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Information Technologies in Environmental Engineering ; ITEE 2007 - 3rd International ICSC Symposium

Potentially dangerous environmental changes are happening in the atm- phere, oceans, animal habitats and places where hazardous materials are used, or have been discarded without adequate environmental protections. These increasing problems that also affect human health demand for int- disciplinary approaches where engineers, natural scientists, economists and computer scientists work together. This book publishes the results of the ITEE 2007 conference where information about the topics above has been presented and discussed among environmental engineers, computer scientists and economists.

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Greening the Industrial Facility : Perspectives, Approaches, and Tools

This book fills a critical gap as a textbook and reference book on the comprehensive environmental impacts of industrial organizations. It is intended for both upper-level undergraduate and beginning graduate students in environmental studies or engineering, and, more broadly, for practicing managers and engineers seeking to improve industrial processes. Nineteen chapters, each focusing on an industrial sector, from resource extraction through fabrication and manufacturing to recycling, evaluate the sector’s inherent "potential to pollute" by providing an overview of typical sector operations and their environmental implications. Beyond outlining and providing frameworks for assessing industrial facilities’ contemporary interactions with the environment (energy and water use, material throughput and hazard, and pollution potential), the book provides forward-looking analyses concerning how new technologies and practices can transform environmentally degrading effects of industry. It also addresses how managers can navigate these changes and move their industrial organizations towards environmental sustainability over the long term.

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Fundamentals of Integrated Design for Sustainable Building

Introduces the technologies and processes of sustainable design and shows how to incorporate sustainable concepts at every design stage. This comprehensive primer takes an active learning approach that keeps students engaged. Includes: Expansive knowledge—from history and philosophy to technology and practice Fully updated international codes, like the CAL code, and current legislations Up-to-date global practices, such as the tools used for Life-Cycle Assessment Thorough coverage of critical issues such as climate change, resiliency, health, and net zero energy building Extensive design problems, research exercise, study questions, team projects, and discussion questions that get students truly involved with the material

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Environmentally-Friendly Product Development: Methods and Tools

Presents a survey of eco-friendly product design. This work is aimed at researchers and academics in design engineering and practitioners and managers in the industry

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Design for Environmental Sustainability

Design for Environmental Sustainability is a technical and operative contribution to the United Nations "Decade on Education for Sustainable Development" (2005-2014), aiding the development of a new generation of designers, responsible and able in the task of designing environmentally sustainable products.

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Ambiguities in Decision-oriented Life Cycle Inventories: The Role of Mental Models and Values

Shows for the first time how mental models and values influence this attribution in the life cycle inventory step of LCA. One of the key findings is that the different management rules for a sustainable use of materials must be taken into account for the attribution of material and energy flows to a product. Otherwise, improvement options recommended by an LCA might turn out to even worsen the environmental situation if reassessed from a meta-perspective. As a consequence of this book, the claim of unambiguitiy (‘objectivity’) of the life cycle inventory must be abandoned. A group-model building process for LCA is developed that allows one to grasp the decision makers' mental models and values in the inventory analysis on a case- and situation-specific basis. Only by this, LCA results will become relevant in a decision-making process. Two case studies on the modelling of recycling and other end-of-life options of aluminium windows and beech wood railway sleepers in LCA complement the methodological part.

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