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Improvements in Bio-Based Building Blocks Production Through Process Intensification and Sustainability Concepts

Improvements in Bio-Based Building Blocks Production Through Process Intensification and Sustainability Concepts
Author: Juan Gabriel Segovia-Hernandez
Publisher: Elsevier
Total Pages: 252
Release: 2021-09-14
Genre: Technology & Engineering
ISBN: 0323886329

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Improvements in Bio-Based Building Blocks Production Through Process Intensification and Sustainability Concepts discusses new information on the production and cost of bio-based building blocks. From a technical point-of-view, almost all industrial materials made from fossil resources can be substituted using bio-based counterparts. However, the cost of bio-based production in many cases exceeds the cost of petrochemical production. In addition, new products must be proven to perform at least as good as their petrochemical equivalents, have a lower environmental impact, meet consumer demand for environmentally-friendly products, factor in population growth, and account for limited supplies of non-renewables. This book outlines the application of process intensification techniques which allow for the generation of clean, efficient and economical processes for bio-based chemical blocks production. Includes synthesis and process design strategies for intensified processes Describes multi-objective optimization applied to the production of bio-based building blocks Presents the controllability of processes where the production of bio-based building blocks is involved Provides examples using aspen and MATLAB Introduces several sustainable indexes to evaluate production processes Presents process intensification techniques to improve performance in productive processes


Sustainable Production of Biofuels Using Intensified Processes

Sustainable Production of Biofuels Using Intensified Processes
Author: Juan Gabriel Segovia-Hernández
Publisher: Springer Nature
Total Pages: 216
Release: 2022-09-28
Genre: Technology & Engineering
ISBN: 3031132165

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This book describes for first time the synthesis and intensified process design in the production of top biofuels. The production of biofuels is not new. In 2019, global biofuel production levels reached 1,841 thousand barrels of oil equivalent per day, in stark comparison to the 187 thousand barrels of oil equivalent per day that was produced in 2000. Growth has largely been driven by policies that encourage the use and production of biofuels due to the perception that it could provide energy security and reduce greenhouse gas emissions in relevant sectors. From a technical point of view, almost all fuels from fossil resources could be substituted by their bio-based counterparts. However, the cost of bio-based production in many cases exceeds the cost of petrochemical production. Also, biofuels must be proven to perform at least as good as the petrochemical equivalent they are substituting and to have a lower environmental impact. The low price of crude oil acted as a barrier to biofuels production and producers focussed on the specific attributes of biofuels such as their complex structure to justify production costs. Also, the consumer demand for environmentally friendly products, population growth and limited supplies of non-renewable resources has now opened new windows of opportunity for biofuels. The industry is increasingly viewing chemical production from renewable resources as an attractive area for investment. This book uniquely introduces the application of new process intensification techniques that will allow the generation of clean, efficient and economical processes for biofuels in a competitive way in the market.


Control and Safety Analysis of Intensified Chemical Processes

Control and Safety Analysis of Intensified Chemical Processes
Author: Gade Pandu Rangaiah
Publisher: John Wiley & Sons
Total Pages: 389
Release: 2024-06-10
Genre: Technology & Engineering
ISBN: 3527352627

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Resource on the design and safety analysis of intensified chemical processes, ranging from general methods to specific applications Control and Safety Analysis of Intensified Chemical Processes covers the basic principles of and recent developments in control and safety analysis of intensified chemical processes, ranging from dynamic simulations and safety analysis to the design and control of important processes. The text discusses general methods and tools such as dynamic simulation and safety analysis as well as design and analysis of important applications in order to provide scientists and engineers with an understanding of the design and safety considerations involved in intensified chemical processes. Sample topics covered in Control and Safety Analysis of Intensified Chemical Processes include: Simulation and optimization methods, common programs and simulators for simulation and optimization, and interfacing of simulators and optimizers Programs/simulators for dynamic simulation and control, tuning of controllers, and popular criteria for control assessment Control of a distillation column with dual steam and hot-oil reboilers, and an energy intensified side-stream extractive distillation for binary azeotropic separation Dynamics and control of middle vessel batch distillation with vapor recompression and development of a control structure of intensified biobutanol production A comprehensive resource on the subject, Control and Safety Analysis of Intensified Chemical Processes is a highly valuable reference for researchers, students and practitioners interested in process intensification and their applications. The text can be adopted by instructors for use in advanced courses on process control and safety.


Biomass, Bioenergy & Bioeconomy

Biomass, Bioenergy & Bioeconomy
Author: Richa Kothari
Publisher: Springer Nature
Total Pages: 261
Release: 2022-10-13
Genre: Science
ISBN: 9811929122

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This edited book explores the three interrelated concepts – biomass, bioenergy, and bioeconomy – from the point of view of sustainable advanced conversion processes. It elaborates on processing routes, i.e., how biomass from various sources can be converted into bioenergy like bioethanol, biodiesel, biobutanol, and biogas. Chapters are organized into three sections – “Biomass,” “Bioenergy,” and “Bioeconomy.” The first section very much focuses on biomass-based global research trends and their utilization for future bioenergy options, very particular to microbial activities associated and their practically real-time challenges during lab to land approach. The second section deals with biomass-based applications like biodiesel, bioethanol, biobutanol, biohydrogen, and biomass cookstoves and their future perspectives and challenges. The past, present, and future trends of biomass-based research applications have been assessed and critically evaluated to make the gathered knowledge available in the simplest form for academicians and researchers. The third section focuses on biomass-based policies on implementation and governmental strategies needs a attention to make it smooth for social groups and communities too. The role and impacts of bioeconomy with biomass-based bioenergy options and applications are also targeted here. Sustainable Development Goals are addressed in this section to achieve three objectives (trio), i.e., social, economic, and ecological status, which are the need of the hour for bioeconomic security. Contributions of bioenergy to environmental security have also been addressed in this section, very particular to linkage of sustainable human development. This book is a useful compilation of latest information for researchers and teachers in bioenergy and microbiology. The book also serves as reading material for undergraduate and graduate students of environmental sciences, microbiology, and bioenergy.


Process Intensification

Process Intensification
Author: Fernando Israel Gómez-Castro
Publisher: Walter de Gruyter GmbH & Co KG
Total Pages: 338
Release: 2019-10-21
Genre: Technology & Engineering
ISBN: 3110596121

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Intensified processes have found widespread application in the chemical and petrochemical industries. The use of intensified systems allows for a reduction of operating costs and supports the “greening” of chemical processes. However, the design of intensified equipment requires special methodologies. This book describes the fundamentals and applications of these design methods, making it a valuable resource for use in both industry and academia.


Sustainable Engineering

Sustainable Engineering
Author: Yasar Demirel
Publisher: CRC Press
Total Pages: 424
Release: 2023-08-04
Genre: Nature
ISBN: 1000954471

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Sustainable engineering is of great importance for resilient and agile technology and society. This book balances economics, environment, and societal elements of sustainable engineering by integrating process intensification, energy analysis, and artificial intelligence to reduce production costs, improve the use of material and energy, product quality, safety, societal well-being, and water usage. The book provides comprehensive discussion of topics on process intensification, energy analysis, and artificial intelligence that include optimization, energy integration, green engineering, pinch analysis, exergy analysis, feasibility analysis, life cycle assessment, circular economy, bioeconomy, data processing, machine learning, expert systems, digital twins, and self-optimized plants for sustainable engineering.


Process Intensification

Process Intensification
Author: David Reay
Publisher: Butterworth-Heinemann
Total Pages: 624
Release: 2013-06-05
Genre: Technology & Engineering
ISBN: 0080983057

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Process Intensification: Engineering for Efficiency, Sustainability and Flexibility is the first book to provide a practical working guide to understanding process intensification (PI) and developing successful PI solutions and applications in chemical process, civil, environmental, energy, pharmaceutical, biological, and biochemical systems. Process intensification is a chemical and process design approach that leads to substantially smaller, cleaner, safer, and more energy efficient process technology. It improves process flexibility, product quality, speed to market and inherent safety, with a reduced environmental footprint. This book represents a valuable resource for engineers working with leading-edge process technologies, and those involved research and development of chemical, process, environmental, pharmaceutical, and bioscience systems. No other reference covers both the technology and application of PI, addressing fundamentals, industry applications, and including a development and implementation guide Covers hot and high growth topics, including emission prevention, sustainable design, and pinch analysis World-class authors: Colin Ramshaw pioneered PI at ICI and is widely credited as the father of the technology


Innovating for a Better Future

Innovating for a Better Future
Author: SusChem
Publisher:
Total Pages: 180
Release: 2006
Genre: Biotechnology
ISBN:

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The Biobased Economy

The Biobased Economy
Author: Hans Langeveld
Publisher: Routledge
Total Pages: 406
Release: 2012
Genre: Business & Economics
ISBN: 0415631327

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Providing an illuminating framework as to how policy and market players could and should drive the development of a biobased economy that is effective, sustainable, fair and cost efficient. The result is an essential resource for all those working in or concerned with biobased industries, their policy or research.


Process Synthesis

Process Synthesis
Author: Dale F. Rudd
Publisher: Prentice Hall
Total Pages: 320
Release: 1973-01-01
Genre: Chemical engineering
ISBN: 9780137233533

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