OFAT Adoption on FAl2O3-POE Nanolubricant Absorbance Ratio Optimization Based on Spectrophotometric Method
The UV visible spectrophotometry technique is one of the methods for determining a nanolubricant's stability standard. The absorbance level of a nanolubricant is determined by spectrophotometry. This method measures how well the nanolubricant absorbs UV rays from a light source. In this study,...
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Format: | Conference or Workshop Item |
Language: | English |
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Springer, Singapore
2023
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Online Access: | http://umpir.ump.edu.my/id/eprint/34995/1/OFAT%20adoption%20on%20FAl2%20O3-POE%20nanolubricant.pdf |
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author | Nugroho, Agus Rizalman, Mamat Bo, Zhang Wan Hamzah, Azmi Mohd Fairusham, Ghazali Yusaf, Talal |
author_facet | Nugroho, Agus Rizalman, Mamat Bo, Zhang Wan Hamzah, Azmi Mohd Fairusham, Ghazali Yusaf, Talal |
author_sort | Nugroho, Agus |
collection | UMP |
description | The UV visible spectrophotometry technique is one of the methods for determining a nanolubricant's stability standard. The absorbance level of a nanolubricant is determined by spectrophotometry. This method measures how well the nanolubricant absorbs UV rays from a light source. In this study, one factor at a time (OFAT) based on surface response was adopted to determine the effect of wavelength selection on the absorbance ratio of FAl2O3-POE nanolubricant. The FAl2O3-POE sample was prepared using a two-steps ap-proach. The sample was ultrasonicated for 100 min using a homogenizer. UV visible spectrophotometry analysis was performed on day 1 and 15 to determine the absorbance ratio. Sixteen runs were performed using a quadratic design to acquire experimental data were fitted. The ANOVA analysis discovered that the experimental statistics were well suited to the polynomial model, with an R2 value of 0.9951 and a model F-value of 1316.47. The findings suggest that the optimum wavelength is 375 nm with an absorbance value of 0.935473 and a de-sirability level of 1.0. |
first_indexed | 2024-03-06T12:59:38Z |
format | Conference or Workshop Item |
id | UMPir34995 |
institution | Universiti Malaysia Pahang |
language | English |
last_indexed | 2024-03-06T12:59:38Z |
publishDate | 2023 |
publisher | Springer, Singapore |
record_format | dspace |
spelling | UMPir349952022-10-06T03:22:14Z http://umpir.ump.edu.my/id/eprint/34995/ OFAT Adoption on FAl2O3-POE Nanolubricant Absorbance Ratio Optimization Based on Spectrophotometric Method Nugroho, Agus Rizalman, Mamat Bo, Zhang Wan Hamzah, Azmi Mohd Fairusham, Ghazali Yusaf, Talal TJ Mechanical engineering and machinery The UV visible spectrophotometry technique is one of the methods for determining a nanolubricant's stability standard. The absorbance level of a nanolubricant is determined by spectrophotometry. This method measures how well the nanolubricant absorbs UV rays from a light source. In this study, one factor at a time (OFAT) based on surface response was adopted to determine the effect of wavelength selection on the absorbance ratio of FAl2O3-POE nanolubricant. The FAl2O3-POE sample was prepared using a two-steps ap-proach. The sample was ultrasonicated for 100 min using a homogenizer. UV visible spectrophotometry analysis was performed on day 1 and 15 to determine the absorbance ratio. Sixteen runs were performed using a quadratic design to acquire experimental data were fitted. The ANOVA analysis discovered that the experimental statistics were well suited to the polynomial model, with an R2 value of 0.9951 and a model F-value of 1316.47. The findings suggest that the optimum wavelength is 375 nm with an absorbance value of 0.935473 and a de-sirability level of 1.0. Springer, Singapore 2023 Conference or Workshop Item PeerReviewed pdf en http://umpir.ump.edu.my/id/eprint/34995/1/OFAT%20adoption%20on%20FAl2%20O3-POE%20nanolubricant.pdf Nugroho, Agus and Rizalman, Mamat and Bo, Zhang and Wan Hamzah, Azmi and Mohd Fairusham, Ghazali and Yusaf, Talal (2023) OFAT Adoption on FAl2O3-POE Nanolubricant Absorbance Ratio Optimization Based on Spectrophotometric Method. In: Proceedings of the 2nd Energy Security and Chemical Engineering Congress (ESCHE 2021) , 3-5 November 2021 , Virtual Conference, Universiti Malaysia Pahang, Malaysia. pp. 165-177.. ISBN 978-981-19-4425-3 (Published) https://doi.org/10.1007/978-981-19-4425-3_16 |
spellingShingle | TJ Mechanical engineering and machinery Nugroho, Agus Rizalman, Mamat Bo, Zhang Wan Hamzah, Azmi Mohd Fairusham, Ghazali Yusaf, Talal OFAT Adoption on FAl2O3-POE Nanolubricant Absorbance Ratio Optimization Based on Spectrophotometric Method |
title | OFAT Adoption on FAl2O3-POE Nanolubricant Absorbance Ratio Optimization Based on Spectrophotometric Method |
title_full | OFAT Adoption on FAl2O3-POE Nanolubricant Absorbance Ratio Optimization Based on Spectrophotometric Method |
title_fullStr | OFAT Adoption on FAl2O3-POE Nanolubricant Absorbance Ratio Optimization Based on Spectrophotometric Method |
title_full_unstemmed | OFAT Adoption on FAl2O3-POE Nanolubricant Absorbance Ratio Optimization Based on Spectrophotometric Method |
title_short | OFAT Adoption on FAl2O3-POE Nanolubricant Absorbance Ratio Optimization Based on Spectrophotometric Method |
title_sort | ofat adoption on fal2o3 poe nanolubricant absorbance ratio optimization based on spectrophotometric method |
topic | TJ Mechanical engineering and machinery |
url | http://umpir.ump.edu.my/id/eprint/34995/1/OFAT%20adoption%20on%20FAl2%20O3-POE%20nanolubricant.pdf |
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