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Interplant Resource Integration

About Interplant Resource Integration

Interplant Resource Integration: Optimization and Allocation presents an introduction to the planning and implementation methods for interplant resource integration. The analytic tools provided in this book can be used for the tasks of formulating mathematical programming model(s) to maximize the achievable overall savings and also for devising the "fair" distribution scheme(s) to allocate individual financial benefits among the participating plants. Offers tools for gaining economic benefit and environmental friendliness Presents methods for realistically feasible solutions Provides concrete mathematical modeling procedures Familiarizes readers with various network synthesis approaches and shows alternative viewpoints that can be adopted to model the interactions of participating members in an interplant resource integration scheme Aimed at chemical engineers, process engineers, industrial chemists, mechanical engineers in the fields of chemical processing and plant engineering.

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  • Language:
  • English
  • ISBN:
  • 9781032033297
  • Binding:
  • Paperback
  • Pages:
  • 362
  • Published:
  • September 24, 2023
  • Dimensions:
  • 156x20x234 mm.
  • Weight:
  • 531 g.
Delivery: 1-2 weeks
Expected delivery: December 11, 2024

Description of Interplant Resource Integration

Interplant Resource Integration: Optimization and Allocation presents an introduction to the planning and implementation methods for interplant resource integration. The analytic tools provided in this book can be used for the tasks of formulating mathematical programming model(s) to maximize the achievable overall savings and also for devising the "fair" distribution scheme(s) to allocate individual financial benefits among the participating plants.
Offers tools for gaining economic benefit and environmental friendliness
Presents methods for realistically feasible solutions
Provides concrete mathematical modeling procedures
Familiarizes readers with various network synthesis approaches and shows alternative viewpoints that can be adopted to model the interactions of participating members in an interplant resource integration scheme
Aimed at chemical engineers, process engineers, industrial chemists, mechanical engineers in the fields of chemical processing and plant engineering.

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