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Tag: Related study objective: comparative assertion

G-22 Data selection for a product LCA

Aspect G-22 Data selection for a product LCA
Description
Various data sources exist for the calculation of product LCA data. They differ for example in terms of specificity, age, completeness and certainty. What data requirements apply for the production of product LCA data?

related study objective

☒ stand-alone LCA ☒ comparative assertion

related study phase

☒ ☐ ☐ ☐ ☐
goal and scope definition inventory analysis (LCI) impact assessment (LCIA) interpretation reporting

relevant for

new buildings existing buildings construction products screening LCA simplified LCA complete LCA
Provisions In general, specifications are given with regard to EPD: see 6.3.7 ‘Quality requirements’ in EN 15804. National EPD programmes that apply to the context of the LCA study may give more specific guidance.
Rules from:

EN 15978

6.3.6 Selection of data
6.3.7 Data quality requirements

CEN/TR 15941

Sustainability of construction works — Environmental product declarations — Methodology for selection and use of generic data

ILCD

 

ISO 14044

4.2.3.6 Data quality requirements
Guidance
Specific data are data relating to the specific process being studied.  Generic data are more general data – they may for example be an average from a trade association, a specific dataset that is used as a proxy for typical production, or a dataset developed from literature sources. Data quality considers the relevance and quality of the dataset relative to the process being considered, taking account of

a)    age of data;

b)   geography;

c)    technology;

d)    precision;

e)    completeness;

f)     representativeness;

g)    consistency;

h)    reproducibility;

i)     sources of the data;

j)     uncertainty.

For screening and simplified LCA, it can be appropriate to use lower data quality requirements: for example, a single database for upstream and downstream data may be used without considering further data quality or appropriateness of individual datasets. For complete LCA, it is necessary to consider and report on the data quality. In some circumstances, where a dataset is of particular relevance to a study, or where no suitable dataset is available, it may be necessary to collect data from upstream or downstream processes rather than use generic data. The scope of this data collection will depend on the detail required.

EPD programmes may require specific databases to be used for comparability purposes in terms of methodology until EN 15804 compliant data are widely available. Once EN 15804 compliant databases are available, there should be no differentiation between EN 15804 compliant datasets, other than the scope of the data used. It may be advisable to use the background database that is required from the EPD programme that lies within the context of the LCA study. This means that, for improved consistency, a product LCA study may/should be based on the national EPD programme’s background study.

ILCD already provides guidance on sources of generic data such as the ELCD and proprietary databases.

G-24 Choice of LCI/LCIA datasets for simplified LCA

Aspect G-24 Choice of LCI/LCIA datasets for simplified LCA
Description
Different LCI/LCIA data are needed to assess the environmental impacts of buildings. They make it possible to quantify the different impacts related to the building products and equipment, the construction site, the operational energy and water uses, and the deconstruction of the building. Depending on the study type (screening, simplified, complete), different LCI/LCIA data can be used in practice, depending on their availability not only at the European level but also in a national context (average, generic or specific LCI/LCIA data for the building materials, products and processes).How can this be addressed for simplified LCA?

Related study objective

☒ stand-alone LCA ☒ comparative assertion

Related study phase

☐ ☒ ☐ ☐ ☐
goal and scope definition inventory analysis (LCI) impact assessment (LCIA) interpretation reporting

Relevant for

new buildings existing buildings construction products screening LCA simplified LCA complete LCA
Provisions The LCA practitioner or the user of dedicated building LCA tools should use adapted data for the description of the building components in simplified LCA.In contrast with screening LCA, the data should reflect more closely the building element, product or material. They can either represent a full building component (e.g. 1 m2 concrete block wall insulated with wood wool), a building product (e.g. 1 m2 of rockwool) or a building material (e.g. 1 m3of ready-mixed concrete), depending on the need of the practitioner and the stage of the building project. Provisions for the choice of data to use for simplified LCA for the construction site, the operational energy and water uses, and the deconstruction activities are described in the corresponding aspects.Generic LCA data for the building elements cited above should come from available European or national generic LCA databases. It is possible to use average data (e.g. average EPD) if generic LCA are missing, or are less appropriate to the context of the study.

Generic LCA data may represent (if possible and if relevant) the total consumption mix in Europe (if the study is used for European projects) or in every European country, or the production mix in Europe or in every European country, or the production mix of a neighbouring country, using appropriate rules to adapt the generic data to the new context.

Rules from:

EN 15978

9.4 Type of data for the assessment
The type of LCA data for the assessment referred in EN 15978 to the CEN/TR 15941. The choice of the data will depend on several aspects, including the stage of the building project, the intended use or scope etc. According to EN 15978 the data (bill of quantities, building description of components or the LCA data) may be given in different types: aggregated, specific, generic or average. They describe different levels of specificity concerning the description of the building components as well as the representativeness of the LCA data.

ILCD

7.5 Developing generic LCI data
7.6. Selecting secondary LCI datasets

7.7 Averaging LCI data
According to the ILCD Handbook, a dataset is a generic dataset if “it has been developed using at least partly other information then those measured for the specific process. This other information can be stoichiometric or other calculation models, patents and other plans for processes or products, expert judgements etc. Generic process can aim at representing a specific process or system or an average situation.”

ILCD also states that “a generic data represents a typical variant of the process or the system, an average dataset represents the average situation for the process or the system, in both cases within a specified geographic region and time. The difference lies in how the dataset is modelled: in the first case the product and its life cycle is specified with typical (or representative characteristics and the inventory is modelled accordingly. In the second case several products (or technology or production plants) are separately modelled and the inventories are subsequently averaged.”

According to ILCD, the supply mix for an average data is the production mix plus the import mix, i.e. the mix of what is available in the country for consumption. This applies to generic such as the consumption mix of reinforcing steel in country A.

Figure 13 presenting the trade relations between countries as a basis for calculating the production, consumption and supply mixes of products [ILCD 2011a]

Guidance
In practice, the LCA data for a simplified LCA should represent the building elements, products or materials more closely than the data used for a screening LCA. Three different practical recommendations can be given for the use of data on the building elements, the associated LCA data and the currently available generic LCA databases.

1) Practical guidance for the use of data describing the building elements

The data describing the building components can correspond to generic typical components using default values for the major included products (width, thickness etc.). It may be possible to parameterize the thickness of the key included products (e.g. insulation or structural products) for each study or use.

Other data include building products and materials LCA data. These ‘raw’ data usually serve when deriving data for building components or parts of the building. Consistency should be ensured between the different levels of data (part of the building, components, products and materials).

2) Practical guidance for the use of generic LCA data for a European or national context

Examples of generic data on building products representing the ‘consumption mix’ can be found e.g. for the reinforcing steel sold on the French market in [Gomès 2012]. However, generally speaking, generic national data representing the ‘consumption mix’ in the various European countries may be missing. In this case, the use of existing generic LCA data (from neighbouring European countries) or industry-based data (from the national context) can be used as proxy data, using appropriate adaptation or contextualization rules. More guidelines on this topic can be found e.g. in [Hodkova 2012].

3) Practical availability of generic databases in Europe that can be used by the practitioner

The building practitioner may use existing European or national databases to collect generic LCA data to describe the building elements, products and materials, depending on the needs. Examples of such databases can be found e.g. on the LCA resources directory of the European Commission – Joint Research Centre, section ‘Databases’. Generic databases (mainly at the global or European level) include, for example, the ELCD, ESUCO and ecoinvent databases.

Other generic databases developed in some European countries include, for example: the German Ökobau.dat, the Swiss Catalogue Construction/KBOB databases, the French DIOGEN generic LCA database for construction materials used in civil engineering applications, and the various generic databases that are included in LCA software for buildings.

G-25 Choice of LCI/LCIA-datasets for complete LCA

Aspect G-25 Choice of LCI/LCIA-datasets for complete LCA
Description
Different LCI/LCIA data are needed to assess the environmental impacts of buildings. They make it possible to quantify the different impacts related to the building products and equipment, the construction site, the operational energy and water uses, and the deconstruction of the building. Depending on the study type (screening, simplified or complete), different LCI/LCIA data can be used in practice, depending on their availabilities at the European level, but also in a national context (average, generic or specific LCI/LCIA data for building materials, products and processes). How can this be addressed for complete LCA?

Related study objective

☒ stand-alone LCA ☒ comparative assertion

Related study phase

☐ ☒ ☐ ☐ ☐
goal and scope definition inventory analysis (LCI) impact assessment (LCIA) interpretation reporting

Relevant for

new buildings existing buildings construction products screening LCA simplified LCA complete LCA
Provisions The LCA practitioner or the user of dedicated building LCA tools should use adapted data for description of the building components in complete LCA. In contrast with simplified LCA, the data should reflect the building element, product or material more closely. They can represent a full building component (e.g. 1 m2 concrete block wall insulated with wood wool), or a building product (e.g. 1 m2 of rockwool) or a building material (1 m3of ready-mixed concrete), depending on the need of the practitioner and the stage of the building project. Provisions for the choice of data to use for complete LCA for the construction site, the operational energy and water uses, and the deconstruction activities are described in the corresponding aspects.LCA data for the building products cited above should correspond to specific industry data (e.g. EPD data) provided by the building manufacturers at the European level, or also in the national context; generic or average LCA data (refer to the provisions for simplified LCA) should be used if specific data (e.g. EPD) are currently missing for some building products or technical equipment.Cut-off rules and impact categories may be considered according to the ILCD Handbook if the goal of the study is to assess indicators and data beyond the EN 15804 cut-off and impact category. The practitioner is likely deviate from the above provision and use instead generic or average datasets providing a high level of detail in terms of the cut-off and impact categories to be calculated.
Rules from:

EN 15978

9.4 Type of data for the assessment
The type of LCA data for the assessment referred in EN 15978 to the CEN/TR 15941. The choice of the data will depend on several aspects including stage of the building project, intended use/scope etc. According to EN 15978 the data (either bill of quantities, building description of components or the LCA data) may be given in different types: aggregated, specific, generic, average. They describe different levels of specificity concerning the description of the building components as well as the representativeness of the LCA data.

ILCD

7.5 Developing generic LCI data
7.6. Selecting secondary LCI datasets
7.7 Averaging LCI data

According to the ILCD Handbook, a dataset is a generic dataset if “it has been developed using at least partly other information then those measured for the specific process. This other information can be stoichiometric or other calculation models, patents and other plans for processes or products, expert judgements etc. Generic process can aim at representing a specific process or system or an average situation.”

According to ILCD, the supply mix for an average data is the production mix plus the import mix i.e. the mix of what is available in the country for consumption. This applies to a specific data like an EPD for a product sold by a company.

Figure 14 representing the trade relations between countries, as a basis for calculating the production, consumption and supply mixes of products [ILCD 2011a]

Guidance
In practice, the LCA data for a complete LCA should closely represent the building components, products or materials, or the part of the building. The building LCA practitioner may use an existing national EPD database to collect specific EPD data on building products, depending on the requirements. Three different practical recommendations can be given for the use of data on building elements, the associated LCA data, and the currently available specific (e.g. EPD) databases.1) Practical guidance for the use of data describing the building elements

The data describing the building components should correspond to the components implemented in the building. Please refer to the description of the complete LCA study type for more information.

Other data include building products and materials LCA data. These ‘raw’ data usually serve when deriving data for building components or parts of the building. Consistency should be ensured between the different levels of data for complete LCA (part of the building, components, products and materials).

2) Practical guidance for the use of specific LCA data for a European or national context

ILCD provisions can be consulted concerning the consumption mix of the building product. Specific data such as EPD reflects the production volume of a building product sold on a national market.

3) Practical availability of specific (e.g. EPD) databases in Europe that can be used by the practitioner

Specific EPDs may be found in available national EPD databases or European EPD databases (e.g. ECO-EPD). Examples of such databases can be found several European countries:

France: INIES

Germany: Institut Bauen und Umwelt

UK: BRE Profiles

Spain: DAPc system

The Netherlands: MRPI

Finland: RTS

The International EPD (R) ‘The Green Yardstick’ also provides EPD data for some European countries, such as Sweden and Italy.

If specific EPD are not available, the practitioner may use generic data or average industry data. Consultation of the LCA Resources directory of the European Commission – Joint Research Centre, section ‘Databases’ may be then needed. Generic databases include, for example, the ELCD, GaBi and ecoinvent databases. Other generic databases developed in European countries include, for example, the German Ökobau.dat and the Swiss Catalogue Construction/KBOB databases.

Care has to be taken when using EPDs for complete LCA, as they may not include a full LCI (depending on the PCR, only environmental indicators may be required). Thus they may not allow the use of LCIA indicators outside the scope of the Product Category Rules. For example, the EN 15978 standard does not yet include land use, toxicity or ecotoxicity indicators. The same remarks apply to cut-off rules and infrastructures issue.

The LCA practitioner should be aware here that the choice of LCI/LCIA datasets for complete LCA is intended primarily to be as accurate as possible for the current impact of the manufacture of a building product. However, the cut-off rules and LCI documentation may not be as comprehensive as needed by the practitioner.

For alternative goal definition beyond the scope of EN 15804, the practitioner may need a complete LCI in order to consider a full suite of impact categories. The same applies for the cut-off criteria. In this special case, the practitioner is likely to rely on generic datasets that may be the only possible way to provide such a level of detail (LCI, cut-off rules).

At this point, there is a trade-off between using specific data for a commercial reference of a product, and maintaining a high level of detail in terms of LCI, cut-off rules etc.

G-26 Use of building physical description data

Aspect  G-26 Use of building physical description data
Description
The type, the format, the level of detail and the quality of building-related data depend on the time of assessment (e.g. concept stage, basic design stage, detailed design stage, as built), on the objective of the study, and on the building’s stakeholders. Which kind of data should be used for a building LCA study?

Related study objective

☒ stand-alone LCA ☒ comparative assertion

Related study phase

☐ ☒ ☐ ☐ ☐
goal and scope definition inventory analysis (LCI) impact assessment (LCIA) interpretation reporting

Relevant for

new buildings existing buildings building products screening LCA simplified LCA complete LCA
Provisions The data for describing the main building elements should be taken from the building’s project documentation already available at the time of the assessment; otherwise use specific documentation included in the LCA software for buildings (if relevant). Different building-related data may be used in the documentation, depending on the objective of the study and the time of the assessment. For example, for screening LCA, an average description of a building could be sufficient, whereas for complete LCA a specific and detailed description of the building should be used wherever possible. Once the building-related data are quantified, they should be associated with suitable LCA or EPD data (see aspect ‘LCA datasets’).
Rules from:
EN 15978

7.5.2 Description of the physical characteristics of the building
9.4 Type of data for the assessmentThe choice of the data in EN 15978 will depend on several aspects, including the stage of the building project, and the intended use or scope. According to EN 15978 the data (either the bill of quantities, a building description of components, or the LCA data) may be given in different types: aggregated, specific, generic or average. They describe different levels of specificity concerning the description of the building components as well as the representativeness of the LCA data.
Guidance
The description of the quantities of the building products may vary significantly in terms of precision between the early design of a building project and the very late stages the project.Practitioners should always ensure that the building description is consistent between the various documents used, as the documents are all not produced at the same, time and building projects change over time. For example, it is essential to check whether the energy consumption results are based on assumptions regarding the mass of the building products, rather than the quantity take-off available in separate documentation.Generally, in early design, the level of description is low, as the design team does not know yet exactly what the specific description of the elements will be. For instance, the reinforced concrete in early design stages is described mainly in ml or m3, with a ratio for the reinforcing steel included in the concrete.However, during the detailed design, the level of description of the building elements is increased. At this stage, the building-related data may be more precise for some building elements (e.g. for the façades), whereas for others (e.g. the floor coverings), it may be only roughly taken into account until the actual building occupants are found.Common units that can be found in the building’s project documentation are: ml, m2, m3, unit etc. The practitioner should be aware of the potential differences in terms of the functional or declared units of LCA data available in LCA software for buildings and some of the units of the building-related-data (the quantity take-off). Wherever possible, the practitioner should use the most appropriate LCA data that correctly match the building-related data for the corresponding stage of the project.

G-27 (Buildings) / G-25 (Products) Choice of environmental indicators – screening and simplified LCA

Aspect G-27 (Buildings) / G-25 (Products) Choice of environmental indicators – screening and simplified LCA
Description
The choice of a set of environmental indicators should always try to avoid pollution transfer. Currently, a large number of indicators can be found in the LCA literature. They fall into different: selected LCI indicators, midpoint life cycle impact assessment (LCIA) indicators, and endpoint LCIA indicators. Selected LCI flows can be useful in track some flow quantities: e.g. the use of secondary energy throughout the product’s life cycle. These are not impact indicators directly, but they can be useful in the interpretation phase of any LCA study. Mid-point LCIA indicators (or potential indicators) make it possible to characterize different environmental problems, such as climate change, ozone depletion, photochemical ozone formation, acidification, eutrophication and resource depletion. End-point LCIA indicators refer to actual damage categories such as damage to resources, damage to human health, and damage to the ecosystem.What are the useful and necessary environmental indicators and impact categories to be reported for an energy-efficient product or building? Which indicators and which methodology should be chosen?

related study objective

☒ stand-alone LCA ☒ comparative assertion

related study phase

☐ ☐ ☒ ☐ ☐
goal and scope definition inventory analysis (LCI) impact assessment (LCIA) interpretation reporting

relevant for

new buildings existing buildings building products screening LCA simplified LCA complete LCA
Provisions In general, the set of indicators should be as comprehensive as possible, to avoid burden shifting. The EeBGuide does not provide predefined provisions regarding the number and the type of indicators for each study type, as they depend on the goal, the scope and the context of the study.Required environmental indicators to use are given in the EN 15978 and EN 15804 standards (which are harmonized indicators between the product and the building level), and also in the ILCD Handbook if other indicators need to be included.For screening and simplified LCA studies the choice of indicators is not regulated or limited. Generally speaking, in screening and simplified LCA a reduced set of indicators may be selected, which means that not all the EN 15804 and EN 15978 indicators have to be considered. In addition, optional indicators taken from the ILCD Handbook may be used to provide a more consistent set of indicators (if relevant).
Rules from:
EN 15978
11 Calculation of the environmental indicators

EN 15804
7.2.3 Parameters describing environmental impacts

ILCD
Provisions: 6.7 Preparing the basis for impact assessment

“[…] VI) MAY – LCIA methodologies: […] select complete set of single LCIA methods rather than selecting and combining individual LCIA methods”

Provisions: 7.4.3.8 Reminder flows

I) MAY – Use reminder flows to keep original information for specific purposes

II) SHALL – exclude reminder flows from impact assessment

III) SHALL – Clearly identify reminder flows in the flow name

8 Life Cycle Impact Assessment – calculating LCIA results

Provisions: 8.2 Calculation of LCIA results

ILCD Handbook – Part – Analysing of existing Environmental Impact Assessment methodologies for use in Life Cycle Assessment

4 Requirements for specific impact categories

“For some impact categories, many alternative methods have been selected. This can be seen as a sign that there is no clear consensus on how to model such a method. Clear examples are acidification, eutrophication, land use and resources.”

Guidance
The operational guidance for the environmental indicators can be broken down into two main aspects: the calculation rules for environmental indicators (in both CEN TC 350 standards and in the ILCD Handbook) and the number of indicators to select, depending on the study type.

1) Calculation rules (i.e. characterization factors and associated impact assessment method) for each LCIA indicator in EN 15804/EN 15978
Various LCIA methods are currently available to calculate the LCIA indicators that are mentioned in the CEN TC 350 standards. Recently, the ILCD Handbook has release the report ‘Characterization factors of the ILCD – Recommended Life Cycle Impact Assessment Methods’. In this report, several methods are analysed, and one is then suggested as the recommended method for each impact category. In the EeBGuide, the ILCD-recommended methods are provided for information in Appendix B for the following LCIA indicators: GWP, ODP, AP, EP, POCP and ADP (both elements and fossils).However, deviations in units are currently found between EN 15804/EN 15978 and the ILCD-recommended methods for:– AP (acidification potential, unit kg SO2-equiv. vs. accumulated exceedance, unit mole H+ eq);– EP (eutrophication potential, unit: kg PO43--equiv. vs. accumulated exceedance, unit: mole Neq).

A new method is now suggested for POCP calculations based on [Van Zelm 2008]. Other LCIA methods have been used so far for POCP calculations: for example the CML 2002 approach based on [Derwent 1998]. As a result, care has to be taken, and the method used for LCIA indicators should be clearly stated. In LCA studies across Europe, CML methods are frequently used for midpoint indicators. Also, EPD programmes usually provide results at indicator level, as is done by some generic databases. Using such data reduces the choice of impact methods and also yields a number of indicators to choose from.

PS: Please note that the ADP guidance is given in a separate aspect.

Harmonization of the LCIA indicators is expected soon. The aspect will be revised once there are agreed methods between CEN and ILCD.

2) Calculation rules for each indicator describing resource use and additional information (wastes etc.) in EN 15804/EN 15978

According to the ILCD Handbook, these flows are called ‘reminder flows’ (see ILCD rules above). The practitioner and LCA tool developer may be aware that, so far, not all the resource use indicators can be easily determined. In fact, the background databases used in LCA studies do not provide this information in a consistent way (e.g. ‘use of non-renewable primary energy excluding primary energy resources used by a raw material’). Others are potentially more easily available (e.g. ‘use of secondary fuels’). As the practitioner cannot influence the background data, this problem ultimately needs to be solved by the data providers.

3) Calculation rules for optional indicators (taken from the ILCD Handbook)

Currently there is no agreement on a single calculation method for impact categories not covered in CEN TC 350 (but available in the ILCD Handbook), such as land use, toxicity or ecotoxicity. The type of LCIA modelling between midpoint indicators and endpoint indicators are is subject to discussion. Therefore the EeBGuide does not provide strict provisions on these aspects. Please consult the corresponding aspects for more detailed guidance on those aspects that are not mandatory in the EeBGuide.

4) Number of indicators to consider, depending on the study type.

To select a relevant set of indicators, the practitioner should also try to have indicators covering the three area of protection: resources, ecosystems and human health. The indicators of EN 15804/EN 15978 correspond to these area of protection, but do not include all the impact categories, as some are still being debated within the LCA community. Additional aspects (see ‘Biodiversity’, ‘Land use’, ‘Toxicity and ecotoxicity’ etc.) provide guidance for the practitioner who would like to use them.

For screening and simplified LCA it may be possible to conduct LCA studies using a single indicator under specific conditions. For example:

– if the decision-maker is not very familiar with the LCA approach, or focuses only on energy or greenhouse gas issues;

– if the full LCI data needed to calculate all the LCIA indicators are not available for some national context.

However, it is strongly recommended that more than one environmental indicator be used, to avoid e.g. shifting of burdens. To that end, a selection of indicators from the EN 15978/EN 15804 standards (and from the ILCD Handbook if relevant) is recommended for screening and simplified LCA.

The indicators considered in the SBA common metrics project may be considered for a screening or simplified LCA (if relevant for the goal and scope of the study): non-renewable primary energy, GWP, water consumption and waste.

G-28 (Buildings) / G-26 (Products) Choice of environmental indicators – Complete LCA

Aspect G-28 (Buildings) / G-26 (Products) Choice of environmental indicators – Complete LCA
Description
The choice of a set of environmental indicators should always try to avoid pollution transfer. Currently, a large number of indicators can be found in the LCA literature. They refer to different types of indicator: selected LCI indicators, midpoint life cycle impact assessment (LCIA) indicators, and endpoint LCIA indicators. Selected LCI flows can be useful in tracking some quantity of flows, e.g. the use of secondary energy throughout the product’s life cycle. These are not impact indicators directly, but they can be useful for the interpretation phase of any LCA study. Midpoint LCIA indicators (or potential indicators) make it possible to characterize different environmental problems, such as climate change, ozone depletion, photochemical ozone formation, acidification, eutrophication and resource depletion. End-point LCIA indicators refer to actual damage categories, such as damage to resources, damage to human health, and damage to the ecosystem.What are the useful and necessary environmental indicators and impact categories to be reported for an energy-efficient product or building? Which indicators and which methodology should be chosen?

related study objective

☒ stand-alone LCA ☒ comparative assertion

related study phase

☐ ☐ ☒ ☐ ☐
goal and scope definition inventory analysis (LCI) impact assessment (LCIA) interpretation reporting

relevant for

new buildings existing buildings building products screening LCA simplified LCA complete LCA
Provisions In general, the set of indicators should be as comprehensive as possible to avoid burden shifting. The EeBGuide does not provide predefined provisions regarding the number or type of indicators for each study type, as they depend on the goal, the scope and the context of the study.Environmental indicators to choose are given in the EN 15978 and EN 15804 standards (which are harmonized indicators between the product and the building level), and also in the ILCD Handbook, if other indicators need to be included.For complete LCA studies the environmental indicators mentioned in EN 15978 and EN 15804 should be used. However, optional indicators for impact categories not covered by the CEN standards may also be considered, if relevant for the LCA study. In this case, they may be taken from the existing LCIA methods in the ILCD Handbook
Rules from:
EN 15978
11 Calculation of the environmental indicatorsEN 15804
7.2.3 Parameters describing environmental impacts

ILCD
Provisions: 6.7 Preparing the basis for impact assessment

“[…] VI) MAY – LCIA methodologies: […] select complete set of single LCIA methods rather than selecting and combining individual LCIA methods”

Provisions: 7.4.3.8 Reminder flows

I) MAY – Use reminder flows to keep original information for specific purposes

II) SHALL – exclude reminder flows from impact assessment

III) SHALL – Clearly identify reminder flows in the flow name

8 Life Cycle Impact Assessment – calculating LCIA results

Provisions: 8.2 Calculation of LCIA results

ILCD Handbook – Part – Analysing of existing Environmental Impact Assessment methodologies for use in Life Cycle Assessment

4 Requirements for specific impact categories

“For some impact categories, many alternative methods have been selected. This can be seen as a sign that there is no clear consensus on how to model such a method. Clear examples are acidification, eutrophication, land use and resources.”

Guidance

The operational guidance for the environmental indicators can be split into two main aspects: the calculations rules for environmental indicators (in both the CEN TC 350 standards and in the ILCD Handbook) and the number of indicators to select, depending on the study type.

1) Calculation rules (i.e. characterization factors and associated method) for each LCIA indicator in EN 15804/EN 15978

Various LCIA methods are currently available to calculate the LCIA indicators mentioned in the CEN TC 350 standards. Recently, the ILCD Handbook has released the report ‘Characterization factors of the ILCD – Recommended Life Cycle Impact Assessment Methods’. In this report, several methods are analysed, and one is then suggested as the recommended method for each impact category. In the EeBGuide, the ILCD-recommended methods are provided for information in Appendix B for the following LCIA indicators: GWP, ODP, AP, EP, POCP and ADP (both elements and fossils). However, deviations in units are currently found between EN 15804/EN 15978 and the ILCD-recommended methods for:– AP (acidification potential, unit kg SO2-equiv. vs. accumulated exceedance, unit mole H+ eq);

– EP (eutrophication potential, unit: kg PO43--equiv. vs. accumulated exceedance, unit: mole Neq).

A new method is now suggested for the POCP calculations based on [Van Zelm 2008]. Other LCIA methods have been used so far for POCP calculations: for example, the CML 2002 approach based on [Derwent 1998]. As a result, care has to be taken, and the method used for LCIA indicators should be clearly stated.

PS: Please note that the ADP guidance is given in a separate aspect.

Harmonization of the LCIA indicators is expected soon. The aspect will be revised once there are agreed methods between CEN and ILCD.

2) Calculation rules for each indicator describing resources use and additional information (wastes etc.) in EN 15804/EN 15978

According to the ILCD Handbook, these flows are called ‘reminder flows’ (see ILCD rules above). The practitioner and LCA tool developer may be aware that, so far, not all the resource use indicators can be easily determined. In fact, the background databases used in LCA studies do not provide this information in a consistent way (e.g. ‘use of non-renewable primary energy excluding primary energy resources used by a raw material’). Others are potentially more easily available (e.g. ‘use of secondary fuels’). As the practitioner cannot influence the background data, this problem ultimately needs to be solved by the data providers.

3) Calculation rules for optional indicators (taken from the ILCD Handbook)

Currently there is no agreement on a single calculation method for impact categories not covered in CEN TC 350 (but available in the ILCD Handbook), such as land use, toxicity or ecotoxicity. The type of LCIA modelling between midpoint indicators and endpoint indicators are is subject to discussion. Therefore the EeBGuide does not provide strict provisions on these aspects. Please consult the corresponding aspects for more detailed guidance on those aspects that are not mandatory in the EeBGuide.

4) Number of indicators to consider, depending on the study type.

To select a relevant set of indicators, the practitioner should also try to have indicators covering the three area of protection: resources, ecosystems and human health. The indicators of EN 15804/EN 15978 correspond to these area of protection, but do not include all the impact categories, as some are still being debated within the LCA community. Additional aspects (see ‘Biodiversity’, ‘Land use’, ‘Toxicity and ecotoxicity’ etc.) provide guidance for the practitioner who would like to use them.

For complete LCA studies, the full list of impact categories in EN 15978/EN 15804 should be used as well as missing categories taken from the ILCD Handbook if relevant for the goal of the study.

G-29 (Buildings) / G-27 (Products) Abiotic resources depletion indicator

Aspect G-29 (Buildings) / G-27 (Products) Abiotic resources depletion indicator
Description
In LCA, different indicators can be used for assessing the use of resources. These can be based on a thermodynamic approach (use of energy or exergy indicators), on a mass flow approach (use of a total mass requirement indicator), on a surplus of energy that will be needed for future extractions (ecoindicator approach), or on a scarcity approach (use of the ADP indicator developed at CML Leiden). According to the ILCD Handbook, the CML method uses the abiotic depletion potential (ADP), given in kg of antimony equivalents, to be multiplied by the amount of a given resource extracted. For ADP, the annual production of the resource (the extraction rate) is divided by the reserves squared, and the result is divided by the same ratio for the reference resource, antimony [ILCD, 2011a]. The CEN TC 350 standards recommend using the ADP indicator, but different forms of APD can be used, depending on the type of reserve and the available extraction rates.Which indicator and assumptions should be applied in this guidance document?

related study objective

☒ stand-alone LCA ☒ comparative assertion

related study phase

☐ ☐ ☒ ☐ ☐
goal and scope definition inventory analysis (LCI) impact assessment (LCIA) interpretation reporting

relevant for

new buildings existing buildings building products screening LCA simplified LCA complete LCA
Provisions Adopt the provision of the indicators and methodology mentioned in EN 15978 and EN 15804 (‘Depletion of abiotic resources-elements’ and ‘Depletion of abiotic resources-fossil fuels’). EN 15804 refers to CML (Institute of Environmental Sciences Faculty of Science University of Leiden, Netherlands) as the characterization factor for ADP (elements and fossil), and the characterization factors for ADP fossil fuels are based on net calorific values at the point of extraction of the fossil fuels.
Rules from:
EN 15978:
12.5 List of indicators used for assessment and expression of results
11.1.2 Indicators describing environmental impacts
EN 15804:

6.5 Impact assessment
7.2.3 Parameters describing environmental impacts
ILCD:
8 Life cycle impact assessment – calculating LCIA results
Provisions: 8.2 Calculation of LCIA results
ILCD Handbook – Part – Analysing of existing environmental impact assessment methodologies for use in life cycle assessment

4.11 Resource depletion

 “For some impact categories, many alternative methods have been selected. This can be seen as a sign that there is no clear consensus on how to model such a method. Clear examples are acidification, eutrophication, land use and resources.”

ILCD Handbook: Recommendations for life cycle impact assessment in the European context

3.11. Resources depletion

3.11.7 Recommended default method for category 2

“The CML method is recommended in the ILCD framework since it captures scarcity by including extraction as well as reserves of a given resource. Characterization factors are given for metals, fossil fuels and, in the case of reserve base and economic reserves, mineral compounds [Oers 2002]. In addition, the method covers most of the substances/materials identified as critical by the European Commission’s Ad-hoc Working Group on defining critical raw materials (European Commission 2010).”

[Oers 2002] give characterization factors for economic reserves, reserve base, and ultimate reserves. The characterization factors given for the reserve base are recommended, as this reflects a longer time horizon and the possibility of improvement in mining technology, making feasible the exploitation of previously sub-economic deposits.

Guidance
Practitioners should keep in mind that for the LCIA indicator ‘Abiotic depletion’ there is a methodology available that provides different assumptions regarding the estimate of reserves, i.e. ultimate, base or economic [Guinée 2001], [Oers 2002].So far, EN 15804 and EN 15978 do not specify which kinds of reserve should be considered for the ADP calculation. Over the past few years, most LCA or EPD data have reported the ADP (both fossil and elements) based on ultimate reserves according to [Guinée 2001]. Recently, the ILCD Handbook released the report ‘Recommendations for life cycle impact assessment in the European context’ (First edition, December 2010) [EC 2011]. In this guide, it recommended that the base reserve be used for the ADP calculation for all the elements (aluminium, copper, etc.). This guidance will be updated when EN 15804 and EN 15978 are revised.The ADP (fossil or elements) characterization factors based upon the CML 2002 method can be downloaded from: http://cml.leiden.edu/research/industrialecology/researchprojects/finished/new-dutch-lca-guide.html. In addition, another link provides the latest version of the characterization factors for the CML 2002 impact categories: http://cml.leiden.edu/software/data-cmlia.html.In the construction sector, such an indicator (ADP) may be adapted to take into account the local depletion of resources such as gravel. This is still a research topic but more information can be found in recent scientific papers, e.g. [Habert 2009]

G-30 (Buildings) / G-28 (Products) Land use indicator

Aspect G-30 (Buildings) / G-28 (Products) Land use indicator
Description
Land-use change is linked to human activities such as the exploitation of land for agricultural, industrial, residential, recreational, or other purposes. Currently, several LCIA methods exist, providing both midpoint and endpoint characterization factors. According to the ILCD Handbook, the midpoint characterization factor for land use, in the earliest stage of the cause–effect chain, is usually taken as the amount and quality deficit of land occupied or transformed. Some midpoint methods use indicators such as soil structure, soil pH or soil organic carbon. The endpoint characterization factor refers mostly to the quantity of species lost due to land use, or to the change in net primary production (NPP) of the land used [ILCD 2011a].Based on these different approaches, should a land-use indicator be included in the LCA of a product or a building?

related study objective

☒ stand-alone LCA ☒ comparative assertion

related study phase

☐ ☐ ☒ ☐ ☐
goal and scope definition inventory analysis (LCI) impact assessment (LCIA) interpretation reporting

relevant for

new buildings existing buildings building products screening LCA simplified LCA complete LCA
Provisions Land use should not be included as a mandatory indicator, as there is currently no agreed scientific method available (as also mentioned in the EN 15804 and EN 15978 standards). Yet, if the goal and scope of the study mention the use of an LCIA indicator for land use, then the indicator that is used for the assessment needs to be described and referenced.
Rules from:
EN 15978:
11. Calculation of the environmental indicators
“Note: Indicators for which there is no scientifically agreed calculation method within the context of LCA e.g. human health, ecotoxicity, biodiversity, land use are not included”
ILCD:
8 Life CYCLE IMPACT ASSESSMENT – calculating LCIA results
Provisions: 8.2 Calculation of LCIA results
13 Annex B: Calculation of CO2 emissions from land transformation
ILCD Handbook: Analysing of existing environmental impact assessment methodologies for use in life cycle assessment
“For some impact categories, many alternative methods have been selected. This can be seen as a sign that there is no clear consensus on how to model such a method. Clear examples are acidification, eutrophication, land use and resources.”

ILCD Handbook: Recommendations for life cycle impact assessment in the European context

3.10 Land use

Existing methods for land use that can be used at the midpoint level include: [Baitz 2002] which was further developed by [Bos 2008], [Milà I Canals 2007], [De Schryver 2009] and [Beck 2010].

Guidance
If land-use change is intended to be assessed, it is recommended that recent LCA literature be consulted to identify a feasible and appropriate indicator. Such literature may include:– the analysis of available existing LCIA methods for land use provided by the ILCD Handbook (report available online: http://lct.jrc.ec.europa.eu/pdf-directory/ILCD-Handbook-LCIA-Background-analysis-online-12March2010.pdf);– the results of the UNEP/SETAC working group on ‘Operational Characterization Factors for Land Use in Life Cycle Impact Assessment’ (LULCIA) [Beck 2010]– several publications in the International Journal of Life Cycle Assessment, such as a recent paper on the ‘Principles of inventory of land use on a global scale’ [Koellner 2012].This aspect will need to be revised when an approved method is available.

G-31 (Buildings) / G-29 (Products) Biodiversity indicator

Aspect G-31 (Buildings) / G-29 (Products) Biodiversity indicator
Description
The loss of species and their diversity caused by destruction of their habitat has become one of the pivotal topics of environmental political actions in recent years. For years the scientific community has been working on completing a portfolio of considered environmental impacts, including taking biodiversity into account as a subject of protection.Which indicator and which methodology should be used?

related study objective

☒ stand-alone LCA ☒ comparative assertion

related study phase

☐ ☐ ☒ ☐ ☐
goal and scope definition inventory analysis (LCI) impact assessment (LCIA) interpretation reporting

relevant for

new buildings existing buildings building products screening LCA simplified LCA complete LCA
Provisions Adopt provision of the indicators mentioned in EN 15804 and EN 15978. The standards explicitly exclude biodiversity, because so far no scientifically agreed method is available. Yet, if the goal and scope of the study mention the use of an LCIA indicator for biodiversity, the indicator that is used for the assessment needs to be described.
Rules from
EN 15978:
11. Calculation of the environmental indicators
“Note: Indicators for which there is no scientifically agreed calculation method within the context of LCA e.g. human health, ecotoxicity, biodiversity, land use are not included.”
ILCD:
8 Life cycle impact assessment – calculating LCIA results
Provisions: 8.2 Calculation of LCIA results
ILCD Handbook: Recommendations for life cycle impact assessment in the European context
3.2.3 Measuring biodiversity loss
Existing methods for biodiversity that can be used at the midpoint level include: [Baitz 2002], which was further developed by [Bos 2008], [Milà i Canals 2007], [De Schryver 2009] and [Beck 2010].
Guidance
Currently discussions are ongoing about biodiversity indicators and methodology. So far there is no scientifically sound and commonly agreed method available. This aspect will to be revised if there are new outcomes from the discussions.

G-32 (Buildings) / G-30 (Products) Human toxicity and ecotoxicity indicators

Aspect G-32 (Buildings) / G-30 (Products) Human toxicity and ecotoxicity indicators
Description
LCIA methodologies usually include midpoint or endpoint indicators for three area of protection: resources, human health and ecosystem. For the two last areas of protection, different indicators are currently available to assess the ecotoxicity and toxicity effects related to a product or a building life cycle. They classify the multimedia fate of chemicals into ecological compartments such as air, water and soil. On the one hand, accounting for toxicity and ecotoxicity effects allows a more comprehensive assessment in terms of the completeness of the set of indicators. On the other hand, these two impact categories are subject to very high uncertainties. Several indicators have been developed by the LCA community, which can lead to different conclusions [Van Caneghem 2010].Should toxicity and ecotoxicity indicators be used in an LCA of buildings?

related study objective

☒ stand-alone LCA ☒ comparative assertion

related study phase

☐ ☐ ☒ ☐ ☐
goal and scope definition inventory analysis (LCI) impact assessment (LCIA) interpretation reporting

relevant for

new buildings existing buildings building products screening LCA simplified LCA complete LCA
Provisions Adopt provision of the indicators mentioned in the EN 15804 and EN 15978 standards. These do not include toxicity or ecotoxicity methods, because there is so far no scientifically agreed method available.Yet, if the goal and scope of the study mention the use of an LCIA indicator for toxicity and ecotoxicity, the indicator that is used for the assessment needs to be described.
Rules from:
EN 15978:
11. Calculation of the environmental indicators
“Note: Indicators for which there is no scientifically agreed calculation method within the context of LCA e.g. human health, ecotoxicity, biodiversity, land use are not included”

ILCD:
8 Life cycle impact assessment – calculating LCIA results
Provisions: 8.2 Calculation of LCIA results
ILCD Handbook: Recommendations for life cycle impact assessment in the European context

3.3. Human toxicity
Existing methods for human toxicity aspects that can be used at the midpoint and endpoint level include: USEtox [Rosenbaum 2008] ReCiPe [Huijbregts 2009], IMPACT2002+ [Jolliet 2003] TRACI [Bare 2003], EDIP [Potting 2005], CML 2002 [Huijbregts 2000] and MEEuP [Kemna 2005]

ILCD states that “The use of USEtox as multimedia model, combining chemical fate and exposure with toxicological data, is recommended for midpoint indicators” for human toxicity.

ILCD states that “For the endpoint characterization, it is proposed as an initial basis to apply the most recent values that are proposed by Huijbregts et al. (2005a) using disability adjusted life years (DALYs)”

3.3.5 Discussion on uncertainties and the importance of spatial-temporal differentiation

3.9 Ecotoxicity

Existing methods for ecotoxicity aspects that can be used at the midpoint level include three groups according to their fate modelling:

 1. Full multimedia fate modelling: USEtox [Rosenbaum 2008], ReCiPe [Huijbregts 2009], IMPACT2002+ [Jolliet 2003], TRACI [Bare 2003],

2. Partial fate modelling – Environmental key properties: EDIP

3. No fate modelling: Swiss Ecoscarcity [Frischknecht 2008] and MEEuP [Kemna 2005]

ILCD states that “USEtox is preferred as the recommended default method for the midpoint evaluation of freshwater ecotoxicity impacts. This is equally consistent with the model recommended for toxicity impacts for humans. It results from a consensus building effort amongst related modellers and, hence, the underlying principles reflect common and agreed recommendations from these experts.” ILCD states that “No available method is recommended to address marine and terrestrial ecotoxicity.”

Endpoint level for ecotoxicity includes: EPS2000 [Steen 1999], ReCiPe [Huijbregts 2009] and IMPACT 2002+ [Jolliet 2003].

3.9.4 Discussion on uncertainties and the importance of spatial differentiation

Guidance
The LCA practitioner in the building sector should be aware of the existing and recommended LCIA methods for assessing toxicity and ecotoxicity aspects. Current uncertainties are substantial for these impact categories, although it is generally recognized that it is better to have one indicator than no indicator at all for an impact category.The LCA practitioner in the building sector should also be aware that current efforts are under way at the international level to harmonize the toxicity and ecotoxicity models: see e.g. the USE-oTox model.The latest developments in LCIA for human toxicity have included a new compartment ‘indoor air emissions’ in the USETox model (which is recommended for use by the ILCD). Accounting for indoor air emissions is increasingly relevant, as human beings spend most of their time inside buildings.Such new LCIA developments have to be connected to the EeBGuide aspect of Module B1 ‘Release of dangerous substances to air during the use stage’. The previous European project LoRe-LCA describes the basic concepts of such models in more detail (report available online). Practitioners should also keep in mind that national EPD programmes may also recommend using toxicity indicators that are not included in the core European PCR (EN 15804 and EN 15978). In this case, the practitioner should use them for national LCA studies (if relevant). This guidance will be précised and updated when the EN 15804/EN 15978 are revised.