Optimization of Chemical Plant Capacity

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ISBN 13 :
Total Pages : 1104 pages
Book Rating : 4.:/5 (17 download)

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Book Synopsis Optimization of Chemical Plant Capacity by : Folarin O. Awokoya

Download or read book Optimization of Chemical Plant Capacity written by Folarin O. Awokoya and published by . This book was released on 1983 with total page 1104 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Synthesis, Design, and Resource Optimization in Batch Chemical Plants

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Publisher : CRC Press
ISBN 13 : 1482252422
Total Pages : 450 pages
Book Rating : 4.4/5 (822 download)

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Book Synopsis Synthesis, Design, and Resource Optimization in Batch Chemical Plants by : Thokozani Majozi

Download or read book Synthesis, Design, and Resource Optimization in Batch Chemical Plants written by Thokozani Majozi and published by CRC Press. This book was released on 2015-03-04 with total page 450 pages. Available in PDF, EPUB and Kindle. Book excerpt: The manner in which time is captured forms the foundation for synthesis, design, and optimization in batch chemical plants. However, there are still serious challenges with handling time in batch plants. Most techniques tend to assume either a fixed time dimension or adopt time average models to tame the time dimension, thereby simplifying the resu

Profit Maximization Techniques for Operating Chemical Plants

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Publisher : John Wiley & Sons
ISBN 13 : 1119532159
Total Pages : 411 pages
Book Rating : 4.1/5 (195 download)

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Book Synopsis Profit Maximization Techniques for Operating Chemical Plants by : Sandip K. Lahiri

Download or read book Profit Maximization Techniques for Operating Chemical Plants written by Sandip K. Lahiri and published by John Wiley & Sons. This book was released on 2020-07-13 with total page 411 pages. Available in PDF, EPUB and Kindle. Book excerpt: A systematic approach to profit optimization utilizing strategic solutions and methodologies for the chemical process industry In the ongoing battle to reduce the cost of production and increase profit margin within the chemical process industry, leaders are searching for new ways to deploy profit optimization strategies. Profit Maximization Techniques For Operating Chemical Plants defines strategic planning and implementation techniques for managers, senior executives, and technical service consultants to help increase profit margins. The book provides in-depth insight and practical tools to help readers find new and unique opportunities to implement profit optimization strategies. From identifying where the large profit improvement projects are to increasing plant capacity and pushing plant operations towards multiple constraints while maintaining continuous improvements—there is a plethora of information to help keep plant operations on budget. The book also includes information on: ● Take away methods and techniques for identifying and exploiting potential areas to improve profit within the plant ● Focus on latest Artificial Intelligence based modeling, knowledge discovery and optimization strategies to maximize profit in running plant. ● Describes procedure to develop advance process monitoring and fault diagnosis in running plant ● Thoughts on engineering design , best practices and monitoring to sustain profit improvements ● Step-by-step guides to identifying, building, and deploying improvement applications For leaders and technologists in the industry who want to maximize profit margins, this text provides basic concepts, guidelines, and step-by-step guides specifically for the chemical plant sector.

Optimization in Industry

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Publisher : Routledge
ISBN 13 : 1351501399
Total Pages : 293 pages
Book Rating : 4.3/5 (515 download)

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Book Synopsis Optimization in Industry by : T.A.J. Nicholson

Download or read book Optimization in Industry written by T.A.J. Nicholson and published by Routledge. This book was released on 2017-09-05 with total page 293 pages. Available in PDF, EPUB and Kindle. Book excerpt: The origin of any industrial optimization study lies in the theory that some improvement can be made in a controllable system. The possibility for improvements may arise in any context, for example, in the control of a chemical plant, the organization of production to meet delivery dates, the design of rubber compounds, in traffic signal settings, and so on. In this volume, T. A. J. Nicholson deals with applications of the industrial optimization techniques demonstrated in the first volume of this two-part project, Optimization in Industry: Optimization Techniques.Applications are classified by their main functional areas in industrial planning, design, and control. The fields covered are machine sequencing, stock control and scheduling, plant renewal, distribution, financial problems, and chemical process control and design. These last two, in particular, are subjects often overlooked in operations research curricula. In each field the place and status of optimization techniques is first described and then a wide range of realistic case studies and examples are reviewed, many of them international. The problems given in this volume are primarily concerned with formulation not with solution; the task is to formulate the problems to be solved by one or more of the methods described in volume one.By connecting the optimization techniques with their applications, the gap between the people devising the methods and the people who actually need to use them is bridged. As with the first volume, this text is also supported by new exercises and model answers making this book important as an introduction to the application of optimization techniques for students as well as a reference work for the practitioner.

Logistic Optimization of Chemical Production Processes

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Publisher : John Wiley & Sons
ISBN 13 : 3527622780
Total Pages : 298 pages
Book Rating : 4.5/5 (276 download)

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Book Synopsis Logistic Optimization of Chemical Production Processes by : Sebastian Engell

Download or read book Logistic Optimization of Chemical Production Processes written by Sebastian Engell and published by John Wiley & Sons. This book was released on 2008-09-08 with total page 298 pages. Available in PDF, EPUB and Kindle. Book excerpt: In this first book dedicated to the logistics of chemical plants and production processes, authors from academia and industry -- such as Bayer, Degussa, Merck -- provide an overview of the field, incorporating the knowledge and experience gathered over the last 10 years. In so doing, they describe the latest ideas on efficient design, illustrating when to produce which part of the equipment and with which resources, so as to optimize chemical plants for high capacity and flexibility. This book gives an overview of the state-of-the-art of the whole logistic chain of chemical production processes. Alongside the fundamentals, tools and algorithms, and integration issues, the book features five significant industrial case studies.

Full Scale Plant Optimization in Chemical Engineering

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Publisher : John Wiley & Sons
ISBN 13 : 3527837280
Total Pages : 276 pages
Book Rating : 4.5/5 (278 download)

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Book Synopsis Full Scale Plant Optimization in Chemical Engineering by : Zivorad R. Lazic

Download or read book Full Scale Plant Optimization in Chemical Engineering written by Zivorad R. Lazic and published by John Wiley & Sons. This book was released on 2022-05-27 with total page 276 pages. Available in PDF, EPUB and Kindle. Book excerpt: Full Scale Plant Optimization in Chemical Engineering Highlights the basic principles and applications of the primary three methods in plant and process optimization for responsible operators and engineers. Chemical engineers are a vital part of the creation of any process development—lab-scale and pilot-scale—for any plant. In fact, they are the lynchpin of later efforts to scale-up and full-scale plant process improvement. As these engineers approach a new project, there are three generally recognized methodologies that are applicable in industry generally: Design of Experiments (DOE), Evolutionary Operations (EVOP), and Data Mining Using Neural Networks (DM). In Full Scale Plant Optimization in Chemical Engineering, experienced chemical engineer Živorad R. Laziċ offers an in-depth analysis and comparison of these three methods in full-scale plant optimization applications. The book is designed to provide the basic principles and necessary information for complete understanding of these three methods (DOE, EVOP, and DM). The application of each method is fully described. Full Scale Plant Optimization in Chemical Engineering readers will also find: A thorough discussion of the advantages, disadvantages and applications for the five different EVOP methods (BEVOP, ROVOP, REVOP, QSEVOP & SEVOP) with examples and simulations An overview of EVOP tools that responsible operators and engineers utilize in deciding which EVOP method is the most appropriate for the certain type of the process Particular attention is given to the simple but powerful technique Evolutionary Operation or EVOP, which provides the experimental tools for the full scale plant optimization Full Scale Plant Optimization in Chemical Engineering is a useful reference for all chemists in industry, chemical engineers, pharmaceutical chemists, and process engineers.

Impact of Advances in Computing and Communications Technologies on Chemical Science and Technology

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Publisher : National Academies Press
ISBN 13 : 0309184029
Total Pages : 235 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Impact of Advances in Computing and Communications Technologies on Chemical Science and Technology by : National Research Council

Download or read book Impact of Advances in Computing and Communications Technologies on Chemical Science and Technology written by National Research Council and published by National Academies Press. This book was released on 1999-08-31 with total page 235 pages. Available in PDF, EPUB and Kindle. Book excerpt: The Chemical Sciences Roundtable provides a forum for discussing chemically related issues affecting government, industry and government. The goal is to strengthen the chemical sciences by foster communication among all the important stakeholders. At a recent Roundtable meeting, information technology was identified as an issue of increasing importance to all sectors of the chemical enterprise. This book is the result of a workshop convened to explore this topic.

Chemical Engineering Design

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Publisher : Elsevier
ISBN 13 : 0080966608
Total Pages : 1321 pages
Book Rating : 4.0/5 (89 download)

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Book Synopsis Chemical Engineering Design by : Gavin Towler

Download or read book Chemical Engineering Design written by Gavin Towler and published by Elsevier. This book was released on 2012-01-25 with total page 1321 pages. Available in PDF, EPUB and Kindle. Book excerpt: Chemical Engineering Design, Second Edition, deals with the application of chemical engineering principles to the design of chemical processes and equipment. Revised throughout, this edition has been specifically developed for the U.S. market. It provides the latest US codes and standards, including API, ASME and ISA design codes and ANSI standards. It contains new discussions of conceptual plant design, flowsheet development, and revamp design; extended coverage of capital cost estimation, process costing, and economics; and new chapters on equipment selection, reactor design, and solids handling processes. A rigorous pedagogy assists learning, with detailed worked examples, end of chapter exercises, plus supporting data, and Excel spreadsheet calculations, plus over 150 Patent References for downloading from the companion website. Extensive instructor resources, including 1170 lecture slides and a fully worked solutions manual are available to adopting instructors. This text is designed for chemical and biochemical engineering students (senior undergraduate year, plus appropriate for capstone design courses where taken, plus graduates) and lecturers/tutors, and professionals in industry (chemical process, biochemical, pharmaceutical, petrochemical sectors). New to this edition: Revised organization into Part I: Process Design, and Part II: Plant Design. The broad themes of Part I are flowsheet development, economic analysis, safety and environmental impact and optimization. Part II contains chapters on equipment design and selection that can be used as supplements to a lecture course or as essential references for students or practicing engineers working on design projects. New discussion of conceptual plant design, flowsheet development and revamp design Significantly increased coverage of capital cost estimation, process costing and economics New chapters on equipment selection, reactor design and solids handling processes New sections on fermentation, adsorption, membrane separations, ion exchange and chromatography Increased coverage of batch processing, food, pharmaceutical and biological processes All equipment chapters in Part II revised and updated with current information Updated throughout for latest US codes and standards, including API, ASME and ISA design codes and ANSI standards Additional worked examples and homework problems The most complete and up to date coverage of equipment selection 108 realistic commercial design projects from diverse industries A rigorous pedagogy assists learning, with detailed worked examples, end of chapter exercises, plus supporting data and Excel spreadsheet calculations plus over 150 Patent References, for downloading from the companion website Extensive instructor resources: 1170 lecture slides plus fully worked solutions manual available to adopting instructors

Capacity Optimization of Chemical-synthesis Plants for the Production of Bulk Drugs

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Publisher :
ISBN 13 :
Total Pages : 268 pages
Book Rating : 4.:/5 (46 download)

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Book Synopsis Capacity Optimization of Chemical-synthesis Plants for the Production of Bulk Drugs by : Gilberto Castro

Download or read book Capacity Optimization of Chemical-synthesis Plants for the Production of Bulk Drugs written by Gilberto Castro and published by . This book was released on 1998 with total page 268 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Optimization of Chemical Processes

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Publisher :
ISBN 13 : 9780071189774
Total Pages : 651 pages
Book Rating : 4.1/5 (897 download)

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Book Synopsis Optimization of Chemical Processes by : Thomas F. Edgar

Download or read book Optimization of Chemical Processes written by Thomas F. Edgar and published by . This book was released on 2001 with total page 651 pages. Available in PDF, EPUB and Kindle. Book excerpt: This book is an update of a successful first edition that has been extremely well received by the experts in the chemical process industries. The authors explain both the theory and the practice of optimization, with the focus on the techniques and software that offer the most potential for success and give reliable results. Applications case studies in optimization are presented with new examples taken from the areas of microelectronics processing and molecular modeling. Ample references are cited for those who wish to explore the theoretical concepts in more detail.

Optimization of Chemical Processes

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Publisher : McGraw-Hill Science, Engineering & Mathematics
ISBN 13 :
Total Pages : 680 pages
Book Rating : 4.3/5 (91 download)

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Book Synopsis Optimization of Chemical Processes by : Thomas F. Edgar

Download or read book Optimization of Chemical Processes written by Thomas F. Edgar and published by McGraw-Hill Science, Engineering & Mathematics. This book was released on 2001 with total page 680 pages. Available in PDF, EPUB and Kindle. Book excerpt: * Written by a recognized authority in the area of optimization software, this text offers an array of information on the latest advances in optimization techniques, explaining both theory and practice * Specializes in non-linear programming, mixed-integer programming, and global optimization * Ample references explore theoretical concepts in more detail.

The Optimal Design Capacity of Chemical Plant to Meet Time-varying Demands in a Competitive Market

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Publisher :
ISBN 13 :
Total Pages : 152 pages
Book Rating : 4.:/5 (16 download)

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Book Synopsis The Optimal Design Capacity of Chemical Plant to Meet Time-varying Demands in a Competitive Market by : Hon-Ming Kuo

Download or read book The Optimal Design Capacity of Chemical Plant to Meet Time-varying Demands in a Competitive Market written by Hon-Ming Kuo and published by . This book was released on 1983 with total page 152 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Optimization in Chemical Engineering

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Publisher : Cambridge University Press
ISBN 13 : 1107091233
Total Pages : 383 pages
Book Rating : 4.1/5 (7 download)

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Book Synopsis Optimization in Chemical Engineering by : Suman Dutta

Download or read book Optimization in Chemical Engineering written by Suman Dutta and published by Cambridge University Press. This book was released on 2016-03-11 with total page 383 pages. Available in PDF, EPUB and Kindle. Book excerpt: In this book, optimization of chemical processes is performed using both classical and advanced algorithms.

Optimization In Industry

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Publisher : Transaction Publishers
ISBN 13 : 0202367614
Total Pages : 268 pages
Book Rating : 4.2/5 (23 download)

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Book Synopsis Optimization In Industry by : T. a. J. Nicholson

Download or read book Optimization In Industry written by T. a. J. Nicholson and published by Transaction Publishers. This book was released on with total page 268 pages. Available in PDF, EPUB and Kindle. Book excerpt: The origin of any industrial optimization study lies in the theory that some improvement can be made in a controllable system. The possibility for improvements may arise in any context, for example, in the control of a chemical plant, the organization of production to meet delivery dates, the design of rubber compounds, in traffic signal settings, and so on. In this volume, T. A. J. Nicholson deals with applications of the industrial optimization techniques demonstrated in the first volume of this two-part project, Optimization in Industry: Optimization Techniques. Applications are classified by their main functional areas in industrial planning, design, and control. The fields covered are machine sequencing, stock control and scheduling, plant renewal, distribution, financial problems, and chemical process control and design. These last two, in particular, are subjects often overlooked in operations research curricula. In each field the place and status of optimization techniques is first described and then a wide range of realistic case studies and examples are reviewed, many of them international. The problems given in this volume are primarily concerned with formulation not with solution; the task is to formulate the problems to be solved by one or more of the methods described in volume one. By connecting the optimization techniques with their applications, the gap between the people devising the methods and the people who actually need to use them is bridged. As with the first volume, this text is also supported by new exercises and model answers making this book important as an introduction to the application of optimization techniques for students as well as a reference work for the practitioner. T. A. J. Nicholson is senior lecturer at the London School of Business Studies with research and consulting interests in industrial control systems.

Optimization of Biomass-to-Liquid Plant Setups and Capacity Using Nonlinear Programming

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Publisher : Cuvillier Verlag
ISBN 13 : 3736938993
Total Pages : 194 pages
Book Rating : 4.7/5 (369 download)

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Book Synopsis Optimization of Biomass-to-Liquid Plant Setups and Capacity Using Nonlinear Programming by : Lars-Peter Lauven

Download or read book Optimization of Biomass-to-Liquid Plant Setups and Capacity Using Nonlinear Programming written by Lars-Peter Lauven and published by Cuvillier Verlag. This book was released on 2011-10-12 with total page 194 pages. Available in PDF, EPUB and Kindle. Book excerpt: Potentially rising oil prices caused by an increasing relative scarcity of mineral oil have farreaching consequences for the transportation sector, the chemical industry and mineral oil companies in particular. As national laws in Germany require biofuels to be mixed into conventional fuel to an increasing extend (BioKraftQuG 2009), mineral oil companies need to identify economically competitive as well as technically feasible biofuel production processes to meet these requirements. A first generation of biofuels was introduced on a large scale but has been criticized for competing with the agricultural production of food and for yielding relatively modest quantities of fuel per hectare of agricultural land. For this reason, 2nd generation biofuel production pathways such as Biomass-to-Liquid (BtL), which convert lignocellulosic material into liquid hydrocarbons using Fischer-Tropsch synthesis, have been developed. While 2nd generation biofuels are superior to their 1st generation counterparts from a yield-per-hectare-perspective and cause less competition for agricultural soils, a significant disadvantage is the considerable investment required for the construction of Biomass-to-Liquid plants. The corresponding investment-related costs affect the competitiveness of 2nd generation biofuels negatively, leaving it in doubt whether BtL fuels could become an economically viable option. A frequently discussed way to improve specific investment-related costs is to increase plant sizes to improve economies of scale. While this improvement has been realized in several conventional kinds of plants like mineral oil refineries, power plants and Coal-to-Liquid plants, the application on BtL plants is complicated by the fact that larger plants are associated with higher specific biomass transportation costs. This is because a higher biomass input requires biomass to be transported over larger distances. The unresolved antagonism between economies of scale and specific biomass transportation costs has so far hindered the realization of BtL plants. The aim of this thesis is to develop a methodology to determine optimal BtL plant sizes by taking nonlinear factors into account. The methodology is required to determine a compromise between minimizing investment-related costs by applying economies of scale and minimizing specific biomass transportation costs by keeping the required transportation distances short. The optimal plant size is however influenced by a third influencing factor. Whether it is advantageous to transport biomass over a certain distance also depends on the value of a plant’s products. Biomass-to-Liquid plants can have a variety of product compositions depending on the catalyst and reaction temperature used in the biofuel synthesis reaction. Depending on which substances are produced and which are upgraded for sale, converted into fuels or combusted for electricity generation, both the value of the products and the required investment may differ considerably. While a number of processes, including biomass treatment and gasification, as well as the Fischer-Tropsch synthesis itself, are required for all considered plant setup alternatives, the choice of upgrading equipment may result in very dissimilar plant setups. By making the capacities of the individual upgrading processes the variables of the optimization model, economies of scale, specific biomass transportation costs and the products’ value are considered simultaneously for the first time. The thesis primarily focuses on the implementation of an optimization model and its application on a variety of scenarios. These scenarios are intended to represent different plant setups and logistics concepts. In order to assess the scale of differences in profitability, the essential influencing factors determining the profitability of BtL plants were included into the model calculations. As the problem at hand is neither linear nor quadratic, it cannot be solved reliably using established solvers for these two classes of problems. Instead, several solvers designed to handle non-quadratic nonlinear multidimensional problems were applied to find the most suitable way to approach the solution of the problem. The objective function has been designed to maximize the annual profit resulting from plant construction and operation. Maximizing this annual profit is subject to a number of primarily technical constraints. These result from the mass balances of the plant, its electricity demand and the specific requirements of individual processes. In addition to securing the validity of the mass balances, these constraints also ensure that the entire Fischer-Tropsch product stream undergoes some kind of upgrading, separation or combustion treatment. The sum of all processes producing salable products is used to approximate the required capacity of the plant as a whole. The total plant capacity then serves to calculate the investment required for the other plant processes and the costs for the purchase and transportation of the required input biomass. Biomass transportation distances are approximated by the radius of an assumed circular area from which biomass is supplied to the plant. Using cost functions that divide transportation costs into fixed and variable parts makes it possible to approximate the effect of rising specific biomass transportation costs in case of increasing plant capacities. The investigated scenario calculations suggest that under the assumed circumstances, fuel oriented low-temperature Fischer-Tropsch-based BtL plants are relatively competitive as long as the tax exemptions in Germany are maintained, but become significantly less attractive without them. By contrast, the combined production of both fuels and chemicals using hightemperature Fischer-Tropsch synthesis appears to be a more promising alternative, as chemicals are expected to earn a higher income in scenarios without tax exemptions. A third option, the production of Substitute Natural Gas, appears to be relatively uncompetitive unless methane prices rise significantly. In addition to comparing the economic attractiveness of different potential product distributions, a number of concepts have been investigated which are intended to improve Biomass-to-Liquid economics. Decentralized pretreatment of biomass, e.g. through fastpyrolysis, leads to larger optimal plant capacities, but the additional investment for the pretreatment units appears to overcompensate the improved economies of scale. By contrast, the combined use of train and road transportation was not assumed to be associated with additional investments. If train transportation is indeed feasible for a given plant location and specific biomass transportation costs are lower than for road transportation, combined traffic concepts should be used whenever possible. The construction of BtL plants in conjunction with mineral oil refineries is a way to reduce investment-related costs instead of transportation costs. While the resulting savings are significant for small BtL plants, they diminish if larger plant sizes are investigated. Cogasification of biomass with another input material is another way to reduce the costly transportation of biomass over large distances. Unless technical requirements significantly increase the cost of the gasification equipment, co-gasification concepts can improve the plant’s profitability even at relatively low quantities of a second fuel. The choice of fuels is however restricted by the Renewable Energy Directive that needs to be abided by in order to ensure the eligibility for tax exemptions. In case of lignite and hard coal, fossil CO2 emissions further complicate the application of co-gasification, as Renewable Energy Directive also limits the amount of fossil CO2 that biofuel production is allowed to cause. As savings caused by such concepts depend on the relative inefficiency of the concept that they are applied on, the effect of the implementation of several improvements diminishes if these address the same cost item. In this work, the nonlinear effects of economies of scale and biomass transportation costs for increasing Biomass-to-Liquid plant capacities has been modeled on a product-upgradingprocess basis for the first time. Potential investors and plant operators of Biomass-to-Liquid plants are thus enabled to determine both the optimal plant size and the most promising choice of products in order to maximize the prospective competitiveness of the plant.

The optimal capacity expansion of a chemical plant via nonlinear integer programming

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Publisher :
ISBN 13 :
Total Pages : 462 pages
Book Rating : 4.:/5 (478 download)

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Book Synopsis The optimal capacity expansion of a chemical plant via nonlinear integer programming by : Thomas Clyde Bickel

Download or read book The optimal capacity expansion of a chemical plant via nonlinear integer programming written by Thomas Clyde Bickel and published by . This book was released on 1978 with total page 462 pages. Available in PDF, EPUB and Kindle. Book excerpt:

Process Optimisation

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Publisher : Elsevier
ISBN 13 : 1483160513
Total Pages : 381 pages
Book Rating : 4.4/5 (831 download)

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Book Synopsis Process Optimisation by : J. K. Walters

Download or read book Process Optimisation written by J. K. Walters and published by Elsevier. This book was released on 2017-07-07 with total page 381 pages. Available in PDF, EPUB and Kindle. Book excerpt: Process Optimisation documents the proceedings of a three-day Symposium organized by the Midlands Branch of The Institution of Chemical Engineers, held at the University of Nottingham, on 7-9 April 1987. The initiative for this Symposium on Process Optimization came from Dr. K.C. Mecklenburgh, a Senior Lecturer at the University of Nottingham, who was Chairman of the Organizing Committee from its inception until his death in November 1986. Mecklenburgh was a scholarly man, an acknowledged authority on Plant Layout and Safety, and a man very active in all aspects of the Institution's affairs. This volume contains 27 papers organized into three sections and follows the development of Process Plant from conception to operation. The papers in Section 1 discuss Project Selection, with an emphasis on financial implications, resource availability, and energy matters. Section 2 is devoted to Process Design where detailed optimization possibilities are considered including safety and hazard assessment. Section 3 covers Plant Operation where condition monitoring, revamp, and computing and control systems are all considered for optimization.