Biorefineries and Chemical Processes: Design, Integration and Sustainability Analysis

Author:   Jhuma Sadhukhan (University of Manchester) ,  Kok Siew Ng (University of Manchester) ,  Elias Martinez Hernandez (University of Manchester)
Publisher:   John Wiley & Sons Inc
ISBN:  

9781119990864


Pages:   688
Publication Date:   17 October 2014
Format:   Paperback
Availability:   Out of stock   Availability explained
The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available.

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Biorefineries and Chemical Processes: Design, Integration and Sustainability Analysis


Overview

As the range of feedstocks, process technologies and products expand, biorefineries will become increasingly complex manufacturing systems. Biorefineries and Chemical Processes: Design, Integration and Sustainability Analysis presents process modelling and integration, and whole system life cycle analysis tools for the synthesis, design, operation and sustainable development of biorefinery and chemical processes. Topics covered include: Introduction: An introduction to the concept and development of biorefineries. Tools: Included here are the methods for detailed economic and environmental impact analyses; combined economic value and environmental impact analysis; life cycle assessment (LCA); multi-criteria analysis; heat integration and utility system design; mathematical programming based optimization and genetic algorithms. Process synthesis and design: Focuses on modern unit operations and innovative process flowsheets. Discusses thermochemical and biochemical processing of biomass, production of chemicals and polymers from biomass, and processes for carbon dioxide capture. Biorefinery systems: Presents biorefinery process synthesis using whole system analysis. Discusses bio-oil and algae biorefineries, integrated fuel cells and renewables, and heterogeneous catalytic reactors. Companion website: Four case studies, additional exercises and examples are available online, together with three supplementary chapters which address waste and emission minimization, energy storage and control systems, and the optimization and reuse of water. This textbook is designed to bridge a gap between engineering design and sustainability assessment, for advanced students and practicing process designers and engineers.

Full Product Details

Author:   Jhuma Sadhukhan (University of Manchester) ,  Kok Siew Ng (University of Manchester) ,  Elias Martinez Hernandez (University of Manchester)
Publisher:   John Wiley & Sons Inc
Imprint:   John Wiley & Sons Inc
Dimensions:   Width: 19.10cm , Height: 3.10cm , Length: 24.60cm
Weight:   1.125kg
ISBN:  

9781119990864


ISBN 10:   1119990866
Pages:   688
Publication Date:   17 October 2014
Audience:   Professional and scholarly ,  Professional & Vocational
Format:   Paperback
Publisher's Status:   Active
Availability:   Out of stock   Availability explained
The supplier is temporarily out of stock of this item. It will be ordered for you on backorder and shipped when it becomes available.

Table of Contents

Reviews

“In conclusion, this book introduces the reader to the rapidly-developing industry of  biorefineries, with a multi-disciplinary approach. It is a good resource for undergraduate and post-graduate students who want to learn about biorefineries; it can also be valuable for researchers who are looking to practically apply these analytical tools in their work.”  (Green Process Synth, 4 February 2015)


<p> In conclusion, this book introduces the reader to the rapidly-developing industry of biorefineries, with a multi-disciplinary approach. It is a good resource for undergraduate and post-graduate students who want to learn about biorefineries; it can also be valuable for researchers who are looking to practically apply these analytical tools in their work. (Green Process Synth, 4 February 2015)


Author Information

Jhuma Sadhukhan Centre for Environmental Strategy, University of Surrey, UK Kok Siew Ng Centre for Process Integration, The University of Manchester, UK Elias Martinez H. Centre for Environmental Strategy, University of Surrey, UK

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