Pinch Analysis And Process Integration

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Pinch Analysis and Process Integration

Author : Ian C. Kemp
Publisher : Elsevier
Page : 416 pages
File Size : 41,5 Mb
Release : 2011-04-01
Category : Technology & Engineering
ISBN : 9780080468266

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Pinch Analysis and Process Integration by Ian C. Kemp Pdf

Pinch analysis and related techniques are the key to design of inherently energy-efficient plants. This book shows engineers how to understand and optimize energy use in their processes, whether large or small. Energy savings go straight to the bottom line as increased profit, as well as reducing emissions. This is the key guide to process integration for both experienced and newly qualified engineers, as well as academics and students. It begins with an introduction to the main concepts of pinch analysis, the calculation of energy targets for a given process, the pinch temperature and the golden rules of pinch-based design to meet energy targets. The book shows how to extract the stream data necessary for a pinch analysis and describes the targeting process in depth. Other essential details include the design of heat exchanger networks, hot and cold utility systems, CHP (combined heat and power), refrigeration and optimization of system operating conditions. Many tips and techniques for practical application are covered, supported by several detailed case studies and other examples covering a wide range of industries, including buildings and other non-process situations. The only dedicated pinch analysis and process integration guide, fully revised and expanded supported by free downloadable energy targeting software The perfect guide and reference for chemical process, food and biochemical engineers, plant engineers and professionals concerned with energy optimisation, including building designers Covers the practical analysis of both new and existing systems, with ful details of industrial applications and case studies

Pinch Analysis and Process Integration

Author : Ian C. Kemp
Publisher : Butterworth Heinemann
Page : 396 pages
File Size : 52,7 Mb
Release : 2007
Category : Technology & Engineering
ISBN : 0750682604

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Pinch Analysis and Process Integration by Ian C. Kemp Pdf

Written by Ian Kemp, this is an original guide for professionals and students on understanding and using punch analysis and process integration.

Pinch Analysis for Energy and Carbon Footprint Reduction

Author : Ian C. Kemp,Jeng Shiun Lim
Publisher : Butterworth-Heinemann
Page : 566 pages
File Size : 45,6 Mb
Release : 2020-08-08
Category : Technology & Engineering
ISBN : 9780081025376

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Pinch Analysis for Energy and Carbon Footprint Reduction by Ian C. Kemp,Jeng Shiun Lim Pdf

Pinch Analysis for Energy and Carbon Footprint Reduction is the only dedicated pinch analysis and process integration guide, covering a breadth of material from foundational knowledge to in-depth processes. Readers are introduced to the main concepts of pinch analysis, the calculation of energy targets for a given process, the pinch temperature, and the golden rules of pinch-based design to meet energy targets. More advanced topics include the extraction of stream data necessary for a pinch analysis, the design of heat exchanger networks, hot and cold utility systems, combined heat and power (CHP), refrigeration, batch- and time-dependent situations, and optimization of system operating conditions, including distillation, evaporation, and solids drying. This new edition offers tips and techniques for practical applications, supported by several detailed case studies. Examples stem from a wide range of industries, including buildings and other non-process situations. This reference is a must-have guide for chemical process engineers, food and biochemical engineers, plant engineers, and professionals concerned with energy optimization, including building designers. Covers practical analysis of both new and existing processes Teaches readers to extract the stream data necessary for a pinch analysis and describes the targeting process in depth; includes a downloadable spreadsheet to calculate energy targets Demonstrates how to achieve the targets by heat recovery, utility system design, and process change Updated to include carbon footprint, water and hydrogen pinch, developments in industrial applications and software, site data reconciliation, additional case studies, and answers to selected exercises

Handbook of Process Integration (PI)

Author : Jiří Jaromír Klemeš
Publisher : Elsevier
Page : 1201 pages
File Size : 45,8 Mb
Release : 2013-07-31
Category : Technology & Engineering
ISBN : 9780857097255

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Handbook of Process Integration (PI) by Jiří Jaromír Klemeš Pdf

Since its first development in the 1970s, Process Integration (PI) has become an important methodology in achieving more energy efficient processes. This pioneering handbook brings together the leading scientists and researchers currently contributing to PI development, pooling their expertise and specialist knowledge to provide readers with a comprehensive and up-to-date guide to the latest PI research and applications. After an introduction to the principles of PI, the book reviews a wide range of process design and integration topics ranging from heat and utility systems to water, recycling, waste and hydrogen systems. The book considers Heat Integration, Mass Integration and Extended PI as well as a series of applications and case studies. Chapters address not just operating and capital costs but also equipment design and operability issues, through to buildings and supply chains. With its distinguished editor and international team of expert contributors, Handbook of Process Integration (PI) is a standard reference work for managers and researchers in all energy-intensive industries, as well as academics with an interest in them, including those designing and managing oil refineries, petrochemical and power plants, as well as paper/pulp, steel, waste, food and drink processors. This pioneering handbook provides a comprehensive and up-to-date guide to the latest process integration research and applications Reviews a wide range of process design and integration topics ranging from heat and utility systems to water, recycling, waste and hydrogen systems Chapters also address equipment design and operability issues, through to buildings and supply chains

Process Integration for Resource Conservation

Author : Dominic Foo
Publisher : CRC Press
Page : 606 pages
File Size : 44,6 Mb
Release : 2016-04-05
Category : Science
ISBN : 9781439860496

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Process Integration for Resource Conservation by Dominic Foo Pdf

To achieve environmental sustainability in industrial plants, resource conservation activities such as material recovery have begun incorporating process integration techniques for reusing and recycling water, utility gases, solvents, and solid waste. Process Integration for Resource Conservation presents state-of-the-art, cost-effective techniques

Process Intensification and Integration for Sustainable Design

Author : Dominic C. Y. Foo,Mahmoud M. El-Halwagi
Publisher : John Wiley & Sons
Page : 344 pages
File Size : 53,8 Mb
Release : 2020-12-01
Category : Technology & Engineering
ISBN : 9783527818723

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Process Intensification and Integration for Sustainable Design by Dominic C. Y. Foo,Mahmoud M. El-Halwagi Pdf

Presents comprehensive coverage of process intensification and integration for sustainable design, along with fundamental techniques and experiences from the industry Drawing from fundamental techniques and recent industrial experiences, this book discusses the many developments in process intensification and integration and focuses on increasing sustainability via several overarching topics such as Sustainable Manufacturing, Energy Saving Technologies, and Resource Conservation and Pollution Prevention Techniques. Process Intensification and Integration for Sustainable Design starts discussions on: shale gas as an option for the production of chemicals and challenges for process intensification; the design and techno-economic analysis of separation units to handle feedstock variability in shale gas treatment; RO-PRO desalination; and techno-economic and environmental assessment of ultrathin polysulfone membranes for oxygen-enriched combustion. Next, it looks at process intensification of membrane-based systems for water, energy, and environment applications; the design of internally heat-integrated distillation column (HIDiC); and graphical analysis and integration of heat exchanger networks with heat pumps. Decomposition and implementation of large-scale interplant heat integration is covered, as is the synthesis of combined heat and mass exchange networks (CHAMENs) with renewables. The book also covers optimization strategies for integrating and intensifying housing complexes; a sustainable biomass conversion process assessment; and more. Covers the many advances and changes in process intensification and integration Provides side-by-side discussions of fundamental techniques and recent industrial experiences to guide practitioners in their own processes Presents comprehensive coverage of topics relevant, among others, to the process industry, biorefineries, and plant energy management Offers insightful analysis and integration of reactor and heat exchanger network Looks at optimization of integrated water and multi-regenerator membrane systems involving multi-contaminants Process Intensification and Integration for Sustainable Design is an ideal book for process engineers, chemical engineers, engineering scientists, engineering consultants, and chemists.

Process Integration and Intensification

Author : Jirí Jaromír Klemeš,Petar Sabev Varbanov,Sharifah Rafidah Wan Wan Alwi,Zainuddin Abdul Manan
Publisher : Walter de Gruyter GmbH & Co KG
Page : 265 pages
File Size : 47,9 Mb
Release : 2014-05-26
Category : Technology & Engineering
ISBN : 9783110368246

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Process Integration and Intensification by Jirí Jaromír Klemeš,Petar Sabev Varbanov,Sharifah Rafidah Wan Wan Alwi,Zainuddin Abdul Manan Pdf

"The authors have provided all the elements required for complete understanding of the basic concepts in heat recovery and water minimization in chemical and related processes, and followed these with carefully selected and developed problems and solutions in order to ensure that the concepts delivered can be applied." Simon Perry, The University of Manchester. This graduate textbook covers fundamentals of the key areas of Process Integration and Intensification for intra-process heat recovery (Heat Integration), inter-process heat recovery and cogeneration (Total Site) as well as water conservation. Step by step working sessions are illustrated for deeper understanding of the taught materials. The textbook also provides a wealth of pointers as well as further information for readers to acquire more extensive materials on the diverse industrial applications and the latest development trends in Process Integration and Intensification. It is addressed to graduate students as well as professionals to help the effectively application of Process Integration and Intensification in plant design and operation.

Heat Exchanger Network Synthesis

Author : Uday V. Shenoy
Publisher : Gulf Professional Publishing
Page : 666 pages
File Size : 44,8 Mb
Release : 1995
Category : Science
ISBN : 0884153916

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Heat Exchanger Network Synthesis by Uday V. Shenoy Pdf

Heat Exchanger Network Synthesis provides engineers, designers, and industrial practitioners with a how-to manual for understanding the methodology for conserving energy through process integration.

A User Guide on Process Integration for the Efficient Use of Energy

Author : Bodo Linnhoff,Institution of Chemical Engineers (Great Britain)
Publisher : Unknown
Page : 268 pages
File Size : 47,6 Mb
Release : 1982
Category : Technology & Engineering
ISBN : UVA:X000920789

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A User Guide on Process Integration for the Efficient Use of Energy by Bodo Linnhoff,Institution of Chemical Engineers (Great Britain) Pdf

Developments in the Design of Thermal Systems

Author : Robert F. Boehm
Publisher : Cambridge University Press
Page : 308 pages
File Size : 52,7 Mb
Release : 2005-09-15
Category : Technology & Engineering
ISBN : 0521020050

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Developments in the Design of Thermal Systems by Robert F. Boehm Pdf

As the cost and complexity of designing thermal systems have increased, the need to understand and improve the design process has also grown. This book describes recent progress. The book begins with a brief history and outline of developments in thermal system design. Chapters then discuss computer design tools for the power and chemical industries, predicting physical properties with computational tools, "pinch analysis" to improve thermal efficiency, applications of the energy concept, thermoeconomics, and the potential for artificial intelligence and expert systems in the design of thermal systems. With chapters written by internationally recognized authorities, the book offers a state-of-the-art review for both researchers and practitioners in mechanical, aerospace, chemical, and power engineering.

Chemical Process Design and Integration

Author : Robin Smith
Publisher : John Wiley & Sons
Page : 920 pages
File Size : 45,7 Mb
Release : 2016-08-02
Category : Technology & Engineering
ISBN : 9781118699096

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Chemical Process Design and Integration by Robin Smith Pdf

Written by a highly regarded author with industrial and academic experience, this new edition of an established bestselling book provides practical guidance for students, researchers, and those in chemical engineering. The book includes a new section on sustainable energy, with sections on carbon capture and sequestration, as a result of increasing environmental awareness; and a companion website that includes problems, worked solutions, and Excel spreadsheets to enable students to carry out complex calculations.

Chemical Process Design and Simulation: Aspen Plus and Aspen Hysys Applications

Author : Juma Haydary
Publisher : John Wiley & Sons
Page : 603 pages
File Size : 47,9 Mb
Release : 2019-01-16
Category : Technology & Engineering
ISBN : 9781119311430

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Chemical Process Design and Simulation: Aspen Plus and Aspen Hysys Applications by Juma Haydary Pdf

A comprehensive and example oriented text for the study of chemical process design and simulation Chemical Process Design and Simulation is an accessible guide that offers information on the most important principles of chemical engineering design and includes illustrative examples of their application that uses simulation software. A comprehensive and practical resource, the text uses both Aspen Plus and Aspen Hysys simulation software. The author describes the basic methodologies for computer aided design and offers a description of the basic steps of process simulation in Aspen Plus and Aspen Hysys. The text reviews the design and simulation of individual simple unit operations that includes a mathematical model of each unit operation such as reactors, separators, and heat exchangers. The author also explores the design of new plants and simulation of existing plants where conventional chemicals and material mixtures with measurable compositions are used. In addition, to aid in comprehension, solutions to examples of real problems are included. The final section covers plant design and simulation of processes using nonconventional components. This important resource: Includes information on the application of both the Aspen Plus and Aspen Hysys software that enables a comparison of the two software systems Combines the basic theoretical principles of chemical process and design with real-world examples Covers both processes with conventional organic chemicals and processes with more complex materials such as solids, oil blends, polymers and electrolytes Presents examples that are solved using a new version of Aspen software, ASPEN One 9 Written for students and academics in the field of process design, Chemical Process Design and Simulation is a practical and accessible guide to the chemical process design and simulation using proven software.

Heat Pumps in Chemical Process Industry

Author : Anton A. Kiss,Carlos A. Infante Ferreira
Publisher : CRC Press
Page : 715 pages
File Size : 44,8 Mb
Release : 2016-10-14
Category : Science
ISBN : 9781498719032

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Heat Pumps in Chemical Process Industry by Anton A. Kiss,Carlos A. Infante Ferreira Pdf

As the chemical process industry is among the most energy demanding sectors, chemical engineers are endeavoring to contribute towards sustainable future. Due to the limitation of fossil fuels, the need for energy independence, as well as the environmental problem of the greenhouse gas effect, there is a large increasing interest in the research and development of chemical processes that require less capital investment and reduced operating costs and lead to high eco-efficiency. The use of heat pumps is a hot topic due to many advantages, such as low energy requirements as well as an increasing number of industrial applications. Therefore, in the current book, authors are focusing on use of heat pumps in the chemical industry, providing an overview of heat pump technology as applied in the chemical process industry, covering both theoretical and practical aspects: working principle, applied thermodynamics, theoretical background, numerical examples and case studies, as well as practical applications. The worked-out examples have been included to instruct students, engineers and process designers about how to design various heat pumps used in the industry. Reader friendly resources namely relevant equations, diagrams, figures and references that reflect the current and upcoming heat pump technologies, will be of great help to all readers from the chemical and petrochemical industry, biorefineries and other related areas.

Sustainable Design Through Process Integration

Author : Mahmoud M. El-Halwagi
Publisher : Butterworth-Heinemann
Page : 618 pages
File Size : 43,5 Mb
Release : 2017-08-08
Category : Technology & Engineering
ISBN : 9780128098240

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Sustainable Design Through Process Integration by Mahmoud M. El-Halwagi Pdf

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 in 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. 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 and improvement approaches and techniques including graphical, algebraic, and mathematical methods Covers topics and applications that include profitability enhancement, mass and energy conservation, synthesis of innovative processes, retrofitting of existing systems, design and assessment of water, energy, and water-energy-nexus systems, and reconciliation of various sustainability objectives

Energy Optimization in Process Systems

Author : Stanislaw Sieniutycz,Jacek Jezowski
Publisher : Elsevier
Page : 768 pages
File Size : 40,8 Mb
Release : 2009-05-06
Category : Science
ISBN : 008091442X

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Energy Optimization in Process Systems by Stanislaw Sieniutycz,Jacek Jezowski Pdf

Despite the vast research on energy optimization and process integration, there has to date been no synthesis linking these together. This book fills the gap, presenting optimization and integration in energy and process engineering. The content is based on the current literature and includes novel approaches developed by the authors. Various thermal and chemical systems (heat and mass exchangers, thermal and water networks, energy converters, recovery units, solar collectors, and separators) are considered. Thermodynamics, kinetics and economics are used to formulate and solve problems with constraints on process rates, equipment size, environmental parameters, and costs. Comprehensive coverage of dynamic optimization of energy conversion systems and separation units is provided along with suitable computational algorithms for deterministic and stochastic optimization approaches based on: nonlinear programming, dynamic programming, variational calculus, Hamilton-Jacobi-Bellman theory, Pontryagin's maximum principles, and special methods of process integration. Integration of heat energy and process water within a total site is shown to be a significant factor reducing production costs, in particular costs of utilities for the chemical industry. This integration involves systematic design and optimization of heat exchangers and water networks (HEN and WN). After presenting basic, insight-based Pinch Technology, systematic, optimization-based sequential and simultaneous approaches to design HEN and WN are described. Special consideration is given to the HEN design problem targeting stage, in view of its importance at various levels of system design. Selected, advanced methods for HEN synthesis and retrofit are presented. For WN design a novel approach based on stochastic optimization is described that accounts for both grassroot and revamp design scenarios. Presents a unique synthesis of energy optimization and process integration that applies scientific information from thermodynamics, kinetics, and systems theory Discusses engineering applications including power generation, resource upgrading, radiation conversion and chemical transformation, in static and dynamic systems Clarifies how to identify thermal and chemical constraints and incorporate them into optimization models and solutions