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Chuei-TinChang,Cheng-LiangChen,Jui-YuanLee

Interplant Resource Integration: Optimization and Allocation

Interplant Resource Integration: Optimization and Allocation

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  • More about Interplant Resource Integration: Optimization and Allocation


Interplant Resource Integration: Optimization and Allocation provides an introduction to planning and implementing methods for interplant resource integration, using mathematical programming models and fair distribution schemes to maximize savings and benefits. It is aimed at chemical engineers, process engineers, industrial chemists, and mechanical engineers.

Format: Hardback
Length: 362 pages
Publication date: 05 July 2021
Publisher: Taylor & Francis Inc


Interplant Resource Integration: Optimization and Allocation is a comprehensive guide that delves into the strategic planning and execution techniques for integrating resources across multiple plants. This book offers a range of analytical tools that empower users to develop mathematical programming models to maximize overall savings and design fair distribution schemes that allocate individual financial benefits among participating plants.

By utilizing these tools, stakeholders can achieve economic gains while also promoting environmental sustainability. The book presents methods that are grounded in reality, ensuring that feasible solutions can be implemented. It provides concrete mathematical modeling procedures, enabling readers to gain a deep understanding of the complexities involved in interplant resource integration.

Furthermore, the book familiarizes readers with various network synthesis approaches, offering alternative viewpoints that can be adopted to model the interactions of participating members in an interplant resource integration scheme. This text is specifically designed for chemical engineers, process engineers, industrial chemists, and mechanical engineers who specialize in chemical processing and plant engineering. It serves as a valuable resource for those seeking to optimize resource utilization, enhance efficiency, and achieve sustainable outcomes in their operations.

Weight: 706g
Dimension: 160 x 243 x 27 (mm)
ISBN-13: 9780815346432

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