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Life Cycle Thinking

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Data collection. Step 3: Impact assessment. Calculation indicators. Step 4: Interpretation ... be covered by the FU? limestone. clinker. cement. waste. fuel ... – PowerPoint PPT presentation

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Title: Life Cycle Thinking


1
Life Cycle Thinking
  • LCA, tools, data, limitations

Eco-Serve workshop task 2, March 18 2003
2
Clusters need to know
  • Which indicators represent sustainability for
    their cluster topic
  • Which data to collect
  • You will learn in the next hour
  • Which indicators there are in general
  • The way of thinking

3
What is sustainability?
  • in the whole life cycle (cradle to gate)

4
(1) People health, safety, society
  • Indicators
  • Working environment
  • Local impacts
  • Indoor climate
  • Social security
  • Shelter
  • Employment
  • Equity
  • ()
  • Tools (methods)
  • various

5
(2) Planet external environment
  • Indicators
  • Resources (raw materials, water, land)
  • Global warming
  • Ozone layer depletion
  • Acidification
  • Eutrophication
  • Toxicity
  • Smog
  • Energy, waste,
  • Risks
  • Nuisance
  • ()
  • Tools
  • Life Cycle Assessment (LCA)
  • Environmental Impact Assessment
  • Various others

6
(3) Profit
  • Tools
  • Life Cycle Costing (LCC)
  • Various others
  • Indicators
  • Direct costs
  • Indirect costs
  • Competitiveness
  • Productivity
  • Quality
  • Image
  • Durability
  • ()

7
Analysis of the whole life cycle
Eco-Serve material related
8
Building
9
Benefits of integratedLife Cycle thinking
  • Prevents shifts to
  • Other life cycles stages, e.g.
  • benefit in resource can influence recyclability
  • product improvement can influence durability
  • Other effects
  • e.g. benefit on waste while increasing energy use
  • Focuses on the most important parameters
  • e.g. environmental improvement of concrete
    composition by optimising the cement content

10
Example recycling systemsconcrete
  • Recycling stony material
  • More energy
  • Less waste
  • Less land use

Closed Building Cycle system LCA. A comparison
of the autonomous development and Closed Building
Cycle system situation in 2005, INTRON, January
31, 2002.
11
Steps in Life Cycle thinking
  • Step 1 Goal Scope
  • what to do, why, how, etc
  • Step 2 Inventory
  • Data collection
  • Step 3 Impact assessment
  • Calculation indicators
  • Step 4 Interpretation
  • Evaluation
  • Conclusions
  • Functional unit
  • Products to be analysed
  • Process tree
  • Which data
  • Indicators

12
(1) Functional unit / products
Function
B25 composition Y
B25 composition X
1 m3 of concrete type according to environmental
class () in EN-206
13
Functional units definition
  • Which question must be answered?
  • Which systems should be covered by the FU?
  • Example
  • 1 ton of cement
  • 1 ton of cement and the treatment of waste type xx

limestone
waste
clinker
fuel
incinerated
cement
14
(2) Inventory
Construction
Product in function
Process tree
inputs / outputs for each process
15
Inventory parameters (example)
INPUT t clinker t fly ash etc kWh
elektricitity Nm3 gas tkm transport
OUTPUT kg CO2 kg NOx kg SO2 kg dust
etc kg waste
PRODUCT 1 ton product
16
Inventory parameters (example)
17
(3) From data to indicatorsExample LCA
18
(4) Interpretation
  • Which processes contribute most?
  • Which substances contribute most?
  • What is the sensitivity of the conclusions?

19
CO2- emission - 74 years
20
Contribution of leaching(concrete tiles)
21
Experiences from LCAs
22
Analysis on each level fromprocess to effect to
substance
  • Example concrete mixture

23
Indicators on which level?
24
Data collection
25
Steps in Eco-Serve
  • Functional units are defined for each cluster
  • Experience from former studies is used to
    establish indicators
  • Life cycle data are collected by the clusters
  • Indicator values are calculated and mapped
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