Carbon based aerogel for water treatment
This report presents a research on three-dimensional (3D) structure carbon based aerogel-Graphene Oxide (GO) which are being developed as a sorbent for water treatment. The synthesis principle and the chemical reactions of GO production are elaborated. During the 3D assembly process, the effects of...
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sg-ntu-dr.10356-623592023-03-04T15:34:15Z Carbon based aerogel for water treatment Cheng, Wenwen Zhang Hua School of Materials Science and Engineering DRNTU::Engineering::Materials This report presents a research on three-dimensional (3D) structure carbon based aerogel-Graphene Oxide (GO) which are being developed as a sorbent for water treatment. The synthesis principle and the chemical reactions of GO production are elaborated. During the 3D assembly process, the effects of changing conditions, parameters and chemicals on the morphology, mechanical properties and absorbability of the GO are also discussed. Several analytical techniques are carried out to assist on determination of the optimal experimental parameters and to further improve the GO quality. At the end, future development direction of 3D GO composites combining with certain nanoparticles are recommended. Bachelor of Engineering (Materials Engineering) 2015-03-24T00:53:47Z 2015-03-24T00:53:47Z 2015 2015 Final Year Project (FYP) http://hdl.handle.net/10356/62359 en Nanyang Technological University 34 p. application/pdf |
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DRNTU::Engineering::Materials Cheng, Wenwen Carbon based aerogel for water treatment |
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This report presents a research on three-dimensional (3D) structure carbon based aerogel-Graphene Oxide (GO) which are being developed as a sorbent for water treatment. The synthesis principle and the chemical reactions of GO production are elaborated. During the 3D assembly process, the effects of changing conditions, parameters and chemicals on the morphology, mechanical properties and absorbability of the GO are also discussed. Several analytical techniques are carried out to assist on determination of the optimal experimental parameters and to further improve the GO quality. At the end, future development direction of 3D GO composites combining with certain nanoparticles are recommended. |
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Zhang Hua |
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Zhang Hua Cheng, Wenwen |
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Final Year Project |
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Cheng, Wenwen |
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Cheng, Wenwen |
title |
Carbon based aerogel for water treatment |
title_short |
Carbon based aerogel for water treatment |
title_full |
Carbon based aerogel for water treatment |
title_fullStr |
Carbon based aerogel for water treatment |
title_full_unstemmed |
Carbon based aerogel for water treatment |
title_sort |
carbon based aerogel for water treatment |
publishDate |
2015 |
url |
http://hdl.handle.net/10356/62359 |
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1759855243274747904 |