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" Analysis, assessment and optimization of biomass mixed heavy-oil driven integrated gasification combined cycle for multigeneration "


Document Type : Latin Dissertation
Language of Document : English
Record Number : 804948
Doc. No : TL49785
Call number : ‭2014464991;‮ ‬10758510‬
Main Entry : Jin, Fang
Title & Author : Analysis, assessment and optimization of biomass mixed heavy-oil driven integrated gasification combined cycle for multigeneration\ Shahid IslamRizvi, Gaus
College : University of Ontario Institute of Technology (Canada)
Date : 2017
Degree : Ph.D.
field of study : Mechanical Engineering
student score : 2017
Page No : 146
Note : Committee members: Dincer, Ibrahim; Grami, Ali; Mohany, Atef; Rosen, Marc A.; Zhou, Biao
Note : Place of publication: United States, Ann Arbor; ISBN=978-0-355-62226-3
Abstract : There has been increasing interest in employing Integrated Gasification Combined Cycles (IGCC) using various biomasses and low-rank coals for producing multiple outputs. The most of the existing IGCC plants do not conserve the low-grade heat, use air separation unit and the presence of coal produces high amount of carbon based emissions. The production of syngas through gasification of renewable feedstocks, such as biomass, organic food waste and animal manure is an attractive option with less emissions. In this thesis, three novel multigeneration IGCC based on organic and refinery wastes are specifically developed for three sectors; community, food industry and refinery. The systems are simulated using Aspen (Plus) and results are validated through energy and exergy analyses, and research reported in the literature.
Subject : Chemical engineering; Mechanical engineering
Descriptor : Applied sciences;Combustion;Energy;Exergy;Gasification;Multigeneration;lGCC
Added Entry : Rizvi, Gaus
Added Entry : Mechanical EngineeringUniversity of Ontario Institute of Technology (Canada)
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