Data-based decision making in the circular economy · Data-based decision making in the circular...

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Data-based decision making in the circular economy Prepared for Interseroh April, 2018

Transcript of Data-based decision making in the circular economy · Data-based decision making in the circular...

Page 1: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Data-based decision making in the circular

economyPrepared for Interseroh April, 2018

Page 2: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Our philosophy

In a future shaped by the circular economy we

use resources endlessly. We know the origin

and ingredients of all components and materials

in the products we use, how and where they are

manufactured, the water & energy consumed in

production and how re-use scenarios will retain

the economic value of products and materials.

Digitization will unravel this knowledge &

Help us make better decisions

Page 3: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Compare & evaluate different claims

Collect data from supply chains

Increase data-reliability and access

Generate objective analyses &

intelligence

…the challenge is

gathering the right intel...

Page 4: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Circular IQ 1.0

Defines, streamlines & accelerates circular

procurement by simplifying sustainability data

management across supply chains & generating

business intelligence for decision support.

Trace products back

to their raw material

origins

Page 5: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

How does Circular IQ work?From product to comparable and reliable circularity assessment

Page 6: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

1. Translate organizational objective(s) and industry characteristics into criteria. And initiate data-collection.

SUPPLIER INFORMATION

• Signed agreement

• Policies & procedures

• Labor law compliance

• Environmental

performance

• Water

• Energy

• CO2

>> Actual data + evidence

PRODUCT INFORMATION

• Environmental

performance

• Water

• Energy

• CO2

• Material source

• Reutilization

>> Actual data + evidence

CriteriaOrganizational objective

Industry conventions

Page 7: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

2a. Integrate data request in cloud based software application and invite suppliers to provide the data

Increasing transparency and supporting collaboration

Page 8: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Gather information: From general product info to composition, environmental impact & certificates

Page 9: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Each tier in your supply chain will help enrich the data-set. All the way to the raw material origins

Page 10: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Compare results objectively and simple, to drive optimizationExcel-downloads, dashboards & downloadable product-circularity passports

PRODUCTCIRCULARITYCIRCULAR T-CIRCULAR T-SHIRTSHIRT

3 Materials 1.15 Weight ofmaterials 192 % of product

weight listed

PRODUCT CIRCULARITY BREAKDOWNPRODUCT CIRCULARITY BREAKDOWN

Materialsafety

Material source% of material

sourceDesigned fordisassembly

Öko-tex Certified Bio Cotton Virgin stream ✗

C2C Lauffenmühle sowingthread

Virgin stream ✗

Dystar C2C Optimized Dye(racing green)

Rapidly renewablecontent

100 ✗

Material has been assessed by an independent third party, using supplier declarations and an assessment report

Material is free of substances that are on the C2C Banned List Substances, taking into account accepted thresholds. Information basedon supplier declaration

Material is free of substances that are on REACH Banned List Substances, taking into account accepted thresholds. Information basedon supplier declaration

Material contains C2C Banned list substances, or substances on REACH above accepted thresholds

Material component safety unknown and/or absence of supplier declaration

This Product Circularity

report provides an overview

of the key circularity

characteristics of this

product. These

characteristics are based on

authorized information from

company and its supply

chain partners. It shows

insights in key circularity

supply chain information and

provides transparency. For

questions visit

http://www.circular-

iq.com/circularity

CIRCULARITY CHARACTERISTICSCIRCULARITY CHARACTERISTICS

Material reutilization

00 00

52.1352.13

0.090.09 00

99.9199.91

00

Recycled Virgin non

rapidly

renewable

Virgin rapidly

renewable

Compostable Recyclable Biodegradable None

0

100

Highcharts.com

Product circularity

100100

47.7847.78

00

47.7847.78 47.7847.78

00

Raw material

recovery

Component

recovery

Product

refurbishment

Product

reuse

Product

repair

Waste

0

100

Highcharts.com

Residual value

€ 0,75

undefined

undefined

Excel

detailed reports

visual graphs

PRODUCTCIRCULARITYDAVID CHAIRDAVID CHAIR

6 Materials 17.46 Weight ofmaterials in kg 97 % of product

weight listed

PRODUCT CIRCULARITY BREAKDOWNPRODUCT CIRCULARITY BREAKDOWN

Materialsafety

Material source% of material

sourceDesigned fordisassembly

Staal Recycled content 50 ✗

Aluminium Recycled content 50 ✗

Polyamide Recycled content 50 ✗

Polypropyleen Recycled content 50 ✗

Schuim Virgin stream ✗

Textiel Recycled content 50 ✗

Material has been assessed by an independent third party, based on supplier declaration and evidence from supplier

Material is free of C2C Banned list substances above accepted thresholds based on supplier declaration

Material is free of REACH banned list substances above accepted thresholds based on supplier declaration

Material contains C2C Banned list substances, or substances on REACH-XX-list above accepted thresholds

Material safety unknown, based on supplier statement or absence of supplier declaration

This Product Circularity

report provides an overview

of the key circularity

characteristics of this

product. These

characteristics are based on

authorized information from

company and its supply

chain partners. It shows

insights in key circularity

supply chain information and

provides transparency. For

questions visit

http://www.circular-

iq.com/circularity

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Page 11: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Create your own materials library

Page 12: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Monitor progress throughout your supply chain periodically

Page 13: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Example of a Circular IQ Product

Circularity report – details on next pages

Page 14: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

1. PDF is generated from the Circular IQ

application from authorised data collected from

supply chain partners. Circular IQ does not

have an own claim, it makes actual data

transparent

2. Name of the product

3. Image of the product

4. Number of known materials that this product

contains (and displayed on the list (see next

page)

5. Total weight of known materials – dit can differ

from total product weight.

6. Percentage of weight for known materials (total

known materials/total product weight)x100%

All known materials are displayed on list (see

next page)

1 2 3

4 5 6

Explanation Product Circularity Overview (1/3)

Page 15: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

1 2 3

6 7

4 5

Explanation Product Circularity Overview (2/3)

1. Section header Product Circularity Breakdown

2. Materials list, each line a material with unique

circularity characteristics. Similar materials

could be named, if located in different

componants of the product.

3. Colorcoding (traffic light) indicating material

safety as well as data assurance. We use the

Cradle to Cradle Material Restricted

Substances List as a benchmark reference

and each report shows explanation (6)

4. Origin of the material and % (weight of material

with specified origin/total material weight) x

100%.

5. Check box to indicate if material can be easily

disassembled from component

6. Legend to traffic light

7. Disclaimer

Page 16: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

1

6 5

2 3

Explanation Product Circularity Overview (3/3)

1. Section header Circularity Characteristics

2. Graph indicating composition relating to origin

characteristics (‘recycled’ or ‘virging non

rapidly renewable’ or ‘virgin rapidly

renewable’). Indicates (% weight of materials

meeting characteristic/total product weight) x

100%

3. Graph indicating composition relating to reuse

(‘compostable’, ‘recyclable’ or

‘biodegradable’). Indicates what could be (not

what ‘is’ see 6). (% weight of materials meeting

characteristic/total product weight) x 100%.

4. If no characteristic known, weight adds to

‘none’

5. Graph indicating composition relating to reuse,

what ‘is’. Based on Ellen MacArthur

Foundation.

6. Residual value of the product, if known and

displayed in €

4

Page 17: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

v

Examples *

PRODUCTCIRCULARITYCIRCULAR T-CIRCULAR T-SHIRTSHIRT

3 Materials 0.58 Weight ofmaterials in kg 97 % of product

weight listed

PRODUCT CIRCULARITY BREAKDOWNPRODUCT CIRCULARITY BREAKDOWN

Materialsafety

Materialsource

% of materialsource

Designed fordisassembly

Oeko-tex Certified Bio Cotton ✗

C2C Lauffenmuehle sowingthread ✗

Dystar C2C Optimized Dye ✗

Material has been assessed by an independent third party, based on supplier declaration and evidence from supplier

Material is free of C2C Banned list substances above accepted thresholds based on supplier declaration

Material is free of REACH banned list substances above accepted thresholds based on supplier declaration

Material contains C2C Banned list substances, or substances on REACH-XX-list above accepted thresholds

Material safety unknown, based on supplier statement or absence of supplier declaration

This Product Circularity

report provides an overview

of the key circularity

characteristics of this

product. These

characteristics are based on

authorized information from

company and its supply

chain partners. It shows

insights in key circularity

supply chain information and

provides transparency. For

questions visit

http://www.circular-

iq.com/circularity

CIRCULARITY CHARACTERISTICSCIRCULARITY CHARACTERISTICS

Material reutilization

00 00

52.1352.13

0.090.09 00

99.9199.91

00

Recycled Virgin non

rapidly

renewable

Virgin rapidly

renewable

Compostable Recyclable Biodegradable None

0

100

Highcharts.com

Product circularity

100100

47.7847.78

00

47.7847.78 47.7847.78

00

Raw material

recovery

Component

recovery

Product

refurbishment

Product

reuse

Product

repair

Waste

0

100

Highcharts.com

Residual value

€ 0,75

undefined

undefined

PRODUCTCIRCULARITYBICYCLEBICYCLE

3 Materials 3.00 Weight ofmaterials 15 % of product

weight listed

PRODUCT CIRCULARITY BREAKDOWNPRODUCT CIRCULARITY BREAKDOWN

Materialsafety

Material source% of material

sourceDesigned fordisassembly

rubber Virgin stream ✗

aluminiumRapidly renewable

content9 ✗

leatherRapidly renewable

content60 ✗

Material has been assessed by an independent third party, using supplier declarations and an assessment report

Material is free of substances that are on the C2C Banned List Substances, taking into account accepted thresholds. Information basedon supplier declaration

Material is free of substances that are on REACH Banned List Substances, taking into account accepted thresholds. Information basedon supplier declaration

Material contains C2C Banned list substances, or substances on REACH above accepted thresholds

Material component safety unknown and/or absence of supplier declaration

This Product Circularity

report provides an overview

of the key circularity

characteristics of this

product. These

characteristics are based on

authorized information from

company and its supply

chain partners. It shows

insights in key circularity

supply chain information and

provides transparency. For

questions visit

http://www.circular-

iq.com/circularity

CIRCULARITY CHARACTERISTICSCIRCULARITY CHARACTERISTICS

Material reutilization

00

63.6663.66

33

33.3333.33

00 00 00

Recycled Virgin non rapidly

renewable

Virgin rapidly

renewable

Compostable Recyclable Biodegradable None

0

50

100

Highcharts.com

Product circularity

11.3311.33

33.3333.33

00

33.3333.33

00 00

Raw material

recovery

Component

recovery

Product

refurbishment

Product

reuse

Product

repair

Waste

0

25

50

Highcharts.com

Residual value

€ 100

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* Examples based on dummy data

Page 18: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Case – Office Furniture

Page 19: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Circular Office Furniture for 100.000 government officials in NLReliable data on what’s in the furniture, if its safe and where it comes from

Challenge

Circular procurement is a key ambition of the Dutch authorities and a responsibility of the

Dutch Ministry of Infrastructure and Environment (RWS).

It is still quite new and the first challenge is to define what circularity is and how it will be

measured and rewarded. A further challenge is for the suppliers to get the data from deep in

supply chains. Lastly, comparison of results and the integrity of the received data sets is an

important element of the tender process.

Solution

RWS has chosen Circular IQ’s digital platform to create the needed transparency. The

online application was made available to the offerors for the collection of data from deep in

the supply chain and for the objective comparison of offers. The digital data platform was

also used for swift third party verification.

Key benefits

• Save time collecting data, both for RWS as well as the companies preparing

• Objectively compare scores of the products offered

• Decrease the risks associated with acceptance in the market-place

• Monitor circular economy performance over contract period (10 years).

.

Page 20: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Case - coffee cups

Page 21: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Case - coffee cups

Page 22: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Case - coffee cups

Page 23: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

Case - coffee cups

A B

Page 24: Data-based decision making in the circular economy · Data-based decision making in the circular economy Prepared for Interseroh April, 2018. Our philosophy In a future shaped by

If we change what’s bought

we change entire systems

[email protected] / +31 6 5246 1128