Synthesis of photosensitizer-layered doubled hydroxide nanohybrids for degradation of organic pollutants.

The amount of textile pollutants discharged into the water bodies has been a major concern over the years. With increasing stringent regulations on textile discharges, it prompted the research and developments of better and more efficient catalyst and water-treatment procedures for the polluted w...

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Main Author: Zhuang, Ziwei.
Other Authors: Xu Rong
Format: Final Year Project
Language:English
Published: 2009
Subjects:
Online Access:http://hdl.handle.net/10356/16500
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-165002023-03-03T15:36:21Z Synthesis of photosensitizer-layered doubled hydroxide nanohybrids for degradation of organic pollutants. Zhuang, Ziwei. Xu Rong School of Chemical and Biomedical Engineering DRNTU::Engineering::Chemical engineering::Biotechnological production The amount of textile pollutants discharged into the water bodies has been a major concern over the years. With increasing stringent regulations on textile discharges, it prompted the research and developments of better and more efficient catalyst and water-treatment procedures for the polluted water. Phthalocyanine complexes are wellknown environmental photo-sensitizer and easily synthesized at a low cost and have a collection ability of about 50% of the energy available in the solar spectrum, hence it could be possible to utilized solar energy and molecular oxygen in the water for waste water treatment. This report presents the findings of the synthesized of a novel coral-like Layered Doubled Hydroxide (LDH) intercalated with Copper Phthalalocyanine tetrasulfonic acid Sodium salt (CuPcTs) and the investigation into the photo-degradation ability of the catalyst as compared to literature values reported. It was also shown that the photo-activity of Mg2Al-LDH – CuPcTs in the degradation of the Methylene Blue molecules dominates over the adsorption process by about 7 times. Hence, the major mechanism for the degradation of the MB molecules is due to the photo-degradation process. When compared to literature values on MB decolourisation from Appendix A, this newly synthesized catalyst has a much improved catalyst concentration of 0.1gL-1 within a time frame of about two hour to approximately fully decolourise the 40ppm of MB. This shows that the current coral-like Mg2Al-LDH-CuPcTs synthesized show great promises. Mg4Al-LDH-CuPcTs was synthesized to compare against the newly synthesized coral-like Mg2Al-LDH-CuPcTs and on average the photo-activity of the coral-like Mg2Al-LDH-CuPcTs outperformed the Mg4Al-LDH-CuPcTs by about 15%. Bachelor of Engineering (Chemical and Biomolecular Engineering) 2009-05-26T08:38:01Z 2009-05-26T08:38:01Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/16500 en Nanyang Technological University 58 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering::Chemical engineering::Biotechnological production
spellingShingle DRNTU::Engineering::Chemical engineering::Biotechnological production
Zhuang, Ziwei.
Synthesis of photosensitizer-layered doubled hydroxide nanohybrids for degradation of organic pollutants.
description The amount of textile pollutants discharged into the water bodies has been a major concern over the years. With increasing stringent regulations on textile discharges, it prompted the research and developments of better and more efficient catalyst and water-treatment procedures for the polluted water. Phthalocyanine complexes are wellknown environmental photo-sensitizer and easily synthesized at a low cost and have a collection ability of about 50% of the energy available in the solar spectrum, hence it could be possible to utilized solar energy and molecular oxygen in the water for waste water treatment. This report presents the findings of the synthesized of a novel coral-like Layered Doubled Hydroxide (LDH) intercalated with Copper Phthalalocyanine tetrasulfonic acid Sodium salt (CuPcTs) and the investigation into the photo-degradation ability of the catalyst as compared to literature values reported. It was also shown that the photo-activity of Mg2Al-LDH – CuPcTs in the degradation of the Methylene Blue molecules dominates over the adsorption process by about 7 times. Hence, the major mechanism for the degradation of the MB molecules is due to the photo-degradation process. When compared to literature values on MB decolourisation from Appendix A, this newly synthesized catalyst has a much improved catalyst concentration of 0.1gL-1 within a time frame of about two hour to approximately fully decolourise the 40ppm of MB. This shows that the current coral-like Mg2Al-LDH-CuPcTs synthesized show great promises. Mg4Al-LDH-CuPcTs was synthesized to compare against the newly synthesized coral-like Mg2Al-LDH-CuPcTs and on average the photo-activity of the coral-like Mg2Al-LDH-CuPcTs outperformed the Mg4Al-LDH-CuPcTs by about 15%.
author2 Xu Rong
author_facet Xu Rong
Zhuang, Ziwei.
format Final Year Project
author Zhuang, Ziwei.
author_sort Zhuang, Ziwei.
title Synthesis of photosensitizer-layered doubled hydroxide nanohybrids for degradation of organic pollutants.
title_short Synthesis of photosensitizer-layered doubled hydroxide nanohybrids for degradation of organic pollutants.
title_full Synthesis of photosensitizer-layered doubled hydroxide nanohybrids for degradation of organic pollutants.
title_fullStr Synthesis of photosensitizer-layered doubled hydroxide nanohybrids for degradation of organic pollutants.
title_full_unstemmed Synthesis of photosensitizer-layered doubled hydroxide nanohybrids for degradation of organic pollutants.
title_sort synthesis of photosensitizer-layered doubled hydroxide nanohybrids for degradation of organic pollutants.
publishDate 2009
url http://hdl.handle.net/10356/16500
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