Analysis of long-chain alcoholbiodiesel-diesel tri-fuel blends on combustion characteristics, engine performances and exhaust emissions of diesel engine / (Record no. 94757)

MARC details
000 -LEADER
fixed length control field 04997nam a2200373 i 4500
003 - CONTROL NUMBER IDENTIFIER
control field MY-KuUP
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20251125105805.0
006 - FIXED-LENGTH DATA ELEMENTS--ADDITIONAL MATERIAL CHARACTERISTICS
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007 - PHYSICAL DESCRIPTION FIXED FIELD--GENERAL INFORMATION
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fixed length control field 201110t20202020my a|||frma|| 000 0 eng d
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number THE0008577(Local)
Qualifying information Hardback
040 ## - CATALOGING SOURCE
Original cataloging agency UMP
Language of cataloging eng
Transcribing agency UMP
Description conventions rda
090 ## - LOCALLY ASSIGNED LC-TYPE CALL NUMBER (OCLC); LOCAL CALL NUMBER (RLIN)
Classification number (OCLC) (R) ; Classification number, CALL (RLIN) (NR) FTKMA .Z84 2020 r Thesis
100 0# - MAIN ENTRY--PERSONAL NAME
Personal name Zuhaira Abdullah,
Relator term author.
245 10 - TITLE STATEMENT
Title Analysis of long-chain alcoholbiodiesel-diesel tri-fuel blends on combustion characteristics, engine performances and exhaust emissions of diesel engine /
Statement of responsibility, etc. Zuhaira Abdullah
264 #1 - PRODUCTION, PUBLICATION, DISTRIBUTION, MANUFACTURE, AND COPYRIGHT NOTICE
Place of production, publication, distribution, manufacture Kuantan, Pahang :
Name of producer, publisher, distributor, manufacturer UMP,
Date of production, publication, distribution, manufacture, or copyright notice 2020
264 #4 - PRODUCTION, PUBLICATION, DISTRIBUTION, MANUFACTURE, AND COPYRIGHT NOTICE
Place of production, publication, distribution, manufacture © 2020
300 ## - PHYSICAL DESCRIPTION
Extent xiv, 117 pages :
Other physical details illustrations (some color) ;
Dimensions 30 cm. +
Accompanying material 1 CD ROM
336 ## - CONTENT TYPE
Content type term text
Source rdacontent
336 ## - CONTENT TYPE
Content type term text
Source rdacontent
337 ## - MEDIA TYPE
Media type term unmediated
Source rdamedia
337 ## - MEDIA TYPE
Media type term computer
Source rdamedia
338 ## - CARRIER TYPE
Carrier type term volume
Source rdacarrier
338 ## - CARRIER TYPE
Carrier type term computer disc
Source rdacarrier
347 ## - DIGITAL FILE CHARACTERISTICS
Source rda
File type text file
Encoding format PDF
500 ## - GENERAL NOTE
General note Faculty of Mechanical and Automotive Engineering Technology
502 ## - DISSERTATION NOTE
Dissertation note Thesis (Master of Science) -- Universiti Malaysia Pahang – 2020
504 ## - BIBLIOGRAPHY, ETC. NOTE
Bibliography, etc. note Includes bibliographical references
520 3# - SUMMARY, ETC.
Summary, etc. Diesel engine is the main source of energy propulsion that is used for automobile transportations, heavy industries and agriculture machinery. It is well known for its friction efficient and high performance in combustion. Additionally, it is also known for its advantages in terms of high torque, high efficiency, as well as reliability with low operating cost. However, based on the energy crisis of production diesel fuel (DF) from fossil fuels, it has been predicted that the world’s fossil fuel reservoir would be depleted in 2070. Other than that, fossil fuel is the primary source that is non renewable and nonreusable, which current stock is very limited. In addition, the disadvantages of engine performance when DF was blended to short-chain alcohol and different volume ratio of fuel blends. In order to address these issues, in this study, a various blend of long-chain alcohol-biodiesel-diesel tri-fuel blends were analysed based on combustion characteristics, engine performances and exhaust emissions. The current study has three objectives; (i) to determine the stability and thermo-physical of D85-B10-PE5, D80-B10- PE10, D75-B10-PE15, D85-B10-HE5, D80-B10-HE10 and D75-B10-HE15, (ii) to investigate the combustion characteristics, engine performances and exhaust emissions of long-chain alcohol-biodiesel-diesel tri-fuel blends, and (iii) to determine the optimum blends ratio of D85-B10-PE5, D80-B10-PE10, D75-B10-PE15, D85-B10-HE5, D80- B10-HE10 and D75-B10-HE15 based on engine performance by using Response Surface Methodology (RSM) software. The test was conducted on YANMAR TF120M engine single cylinder, and direct injection diesel engine. The experiments were conducted on five engine loads of 0%, 25%, 50%, 75% and 100% at constant engine speed of 1800 rpm. The test fuel consists of 5%, 10% and 15% volume ratio of pentanol and hexanol, added with remaining 10% constant volume ratio of palm oil methyl ester (POME), and blended with 85%, 80% and 75% of DF, named fuel as D85-B10-PE5, D80-B10-PE10, D75-B10-PE15, D85-B10-HE5, D80-B10-HE10 and D75-B10-HE15. The overall results are then compared with DF and B100 as the baseline. The result of stability observation reveals that D85-B10-PE5, D80-B10-PE10, D75-B10-PE15, D85-B10-HE5, D80-B10- HE10 and D75-B10-HE15 did not show any phase separation. The thermo-physical properties compared to the B100, calorific value increased by 11.45% and 11.38% for the D80-B10-PE10 and D75-B10-HE15 respectively. Also, the kinematic viscosity of D80- B10-PE10 and D75-B10-HE15 showed a reduction of 27.96% and 23.23% respectively, due to the addition of long-chain alcohols. In addition, in-cylinder pressure at 100% engine load, showed maximum peak pressure in D75-B10-PE15 and D85-B10-HE5 decreases by 0.66% and 0.54% compared to DF. This is due to higher in-cylinder pressure temperature that weakened the cooling effect of addition long-chain alcohol. The maximum heat release rate showed D75-B10-HE15 increased by 31.98% compared to DF at 100% engine load. Furthermore, the engine performance in terms of brake thermal efficiency increased by 10.37%, while brake specific fuel consumption decreased by 13.75% for D80-B10-PE10 compared to DF at 100% engine load. Besides, the reduction in exhaust emissions that produced CO2, and NOx decreased by 6.79% and 20.65% for D75-B10-PE15 at 100% engine load compared to DF. This is due to the lower cetane number and viscosity that is at highest volume concentration of long-chain alcohol. Lastly, the best selection of optimum blend ratio is close to D80-B10-PE10 and D75- B10-HE15.
610 20 - SUBJECT ADDED ENTRY--CORPORATE NAME
Corporate name or jurisdiction name as entry element Faculty of Mechanical and Automotive Engineering Technology
General subdivision Dissertations
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Universities and colleges
General subdivision Dissertations
650 #0 - SUBJECT ADDED ENTRY--TOPICAL TERM
Topical term or geographic name entry element Theses
General subdivision Dissertations
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Source of classification or shelving scheme Library of Congress Classification
Koha item type Thesis
Holdings
Withdrawn status Lost status Source of classification or shelving scheme Damaged status Not for loan Collection Home library Current library Shelving location Date acquired Total checkouts Full call number Barcode Date last seen Price effective from Koha item type
  Not lost Library of Congress Classification     Reference UMPLIB PEKAN UMPLIB PEKAN Reference 10/11/2020   FTKMA .Z84 2020 r Thesis T000001010 31/12/2020 10/11/2020 Thesis
  Not lost Library of Congress Classification   Not for loan Reference UMPLIB PEKAN UMPLIB PEKAN   10/11/2020   CD12732 T000001011 19/02/2021 10/11/2020 Thesis

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