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Green Extraction in Separation Technology by Ali Haghighi Asl 9781032050409

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Description

Subcritical water is a green extraction solvent compared to conventional extraction solvents. While experimental results on subcritical water extraction (SWE) technology have been published piecemeal, there has been no comprehensive review of the state of the art. Green Extraction in Separation Technology fills that gap, serving to cover extracting with subcritical water as an environmentally friendly solvent.

FEATURES

  • Presents new technologies for extracting natural compounds from plants and compares the advantages and disadvantages versus SWE
  • Explains research on SWE over the last 15 years
  • Offers an overview of the solubility of different compounds in SWE and related theoretical content
  • Discusses modeling of SWE and describes the development of a new model for this process

This monograph is aimed at researchers and advanced students in chemical and biochemical engineering.



About the Author

Ali Haghighi Asl received his BSc degree in Petroleum Engineering from Isfahan University of Technology (IUT), Isfahan, Iran, in 1993, and MSc degree in Chemical Engineering from Tarbiat Modares University, Tehran, Iran, in 1995, and PhD degrees from Tehran University, Tehran, Iran, in 2001. His research interests include the area of separation processes, extraction processes, subcritical water extraction, and membrane separation. Currently, he is a professor at Semnan University, Iran.

Maryam Khajenoori received the BSc degree in Polymer Engineering from Isfahan University of Technology, Isfahan, Iran, in 2006, and the MSc and PhD degrees from Semnan University, Semnan, Iran, in 2008 and 2014, respectively. Her current research interests are separation processes, subcritical water extraction, wastewater treatment, membrane processes and production of pharmaceutical nanoparticles. Currently, she is an assistant professor at Semnan University, Iran.




Book Information
ISBN 9781032050409
Author Ali Haghighi Asl
Format Hardback
Page Count 116
Imprint CRC Press
Publisher Taylor & Francis Ltd
Weight(grams) 263g

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