Physical and combustion characteristics of rice bran oil biodiesel in an oil burner

Also available in printed version

書誌詳細
第一著者: Safiullahi
その他の著者: Mohammad Nazri Mohd. Ja’afar, supervisor
フォーマット: Master's thesis
言語:英語
出版事項: Universiti Teknologi Malaysia 2025
主題:
オンライン・アクセス:https://utmik.utm.my/handle/123456789/54500
Abstract Abstract here
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author Safiullahi
author2 Mohammad Nazri Mohd. Ja’afar, supervisor
author_facet Mohammad Nazri Mohd. Ja’afar, supervisor
Safiullahi
author_sort Safiullahi
description Also available in printed version
format Master's thesis
id utm-123456789-54500
institution Universiti Teknologi Malaysia
language English
publishDate 2025
publisher Universiti Teknologi Malaysia
record_format dspace
record_pdf Abstract
spelling utm-123456789-545002025-08-21T04:17:42Z Physical and combustion characteristics of rice bran oil biodiesel in an oil burner Safiullahi Mohammad Nazri Mohd. Ja’afar, supervisor Mechanical engineering Also available in printed version The concept of biodiesel as an alternative fuel is not an overnight thought, but high prices, pungent gas emissions and non-ecological behaviour of fossil fuels has constrained the researchers to take the step. Biodiesels which are renewable in nature and having environmental friendly attitude have shown the potential to be the perfect replacement for the diesel fuels. Similarly, this study demonstrates the characteristics of Rice Bran Oil (RBO) which can be used as a latent substitute for diesel products. RBO is the vegetable oil, which is extracted from the rice bran (by-product of rice grain). As the rice is the steeple diet for more than half of the population of the world, the quantity of RBO that can be extracted is enormous. In this study, RBO is converted to the biodiesel first and then it is blended with diesel to produce B5, B15 and B25 to study the physio-chemical properties and exhaust emissions. Conversion of RBO into biodiesel is compared by altering the amount of different catalysts i.e. KOH and NaOH. At catalyst amount of 1% (w/w to crude RBO), KOH converts 5.55% more RBOBD than NaOH thus keeping other parameters i.e. methanol amount, reaction time and reaction temperature constant. Owing to highly packed molecules of RBOBD, the properties such as density, specific gravity, viscosity and surface tension are higher in RBOBD blends than diesel. In contrast, calorific value is lower. In combustion test, the highest wall temperature is achieved at stoichiometric fuel mixture, while among the fuels, the wall temperature gets lower as biodiesel proportion increases in diesel. Moreover, in B25, emissions such as CO and SO2 are 68% and 50% lower than diesel respectively. However, due to the additional oxygen present in the biodiesel structure, NOx emission of B25 is 15.668% higher than CDF zulaihi UTM 97 p. Thesis (Sarjana Sains (Kejuruteraan Aeronautika)) - Universiti Teknologi Malaysia, 2017 2025-03-17T02:59:27Z 2025-03-17T02:59:27Z 2017 Master's thesis https://utmik.utm.my/handle/123456789/54500 vital:106932 valet-20180219-162931 ENG Closed Access UTM Complete Unpublished Completion application/pdf Universiti Teknologi Malaysia
spellingShingle Mechanical engineering
Safiullahi
Physical and combustion characteristics of rice bran oil biodiesel in an oil burner
thesis_level Master
title Physical and combustion characteristics of rice bran oil biodiesel in an oil burner
title_full Physical and combustion characteristics of rice bran oil biodiesel in an oil burner
title_fullStr Physical and combustion characteristics of rice bran oil biodiesel in an oil burner
title_full_unstemmed Physical and combustion characteristics of rice bran oil biodiesel in an oil burner
title_short Physical and combustion characteristics of rice bran oil biodiesel in an oil burner
title_sort physical and combustion characteristics of rice bran oil biodiesel in an oil burner
topic Mechanical engineering
url https://utmik.utm.my/handle/123456789/54500
work_keys_str_mv AT safiullahi physicalandcombustioncharacteristicsofricebranoilbiodieselinanoilburner