Performance study on co-gasification of coal with sawdust and sawdust pellet in downdraft gasifier / (Record no. 95411)

MARC details
000 -LEADER
fixed length control field 05527ntm a2200361 i 4500
003 - CONTROL NUMBER IDENTIFIER
control field MY-KuUP
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20251125105845.0
006 - FIXED-LENGTH DATA ELEMENTS--ADDITIONAL MATERIAL CHARACTERISTICS
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008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 220310b2020 my a|||frm||| 00| 0 eng d
020 ## - INTERNATIONAL STANDARD BOOK NUMBER
International Standard Book Number THE0009145(Local)
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) FTKKP .F38 2020 r Thesis
100 1# - MAIN ENTRY--PERSONAL NAME
Personal name Fatin Zafirah Mansur,
Relator term author.
245 10 - TITLE STATEMENT
Title Performance study on co-gasification of coal with sawdust and sawdust pellet in downdraft gasifier /
Statement of responsibility, etc. Fatin Zafirah Mansur
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
Date of production, publication, distribution, manufacture, or copyright notice © 2020
300 ## - PHYSICAL DESCRIPTION
Extent xx, 254 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
File type text file
Encoding format PDF
Source rda
500 ## - GENERAL NOTE
General note Faculty of Chemical and Process Engineering Technology
502 ## - DISSERTATION NOTE
Dissertation note Thesis (Doctor of Philosophy) -- Universiti Malaysia Pahang – 2020
504 ## - BIBLIOGRAPHY, ETC. NOTE
Bibliography, etc. note Includes bibliographical references
520 3# - SUMMARY, ETC.
Summary, etc. Gasification is a thermochemical conversion technology in which complex organic fuels are converted into syngas that are used to generate energy in the presence of limited oxygen supplied by steam or air. A decline in coal resources and environmental deterioration coupled with a high pre-processing cost and tar formation are usually associated with coal and biomass gasification. Thus, the co-gasification of biomass and coal is an alternative approach that facilitates a trade-off between renewable and nonrenewable resources. However, low energy density, high moisture content and different decomposition behaviours serve as technical barriers to co-gasification. This study aimed to compare raw biomass and pre-treated biomass co-gasified with coal to investigate pretreated biomass’s reliability in enhancing gasification performance. Sawdust (SD) and sawdust pellets (SDP) as well as the blends of these two feedstocks with sub-bituminous coal (CL) were investigated. Feedstock properties, like structural analysis, proximate analysis, ultimate analysis, higher heating value, chemical composition etc. were determined for CL, SD, and SDP and coal-biomass mixtures at different ratios (20%, 50% and 75%). Properties of the sawdust showed improvement as the feedstock was pelletized. Moreover, the thermogravimetric analysis (TGA) was performed in an air environment to study thermal behaviour and this study adopted the Kissinger, Flynn-Wall-Ozawa and Distribution Activation Energy Model methods to measure the kinetic analysis. Results show that lower activation energy (Ea) for CL/SD (103.82 ± 4.39 kJ/mol) and CL/SDP (88.79 ± 18.56 kJ/mol) was found at 75% coal ratio. There is also positive synergy for both CL/SD and CL/SDP employed by the three models. The addition of CL enhances the degradation of SD and SDP, increase the ΔEa, lower the Ea and indicates a reactive reaction. It was found that SD possessed a higher ΔEa than SDP, with an average difference of 14%, 23% and 38% at blending ratios of 75%, 50% and 25%, respectively. Furthermore, mixtures of CL with SD and SDP were gasified in a down-draft fixed bed gasifier to quantify the effect of coal ratio, gasification temperature and equivalence ratio of the air (ERair) on the gaseous concentration (H2, CO, CO2 and CH4), syngas higher heating value (HHVsyngas), syngas yield (Ysyngas), carbon conversion efficiency (ηCCE), cold gas efficiency (ηCGE) and solid-gas conversion efficiency (ηSGC). The parametric investigation as well as the optimum condition for maximizing H2 and CO were evaluated by adopting the Response Surface Methodology (RSM) method and sensitivity analysis using the ASPEN Plus model. Findings from both parametric approaches are similar, indicating that with an increase in gasification temperature, the production of gaseous composition, mainly the H2 and CO, also increases while enhancing the HHVsyngas, Ysyngas, ηCCE and ηCGE. Moreover, the highest content of H2, CO and CH4 is also associated with a lower ERair, thus, improving the HHVsyngas. Meanwhile, for the maximum production of CO2, Ysyngas and ηCCE, a higher ERair is favourable. It was found that the best conditions determined by RSM-CCD are much more specific than that indicated by the simulation model due to steady-state assumption in the simulation model and neglecting the heat and mass transfer inside the gasifiers. Instead, both the optimum parameters are within the range in which CL/SD favours a high coal ratio (75 %) and CL/SDP favours a lesser coal ratio (50-61 %) at a high gasification temperature and low ERair for the maximum production of H2 (12.30 -14.07 %), CO (14.63 -16.47 %) and HHVsyngas (5.74 to 6.66 MJ/kg). The RSM-CCD method resulted lesser percentage error (0.8-3.5%) than the simulation model (8.0-12.57%) when compared with the experimental study under the most conducive conditions. Therefore, co-gasified CL with SDP can potentially be a substitute for SD with the minimum amount of CL for similar gasification performances.
610 20 - SUBJECT ADDED ENTRY--CORPORATE NAME
Corporate name or jurisdiction name as entry element Faculty of Chemical and Process 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
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 Copy number Price effective from Koha item type
  Not lost Library of Congress Classification   Not for loan Reference UMPLIB GAMBANG UMPLIB GAMBANG Reference 25/01/2021   FTKKP .F38 2020 r Thesis T000001355 12/05/2022 1 25/01/2021 Thesis
  Not lost Library of Congress Classification   Not for loan Reference UMPLIB GAMBANG UMPLIB GAMBANG Reference 10/03/2022   CD12844 T000001356 30/01/2023 1 10/03/2022 Thesis

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