Life Cycle Assessment of printed paper products and Sustainability Calculator.

Similar documents
WP5 LCA of selected packaging products

LEADERSHIP Closer to you and the environment

Printing and Writing Papers Life- Cycle Assessment Frequently Asked Questions

Guidance document Life cycle assessment for the self-adhesive label

Environmental performance of digital printing - photo book case study

IMPLICATIONS OF RECYCLING ACTIVITIES ON SUSTAINABILITY OF SOLID WASTE MANAGEMENT IN THAILAND

Which parameters characterise the life time of fibres in paper for recycling?

DOCUMENTATION FOR THE PAPER CALCULATOR VERSION 3.2

Deliverable 5-2: Report on Life Cycle Analysis: a) Composting and b) Anaerobic Digestion

Life Cycle Analysis of Paper Products

Conclusions and Summary Report on an Environmental Life Cycle Assessment of Utility Poles

Neutral Posture North Texas Avenue Bryan, TX

N A T I O N A L C O U N C I L F O R A I R A N D S T R E A M I M P R O V E M E N T

Life Cycle Environmental Performance of Renewable Building Materials in the Context of Residential Construction

Welcome to the 27 th INGEDE Symposium

Life Cycle Assessment of Household Water Tanks A Study of LLDPE, Mild Steel and RCC Tanks

Conclusions and Summary Report Environmental Life Cycle Assessment of Marine Pilings

ENVIRONMENTAL IMPACT ASSESSMENT OF THE MANUFACTURING OF A COMMERCIAL AIRCRAFT

Life Cycle Assessment of Sports Surfaces

Paper and Sustainable Business Background Information

LEXMARK MS810DN ENVIRONMENTAL PRODUCT DECLARATION MONO LASER PRINTER

FOSSIL FUELS CONSUMPTION EVALUATION IN BLAST FURNACE TECHNOLOGY BASED ON DIFFERENT LIFE CYCLE IMPACT ASSESSMENT METHODS. Dorota BURCHART-KOROL

Framework for Carbon Footprints for paper and board products. April 2017

Life Cycle Modeling and Assessment

CM4310 Chemical Process Safety/Environment Fall 04 Homework #3 Solution Fri. 10 Dec., '04

ENVIRONMENTAL FOOTPRINT COMPARISON TOOL A tool for understanding environmental decisions related to the pulp and paper industry

Environmental product declaration. KONE MonoSpace Special

LIFE CYCLE ASSESSMENT OF A BIOREACTOR AND AN ENGINEERED LANDFILL FOR MUNICIPAL SOLID WASTE TREATMENT

IFS Coatings. Gainesville, Texas 3601 N Interstate 35, Gainesville, TX

LCA DATABASE OF STEEL BUILDING TECHNOLOGIES

LCA of beverage container production, collection and treatment systems

Carbon Impact of Remanufactured Products

WWF Check your Paper Auditing Guidelines for certification bodies Based on WWF Paper Scorecard Criteria Version 2.0 April 2011

ASSESSMENT OF THE CURRENT STATE OF THE POST-CONSUMER FIBER MARKET 1

COMPONENTS REMOVAL IN FLOTATION DEINKING

Life Cycle Assessment as a rational Basis for Environmental Policy

Comparison of recycling and incineration of aluminium cans

A clean energy solution from cradle to grave

IFS Coatings. Gainesville, Texas 3601 N Interstate 35, Gainesville, TX

CHEMICALS IN MATERIAL CYCLES

THE LIFE CYCLE ASSESSMENTS OF NATURAL FIBRE INSULATION MATERIALS

The database ÖKOBAU.DAT in openlca and SimaPro

ENVIRONMENTAL PRODUCT DECLARATION

Life Cycle Environmental Impact Study

Life Cycle Assessment as a tool for resource optimisation of continuous basalt fibre production in Iceland

ENVIRONMENTAL PRODUCT DECLARATION as per ISO and EN 15804

Toilet papers [EDP (1)]

Resource efficiency in the European Paper Industry Doing more with less is what we do best

CALCULATION METHOD OF STOCKPILING AND USE PHASE IN ROAD LCA: CASE STUDY OF STEEL SLAG RECYCLING

The WWF Paper Scorecard Manual

Owens Corning Asphalt Shingles According to ISO 14025

ENVIRONMENTAL PRODUCT DECLARATION In accordance with EN and ISO Isover Roof N 160 mm. Realization data: Version:

Between disagreement and consensus in waste LCA: Illustration with a comparative LCA of different grape pomace recovery options

CONSISTENCY ISN T A COMMODITY.

Life Cycle Assessment of beverage carton collection systems

SWOLF Overview and Illustrative Analyses. Jim Levis, PhD Research Assistant Professor Department of Civil, Construction, and Environmental Engineering

Environmental criteria for sustainable public procurement of. Printing Services. Version March 2017

ENVIRONMENTAL ASSESSMENT OF THE RECOVERY OF PRINTED CIRCUIT BOARDS IN GREECE

S WOLF. Landfill Process Modeling.

ENVIRONMENT AND COMPUTER LABORATORY I ESD.EA: ESD, MODULE ON ENVIRONMENTAL ASSESSMENT (LAB AND EXERCISES)

MODELING THE RECYCLING PROCESSES IN THE LCA OF BUILDINGS

Life Cycle Assessment (LCA) of Poplar Plantations Global warming potential and energy consumption in the US PNW

Pulp and paper markets and forecasts. Bernard de Galembert

Ten ways to "green. green" your paper. by Phil Riebel

LCA of Olive Oil using SimaPro 6

Product Environmental Profile

COMPARATIVE LIFE CYCLE ASSESSMENT OF ENERGY AND MATERIAL RECOVERY OF CARDBOARD IN MUNICIPAL SOLID WASTE

14-Forest Products. Figure The forest products related pools and flows tracked by the LANDCARB model.

LCA Database for Portuguese Building Technologies

Lenzing Beyond Organic Cotton. Michael Kininmonth

2016 Environmental Profit and Loss Account

European Declaration on Paper Recyling Monitoring Report 2008

Environmental Implications of Increasing Wood Use in Building Construction. Dr. Jim Bowyer Dovetail Partners Minneapolis, MN

Product Environmental Profile

Legrand's environmental commitments

Comparative Life Cycle Assessment of Reusable vs. Disposable Textiles

EPD. Environmental Product Declaration

Comparative LCA of 4 types of drinking cups used at events; Eco-efficiency analysis of 4 types of drinking cups used at events

PANDUIT 4-PAIR COPPER DATA CABLE RISER RATED

The Implications of a Changing Raw Material Outlook and its Effects on Containerboard Production, Products and Manufacturing in the Future

Lignocellulosic conversion to ethanol: the environmental life cycle impacts

Legrand's environmental commitments

ADVERTISE WITH A GREEN CONSCIENCE: THE STABILO GREEN LINE.

LEEDing with LCA & EPDs

Global phenomena pushing towards a sustainable economy

Renewable and. Paper. For Media, Packaging, Specialty and Hygiene. ICCA, April 2009

Life Cycle Environmental Impact Study For North America

Greenhouse Gas Emissions from Municipal Waste Management : The Situation in Greece

This is an author-deposited version published in: Handle ID:.

DSM Carbon Footprint Study for Industrial Coatings applied on a Metal Substrate

REPORT. Online Billing Life Cycle Analysis. Telstra. Level 33 / 242 Exhibition Street Melbourne Victoria April 2008 REPORT NO:

Life Cycle Assessment combined with Exergetic Analysis in cane sugar production analysis

PRODUCT CATEGORY RULES (PCR) for preparing an environmental product declaration (EPD) for. - Cooker hood - PCR 2007:05

Your Family s Carbon Footprint

Sustainability and efficiency in bioenergy production

Nicosia Municipality Waste Management Practices and Policies. Nicosia 23 October 2016

BEFESA Plásticos. Glass fibre recycling. Reinforced thermoplastics. Layman s report. BEFESA - LIFE+ project LIFE07-ENV-E-802

Environmental Life Cycle Assessment PSE 476/FB 576

HÅG Capisco ENVIRONMENTAL PRODUCT DECLARATION in accordance with ISO Scandinavian Business Seating AS

Transcription:

Life Cycle Assessment of printed paper products and Sustainability Calculator. Daniele Bussini, Final conference EcoPaperLoop, Kracow 02/12/2014

LCA of printed products. EcoPaperLoop approach EcoPaperLoop approach to sustainability: Focus on the end of life phase of LCA, environmental sustainabiltiy of the recycling / deinking process. LCA OF NEWSPAPERS. Comparison between average products of different categories. Assessment of different recycling options, different recycling loops. STUDY OF THE MOST IMPORTANT END OF LIFE PARAMETERS, AFFECTING THE SUSTAINABILITY OF RECYCLING. SUSTAINABILITY CALCULATOR. Software tool for the calculation of environmental impacts and sustainability of recycling.

LCA of newspapers CASE STUDY: Standard Offset and flexographic printing of newspapers. THE SCOPE OF THE STUDY is to assess the life cycle of newspapers printed with standard offset and flexographic technology, taking into account the most important phases from the production of the paper to the end of life options. Offset newspapers are considered recyclable within the graphic paper loop, by flotation deinking process. Flexo newspapers are considered undeinkable under standard flotation deinking and could not be recycled in the graphic paper loop. Possible recycling in other paper loop, for instance packaging paper loop.

LCA Inventory Impact Assessment Inventory: Database Ecoinvent V3 (update September 2014). Average Category Data Literature Data Functional Unit is 1kg printed product. Software for LCA SimaPro, Version 8.0.3 (update September 2014). Impact Assessment Method: ReCiPe Endpoint V1.10

LCA Impact Assessment Most Relevant Impact Categories midpoint: Agricultural and urban land occupation (in particular for paper production process) Climate change (in particular for production and recycling, where a lot of energy is required) Expressed as global warming potential. Fossil fuel and minerals depletion (in particular for the production of chemicals). Damage Categories endpoint: Human Health, Ecosystems, Resources.

Assumptions for the study product and process: The same paper grade used for offset and flexo printed products. Newsprint made of DIP containing pulp. About 77% DIP (DeInked Pulp) and 23% virgin cellulose fibres. Source: Ecoinvent. Energy consumption and general impact of web offset printing and flexographic printing are considered the same. Differences are not significant with respect to overall life cycle. Flexo ink is supposed to have the same pigments as the offset ink, without the light weight oils fraction and solvents, which represent 47,5% of the offset ink. Source: Ecoinvent. Ink consumption is 2,5% of the paper weight for the offset printing and double for the flexographic printing. Source: Best Available Tecniques in the printing industry, Okopol, Germany.

Assumptions for the study end of life, general: End of life: 90% of used newspapers (all types) are collected and recycled in the paper loop, municipal collection plus shops return. The remaining amount is disposed 6% landfill and 4% incineration with energy recovery, as for mixed Municipal Solid Waste (MSW). Source: Cepi / Eurostat.

Assumptions for the study end of life, specific: OFFSET: -Recycling within the same loop, graphic paper production loop. - Deinking process with standard flotation technology. (2 loop flotation plant with process yield of 80%). - Deinking sludge of 20% is disposed as landfill and incineration. FLEXO: -Newspapers are not deinkable by using a standard flotation technology, because the water based ink is dissolved in the pulp suspension. - Products can be recycled in other loops, like packaging paper loop. This means recycling for the production of a different product, with lower quality fibers (downgrading). The benefit of recycling in this case is out of the system boundaries of the study.

1 p Newspaper - Offset - Life Cycle 0.0963 Pt Offset newspaper 1 p Newspaper - Offset - Life Cycle 1 p Newspaper - Offset 1 p Newspaper - offset - Disposal 0.0963 Pt Process tree 0.193 Pt -0.0968 Pt 1 kg Paper, newsprint, at regional storage - offset - EPL - 0.185 Pt 0.922 kg Newspaper - Offset - Paper for Recycling -0.0987 Pt 1 p Newspaper - Offset 1 p Newspaper - offset - Disposal Green arrows: ENVIRONMENTAL BENEFIT. 0.41 kg Paper, newsprint, DIP containing, at plant/rer U - EPL 0.0688 Pt 0.000154 m3 Pulpwood, softwood, measured as solid 0.0157 Pt 0.738 kg Graphic Paper Recycling -0.0992 Pt 1.21 MJ Electricity, medium voltage, production UCTE, at 0.0162 Pt 0.193 Pt 1 kg Paper, newsprint, at regional storage - offset - EPL - 0.185 Pt -0.0968 Pt 0.922 kg Newspaper - Offset - Paper for Recycling -0.0987 Pt Red arrows: ENVIRONMENTAL IMPACTS CLOSED LOOP APPROACH, recycling 0.000437 m3 Softwood, CO2-removal and land use {GLO} 0.0229 Pt 1.48 MJ Electricity, high voltage, production UCTE, at 0.0194 Pt 0.41 kg Paper, newsprint, DIP containing, at plant/rer U - EPL 0.0688 Pt 0.738 kg Graphic Paper Recycling -0.0992 Pt Recycled fibres replace raw material (DIP containing pulp) 1.51 MJ Electricity, production mix UCTE/UCTE U 0.0195 Pt

Offset newspaper Process tree, focus on disposal scenario

1 p Newspaper - Flexo - Life Cycle 0.199 Pt Flexo newspaper 1 p Newspaper - Flexo Newspaper - Flexo - Life Cycle 0.199 Pt Process tree 0.197 Pt 1 kg Paper, newsprint, at regional storage - flexo - EPL - 0.186 Pt 1 kg Paper, newsprint, DIP containing, at plant/rer U 0.169 Pt 0.000333 m3 Industrial wood, Scandinavian softwood, under 0.0392 Pt 3.04 MJ Electricity, medium voltage, production UCTE, 0.0409 Pt Newspaper - Flexo 0.197 Pt Paper, newsprint, at regional storage - flexo - EPL - elca-grf 0.186 Pt Recycling in a different paper loop (packaging). Raw material (DIP containing pulp) can not be replaced by recycled fibres. It can not be accounted any benefit nor impact for the recycling (out of system boundaries). 0.000348 m3 Softwood, Scandinavian, standing, under 0.0384 Pt 3.39 MJ Electricity, high voltage, production UCTE, at 0.0444 Pt Paper, newsprint, DIP containing, at plant/rer U 3.44 MJ Electricity, production mix UCTE/UCTE U 0.0446 Pt 0.169 Pt

Flexo newspaper Process tree, focus on disposal scenario

Newspapers Full Life Cycle Mid point results Impact Categories

Newspapers Full Life Cycle End Point Results Damage Categories

Newspapers Full Life Cycle Single Score Results

Newspapers Results The process with the highest impact is the pulp production for paper manufacturing, because of the recycling process for DIP production and the chemi-mechanical process for cellulose production. The printing process accounts about 5% of the overall impact in the case of offset newspaper and about 4,2% for flexo newspaper (lack of light fuel oils and solvents in the ink composition). However the difference is very small with respect of full life cycle of newspapers. The most important environmental advantage is the possibility of recycling the material within the same production loop, reducing the amount of raw material required. Recycling has a positive effect in all the impact categories and mainly in the categories where the impact of pulp production is more evident (agricultural land transformation, natural land trasnformation, climate change, fossil resources).

End of Life parameters and Sustainability Research study focused on the End of Life phase of printed products, to be implemented in the LCA: Which are the most important environmental emissions in recycling? What are the most important deinking parameters affecting environmental emissions of recycling? How are they connected? How to evaluate the environmental performances of the recycling process depending of deinking parameters?

End of Life parameters and Sustainability Three Product categories considered in details: Newspapers Uncoated Magazines Coated Magazines Example: Newspapers category OFFSET NEWSPAPERS (including Flyers) luminosity Y, % Dirt Speckes A 50, mm 2 /m 2 Low limit: 33,5 Average: 53,0 High limit: 72,5 Low limit: 0 Average: 630 High limit: 3000 energy consumption, electricity, kwh/kg pulp constant = 0,300 0,300 0,270 constant = 0,300 0,300 0,340 deinking chemicals consumption, g/kg pulp 13 g/kg NaOH 40 g/kg silicate constant= 5 g/kg NaOH 5 g/kg NaOH 10 g/kg silicate 10 g/kg Silicate - - - Agerage and Limits of Luminosity and Dirt Specks refers to laboratory tests results, considering hundreds of tests performed on market products. Acknowledge: Ingede. Data about chemicals and electricity consumption consider a typical 2 loop flotation deinking technology for the production of newsprint paper. Data from literature and Industry.

Sustainability Calculator WEB based SOFTWARE TOOL: Simplified calculation of environmental sustainability of printed products LCA approach, focused on the end of life recycling phase INPUTS Deinkability parameters (Luminosity Y and Dirt Specks) of a specific product (according to Ingede Method 11 if available) Average deinkability parameters for the product category (if specific results according to Ingede Method 11 are not available) OUTPUTS Chemicals and electricity consumption, average values CO 2 emission

The present tool in intended to quantify the most important environmental indicators related to the recycling behavior and solutions of paper products. Results are obtained by the implementation of calculating functions developed in the EcoPaperLoop project, based on the updated sector data and scientific literature information. Data and results are representative of the average situation of the considered product categories and recycling options. Would you like to evaluate a graphic paper product or a packaging paper product? Graphic printed product Packaging paper product

Graphic printed product A specific printed product was tested according to Ingede method 11 and related results are available. Yes No The Sustainability Recycling Calculator is intended as a tool for paper and packaging producers, converters, brand-owners and final users of paper and packagnig products. The scope is to enhance the environmental sustainability of paper base products, by the analysis of the recycling performances.

Graphic printed product Please select the Product Category Offset Newspapers Uncoated Magazines Coated Magazines

Graphic printed product OFFSET NEWSPAPER Please insert the result values for Luminosity Y and Dirt Specks A50 Y VALUE A 50 VALUE OK

Graphic printed product OFFSET NEWSPAPER Results of the most important environmental indicators of the recycling process: NaOH (g/kg pulp) Silicate (g/kg pulp) Electricity (kwh/kg pulp) CO 2 Equivalent GWP100 Go back to the beginning

The present tool in intended to quantify the most important environmental indicators related to the recycling behavior and solutions of paper products. Results are obtained by the implementation of calculating functions developed in the EcoPaperLoop project, based on the updated sector data and scientific literature information. Data and results are representative of the average situation of the considered product categories and recycling options. Would you like to evaluate a graphic paper product or a packaging paper product? Graphic printed product Packaging paper product

Graphic printed product A specific printed product was tested according to Ingede method 11 and related results are available. Yes No The Sustainability Recycling Calculator is intended as a tool for paper and packaging producers, converters, brand-owners and final users of paper and packagnig products. The scope is to enhance the environmental sustainability of paper base products, by the analysis of the recycling performances.

Graphic printed product Please select the Product Category Newspapers Offset (including flyers of similar type) Flyers Offset Newspapers Flexographic Newspapers Inkjet Digital Uncoated Magazines (Including flyers of similar type) Coated Magazines (including flyers of similar type)

Graphic printed product NEWSPAPERS OFFSER (including flyers of similar type) Average values of Luminosity Y and Dirt Specks parameters for the selected category are reported. Luminosity Y Dirt Specks A 50, mm 2 /m 2 Dirt Specks A 250, mm 2 /m 2 Average values in the table can be used to calculate environmental indicators of the recycling process: deinking chemicals, electricity consumption, CO2 emissions. Calculate Environmental performances Go back to the beginning

Graphic printed product NEWSPAPERS OFFSER (including flyers of similar type) Results of the most important environmental indicators of the recycling process: NaOH (g/kg pulp) Silicate (g/kg pulp) Electricity (kwh/kg pulp) CO 2 Equivalent GWP100 Go back to the beginning

Thank you Daniele Bussini daniele.bussini@mi.camcom.it