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Process Data set: High impact polystyrene (HIPS) ; polymerisation of polybutadiene rubber in a styrene solution; production mix, at producer (en) en

Key Data Set Information
Location EU-27
Geographical representativeness description Primary production data for the HIPS production is from six different suppliers with eleven plants in eight European countries (Belgium, Czech Republic, France, Germany, Great Britain, Hungary, Italy and Spain). Fuel and energy inputs in the system reflect average European conditions and whenever applicable, site specific conditions were applied, to reflect representative situations.
Reference year 2010
Name
Base name ; Treatment, standards, routes ; Mix and location types
High impact polystyrene (HIPS) ; polymerisation of polybutadiene rubber in a styrene solution; production mix, at producer
Use advice for data set The data set can be used for all LCA/CF studies where the product is needed. Combination with individual unit processes using this commodity enables the generation of user-specific (product) LCAs. GPPS and HIPS are used in many applications such as food and non-food packaging, disposable cups and cutlery, furniture, toys and consumer goods, as well as electronics and appliances. Polystyrene is also easily foamed in order to manufacture insulation boards and lightweight foamed packaging. The packaging market is the main market and accounts for around one half of the European polystyrene market. Extrusion can be in form of plates, sheet, or foam boards. In a secondary process step extruded sheet can be thermoformed, for example into disposables such as trays and containers. Typical injection moulding applications are televisions housing and toys. HIPS is also used to make engineering resin blends with polyphenylene oxide for the automotive industry, electrical appliances, and electronics. Polystyrene can be recycled mechanically several times without deteriorating physical properties; furthermore, energy recovery is also possible.
Technical purpose of product or process GPPS and HIPS are used in many applications such as food and non-food packaging, disposable cups and cutlery, furniture, toys and consumer goods, as well as electronics and appliances. Polystyrene is also easily foamed in order to manufacture insulation boards and lightweight foamed packaging. The packaging market is the main market and accounts for around one half of the European polystyrene market. Extrusion can be in form of plates, sheet, or foam boards. In a secondary process step extruded sheet can be thermoformed, for example into disposables such as trays and containers. Typical injection moulding applications are televisions housing and toys. HIPS is also used to make engineering resin blends with polyphenylene oxide for the automotive industry, electrical appliances, and electronics. Polystyrene can be recycled mechanically several times without deteriorating physical properties; furthermore, energy recovery is also possible.
Classification
Class name : Hierarchy level
  • GaBiCategories: Industry data / PlasticsEurope
General comment on data set The main data source was a data collection from European producers of HIPS. Primary data on gate-to-gate HIPS production is derived from site-specific information for processes under operational control supplied by the participating companies of this eco-profile. In the case of HIPS six different producers with eleven plants in eight European countries participated in the primary data collection. About 95% of the European HIPS production capacity (EU-27) in 2010 is covered.
Copyright Yes
Owner of data set
Quantitative reference
Reference flow(s)
Time representativeness
Data set valid until 2022
Time representativeness description The LCI data for HIPS production was collected as 12 month averages representing the year 2010. Background data have reference year of 2008 to 2010. Even if all data were related to 2010, major changes in the result are not expected, as technological breakthrough is not known for refining, steam cracking or re-refining technology or one of the related up-stream technologies. These are rather established and if possible constantly optimised technologies. The dataset is considered to be valid until substantial technological changes in the production chain occur.
Technological representativeness
Technology description including background system Foreground system: Polystyrene is produced by polymerisation of styrene monomer, a chain-growth reaction which is induced by any known initiation techniques such as heat, free radical organic initiator, anionic or cationic initiating systems, or coordination-insertion organometallic initiating complexes. Both General purpose polystyrene (GPPS) and High impact polystyrene (HIPS) are produced by continuous-mass radical polymerisation of styrene; in case of HIPS, it is a polymerisation of polybutadiene rubber in a styrene solution. The plant setup generally comprises a feed section, a polymerisation section, a devolatilisation and solvent recovery section, and a pelletizing section. Styrene and processing aids are fed into the reactor. In the case of HIPS, polybutadiene rubber is ground and dissolved in styrene to obtain a rubber solution. An antioxidant is usually also added in the dissolving tank. In addition, other chemicals can be added here such as white oil, peroxides, recycled styrene, ethyl benzene or chain transfer agents. Solvents, such as toluene or ethylbenzene, are added to provide better control of the polymerisation rate and the heat release rate, to modify the viscosity of the polymerisation bulk solution melt, and the crosslinking of the rubber phase. The dissolved mixture is then fed continuously to the reactor train where bulk polymerisation takes place. The reactors’ temperatures are between 100 and 180 °C. The process flow then goes through a devolatilisation section to separate the polymer from the unreacted monomers and solvent. The melted polymer is then transferred through a die head to obtain strands that are cut (dry or underwater) by pelletisers. Background system: Electricity: Electricity is modelled according to the individual country-specific situations. The country-specific modelling is achieved on multiple levels. Firstly, individual energy carrier specific power plants and plants for renewable energy sources are modelled according to the current national electricity grid mix. Modelling the electricity consumption mix includes transmission / distribution losses and the own use by energy producers (own consumption of power plants and "other" own consumption e.g. due to pumped storage hydro power etc.), as well as imported electricity. Secondly, the national emission and efficiency standards of the power plants are modelled as well as the share of electricity plants and combined heat and power plants (CHP). Thirdly, the country-specific energy carrier supply (share of imports and / or domestic supply) including the country-specific energy carrier properties (e.g. element and energy content) are accounted for. Fourthly, the exploration, mining/production, processing and transport processes of the energy carrier supply chains are modelled according to the specific situation of each electricity producing country. The different production and processing techniques (emissions and efficiencies) in the different energy producing countries are considered, e.g. different crude oil production technologies or different flaring rates at the oil platforms. Thermal energy, process steam: The thermal energy and process steam supply is modelled according to the individual country-specific situation with regard to emission standards and considered energy carriers. The thermal energy and process steam are produced at heat plants. Efficiencies for thermal energy production are by definition 100% in relation to the corresponding energy carrier input. For process steam the efficiency ranges from 85%, 90% to 95%. The energy carriers used for the generation of thermal energy and process steam are modelled according to the specific import situation (see electricity above). Transports: All relevant and known transport processes are included. Ocean-going and inland ship transport as well as rail, truck and pipeline transport of bulk commodities are considered. Energy carriers: The energy carriers are modelled according to the specific supply situation (see electricity above). Refinery products: Diesel fuel, gasoline, technical gases, fuel oils, lubricants and residues such as bitumen are modelled with a parameterised country-specific refinery model. The refinery model represents the current national standard in refining techniques (e.g. emission level, internal energy consumption, etc.) as well as the individual country-specific product output spectrum, which can be quite different from country to country. The supply of crude oil is modelled, again, according to the country-specific situation with the respective properties of the resources.
Flow diagram(s) or picture(s)
  • PlasticsEurope_HIPS_production.jpg Image
Mathematical model
Model description The calculation follows the vertical calculation methodology, i.e. that the averaging is done after modelling the specific processes. Restrictions on competition and confidentiality do not allow displaying and describing the systems and analysing details.
LCI method and allocation
Type of data set LCI result
LCI Method Principle Attributional
Deviation from LCI method principle / explanations None
LCI method approaches
  • Allocation - net calorific value
  • Not applicable
  • Allocation - exergetic content
  • Allocation - market value
Deviations from LCI method approaches / explanations For details please see the document "GaBi Databases Modelling Principles"
Modelling constants All data used in the calculation of the LCI results refer to net calorific value.
Deviation from modelling constants / explanations None
LCA methodology report
Data sources, treatment and representativeness
Data cut-off and completeness principles In the foreground processes all relevant flows were considered, trying to avoid any cut-off of material and energy flows. In single cases additives used in the HIPS unit process (<0.1 % m/m of product output) were neglected. In all cases it was assured that no hazardous substances or metals were present in this neglected part. According to the GaBi Databases 2011, used in the background processes, at least 95 % of mass and energy of the input and output flows were covered and 98 % of their environmental relevance (according to expert judgment) was considered, hence an influence of cut-offs less than 1 % on the total in expected. All transports in the pre-chain contribute maximum 0.2% to the overall environmental burden. Including production the contribution of all transports is expected to be less than 1 %, thus transports are excluded from this investigation.
Deviation from data cut-off and completeness principles / explanations None
Data selection and combination principles 95% coverage of the European industry
Deviation from data selection and combination principles / explanations None
Data treatment and extrapolations principles The data set represents the specific situation in Europe, focusing on the main technologies used for producing HIPS in Europe. Primary production data for the HIPS production comes from six different suppliers in the EU.
Deviation from data treatment and extrapolations principles / explanations None
Documentation of data quality management
Percentage supply or production covered 95.0 %
Annual supply or production volume The considered participants covered 95% of all HIPS producers in Europe in 2010, which had a production capacity of more than 2,4 million tonnes.
Sampling procedure European producers act as a main source of data for the production of HIPS on the basis of a direct questionnaire. Primary data on gate-to-gate HIPS production is derived from site specific information for processes under operational control supplied by the participating companies of this study. The data for the upstream supply chain until the precursors are taken from the database of the software system GaBi 5.
Data collection period 2010
Uncertainty adjustments None
Completeness
Completeness of product model All relevant flows quantified
Validation
Type of review Data quality indicators
Independent external review
  • Methodological appropriateness and consistency: Very good
  • Completeness: Very good
  • Geographical representativeness: Very good
  • Time representativeness: Very good
  • Technological representativeness: Very good
Reviewer name and institution Complete review report
Type of review Scope / Method(s) of review Data quality indicators
Independent internal review
Scope name Method name
Goal and scope definition
  • Compliance with ISO 14040 to 14044
  • Expert judgement
LCIA results
  • Cross-check with other data set
  • Cross-check with other source
  • Compliance with ISO 14040 to 14044
  • Expert judgement
LCI results or Partly terminated system
  • Mass balance
  • Cross-check with other data set
  • Cross-check with other source
  • Energy balance
  • Element balance
  • Expert judgement
Documentation
  • Compliance with ISO 14040 to 14044
  • Expert judgement
Life cycle inventory methods
  • Compliance with ISO 14040 to 14044
Raw data
  • Cross-check with other source
  • Sample tests on calculations
  • Expert judgement
  • Validation of data sources
Unit process(es), single operation
  • Mass balance
  • Cross-check with other data set
  • Cross-check with other source
  • Energy balance
  • Element balance
  • Expert judgement
LCIA results calculation
  • Compliance with ISO 14040 to 14044
  • Expert judgement
Unit process(es), black box
  • Mass balance
  • Cross-check with other data set
  • Cross-check with other source
  • Energy balance
  • Element balance
  • Expert judgement
  • Overall quality: Very good
  • Methodological appropriateness and consistency: Very good
  • Precision: Not applicable
  • Completeness: Very good
  • Geographical representativeness: Very good
  • Time representativeness: Very good
  • Technological representativeness: Very good
Type of review Scope / Method(s) of review Data quality indicators Review details
Independent external review
Scope name Method name
LCIA results
  • Cross-check with other source
  • Expert judgement
Unit process(es), black box
  • Cross-check with other data set
  • Expert judgement
LCIA results calculation
  • Cross-check with other source
  • Compliance with ISO 14040 to 14044
Life cycle inventory methods
  • Cross-check with other source
  • Compliance with ISO 14040 to 14044
Documentation
  • Cross-check with other source
  • Compliance with ISO 14040 to 14044
Unit process(es), single operation
  • Cross-check with other data set
Goal and scope definition
  • Cross-check with other source
  • Compliance with ISO 14040 to 14044
LCI results or Partly terminated system
  • Mass balance
  • Documentation
  • Energy balance
  • Expert judgement
  • Overall quality: Very good
  • Methodological appropriateness and consistency: Very good
  • Precision: Not applicable
  • Completeness: Very good
  • Geographical representativeness: Very good
  • Time representativeness: Very good
  • Technological representativeness: Very good
As part of the PlasticsEurope programme management and quality assurance, DEKRA Consulting GmbH conducted an external independent critical review of this work. This included soliciting a co-review from an independent expert, Mr. Aafko Schanssema, Director of the Dutch Plastics Packaging Association (Vereniging Kunststofverpakkingen Nederland, VMK under the umbrella of Federatie Nederlandse Rubber- en Kunststofindustrie, NRK). The outcome of the critical review is reproduced below. The subject of this critical review was the development of the Eco-profile for European polystyrene (PS) production. The project included regular milestone meetings with representatives of all participating producers and PlasticsEurope as system operator. The chairman of the review panel participated in these meetings. In addition, a review meeting between the LCA practitioner and the reviewers was held, including a model and database review, and spot checks of data and calculations. The final Eco-profile report was also reviewed by the second co-reviewer, industry expert Aafko Schanssema (VMK). All questions and recommendations were discussed with the LCA practitioner, and the report was adapted and revised accordingly. Prior to data collection, a dominance analysis was conducted to identify sensitive data requirements. Original industry data were collected for all foreground processes, while background process data were sourced from the GaBi database. Primary industry data was collected from a total of 24 sites (13 for GPPS, 11 for HIPS) which leads to an overall representativeness of 95% of the European PS production. The environmental impacts for polystyrene are dominated by the styrene production and this, in turn, by benzene. Consequently, the respective datasets for the EBSM and POSM production routes are of great importance, as is the assumed benzene mix. While industry data was used for modelling the EBSM route, the POSM route was modelled based on literature data and the LCA practitioner’s expertise, then cross-checked with industry data. It is recommended to further validate the benzene and styrene data with updated information on benzene mix (reformer vs. cracker) and primary data for the POSM route. It is noteworthy that, contrary to some initial expectations the two routes are quite similar in performance: while the POSM route needs less process energy, it renders lower styrene yields. At the moment, the resulting styrene dataset is considered best available data and good quality with respect to the goal and scope, because it reflects the actual supply situation of each PS producer. The LCA practitioner has demonstrated very good competence and experience, with a track record of LCA projects in the chemical and plastics industry. The Eco-profile report also includes a comparison with the 2002 version of this Eco-profiles, prepared by Dr. Ian Boustead. For some indicators, while there are significant differences, they cannot be interpreted due to the lack of documentation of the previous dataset. Methodological changes are, however, of minor importance: for instance, waste treatment is now modelled within the system boundary, following ILCD requirements; also, characterisation factors were updated. A noteworthy change is the considerable decrease of the climate indicator GWP by 30–35 %, whereas the Primary Energy Demand was shown to be stable: this is largely due to the influence of the benzene mix noted above (reformer benzene with a lower greenhouse gas burden). Finally, consolidation and energy efficiency in industry caused some improvements. The critical review confirms that this Eco-profile adheres to the rules set forth in the PlasticsEurope’s Eco-profiles and Environmental Declarations – LCI Methodology and PCR for Uncompounded Polymer Resins and Reactive Polymer Precursors (PCR version 2.0, April 2011). As a result, this dataset is assessed to be a reliable and high-quality representation of PS production in Europe.
Subsequent review comments
The precision of the dataset was not formally calculated by means of a statistical analysis, because this is not meaningful for a technology mix. Precision is assessed to be very good in terms of robustness because it is based upon an average of European production sites and the deviation among them was low.
Reviewer name and institution
Compliance Declarations
Compliance
Compliance system name
Approval of overall compliance
Fully compliant
Nomenclature compliance
Fully compliant
Methodological compliance
Fully compliant
Review compliance
Fully compliant
Documentation compliance
Fully compliant
Quality compliance
Fully compliant
Compliance
Compliance system name
Approval of overall compliance
Fully compliant
Nomenclature compliance
Fully compliant
Methodological compliance
Fully compliant
Review compliance
Fully compliant
Documentation compliance
Fully compliant
Quality compliance
Not defined
Compliance
Compliance system name
Approval of overall compliance
Not defined
Nomenclature compliance
Not defined
Methodological compliance
Not defined
Review compliance
Not defined
Documentation compliance
Not defined
Quality compliance
Not defined
Commissioner and goal
Commissioner of data set
Intended applications This background LCI data set can be used for any types of LCA studies. LCA studies considering the full life cycle (»cradle-to-grave«) of an application or product allow for comparative assertions to be derived. It is essential to note that comparisons cannot be made at the level of the polymer or its precursors. In order to compare the performance of different materials, the whole life cycle and the effects of relevant life cycle parameters must be considered. It is intended to be used by member companies, to support product-orientated environmental management; by users of plastics, as a building block of life cycle assessment (LCA) studies of individual products; and by other interested parties, as a source of life cycle information.
Data generator
Data set generator / modeller
Data entry by
Time stamp (last saved) 2013-09-19T15:06:30.972+02:00
Data set format(s)
Data entry by
Official approval of data set by producer/operator
Publication and ownership
UUID aed8d428-25bc-4b69-8722-d3e26975dc5b
Date of last revision 2012-12-01T00:00:00+01:00
Data set version 06.10.000
Workflow and publication status Data set finalised; entirely published
Unchanged re-publication of
Owner of data set
Copyright Yes
License type Other
Access and use restrictions GaBi (source code, database including extension modules and single data sets, documentation) remains property of PE INTERNATIONAL AG. PE INTERNATIONAL AG delivers GaBi licenses comprising data storage medium and manual as ordered by the customer. The license guarantees the right of use for one installation of GaBi. Further installations using the same license are not permitted. Additional licenses are only valid if the licensee holds at least one main license. Licenses are not transferable and must only be used within the licensee's organisation. Data sets may be copied for internal use. The number of copies is restricted to the number of licenses of the software system GaBi the licensee owns. The right of use is exclusively valid for the licensee. All rights reserved.

Inputs

Type of flow Classification Flow Location Mean amount Resulting amount Minimum amount Maximum amount
Elementary flow 16.9060212583734 kg16.9060212583734 kg
Elementary flow 1.94161328133341E-11 kg1.94161328133341E-11 kg
Elementary flow 4.2322826838379E-14 kg4.2322826838379E-14 kg
Elementary flow 2.95862803534292E-7 kg2.95862803534292E-7 kg
Elementary flow 2.739587088486E-7 kg2.739587088486E-7 kg
Elementary flow 1.2283057168598E-4 kg1.2283057168598E-4 kg
Elementary flow 0.00200408421324706 kg0.00200408421324706 kg
Elementary flow 8.15714980630912E-6 kg/a8.15714980630912E-6 kg/a
Elementary flow 0.00397704402292085 kg0.00397704402292085 kg
Elementary flow 0.0122714562688279 kg0.0122714562688279 kg
Elementary flow 4.33443036467983E-12 kg4.33443036467983E-12 kg
Elementary flow 0.0250768622326816 kg0.0250768622326816 kg
Elementary flow 9.9437792785943E-6 kg9.9437792785943E-6 kg
Elementary flow 3.07769923097156E-4 kg3.07769923097156E-4 kg
Elementary flow 2.90662437976828E-11 kg2.90662437976828E-11 kg
Elementary flow 9.31420604931897E-6 kg9.31420604931897E-6 kg
Elementary flow 1.03327460013888E-5 kg1.03327460013888E-5 kg
Elementary flow 50.4921660346628 MJ50.4921660346628 MJ
Elementary flow 8.09369551858024E-6 kg8.09369551858024E-6 kg
Elementary flow 5.66732248107721E-7 kg/a5.66732248107721E-7 kg/a
Elementary flow 6.46029424294825E-4 kg6.46029424294825E-4 kg
Elementary flow 9.59980136061433E-21 kg9.59980136061433E-21 kg
Elementary flow 3.60540826583146E-6 kg3.60540826583146E-6 kg
Elementary flow 6.13277696959554E-11 kg6.13277696959554E-11 kg
Elementary flow 1.36360814781453E-22 kg1.36360814781453E-22 kg
Elementary flow 13.8081590977369 kg13.8081590977369 kg
Elementary flow 0.93513704779074 mm*m20.93513704779074 mm*m2
Elementary flow 0.00171763557850426 (mm*m2)/a0.00171763557850426 (mm*m2)/a
Elementary flow 8.66691710214171E-5 kg8.66691710214171E-5 kg
Elementary flow 0.634461517252217 MJ0.634461517252217 MJ
Elementary flow 0.724299626021113 kg0.724299626021113 kg
Elementary flow 5.38263774031162E-14 kg5.38263774031162E-14 kg
Elementary flow 0.00135197678913106 kg0.00135197678913106 kg
Elementary flow 1.66772964071177E-5 kg1.66772964071177E-5 kg
Elementary flow 31.1975533618065 kg31.1975533618065 kg
Elementary flow 0.0051372899548084 m2*a0.0051372899548084 m2*a
Elementary flow 1.14678788091814E-5 m21.14678788091814E-5 m2
Elementary flow 8.46478880502396E-5 kg8.46478880502396E-5 kg
Elementary flow 0.462075423299347 MJ0.462075423299347 MJ
Elementary flow 7.12008001944259E-9 kg7.12008001944259E-9 kg
Elementary flow 2.22540849713538E-16 kg2.22540849713538E-16 kg
Elementary flow 1.81206306661558E-4 kg1.81206306661558E-4 kg
Elementary flow 2.25640939785198E-5 kg2.25640939785198E-5 kg
Elementary flow -1.67005415336896E-5 cm*m2/d-1.67005415336896E-5 cm*m2/d
Elementary flow 2.4550765012592 cm*m²2.4550765012592 cm*m²
Elementary flow 2.18177303650325E-15 kg2.18177303650325E-15 kg
Elementary flow 6.86218454377634E-8 kg6.86218454377634E-8 kg
Elementary flow 0.00364431745458408 kg0.00364431745458408 kg
Elementary flow 26.8571647141921 MJ26.8571647141921 MJ
Elementary flow -3.19978841803387E-7 kg-3.19978841803387E-7 kg
Elementary flow 8.45458211891957E-10 kg8.45458211891957E-10 kg
Elementary flow 0.0055920559304878 m2*a0.0055920559304878 m2*a
Elementary flow 1.54025537445381E-4 MJ1.54025537445381E-4 MJ
Elementary flow 1.34471957402118E-4 MJ1.34471957402118E-4 MJ
Elementary flow 6.00879664196395E-14 kg6.00879664196395E-14 kg
Elementary flow 6.56681804318018E-14 kg6.56681804318018E-14 kg
Elementary flow 3.11929070537815E-5 kg3.11929070537815E-5 kg
Elementary flow 9.52726880035157E-13 kg9.52726880035157E-13 kg
Elementary flow 0.00173410638952023 MJ0.00173410638952023 MJ
Elementary flow -1.38284121139531E-4 kg-1.38284121139531E-4 kg
Elementary flow -7.27650212527414E-6 (cmol*m2)/kg-7.27650212527414E-6 (cmol*m2)/kg
Elementary flow 0.00280977537806916 (cmol*m2*a)/kg0.00280977537806916 (cmol*m2*a)/kg
Elementary flow 0.0108357104205549 MJ0.0108357104205549 MJ
Elementary flow 1.61479132209349E-12 kg1.61479132209349E-12 kg
Elementary flow -1.14811957062267E-4 kg-1.14811957062267E-4 kg
Elementary flow 4.70983904497298E-10 kg4.70983904497298E-10 kg
Elementary flow 0.0178795363428957 MJ0.0178795363428957 MJ
Elementary flow 0.202985040032488 MJ0.202985040032488 MJ
Elementary flow 0.191099940826776 MJ0.191099940826776 MJ
Elementary flow 0.14622229216032 MJ0.14622229216032 MJ
Elementary flow 0.00233880357839304 kg0.00233880357839304 kg
Elementary flow 4.65556431809172E-7 kg4.65556431809172E-7 kg
Elementary flow 1.61490506227069E-13 kg1.61490506227069E-13 kg
Elementary flow 704.152227484731 kg704.152227484731 kg
Elementary flow 3.18652154226448E-13 kg3.18652154226448E-13 kg
Elementary flow 1.37468930727122 kg1.37468930727122 kg
Product flow Production residues in life cycle 0.0073480487484435 MJ0.0073480487484435 MJ
Product flow Production residues in life cycle 6.99705047855321E-4 MJ6.99705047855321E-4 MJ
Elementary flow 2.91266700373185E-9 kg2.91266700373185E-9 kg
Elementary flow 7.45520343296862E-9 kg7.45520343296862E-9 kg
Elementary flow 0.0275486793294906 kg0.0275486793294906 kg
Elementary flow 5.18171096169523E-19 kg5.18171096169523E-19 kg
Elementary flow 2.39252405878277E-11 kg2.39252405878277E-11 kg
Elementary flow 0.00460768468248294 kg0.00460768468248294 kg
Elementary flow 9.91667889586751E-4 kg9.91667889586751E-4 kg
Elementary flow 1.105591394353E-10 kg1.105591394353E-10 kg
Product flow 3.51309142768473E-4 kg3.51309142768473E-4 kg
Elementary flow 4.78348511943286E-10 kg4.78348511943286E-10 kg
Elementary flow 1.71572900274351E-6 kg1.71572900274351E-6 kg
Elementary flow 3.08706158048464E-12 kg3.08706158048464E-12 kg
Elementary flow 1.00775267897645E-7 kg1.00775267897645E-7 kg
Elementary flow 1.41670488223155 MJ1.41670488223155 MJ
Elementary flow 1.2080928036748 kBq1.2080928036748 kBq
Elementary flow 2.44618016815922E-5 kg2.44618016815922E-5 kg

Outputs

Type of flow Classification Flow Location Mean amount Resulting amount Minimum amount Maximum amount
Product flow Valuable substances / Materials / Plastics 1.0 kg1.0 kg
Product flow 8.56158520903216E-7 kg8.56158520903216E-7 kg
Waste flow 1.06675918623636E-5 kg1.06675918623636E-5 kg
Product flow 4.9521268364918E-6 kg4.9521268364918E-6 kg
Product flow 5.65359288442026E-4 kg5.65359288442026E-4 kg
Elementary flow 5.10534890541762E-17 kg5.10534890541762E-17 kg
Elementary flow 2.11631984540816E-17 kg2.11631984540816E-17 kg
Elementary flow 3.08720884665211E-16 kg3.08720884665211E-16 kg
Elementary flow 4.79990068030716E-18 kg4.79990068030716E-18 kg
Elementary flow 4.07991557826109E-19 kg4.07991557826109E-19 kg
Elementary flow 1.49216496944358E-14 kg1.49216496944358E-14 kg
Elementary flow 1.0512668328714E-18 kg1.0512668328714E-18 kg
Elementary flow 1.41224534798141E-9 kg1.41224534798141E-9 kg
Elementary flow 3.41073632347554E-10 kg3.41073632347554E-10 kg
Elementary flow 5.8154432801392E-10 kg5.8154432801392E-10 kg
Elementary flow 1.38387325984263E-10 kg1.38387325984263E-10 kg
Elementary flow 1.1992866137453E-6 kg1.1992866137453E-6 kg
Elementary flow 5.55530050386888E-6 kg5.55530050386888E-6 kg
Elementary flow 6.54531910950977E-14 kg6.54531910950977E-14 kg
Elementary flow 2.57385310356319E-10 kg2.57385310356319E-10 kg
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Elementary flow 6.1815572862026E-8 kBq6.1815572862026E-8 kBq
Elementary flow 7.80997091051725E-6 kBq7.80997091051725E-6 kBq
Elementary flow 4.87025284459108E-11 kg4.87025284459108E-11 kg
Elementary flow 4.27724662342022E-8 kg4.27724662342022E-8 kg
Elementary flow 6.09373372189164E-12 kg6.09373372189164E-12 kg
Elementary flow 1.52453075033168E-9 kg1.52453075033168E-9 kg
Elementary flow 3.27533090202789E-8 kg3.27533090202789E-8 kg
Elementary flow -1.73764659820899E-5 kg-1.73764659820899E-5 kg
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Elementary flow 3.51894025438472E-8 kg3.51894025438472E-8 kg
Elementary flow 1.14429907759299E-9 kg1.14429907759299E-9 kg
Elementary flow 8.69965548569647E-11 kg8.69965548569647E-11 kg
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Elementary flow 1.21133578906738E-5 kBq1.21133578906738E-5 kBq
Elementary flow 2.30591137343604E-13 kg2.30591137343604E-13 kg
Elementary flow 3.14303061411235E-5 kBq3.14303061411235E-5 kBq
Elementary flow 0.0545103674301941 kBq0.0545103674301941 kBq
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Elementary flow 1.15814747322437E-16 kg1.15814747322437E-16 kg
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Elementary flow 3.64112527130436E-6 kBq3.64112527130436E-6 kBq
Elementary flow 1.82521936678613E-16 kg1.82521936678613E-16 kg
Elementary flow 3.12148812438592E-8 kg3.12148812438592E-8 kg
Elementary flow 8.80517215970452E-15 kg8.80517215970452E-15 kg
Elementary flow 2.0753275017218E-8 kg2.0753275017218E-8 kg
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Elementary flow 1.60360318182989E-10 kg1.60360318182989E-10 kg
Elementary flow 1.06579612833184E-15 kg1.06579612833184E-15 kg
Elementary flow 2.5820738247083E-9 kg2.5820738247083E-9 kg
Elementary flow 3.78285277643419E-5 kBq3.78285277643419E-5 kBq
Elementary flow 7.97295379671341E-8 kg7.97295379671341E-8 kg
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Elementary flow 1.56179435751386E-5 kg1.56179435751386E-5 kg
Waste flow 0.00667220258565241 kg0.00667220258565241 kg
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Elementary flow 2.49813012679622E-10 kg2.49813012679622E-10 kg
Elementary flow 9.81895486514996E-7 kg9.81895486514996E-7 kg
Elementary flow 1.6197393375594E-8 kg1.6197393375594E-8 kg
Elementary flow 5.59931286624824E-5 kBq5.59931286624824E-5 kBq
Elementary flow 1.55400101072256E-6 kBq1.55400101072256E-6 kBq
Elementary flow 2.331385279449E-5 kg2.331385279449E-5 kg
Elementary flow 6.38525592768214E-10 kg6.38525592768214E-10 kg
Elementary flow 1.21210017998114E-9 kg1.21210017998114E-9 kg
Elementary flow 2.74547998725233E-9 kg2.74547998725233E-9 kg
Elementary flow 5.79119464303592E-4 kg5.79119464303592E-4 kg
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Elementary flow 8.57550293473026E-7 kg8.57550293473026E-7 kg
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Elementary flow 8.94722413495441E-5 kg8.94722413495441E-5 kg
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Elementary flow 7.98528931360192E-14 kg7.98528931360192E-14 kg
Elementary flow 8.36675689534297E-16 kBq8.36675689534297E-16 kBq
Elementary flow 8.39766224721346E-12 kg8.39766224721346E-12 kg
Elementary flow 3.22902409402482E-17 kg3.22902409402482E-17 kg
Elementary flow 5.73659396117572E-11 kg5.73659396117572E-11 kg
Elementary flow 4.08866888581243E-11 kg4.08866888581243E-11 kg
Elementary flow 7.81050389826445E-6 kBq7.81050389826445E-6 kBq
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Elementary flow 2.62795235209802E-9 kBq2.62795235209802E-9 kBq
Elementary flow 1.21133581784813E-5 kBq1.21133581784813E-5 kBq
Elementary flow 1.62939626187741E-8 kg1.62939626187741E-8 kg
Elementary flow 3.02653910688286E-14 kg3.02653910688286E-14 kg
Elementary flow 1.2763372263544E-15 kg1.2763372263544E-15 kg
Elementary flow 5.23625528760781E-18 kg5.23625528760781E-18 kg
Elementary flow 1.93356146209904E-9 kg1.93356146209904E-9 kg
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Elementary flow 1.23391515920103E-8 kg1.23391515920103E-8 kg
Elementary flow 2.08991326059594E-7 kg2.08991326059594E-7 kg
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Elementary flow 7.82054063272267E-7 kg7.82054063272267E-7 kg
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Elementary flow 2.29708355247644E-11 kg2.29708355247644E-11 kg
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Elementary flow 4.50444779503309E-4 kBq4.50444779503309E-4 kBq
Elementary flow 3.29462331632838E-6 kBq3.29462331632838E-6 kBq
Elementary flow 3.77924678689717E-7 kBq3.77924678689717E-7 kBq
Elementary flow 1.95863961451097E-6 kBq1.95863961451097E-6 kBq
Elementary flow 3.0979411564008E-5 kBq3.0979411564008E-5 kBq
Elementary flow 4.75101766944548E-4 kBq4.75101766944548E-4 kBq
Elementary flow 3.29462331632838E-6 kBq3.29462331632838E-6 kBq
Elementary flow 11.8703059696696 kg11.8703059696696 kg
Elementary flow 4.71546228290658E-7 kg4.71546228290658E-7 kg
Elementary flow 3.17307668050525E-8 kg3.17307668050525E-8 kg
Elementary flow 3.35993047621502E-13 kg3.35993047621502E-13 kg
Elementary flow 2.03490834079401E-10 kg2.03490834079401E-10 kg
Elementary flow 4.03810958631057E-13 kg4.03810958631057E-13 kg
Elementary flow 6.2523253023823E-6 kg6.2523253023823E-6 kg
Elementary flow 7.82054063272267E-9 kg7.82054063272267E-9 kg
Elementary flow 1.91913401819207E-5 kg1.91913401819207E-5 kg
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Elementary flow 0.0677199595305432 kBq0.0677199595305432 kBq
Elementary flow 1.63418897824798E-6 kg1.63418897824798E-6 kg
Elementary flow 6.43153748382774E-7 kg6.43153748382774E-7 kg
Elementary flow 1.50308269668911E-7 kg1.50308269668911E-7 kg
Elementary flow 1.34279071541282E-7 kg1.34279071541282E-7 kg
Elementary flow 3.26569163565773E-7 kg3.26569163565773E-7 kg
Elementary flow 1.84672311987129E-11 kg1.84672311987129E-11 kg
Elementary flow 3.83144152777713E-7 kg3.83144152777713E-7 kg
Elementary flow 8.17404002027254E-9 kg8.17404002027254E-9 kg
Elementary flow 1.04834194403981E-17 kg1.04834194403981E-17 kg