reffers to NMVOC emissions from: wine, beer, meat, fish and poultry, bread, sugar, cakes and biscuits
L59 2.F Consumption of Halocarbons and SF6:Actual emissions: Equal the sum of the actual emissions of each halocarbon and SF6 from the source categories 2.C, 2.E, 2.F and 2.G multiplied by the corresponding GWP values.Potential emissions: Equals the emissions of each halocarbon and SF6 reported under nodes 2.F.P multiplied by the corresponding GWP values. Potential emissions of each chemical of halocarbons and SF6 estimated using Tier 1a or Tier 1b of the IPCC Guidelines (Volume 3. Reference Manual, pp. 2.47-2.50). Where potential emission estimates are available in a disaggregated manner for the source categories F.1 to F.9, these should be reported in the NIR and a reference should be provided in the documentation box. Use table Summary 3 to indicate whether Tier 1a or Tier 1b was used.
L60 2.F.3 Fire Extinguishers:Under each of the souce categories in the navigation tree, specify the chemical consumed using the "Add gas" option.As stated in the UNFCCC reporting guidelines, Parties should report actual emissions of HFCs, PFCs and SF6, where data are available, providing disaggregated data by chemical and source category in units of mass and in CO2 equivalent. Parties reporting actual emissions should also report potential emissions for the sources where the concept of potential emissions applies, for reasons of transparency and comparability. Gases with GWP values not yet agreed upon by the COP should be reported in Table 9 (b). In accordance with the UNFCCC reporting guidelines, HFC and PFC emissions should be reported for each relevant chemical. However, if it is not possible to report values for each chemical (i.e. mixtures, confidential data, lack of disaggregation), these could be reported under "Unspecified mix of ..." for HFCs and PFCs, respectively. Note that th
L61 e unit used for these estimates is Gg of CO2 equivalent.
Table2(I).A-Gs1
L1 TABLE 2(I).A-G SECTORAL BACKGROUND DATA FOR INDUSTRIAL PROCESSES Inventory 2011
L2 Emissions of CO2, CH4 and N2O Submission 2013 v2.2
L3 (Sheet 1 of 2) ROMANIA
L5 GREENHOUSE GAS SOURCE AND ACTIVITY DATA IMPLIED EMISSION FACTORS (2) EMISSIONS
L6 SINK CATEGORIES Production/Consumption quantity CO2 CH4 N2O CO2 CH4 N2O
L7 Emissions(3) Recovery(4) Emissions(3) Recovery(4) Emissions(3) Recovery(4)
L8 Description (1) (kt) (t/t) (Gg)
L9 A. Mineral Products 4880.9914790459 NA,NO NA,NE NA,NO NA,NE NA,NO
L10 1. Cement Production clinker production data 5751.2139 0.53707637046469 3088.8410871781 NO
L11 2. Lime Production quicklime production and dolomitic lime production C C 1260.41014 NO
L12 3. Limestone and Dolomite Use limestone and dolomite use 891.8631578 0.4471496215986 398.796273528 NO
L13 4. Soda Ash 73.795078339811 NO
L14 Soda Ash Production trona C C 57.493547169811 NO
L15 Soda Ash Use soda ash use 39.280798 0.415 16.30153117 NO
L16 5. Asphalt Roofing asphalt roofing C NE NE NO
L17 6. Road Paving with Asphalt road paving with asphalt C NE NE NO
L18 7. Other (please specify) 59.1489 NA,NO NA,NE NA,NO NA,NE NA,NO
L19 Glass Production container glass, flat glass and wool glass production C C NE NE 59.1489 NO NE NO NE NO
L20 Other non-specified other non - specified NA NA NA NA NA NA NA NA NA NA
L21 B. Chemical Industry 3033.988941797 NA,NO 0.6460076 NO 3.90261218 NA,NO
L22 1. Ammonia Production(5) natural gas consumption 1245.4284039008 2.4251727161006 NE NE 3020.378984997 NO NE NO NE NO
L23 2. Nitric Acid Production nitric acid production 1076.965 0.0036237131011686 3.90261218 NO
L24 3. Adipic Acid Production adipic acid production NO NO NO NO NO NO NO
L25 4. Carbide Production 12.372688 1.1 0.046231473710482 13.6099568 NO 0.5720076 NO
L26 Silicon Carbide silicon carbide production C IE C IE NO 0.5720076 NO
L27 Calcium Carbide consumption of calcium carbide 12.372688 1.1 NO 13.6099568 NO NO NO
L28 5. Other (please specify) NA,NE,NO NA,NO 0.074 NO NA,NE,NO NA,NO
L29 Carbon Black carbon black production NO NO NO NO
L30 Ethylene (ethylene production) NO NO NO NO NO NO NO NO NO NO
L31 Dichloroethylene (dichloroethylene production) NO NO NO NO
L32 Styrene (styrene production) NO NO NO NO
L33 Methanol methanol C C 0.074 NO
L34 Coke production Coke production C NA NO NA NA NA NO NO NA NA
L35 Other non-specified other non - specified NE NE NE NE NE NO NE NO NE NO
L36 Sulphuric acid production sulphuric acid production C NE NE NE NE NO NE NO NE NO
L38 (1) Where the IPCC Guidelines provide options for activity data, e.g. cement production or clinker production for estimating the emissions from Cement Production, specify the activity data used (as shown in the example in parentheses) in order to make the choice of emission factor more transparent and to facilitate comparisons of implied emission factors.
L39 (2) The implied emission factors (IEF) are estimated on the basis of gross emissions as follows: IEF = (emissions plus amounts recovered, oxidized, destroyed or transformed) / activity data.
L40 (3) Final emissions are to be reported (after subtracting the amounts of emission recovery, oxidation, destruction or transformation).
L41 (4) Amounts of emission recovery, oxidation, destruction or transformation.
L42 (5) To avoid double counting, make offsetting deductions for fuel consumption (e.g. natural gas) in Ammonia Production, first for feedstock use of the fuel, and then for a sequestering use of the feedstock.
Table2(I).A-Gs2
L1 TABLE 2(I).A-G SECTORAL BACKGROUND DATA FOR INDUSTRIAL PROCESSES Inventory 2011
L2 Emissions of CO2, CH4 and N2O Submission 2013 v2.2
L3 (Sheet 2 of 2) ROMANIA
L5 GREENHOUSE GAS SOURCE AND ACTIVITY DATA IMPLIED EMISSION FACTORS (2) EMISSIONS
L6 SINK CATEGORIES Production/Consumption quantity CO2 CH4 N2O CO2 CH4 N2O
L7 Emissions(3) Recovery(4) Emissions(3) Recovery(4) Emissions(3) Recovery(4)
L8 Description (1) (kt) (t/t) (Gg)
L9 C. Metal Production 3008.0967 NA,NO NA,NE NA,NO NA NA
L10 1. Iron and Steel Production 0.32604232158184 NE 2632.079 NO NE NO
L11 Steel steel production (BOF and EAF) 3808.402414 0.071097791295539 NE 270.769 NO NE NO
L12 Pig Iron pig iron production 1581.25053 1.4933180765479 NE 2361.31 NO NE NO
L13 Sinter sinter used 1841.839 IE NE IE NO NE NO
L14 Coke coke used 841.322 IE NE IE NO NE NO
L15 Other (please specify) IE NO NE NO
L16 Electrodes electrodes used IE IE NE IE NO NE NO
L17 2. Ferroalloys Production ferroalloys production C C NE 40.0427 NO NE NO
L18 3. Aluminium Production primary aluminium production 224.505 1.4965145542416 NE 335.975 NO NE NO
L19 4. SF6 Used in Aluminium and Magnesium Foundries
L20 5. Other (please specify) NA NA NA NA NA NA
L21 D. Other Production NE NO
L22 1. Pulp and Paper
L23 2. Food and Drink (alcoholic beverages production and food production) NE NE NE NO
L24 G. Other (please specify) NA NA NA NA NA NA
L25 Other non-specified (other non-specified) NA NA NA NA NA NA NA NA NA NA
L27 (1) Where the IPCC Guidelines provide options for activity data, e.g. cement production or clinker production for estimating the emissions from Cement Production, specify the activity data used (as shown in the example in parentheses) in order to make the choice of emission factor more transparent and to facilitate comparisons of implied emission factors.
L28 (2) The implied emission factors (IEF) are estimated on the basis of gross emissions as follows: IEF = (emissions + amounts recovered, oxidized, destroyed or transformed) / activity data.
L29 (3) Final emissions are to be reported (after subtracting the amounts of emission recovery, oxidation, destruction or transformation).
L30 (4) Amounts of emission recovery, oxidation, destruction or transformation.
L32 Documentation box:
L33 • Parties should provide detailed explanations on the industrial processes sector in Chapter 4: Industrial processes (CRF sector 2) of the NIR. Use this documentation box to provide references to relevant sections of the NIR if any additional information and/or further details are needed to understand the content of this table.
L34 • In relation to metal production, more specific information (e.g. data on virgin and recycled steel production) could be provided in this documentation box, or in the NIR, together with a reference to the relevant section.
L35 • Confidentiality: Where only aggregate figures for activity data are provided, e.g. due to reasons of confidentiality, a note indicating this should be provided in this documentation box.
L36 2.A Mineral Products:emissions were recalculated based on clinker production.EF is estimated based on CaO content, MgO content in clinker and correction factor for discarded amounts of dust
L37 2.A.1 Cement Production:emissions were recalculated based on clinker production.EF is estimated based on CaO content, MgO content in clinker and correction factor for discarded amounts of dust
L38 2.A.1 Cement Production/2011:CO2 emissions estimated based on clinker data. EF for clinker production is estimated take into account the plant specific content of CaO and MgO in clinker (according with laboratory analyses) for 2011 year.
L39 2.A.2 Lime Production:AD: Where the IPCC Guidelines provide options for activity data, e.g. cement production or clinker production for estimating the emissions from Cement Production, specify the activity data used (as shown in the example in parenthesis) in order to make the choice of emission factor more transparent and to facilitate comparisons of implied emission factors. Emissions: Under Emissions the final emissions (after subtracting the amounts of emission recovery, oxidation, destruction or transformation) should be reported. Recovery: Amount of emission recovery, oxidation, destruction or transformation.IEF: The IEFs are estimated on the basis of gross emissions as follows: IEF = (emissions plus amounts recovered, oxidized, destroyed or transformed) / activity data.
L40 2.A.3 Limestone and Dolomite Use:A surrogate method has been used to estimate AD for limestone and dolomite use. Because the use of limestone and dolomite is related to iron and steel production, the trend for iron production was used to estimate AD for limestone and dolomite use.
L41 2.A.3 Limestone and Dolomite Use/2011:the activity data regarding limestone and dolomite used are provided by the plants ( iron and steel producers, pulp and paper producers, sugar mills producers ,ceramics producers)..The EF used is a combination of EF for limestone (440kg CO2/tonne limestone used) and the EF for dolomite 477kg CO2/ tonne dolomite used .
L42 2.A.4 Soda Ash Production and Use:General category documentation 4
L43 2.A.4.2 Soda Ash Use:A surrogate method was used to estimate soda ash consumption, based on soda ash production trend.
L44 2.A.4.2 Soda Ash Use/2011:the activity data regarding SODA ASH used are provided by the plants ( pulp and paper producers, chemicals producers, flue gas desulphurisation , water treatment, soap and detergents producers). The EF used is in line with IPCC 1996 (415 kg CO2/ tonne of soda ash used)
L45 2.A.5 Asphalt Roofing/2011:activity data are not available
L46 2.A.6 Road Paving with Asphalt/2011:The NMVOC emission factory used for 2A.6 category comes from CORINAIR methodology.
L47 2.B.1 Ammonia Production:AD: Specify the activity data used in order to make the choice of emission factor more transparent and to facilitate comparisons of implied emission factors. To avoid double counting, make offsetting deductions for fuel consumption (e.g. natural gas) in Ammonia Production, first for feedstock use of the fuel, and then for a sequestering use of the feedstock.Emissions: Under Emissions the final emissions (after subtracting the amounts of emission recovery, oxidation, destruction or transformation) should be reported. Recovery: Amount of emission recovery, oxidation, destruction or transformation.IEF: The IEFs are estimated on the basis of gross emissions as follows: IEF = (emissions plus amounts recovered, oxidized, destroyed or transformed) / activity data.
L48 2.B.2 Nitric Acid Production/2011:Emissions have been calculated by multiplying annual nitric acid production by an emission factor (in line with IPCC and Corinair methodology), which reflects the process type. Also the emissions have been estimated at plant level, considering the N20 and NOx abatement technology installed at each plant.
L49 2.B.3 Adipic Acid Production:Provide references to relevant sections of the NIR if any additional information and/or further details are needed to understand the content of this data grid. Confidentiality: Where only aggregate figures for activity data are provided, e.g. due to reasons of confidentiality, a note indicating this should be provided in the documentation box.
L50 2.B.3 Adipic Acid Production/2011:Starting with 1998, the National Institute for Statistics does not report any adipic acid production. The local Environment Protection Agencies were requested to provide information on this activity. The adipic acid production was stopped at the end of 2001. The local EPA provided the AD for 1998-2001 based on plants data..
L51 2.C Metal Production:A surrogate method has been used to estimate AD for limestone and dolomite use. Because the use of limestone and dolomite is related to iron and steel production, the trend for iron production was used to estimate AD for limestone and dolomite use.
L52 2.C.1.1 Steel/2011:CO2 emissions from steel production are the sum of emissions from conversion of pig iron into crude steel and emissions from electrode consumption in the production of steel in electric arc furnace; the IE notation key is characterizing the AD and emissions data related to the consumption of
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