Practical process design for chemical engineers / Keith Marchildon and David Mody.

By: Marchildon, Keith [author]
Contributor(s): Mody, David [author]
Language: English Publisher: Hoboken, New Jersey : Wiley, [2025]Copyright date: ©2025Description: xvii, 382 pages : illustrations ; 26 cmContent type: text Media type: unmediated Carrier type: volumeISBN: 9781394203840Subject(s): Chemical processes | Chemical plants -- Equipment and supplies | Production engineeringAdditional physical formats: Practical process design for chemical engineersDDC classification: 660/.283 LOC classification: TP155.7 | .M365 2025Summary: "In a chemical process, the transformation of raw materials into desired chemical products usually cannot be achieved in a single step. Instead, the overall transformation is broken down into a number of steps that provide intermediate transformations, for example by chemical reaction, separation, heating, cooling etc. Once the individual steps have been selected, they must be interconnected to carry out the overall transformation. Chemical process design requires the selection of a series of processing steps and their integration to form a complete manufacturing system, all while considering feasibility, cost, safety, environmental and societal impact, operability, maintainability, reliability, and constructability. It is an essential element of sustainable industrial activity"-- Provided by publisher.
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660.283 M3326 2025 (Browse shelf) Available CITU-CL-55859
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Includes index.

"In a chemical process, the transformation of raw materials into desired chemical products usually cannot be achieved in a single step. Instead, the overall transformation is broken down into a number of steps that provide intermediate transformations, for example by chemical reaction, separation, heating, cooling etc. Once the individual steps have been selected, they must be interconnected to carry out the overall transformation. Chemical process design requires the selection of a series of processing steps and their integration to form a complete manufacturing system, all while considering feasibility, cost, safety, environmental and societal impact, operability, maintainability, reliability, and constructability. It is an essential element of sustainable industrial activity"-- Provided by publisher.

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