Dielectric and adsorptive properties of potassium hydroxide-treated castor residue carbons
The fundamental understanding about dielectric properties is not completely understood even though it is crucial in microwave-assisted heating. The present work was aimed at evaluating the dielectric properties of reagent mixtures and solids of potassium hydroxide-treated castor residue carbons at v...
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my.utm.935822021-12-31T08:44:47Z http://eprints.utm.my/id/eprint/93582/ Dielectric and adsorptive properties of potassium hydroxide-treated castor residue carbons Surdi, Zulfifitriah Tang, Shu Hui Lee, Lin Zhi Ahmad Zaini, Muhammad Abbas Arsad, Agus Q Science (General) The fundamental understanding about dielectric properties is not completely understood even though it is crucial in microwave-assisted heating. The present work was aimed at evaluating the dielectric properties of reagent mixtures and solids of potassium hydroxide-treated castor residue carbons at varying frequencies and temperatures. Chemical treatment at solid mass ratios (KOH pellet:castor residue) of 0.0 to 2.0 in 50 mL water was carried out using a microwave oven at 70% intensity. The dielectric properties were determined using an open-ended co-axial probe. Results show that the dielectric properties of materials changed with frequency, temperature, water content and ionic strength. Also, the presence of potassium hydroxide solution aids in improving the propensity of castor residue to be heated via microwave. The potassium hydroxide-treated carbons exhibit a 90% removal efficiency of methylene blue at Co = 189 mg/L. 2020 Conference or Workshop Item PeerReviewed Surdi, Zulfifitriah and Tang, Shu Hui and Lee, Lin Zhi and Ahmad Zaini, Muhammad Abbas and Arsad, Agus (2020) Dielectric and adsorptive properties of potassium hydroxide-treated castor residue carbons. In: 2019 Sustainable and Integrated Engineering International Conference, SIE 2019, 9 - 10 December 2019, Putrajaya, Malaysia. http://dx.doi.org/10.1016/j.matpr.2020.04.756 |
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Q Science (General) Surdi, Zulfifitriah Tang, Shu Hui Lee, Lin Zhi Ahmad Zaini, Muhammad Abbas Arsad, Agus Dielectric and adsorptive properties of potassium hydroxide-treated castor residue carbons |
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The fundamental understanding about dielectric properties is not completely understood even though it is crucial in microwave-assisted heating. The present work was aimed at evaluating the dielectric properties of reagent mixtures and solids of potassium hydroxide-treated castor residue carbons at varying frequencies and temperatures. Chemical treatment at solid mass ratios (KOH pellet:castor residue) of 0.0 to 2.0 in 50 mL water was carried out using a microwave oven at 70% intensity. The dielectric properties were determined using an open-ended co-axial probe. Results show that the dielectric properties of materials changed with frequency, temperature, water content and ionic strength. Also, the presence of potassium hydroxide solution aids in improving the propensity of castor residue to be heated via microwave. The potassium hydroxide-treated carbons exhibit a 90% removal efficiency of methylene blue at Co = 189 mg/L. |
format |
Conference or Workshop Item |
author |
Surdi, Zulfifitriah Tang, Shu Hui Lee, Lin Zhi Ahmad Zaini, Muhammad Abbas Arsad, Agus |
author_facet |
Surdi, Zulfifitriah Tang, Shu Hui Lee, Lin Zhi Ahmad Zaini, Muhammad Abbas Arsad, Agus |
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Surdi, Zulfifitriah |
title |
Dielectric and adsorptive properties of potassium hydroxide-treated castor residue carbons |
title_short |
Dielectric and adsorptive properties of potassium hydroxide-treated castor residue carbons |
title_full |
Dielectric and adsorptive properties of potassium hydroxide-treated castor residue carbons |
title_fullStr |
Dielectric and adsorptive properties of potassium hydroxide-treated castor residue carbons |
title_full_unstemmed |
Dielectric and adsorptive properties of potassium hydroxide-treated castor residue carbons |
title_sort |
dielectric and adsorptive properties of potassium hydroxide-treated castor residue carbons |
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2020 |
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http://eprints.utm.my/id/eprint/93582/ http://dx.doi.org/10.1016/j.matpr.2020.04.756 |
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1720980095345098752 |