Synthesis of ZnO/Fe3O4 as a composite catalyst using hydrothermal method for sono catalytic degradation of phenol in pome / Abdul Hadi Abdul Rahim
The present study has synthesized composite ZnO/Fe3O4 using hydrothermal technique at temperature of 170oC in order to be used as a sonocatalyst. The VSM and FTIR have been applied to characterize the magnetization and chemical properties of the composite ZnO/Fe3O4. Based on the observations, the pr...
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my.uitm.ir.373562022-10-25T07:47:43Z https://ir.uitm.edu.my/id/eprint/37356/ Synthesis of ZnO/Fe3O4 as a composite catalyst using hydrothermal method for sono catalytic degradation of phenol in pome / Abdul Hadi Abdul Rahim Abdul Rahim, Abdul Hadi Quantitative analysis Electrochemical analysis Physical and theoretical chemistry Conditions and laws of chemical reactions Catalysis Analytical chemistry The present study has synthesized composite ZnO/Fe3O4 using hydrothermal technique at temperature of 170oC in order to be used as a sonocatalyst. The VSM and FTIR have been applied to characterize the magnetization and chemical properties of the composite ZnO/Fe3O4. Based on the observations, the prepared composite ZnO/Fe3O4 has low saturation magnetization (8.66 emu/g) and low coercivity (20.85 Oe). The ZnO/Fe3O4 was successfully prepared in this study. Moreover, the experimental of sonocatalytic degradation has been fully examined by using a ultrasonic bath with 50 kHz in frequency. The result demonstrates a relatively low catalytic degradation efficiency of the phenol solution which was only 22 %. 2017-07 Student Project NonPeerReviewed text en https://ir.uitm.edu.my/id/eprint/37356/1/37356.pdf Synthesis of ZnO/Fe3O4 as a composite catalyst using hydrothermal method for sono catalytic degradation of phenol in pome / Abdul Hadi Abdul Rahim. (2017) [Student Project] <http://terminalib.uitm.edu.my/37356.pdf> (Unpublished) |
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Quantitative analysis Electrochemical analysis Physical and theoretical chemistry Conditions and laws of chemical reactions Catalysis Analytical chemistry Abdul Rahim, Abdul Hadi Synthesis of ZnO/Fe3O4 as a composite catalyst using hydrothermal method for sono catalytic degradation of phenol in pome / Abdul Hadi Abdul Rahim |
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The present study has synthesized composite ZnO/Fe3O4 using hydrothermal technique at temperature of 170oC in order to be used as a sonocatalyst. The VSM and FTIR have been applied to characterize the magnetization and chemical properties of the composite ZnO/Fe3O4. Based on the observations, the prepared composite ZnO/Fe3O4 has low saturation magnetization (8.66 emu/g) and low coercivity (20.85 Oe). The ZnO/Fe3O4 was successfully prepared in this study. Moreover, the experimental of sonocatalytic degradation has been fully examined by using a ultrasonic bath with 50 kHz in frequency. The result demonstrates a relatively low catalytic degradation efficiency of the phenol solution which was only 22 %. |
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Student Project |
author |
Abdul Rahim, Abdul Hadi |
author_facet |
Abdul Rahim, Abdul Hadi |
author_sort |
Abdul Rahim, Abdul Hadi |
title |
Synthesis of ZnO/Fe3O4 as a composite catalyst using hydrothermal method for sono catalytic degradation of
phenol in pome / Abdul Hadi Abdul Rahim |
title_short |
Synthesis of ZnO/Fe3O4 as a composite catalyst using hydrothermal method for sono catalytic degradation of
phenol in pome / Abdul Hadi Abdul Rahim |
title_full |
Synthesis of ZnO/Fe3O4 as a composite catalyst using hydrothermal method for sono catalytic degradation of
phenol in pome / Abdul Hadi Abdul Rahim |
title_fullStr |
Synthesis of ZnO/Fe3O4 as a composite catalyst using hydrothermal method for sono catalytic degradation of
phenol in pome / Abdul Hadi Abdul Rahim |
title_full_unstemmed |
Synthesis of ZnO/Fe3O4 as a composite catalyst using hydrothermal method for sono catalytic degradation of
phenol in pome / Abdul Hadi Abdul Rahim |
title_sort |
synthesis of zno/fe3o4 as a composite catalyst using hydrothermal method for sono catalytic degradation of
phenol in pome / abdul hadi abdul rahim |
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2017 |
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https://ir.uitm.edu.my/id/eprint/37356/1/37356.pdf https://ir.uitm.edu.my/id/eprint/37356/ |
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