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Leveraging Technology for a Sustainable World

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Cover of 'Leveraging Technology for a Sustainable World'

Table of Contents

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    Book Overview
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    Chapter 1 Unit Process Life Cycle Inventory (UPLCI) – A Structured Framework to Complete Product Life Cycle Studies
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    Chapter 2 Quality Information Management for Advanced Quality Planning in Small and Medium-Sized Companies
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    Chapter 3 Making the Business Case for Eco-Design and Sustainable Manufacturing
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    Chapter 4 Goal Programming-Based Approach to Identify Sustainable Product Service System Designs
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    Chapter 5 Supporting Scenario Design in Planning Long-Term Business Strategies Based on Sustainability Scenarios
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    Chapter 6 Exploiting Life Cycle Innovation
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    Chapter 7 Risk Management of Industrial Product-Service Systems (IPS 2 ) – How to Consider Risk and Uncertainty over the IPS 2 Lifecycle?
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    Chapter 8 Product-Service System Types and Implementation Approach
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    Chapter 9 Life Cycle Oriented Quality Assessment of Technical Product-Service Systems
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    Chapter 10 A Framework to Analyze the Reduction Potential of Life Cycle Carbon Dioxide Emissions of Passenger Cars
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    Chapter 11 Material Substitution for Automotive Applications: A Comparative Life Cycle Analysis
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    Chapter 12 Decision Making Methodology to Reduce Energy in Automobile Manufacturing
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    Chapter 13 Water Consumption in a Vehicle Life Cycle
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    Chapter 14 Simplified Life Cycle Analysis of a Forming Tool in the Automotive Industry
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    Chapter 15 LCA Application: The Case of the Sugar Cane Bagasse Electricity Generation in Brazil
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    Chapter 16 Energy Efficiency Potential for China’s Cement Industry: A Bottom-Up Technology-Level Analysis
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    Chapter 17 Drivers and Barriers of Environmentally Conscious Manufacturing: A Comparative Study of Indian and German Organizations
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    Chapter 18 Stimulating Students to Experience Sustainable Engineering: The CQS Group T Racing Team
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    Chapter 19 Reducing Energy Demands of Printing Machines by Energy Reuse Options and Optimization
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    Chapter 20 Environmental Footprint of Magnetite Nanoparticle Application: Iron Oxide Case
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    Chapter 21 Modular Server – Client – Server (MSCS) Approach for Process Optimization in Early R&D of Emerging Technologies by LCA
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    Chapter 22 Life Cycle Perspectives for Biosensors
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    Chapter 23 Life Cycle for Engineering the Healthcare Service Delivery of Imaging
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    Chapter 24 Defining and Mapping LCA Networks: Initial Results
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    Chapter 25 Obsolescence Management as a Tool for Effective Spare Parts Management
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    Chapter 26 Assessment of Automation Potentials for the Disassembly of Automotive Lithium Ion Battery Systems
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    Chapter 27 Remanufacturing: An Alternative for End of Use of Wind Turbines
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    Chapter 28 A Study on an E-Waste Management Strategy Considering Global Inverse Supply Chain
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    Chapter 29 Separating Manufacturing Metal Chips for Recycling through a Combined Hydrodynamic and Electromagnetic Approach
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    Chapter 30 A Framework for Using Cognitive Robotics in Disassembly Automation
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    Chapter 31 Recyclability Evaluation of LCD TVs Based on End-of-Life Scenarios
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    Chapter 32 Strategic Decision Making for End-of-Life Management of Fuel Cells
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    Chapter 33 Impact of Technology on Product Life Cycle Design: Functional and Environmental Perspective
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    Chapter 34 A Conceptual Framework for Sustainable Engineering Design
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    Chapter 35 Prioritizing ‘Design for Recyclability’ Guidelines, Bridging the Gap between Recyclers and Product Developers
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    Chapter 36 Holistic Approach for Jointly Designing Dematerialized Machine Tools and Production Systems Enabling Flexibility-Oriented Business Models
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    Chapter 37 LeanDfd: A Design for Disassembly Approach to Evaluate the Feasibility of Different End-of-Life Scenarios for Industrial Products
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    Chapter 38 Mapping the Life Cycle Analysis and Sustainability Impact of Design for Environment Principles
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    Chapter 39 Development of an Empirical Model to Describe the Service Life of Ball Screws for Machine Tools under Consideration of Jerk Influences
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    Chapter 40 Simulation of the Energy Consumption of Machine Tools for a Specific Production Task
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    Chapter 41 Energy Efficient Cooling Systems for Machine Tools
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    Chapter 42 Simulation and Prediction of Process-Oriented Energy Consumption of Machine Tools
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    Chapter 43 Mapping Energy Consumption for Industrial Robots
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    Chapter 44 Prototypical Implementation of a Remanufacturing Oriented Grinding Machine
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    Chapter 45 Assessment of Energy Consumption in Injection Moulding Process
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    Chapter 46 Unit Process Energy Consumption Models for Material Addition Processes: A Case of the Injection Molding Process
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    Chapter 47 Dynamic Total Cost of Ownership (TCO) Calculation of Injection Moulding Machines
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    Chapter 48 A Material and Energy Flow Oriented Method for Enhancing Energy and Resource Efficiency in Aluminium Foundries
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    Chapter 49 Multi-objective Analysis on Joining Technologies
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    Chapter 50 Life Cycle Analysis of Grinding
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    Chapter 51 Total Cost Analysis of Process Time Reduction as a Green Machining Strategy
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    Chapter 52 Energy Analysis of Micro-drilling Process Used to Manufacture Printed Circuit Boards
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    Chapter 53 Using Jatropha Oil Based Metalworking Fluids in Machining Processes: A Functional and Ecological Life Cycle Evaluation
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    Chapter 54 Evaluation of Two Competing Machining Processes Based on Sustainability Indicators
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    Chapter 55 Using a New Economic Model with LCA-Based Carbon Emission Inputs for Process Parameter Selection in Machining
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    Chapter 56 Evaluation of Abrasive Processes and Machines with Respect to Energy Efficiency
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    Chapter 57 An Approach for the Planning and Optimization of Energy Consumption in Factories Considering the Peripheral Systems
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    Chapter 58 Development of a Procedure for Energy Efficiency Evaluation and Improvement of Production Machinery
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    Chapter 59 Compressed Air Leak Detection Using Microphone Array Techniques
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    Chapter 60 Automated Handling of Limp Foils in Lithium-Ion-Cell Manufacturing
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    Chapter 61 A Life Cycle Oriented Evaluation of Changeable Manufacturing and Assembly Systems
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    Chapter 62 Energy Efficiency in Pneumatic Production Systems: State of the Art and Future Directions
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    Chapter 63 Interface Requirements and Planning Framework for the Integration of Non-conventional Processes in Production Lines
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    Chapter 64 Simulation-Based Assessment of the Energy Consumption of Manufacturing Processes
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    Chapter 65 Automated Provision and Exchange of Energy Information throughout the Production Process
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    Chapter 66 Automated Linkage of Consumption Models and Control Information in Control Systems
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    Chapter 67 Sustainable Interlinked Manufacturing Processes through Real-Time Quality Prediction
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    Chapter 68 Energy-Sensitive Production Control in Mixed Model Manufacturing Processes
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    Chapter 69 An Eco-Improvement Methodology for Reduction of Product Embodied Energy in Discrete Manufacturing
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    Chapter 70 Cost and Energy Consumption Optimization of Product Manufacture in a Flexible Manufacturing System
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    Chapter 71 Concept of Energy-Efficient Job Sequencing for Heat Treatment Processes
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    Chapter 72 Resource Efficiency Assessment System
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    Chapter 73 Developing a Simple Carbon Footprint Calculation Tool with the Criteria of Inventory Data Selection
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    Chapter 74 A Metrics-Based Methodology for Establishing Product Sustainability Index ( ProdSI ) for Manufactured Products
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    Chapter 75 Modeling Gaps and Overlaps of Sustainability Standards
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    Chapter 76 A Forecasting Model for the Evaluation of Future Resource Availability
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    Chapter 77 Reduction of Water Consumption within Manufacturing Applications
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    Chapter 78 Water Footprint Quantification of Machining Processes
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    Chapter 79 Methodology for Ecological and Economical Aircraft Life Cycle Analysis
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    Chapter 80 Life Cycle Engineering in Preliminary Aircraft Design
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    Chapter 81 Lifecycle Impact Profile for Efficient Product Development – Jet Engine Example
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    Chapter 82 Survey of Common Practices in Sustainable Aerospace Manufacturing for the Purpose of Driving Future Research
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    Chapter 83 Energy Efficient and Intelligent Production Scheduling – Evaluation of a New Production Planning and Scheduling Software
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    Chapter 84 Availability Focused Risk Analysis to Support Life Cycle Costing Prognosis
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    Chapter 85 A Hierarchical Evaluation Scheme for Industrial Process Chains: Aluminum Die Casting
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    Chapter 86 Characterization and Weighting Scheme to Assess the Resource Efficiency of Manufacturing Process Chains
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    Chapter 87 Comprehensive Model to Evaluate the Impact of Tooling Design Decisions on the Life Cycle Cost and Environmental Performance
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    Chapter 88 Data Collection of Chemicals Used in Microelectronic Manufacturing Processes for Environmental Studies
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    Chapter 89 Measuring and Visualizing Different Energy Sources: A Concept for an Energy Management System
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    Chapter 90 Analysis of Electrical Power Data Streams in Manufacturing
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    Chapter 91 Energy Monitoring in Manufacturing Companies – Generating Energy Awareness through Feedback
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    Chapter 92 On the Implementation of Exergy Efficiency Metrics in Discrete Manufacturing System: The Dissipative Nature of Production Processes
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    Chapter 93 Integrating Sustainability Assessment into Manufacturing Decision Making
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    Chapter 94 Environmental Impact Modeling of Discrete Part Manufacturing Processes
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    Chapter 95 Role of Transformation Principles in Enabling Environmentally Significant Behavior
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    Chapter 96 Designing Products to Encourage Conservation: Applying the Discretization Principle
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    Chapter 97 A Framework for the Evaluation and Redesign of Human Work Based on Societal Factors
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    Chapter 98 Working with the Social Hotspots Database - Methodology and Findings from 7 Social Scoping Assessments
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    Chapter 99 A Generic Simulation Model for Green Supplier Selection
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    Chapter 100 Impact of Parameter Changes in a Service Provider Closed-Loop Supply Chain with Customer-Owned-Stock
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    Chapter 101 Coping with Supply Chain Dynamics – Review and Synthesis of Existing Contributions
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    Chapter 102 Supply Chain Life Cycle Implications of Shipping Goods from Mexico – A Case on PV Solar Panels
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    Chapter 103 Transport Optimization by Logistics Oriented Production Scheduling in the Automotive Industry
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    Chapter 104 A Framework to Integrate Product Design and Supply Chain Decisions to Minimize CO 2 Emission
Overall attention for this book and its chapters
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Title
Leveraging Technology for a Sustainable World
Published by
Springer-Verlag Berlin Heidelberg, January 2012
DOI 10.1007/978-3-642-29069-5
ISBNs
978-3-64-229068-8, 978-3-64-229069-5, 978-3-64-243813-4
Editors

David Dornfeld, Barbara S. Linke

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X Demographics

The data shown below were collected from the profile of 1 X user who shared this research output. Click here to find out more about how the information was compiled.
Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 111 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Colombia 1 <1%
Germany 1 <1%
Austria 1 <1%
Brazil 1 <1%
Unknown 107 96%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 19 17%
Student > Master 15 14%
Student > Bachelor 13 12%
Researcher 13 12%
Student > Doctoral Student 8 7%
Other 10 9%
Unknown 33 30%
Readers by discipline Count As %
Engineering 38 34%
Business, Management and Accounting 8 7%
Environmental Science 7 6%
Design 4 4%
Economics, Econometrics and Finance 4 4%
Other 10 9%
Unknown 40 36%