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As the cleanest source of fossil energy with the most advantageous
CO2 footprint, natural gas continues to increase its share in the
global energy market. This book provides state-of-the-art
contributions in the area of gas processing. Special emphasis is
given to Liquified Natural Gas (LNG); the book also covers the
following gas processing applications in parallel sessions:
With growing global competition, the process industries must spare
no effort in insuring continuous process improvement in terms of
This timely book provides authoritative, comprehensive, and easy-to-follow coverage of the fundamental concepts and practical techniques on the use of process integration to maximize the efficiency and sustainability of industrial processes. Over the past three decades, significant advances have been made in treating, designing, and operating chemical processes as integrated systems. Whether you are a process engineer, an industrial decision maker, or a researcher, this book will be an indispensable resource tool for systematically enhancing process performance and developing novel and sustainable process designs. The book is also ideal for use as a text in an upper level undergraduate or an introductory graduate course on process design and sustainability. This ground breaking reference enhances and reconciles various process and sustainability objectives, such as cost effectiveness, yield improvement, energy efficiency, and pollution prevention. The detailed tools and applications within are written by one of the world s foremost process integration and design experts and will save you time and money. Key features: Allows the reader to methodically develop rigorous targets that benchmark the performance of industrial processes then develop cost-effective implementations. Contains state-of-the-art process integration approaches and applications including graphical, algebraic, and mathematical techniques Covers applications that include process economics, targeting for conservation of mass and energy, synthesis of innovative processes, retrofitting of existing systems, design and assessment of renewable energy systems, and in-process pollution prevention. Presents fundamentals and step-by-step procedures that can be applied to the design and optimization of new processes as well the retrofitting and operation of existing processes Explains how pivotal sustainability issues can holistically and methodically be addressed and reconciledIncludes numerous examples and case studies on a broad array of industrial processes and sustainable designs About the author Dr Mahmoud El-Halwagi is a professor and holder of the McFerrin
Professorship at the Artie McFerrin Department of Chemical
Engineering, Texas A&M University. He is internationally
recognized for pioneering contributions in the principles and
applications of process integration and sustainable design. Dr
El-Halwagi has served as a consultant to a wide variety of
processing industries. He is the recipient of prestigious research
and educational awards including the American Institute of Chemical
Engineers Sustainable Engineering forum (AIChE SEF) Research
Excellence Award, the Lockheed Martin Excellence in Engineering
Teaching Award, The Fluor Distinguished Teaching Award, and the US
National Science Foundation s National Young Investigator
Award. - Contains state-of-the-art process integration approaches and applications including graphical, algebraic, and mathematical techniques - Covers applications that include process economics, targeting for conservation of mass and energy, synthesis of innovative processes, retrofitting of existing systems, design and assessment of renewable energy systems, and in-process pollution prevention. - Presents fundamentals and step-by-step procedures that can be applied to the design and optimization of new processes as well the retrofitting and operation of existing processes, as well as including numerous examples and case studies for a broad array of industrial systems and processes"
The environmental impact of industrial waste is one of the most
serious challenges facing the chemical process industries. From a
focus on end-of-pipe treatment in the 1970s, chemical manufacturers
have increasinglyimplemented pollution prevention policies in which
pollutants are mitigated at the source or separated and recovered
and then reused or sold.
Sustainable Design through Process Integration: Fundamentals and Applications to Industrial Pollution Prevention, Resource Conservation, and Profitability Enhancement, Second Edition, is an important textbook that provides authoritative, comprehensive, and easy-to-follow coverage of the fundamental concepts and practical techniques on the use of process integration to maximize the efficiency and sustainability of industrial processes. The book is ideal for adoption in process design and sustainability courses. It is also a valuable guidebook to process, chemical, and environmental engineers who need to improve the design, operation, performance, and sustainability of industrial plants. The book covers pressing and high growth topics, including benchmarking process performance, identifying root causes of problems and opportunities for improvement, designing integrated solutions, enhancing profitability, conserving natural resources, and preventing pollution. Written by one of the world's foremost authorities on integrated process design and sustainability, the new edition contains new chapters and updated materials on various aspects of process integration and sustainable design. The new edition is also packed with numerous new examples and industrial applications.
Integrated Biorefineries: Design, Analysis, and Optimization
examines how to create a competitive edge in biorefinery innovation
through integration into existing processes and infrastructure.
Leading experts from around the world working in design, synthesis,
and optimization of integrated biorefineries present the various
aspects of this complex process, capturing the state of the art in
the advancing bioeconomy. The book defines an integrated
biorefinery as a processing facility that transforms biomass into
value-added products from biofuels and biochemicals to food and
pharmaceuticals. The chapters cover biorefinery product and process
design, supply chains, process analysis, feedstocks, technologies,
and policy and environmental analysis. They focus on
second-generation feedstocks, including forestry resources, energy
crops, agricultural residues, oils, and various waste
materials.
The International Conference on the State of the Art on Biogas Technology, Transfer and Diffusion was held in Cairo, Egypt, from 17 to 24 November 1984. The Conference was organized by the Egyptian Academy of Scientific Research and Technology (ASR T), the Egyptian National Research Centre (NRC), the Bioenergy Systems and Technology project (BST) of the US Agency for International Development (US/AID) Office of Energy, and the National Academy of Sciences (NAS). A number of international organizations and agencies co-sponsored the Conference. More than 100 participants from 40 countries attended. The purpose of the Conference was to assess the viability of biogas technology (BGT) and propose future courses of action for exploiting BGT prospects to the fullest extent. The Conference emphasized a balanced coverage of technical, environ mental, social, economic and organizational aspects relevant to biogas systems design, operation and diffusion. It was organized to incorporate experiences that are pertinent, for the most part, to developing countries. In addition to the wide spectrum of presentations and country programs, structured and non-structured discussions among the participants were strongly encouraged in thematic sessions at round-table discussions, and through personal contacts during poster sessions and field trips. It was clear from the enthusiastic response of most participants that the Conference, in large measure, succeeded in fulfilling its mission. Although draft papers were distributed to all participants, it was felt that the results obtained were worthy of organized and refined documentation. And this is precisely what this book intends to do.
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