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Sustainability Science And Engineering

Author: Martin A. A. Abraham
Publisher: Elsevier
ISBN: 9780080481272
Size: 56.33 MB
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Sustainable development is commonly defined as "development that meets the needs of the present without compromising the ability of future generations to meet their own needs." Sustainability in engineering incorporates ethical and social issues into the design of products and processes that will be used to benefit society as a whole. Sustainability Science and Engineering, Volume 1: Defining Principles sets out a series of "Sustainable Engineering Principles" that will help engineers design products and services to meet societal needs with minimal impact on the global ecosystem. Using specific examples and illustrations, the authors cleverly demonstrate opportunities for sustainable engineering, providing readers with valuable insight to applying these principles. This book is ideal for technical and non-technical readers looking to enhance their understanding of the impact of sustainability in a technical society. * Defines the principles of sustainable engineering * Provides specific examples of the application of sustainable engineering in industry * Represents the viewpoints of current leaders in the field and describes future needs in new technologies

Treatise On Sustainability Science And Engineering

Author: I.S. Jawahir
Publisher: Springer Science & Business Media
ISBN: 9400762291
Size: 47.50 MB
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This book is aimed at providing a comprehensive overview of recent developments in sustainability science and engineering. The book focuses on principles and practices and presents 18 interwoven chapters on four major themes: design for sustainability; sustainability metrics and analysis; sustainable energy; and sustainable supply/value. Significant, state-of-the-art work, methodologies, practices and plans are presented by researchers, technology developers and industry leaders. Topics discussed include: life cycle assessment; product end-of-life options; practical approaches to sustainability; environmental footprint assessment; biofuels; and sustainable supply chain management.

Design For Innovative Value Towards A Sustainable Society

Author: Mitsutaka Matsumoto
Publisher: Springer Science & Business Media
ISBN: 9400730101
Size: 33.41 MB
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Since the first EcoDesign International Symposium held in 1999, this symposium has led the research and practices of environmentally conscious design of products, services, manufacturing systems, supply chain, consumption, as well as economics and society. EcoDesign 2011 - the 7th International Symposium on Environmentally Conscious Design and Inverse Manufacturing - was successfully held in the Japanese old capital city of Kyoto, on November 30th – December 2nd, 2011. The subtitle of EcoDesign 2011 is to “design for value innovation towards sustainable society.” During this event, presenters discussed the way to achieve both drastic environmental consciousness and value innovation in order to realise a sustainable society.

Plastics And Sustainability

Author: Michael Tolinski
Publisher: John Wiley & Sons
ISBN: 1118217837
Size: 69.56 MB
Format: PDF, ePub
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Clearly lays out the issues related to plastics' effects on theenvironment, while also serving as a practical, non-academic guidefor making sustainability decisions about plastics recyclingand the newest bio-based plastics Company managers, product developers, policy makers,environmental researchers, and plastics industry engineers areunder increasing pressure to find ways of minimizing theenvironmental footprint of plastic products. This accessible bookis designed to help readers understand the life-cycle impacts ofvarious plastics, clarifying the technical research and practicalarguments to show when bio-based and recycled plastics might beuseful options for reducing the overall energy consumption,greenhouse gas emissions, and waste associated with traditionalplastics. Plastics and Sustainability compares traditional fossilfuel-based plastics with bio-based plastics in terms of properties,environmental impacts, and costs -- indicating what the mosteffective approaches could be for using recycled, biodegradable, orvarious bio-based materials. The book makes objective comparisonsbetween bioplastics and all commonly used plastics, focusing on howthey affect production economics, product requirements, andretailer and consumer needs. It incorporates research concerninglife-cycle assessment, production techniques, and commercialapplications, and presents "green" guidelines about product design,recycling, processing efficiency, and material selection. The bookalso reports on recent industry developments and commercial trendsin an effort to synthesize conclusions that are necessary forfinding the right balance between bio-based and fossil-fuel basedplastic products. Check out the author's blog at spanstyle="line-height: 115%; font-family: 'Calibri','sans-serif'; color: black; font-size: 11pt; mso-ascii-theme-font: minor-latin; mso-fareast-font-family: 'Times New Roman'; mso-hansi-theme-font: minor-latin; mso-bidi-font-family: 'Cordia New'; mso-bidi-theme-font: minor-bidi; mso-ansi-language: EN-US; mso-fareast-language: ZH-CN; mso-bidi-language: TH;"spanstyle="font-family: 'Times New Roman','serif';"http://www.plastech.biz/blog/span./span

Transforming Sustainability Strategy Into Action

Author: Beth Beloff
Publisher: John Wiley & Sons
ISBN: 0471755982
Size: 37.17 MB
Format: PDF
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"A highly informative and brilliant contribution to the growingsustainability literature." -Dr. Brian and Mary Nattrass Managing Partners of SustainabilityPartners and authors of The Natural Step for Business and Dancingwith the Tiger The goal of sustainable development, a recent focus in thecorporate world, is to "ensure a better quality of life foreveryone today and in generations to come." The challenge facingindustry leaders is how to reconcile economically competitivestrategies with environmentally sound and socially responsiblepractices. Transforming Sustainability Strategy into Action: The ChemicalIndustry presents proven practical techniques to help managers inthe chemical industry identify and assess options for improving thesustainability of their organizations, with a pragmatic emphasis onoperational aspects, decision support, and guidelines for measuringprogress. Employing a systematic approach and introducing globallyproven problem-solving and decision-making tools designed toprovoke questioning and creative thinking, the authors address someof the most challenging issues for the industrial worldtoday. The authors' combined expertise and extensive experience intranslating sustainability strategies from theory into action makethem uniquely qualified to deliver the kind of hands-on, responsivebusiness solutions that will give corporate leaders the competitiveedge in preparing for tomorrow's socially and environmentallyconscious marketplace.

Sustainable Engineering

Author: David T. Allen
Publisher: Prentice Hall
ISBN: 0132756587
Size: 72.95 MB
Format: PDF, Kindle
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Assessing Engineering Designs for Environmental, Economic, and Social Impact Engineers will play a central role in addressing one of the twenty-first century’s key challenges: the development of new technologies that address societal needs and wants within the constraints imposed by limited natural resources and the need to protect environmental systems. To create tomorrow’s sustainable products, engineers must carefully consider environmental, economic, and social factors in evaluating their designs. Fortunately, quantitative tools for incorporating sustainability concepts into engineering designs and performance metrics are now emerging. Sustainable Engineering introduces these tools and shows how to apply them. Building on widely accepted principles they first introduced in Green Engineering, David T. Allen and David R. Shonnard discuss key aspects of designing sustainable systems in any engineering discipline. Their powerful, unified approach integrates essential engineering and quantitative design skills, industry perspectives, and case studies, enabling engineering professionals, educators, and students to incorporate sustainability throughout their work. Coverage includes A concise review of the natural resource and environmental challenges engineers face when designing for sustainability Analysis and legislative frameworks for addressing environmental issues and sustainability Methods for identifying green and sustainable materials Principles for improving the sustainability of engineering designs Tools for evaluating sustainable designs and monetizing their benefits

Sustainable Process Engineering

Author: Andrzej Benedykt Koltuniewicz
Publisher: Walter de Gruyter GmbH & Co KG
ISBN: 3110308762
Size: 22.91 MB
Format: PDF, Mobi
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The vital need for alternative resources and reaction routes, environmentally friendly and economically feasible industrial chemical processes has become a ubiquitous reality. This very timely introductory text covers new materials, processes and industry sectors: nanotechnology, microreactors, membrane separations, hybrid processes, clean technologies, energy savings and safe production of energy, renewables and biotechnology. Some completely new processes for the solid-liquid systems are also discussed in detail, thus creating new opportunities of sustainable development not only in industrial practice.

Energy Resources

Author: Kenneth J. Skipka
Publisher: CRC Press
ISBN: 1466517417
Size: 17.23 MB
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The Energy Problem Energy Resources: Availability, Management, and Environmental Impacts identifies historical increases in demand and a continuing lack of viable management policies for regional and global energy problems. Considering the state and consumption of energy resources on a worldwide level, the authors outline and address three primary issues that they view as growing concerns: the exploitation of current forms of energy, the environmental consequences, and the social and economic ramifications involved. The initial chapters offer an overview of energy management, providing an introduction to energy, energy-related engineering principles, regulations, energy conservation, and sustainability. The book discusses all energy resource forms from fossil fuels to renewable resources. The authors introduce an energy matrix providing an analytical structure that quantitatively can be used to evaluate resource options and their impacts. The concluding chapters provide insight into the driving forces that have shaped energy policy to date and the uncertainties that face future policymakers. The book analyzes various aspects of energy management. It poses concerns and offers solutions, including a proposed approach for developing, organizing, and implementing a national energy plan for the U.S. A Template for Developing an Energy Policy Examines the issues involved with energy management Explores the best options for achieving energy independence Provides quantitative approaches to energy policy development Discusses specific structural and analytical approaches to solving energy management problems The book considers conservation and the development of new, less expensive energy forms, and the impact these can make in slowing growth in demand while fueling efficiency. It analyzes the availability of traditional energy resources and a method of quantifying their energy, economic, and environmental impacts to provide adequate, inexpensive, long-term energy supplies. It also examines the feasibility of solar power, wind, tidal, geothermal, nuclear, and other less traditional sources of energy.

Proceedings Of The 8th International Conference On Foundations Of Computer Aided Process Design

Author:
Publisher: Elsevier
ISBN: 0444634428
Size: 56.57 MB
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This volume collects together the presentations at the Eighth International Conference on Foundations of Computer-Aided Process Design, FOCAPD-2014, an event that brings together researchers, educators, and practitioners to identify new challenges and opportunities for process and product design. The chemical industry is currently entering a new phase of rapid evolution. The availability of low-cost feedstocks from natural gas is causing renewed investment in basic chemicals in the OECD, while societal pressures for sustainability and energy security continue to be key drivers in technology development and product selection. This dynamic environment creates opportunities to launch new products and processes and to demonstrate new methodologies for innovation, synthesis and design. FOCAPD-2014 fosters constructive interaction among thought leaders from academia, industry, and government and provides a showcase for the latest research in product and process design. Focuses exclusively on the fundamentals and applications of computer-aided design for the process industries. Provides a fully archival and indexed record of the FOCAPD14 conference Aligns the FOCAPD series with the ESCAPE and PSE series

Ecological Emergy Accounting For A Limited System General Principles And A Case Study Of Macao

Author: Kampeng Lei
Publisher: Springer Science & Business Media
ISBN: 3642451705
Size: 14.91 MB
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This book builds on the analyses of Eugene and Howard Odum and introduces the concept of systems ecology. Ecological emergy accounting represents a breakthrough because it allows researchers to integrate man-made capital and natural capital so that human and natural concerns can be addressed using a consistent system of units. This book develops an emergy accounting model that is suitable for describing urban systems, thereby providing a comprehensive picture of those systems. To make the theory concrete, the authors use China’s Macao Special Administrative Region as a case study, and compare the results for Macao with those of other urban ecosystems around the world in the fields of ecological economy, tourism, waste treatment, gambling industry, land reclamation and resource consumption etc. Dr. Kampeng Lei is an advisory senior technician at the Environmental Protection Bureau, Government of Macao, China; Shaoqi Zhou is a professor at the College of Environment and Energy, the South China University of Technology, and the Guizhou Academy of Sciences, China; Zhishi Wang is a professor at the Faculty of Science and Technology, the University of Macau, China.