Handbook of Process Integration (PI)

- Minimisation of Energy and Water Use, Waste and Emissions

Forfatter: info mangler
Bog
  • Format
  • Bog, paperback
  • Engelsk

Beskrivelse

Handbook of Process Integration (PI): Minimisation of Energy and Water Use, Waste and Emissions, Second Edition provides an up-to-date guide on the latest PI research and applications. Since the first edition published, methodologies and sustainability targets have developed considerably. Each chapter has been fully updated, with six new chapters added in this release, covering emissions, transport, water scarcity, reliability and maintenance, environmental impact and circular economy. This version also now includes worked examples and simulations to deepen the reader’s understanding. With its distinguished editor and international team of expert contributors, this book is an important reference work for managers and researchers in all energy and sustainability industries, as well as academics and students in Energy, Chemical, Process, and Environmental Engineering.

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Detaljer
  • SprogEngelsk
  • Sidetal1190
  • Udgivelsesdato11-11-2022
  • ISBN139780128238509
  • Forlag Woodhead Publishing
  • FormatPaperback
Størrelse og vægt
  • Vægt1000 g
  • coffee cup img
    10 cm
    book img
    15,2 cm
    22,9 cm

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    Distillation Energy management Resource conservation Mathematical optimization Water reuse Scheduling Incineration Steam Capital costs Water quality Renewable energy sources Topology Fouling Synthesis Buildings Heat recovery Hazardous waste Energy efficiency Renewable energy Waste Management Mathematical modelling Water management supply chain Superstructure Renewable Energy Systems Water scarcity Process Quality Targeting Recycle Energy Integration Waste to Energy Combined Heat and Power Energy Savings Process Integration Municipal solid waste Utility Heat exchanger network Retrofit Emissions Reduction Software tools Heat Transfer Enhancement Glossary Streams Network Design Batch plants Specific heat capacity Resource recycling Mathematical Programming Process design Heat pump Optimisation Heat integration History of development Latent heat Mass Integration Design Space Oil Refinery Coefficient of performance Disturbances Retrofit Design Advanced modular and integrated equipment Advanced grid diagram Basic terms Asset maintenance Balanced cascade table Asset optimisation Bridge Framework Centers of Process Integration Research Area Targeting Combined Water and Energy Integration Boiler steam reduction district energy system Bridge Method Cross-Pinch Analysis Carbon management network Energy quality Energy-efficient water utilisation system targeting and design approaches Energy-saving non-isothermal mixing separate systems Extended Pinch Analysis family composite curves Effluent Treatment System Energy utilities Exchanger network Extended Pinch Design Method Header targeting Heat cascade Hierarchical approach Forbidden Matches Grand Composite Curve Heat loads Heat Exchanger Network retrofit design evolution Eco-industrial parks interception Individual steam matching Energy planning composite curves Liquid and gas waste Locally Integrated Energy Sector Mass integration and water integration Multiple cascade table Mass Pinch Material recycle Material integration Heat and Power System Heat Exchanger Network design and retrofit Heat Recovery Pinch High-integration solutions process operations Pinch Design Method petrochemical plant RESHeat system Reuse/recycling Property Integration Process heat sources power integration Power Pinch Analysis Process heat sinks Regional Water Assessment Isolated energy systems Steam recovery Sustainable Planning Simultaneous energy and water minimisation Hydrogen networks Total Site Heat Integration Total Material Network Total Site system Shell-and-tube heat exchanger Integrated problem formulation Integration of Renewables Utility Systems Varying Energy demand Water minimization Water pinch analysis Kraft pulp process Steam use Water and wastewater minimisation Water minimisation Sustainable Energy Planning Water–Energy Network Water network Material Recovery Multiple qualities/contaminants Pinch Analysis Process retrofit Property Pinch Source–sink matching Performance targets Systematic optimisation Varying Energy Supply Problem table Process Integration Research Consortium Process Time Water and Wastewater Network steam generation synthesis methods Total sites Total Site Integration Utility system design and retrofit Waste minimisation

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