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Full Description
Wastewater Treatment by Reverse Osmosis ProcessOptimisation, and Economics is part of a two-volume set that provides a one-stop-shop for reverse osmosis (RO), outlining its scope and limitations for the removal of organic compounds from wastewater. This volume covers in detail the state-of-the-art of model-based techniques for RO process operations, including various rigorous methods for process modelling, simulation, and optimisation at the lowest energy cost, as well as advanced tools such as genetic algorithms for achieving the same.Key Features* Highlights the importance of simulation studies and provides an overview of steady state and dynamic simulations of RO processes for wastewater treatment, giving detailed examples of removing various toxic pollutants* Describes the optimisation of RO process superstructure for wastewater treatment and features examples across industries, including pulp and paper, lube-oil recycling, petroleum refining, and dairy.* Introduces the concept of different types of genetic algorithms for process optimisation and provides the state-of-the art of the GA method in terms of its application in water desalination and wastewater treatment* Provides a detailed account of designing RO processes for wastewater treatment and describes advanced design of multi-stage multi-pass RO process for removing nitrosamines and phenolic compounds from wastewater* Focuses on economic aspects of RO processes for wastewater treatment and offers examples that refer to phenolic compounds removal from wastewater and reclamation of dairy wastewaterThis work is an invaluable resource for engineers and scientists working within the field of wastewater treatment. For full coverage of the topic, also see the first volume in the set: Wastewater Treatment by Reverse Osmosis Process: State of the Art & Process Modelling.
Contents
1. Introduction. 2. Wastewater Treatment Methods. 3. Membrane Processes. 4. Applications of Reverse Osmosis Process in Wastewater Treatment. 5. Modelling and Model Validation of Reverse Osmosis Process for Wastewater Treatment.