Environmental impact of brine disposal of desalination plants

This study aims to develop an improved LCIA method to be used for the evaluation of ecotoxicity impacts of brine disposal from the seawater desalination process. Oceanic brine disposal has environmental impacts that are evident in many parts of the world, however, quantification assessment studies o...

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Main Author: Sim, Genevieve Jia Li.
Other Authors: Chang Wei-Chung
Format: Final Year Project (FYP)
Language:English
Published: 2011
Subjects:
Online Access:http://hdl.handle.net/10356/44234
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author Sim, Genevieve Jia Li.
author2 Chang Wei-Chung
author_facet Chang Wei-Chung
Sim, Genevieve Jia Li.
author_sort Sim, Genevieve Jia Li.
collection NTU
description This study aims to develop an improved LCIA method to be used for the evaluation of ecotoxicity impacts of brine disposal from the seawater desalination process. Oceanic brine disposal has environmental impacts that are evident in many parts of the world, however, quantification assessment studies on this subject is limited due to the restrictions of current LCIA approaches. With the improved method, the eco-toxicity potential (ETP) impacts of brine disposal are better quantified as it takes certain brine constituents that were previously ignored or had its effects downplayed into consideration. The evaluation was done in three steps: a) Develop the new LCIA approach b) Categorise the key brine constituents into groups c) Determine the Characterisation Factor of each group and calculate the final ETP score. From the results derived, the ETP Characterization Score differed greatly from the values published in other studies. It is concluded that salinity, which had a large influence on the ETP Characterization Score, is the most influential constituent of brine. Thus, the impact of salinity should not be underestimated.
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spelling ntu-10356/442342023-03-03T17:09:47Z Environmental impact of brine disposal of desalination plants Sim, Genevieve Jia Li. Chang Wei-Chung School of Civil and Environmental Engineering DRNTU::Engineering::Environmental engineering This study aims to develop an improved LCIA method to be used for the evaluation of ecotoxicity impacts of brine disposal from the seawater desalination process. Oceanic brine disposal has environmental impacts that are evident in many parts of the world, however, quantification assessment studies on this subject is limited due to the restrictions of current LCIA approaches. With the improved method, the eco-toxicity potential (ETP) impacts of brine disposal are better quantified as it takes certain brine constituents that were previously ignored or had its effects downplayed into consideration. The evaluation was done in three steps: a) Develop the new LCIA approach b) Categorise the key brine constituents into groups c) Determine the Characterisation Factor of each group and calculate the final ETP score. From the results derived, the ETP Characterization Score differed greatly from the values published in other studies. It is concluded that salinity, which had a large influence on the ETP Characterization Score, is the most influential constituent of brine. Thus, the impact of salinity should not be underestimated. Bachelor of Engineering (Environmental Engineering) 2011-05-31T06:30:23Z 2011-05-31T06:30:23Z 2011 2011 Final Year Project (FYP) http://hdl.handle.net/10356/44234 en Nanyang Technological University 40 p. application/pdf
spellingShingle DRNTU::Engineering::Environmental engineering
Sim, Genevieve Jia Li.
Environmental impact of brine disposal of desalination plants
title Environmental impact of brine disposal of desalination plants
title_full Environmental impact of brine disposal of desalination plants
title_fullStr Environmental impact of brine disposal of desalination plants
title_full_unstemmed Environmental impact of brine disposal of desalination plants
title_short Environmental impact of brine disposal of desalination plants
title_sort environmental impact of brine disposal of desalination plants
topic DRNTU::Engineering::Environmental engineering
url http://hdl.handle.net/10356/44234
work_keys_str_mv AT simgenevievejiali environmentalimpactofbrinedisposalofdesalinationplants