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3. Use the concept of Exergy to calculate the second law efficiency of a sea water reverse osmosis (SWRO) plant-look for data on the Perth

image text in transcribed 3. Use the concept of Exergy to calculate the second law efficiency of a sea water reverse osmosis (SWRO) plant-look for data on the Perth Seawater Desalination Plant (Kwinana) or Southern Seawater Desalination Plant (Binningup) to get an idea of mass flowrates for the different process streams, concentrations and energy input per volume (or mass) of drinking water produced. If energy input data for local SWRO plants is unavailable data from other plants may be used. Explain your working - a numerical answer and one line of text will not be enough. All sources should be cited and all assumptions stated explicitly. Suggestions: - In the unit readings (on LMS) there is a book called Sustainable Energy Technologies for Seawater Desalination by M. A. Rosen. A large part of this book is dedicated to second law analysis of desalination technology. Reading this book is not part of the assignment, it is merely suggested as a useful reference. - Don't over complicate this. The intent of this question is to see if you have a basic understanding of exergy and if you can apply that to a SWRO plant. This is not an in-depth analysis of every part of the RO process

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