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Purification of Producer Gas in Biomass Gasification using Carbon Materials

Purification of Producer Gas in Biomass Gasification using Carbon Materials

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Author
Al-Dury, Sausan Salem Kadam
Advisor
Skála, Zdeněk
Referee
Klemeš,, Jiri
Noskievič, Pavel
Grade
P
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Abstract
This work is dealing with the utilization of biomass feed stocks and wooden residue for gasification process to produce syn-gas suitable for the implementation of power plants for electricity generation and problem of gas production suitable for further chemical and energy purpose discussing the suitable practical purification methods, given that the complexity of theme and project which carried out through detailed analysis. Since the obtained gas has many types of unwanted contaminants. It was necessary to derive an effective cleaning method for gas purification from chemical contaminants especially tars components. The discussion of the definitions and methods for the determination of gas unwanted components and their removal technologies on the basis of the knowledge of data, collecting and analysis carried out through an experimental massive approach. The theoretical analysis of the gasification process for an effective tar reduction in the produced gas has been studied as well. Since the quality requirements for internal combustion engines, gas turbines and fuel cells using the primary measurement methods cannot be achieved for gas production, this work aimed removing different particulates and tar. The main emphasis is placed on the methods of high cleaning taking in account the chemical and thermal specifications of the gas which is based on the utilization of three different kinds of carbon materials successfully and efficiently char coal, black coke and active carbon for tar removal which has a major impact on the process parameters. The analysis was responding with the mechanism and the techniques of minimizing the resultant allowable concentration by using a suitable materials and verifying the operation conditions without affecting the gas thermal efficiency. The highlights of the theoretical and experimental work has been drawn up by a high concept cleaning allowing the production of a pure gas having a quality that meets the modern technical requirements for electricity generation. Functionality the most efficient cleaning methods were based in the current project for tar reduction on the quantity of tar removed, the materials used for tar cracking and the conditions of the experimental work as well. For a successful application, some proposals have been settled for industrial applications of gas cleaning.
 
This work is dealing with the utilization of biomass feed stocks and wooden residue for gasification process to produce syn-gas suitable for the implementation of power plants for electricity generation and problem of gas production suitable for further chemical and energy purpose discussing the suitable practical purification methods, given that the complexity of theme and project which carried out through detailed analysis. Since the obtained gas has many types of unwanted contaminants. It was necessary to derive an effective cleaning method for gas purification from chemical contaminants especially tars components. The discussion of the definitions and methods for the determination of gas unwanted components and their removal technologies on the basis of the knowledge of data, collecting and analysis carried out through an experimental massive approach. The theoretical analysis of the gasification process for an effective tar reduction in the produced gas has been studied as well. Since the quality requirements for internal combustion engines, gas turbines and fuel cells using the primary measurement methods cannot be achieved for gas production, this work aimed removing different particulates and tar. The main emphasis is placed on the methods of high cleaning taking in account the chemical and thermal specifications of the gas which is based on the utilization of three different kinds of carbon materials successfully and efficiently char coal, black coke and active carbon for tar removal which has a major impact on the process parameters. The analysis was responding with the mechanism and the techniques of minimizing the resultant allowable concentration by using a suitable materials and verifying the operation conditions without affecting the gas thermal efficiency. The highlights of the theoretical and experimental work has been drawn up by a high concept cleaning allowing the production of a pure gas having a quality that meets the modern technical requirements for electricity generation. Functionality the most efficient cleaning methods were based in the current project for tar reduction on the quantity of tar removed, the materials used for tar cracking and the conditions of the experimental work as well. For a successful application, some proposals have been settled for industrial applications of gas cleaning.
 
Keywords
Biomass gasification, gas purification, carbon materials, tar removal, Biomass gasification, gas purification, carbon materials, tar removal
Language
angličtina (English)
Study brunch
Konstrukční a procesní inženýrství
Composition of Committee
prof. Ing. Petr Stehlík, CSc., dr. h. c. (předseda) prof. Ing. Pavel Noskievič, CSc. (člen) Prof. Dr.-Habil. Ing. Jiri Klemeš, DSc. (člen) prof. Ing. Josef Kohoutek, CSc. (člen) doc. Dr. Ing. Tadeáš Ochodek (člen) doc. Ing. Jan Fiedler, Dr. (člen) doc. Ing. Zdeněk Jegla, Ph.D. (člen) doc. Ing. Jiří Hájek, Ph.D. (člen) doc. Ing. Jiří Pospíšil, Ph.D. (člen) doc. Ing. Ladislav Bébar, CSc. (člen)
Date of defence
2010-09-22
Process of defence
DP obsahuje poměrně obsáhle zpracovaný soubor poznatků z oblasti čištění plynu ze zplyňování. Je založena na rozsáhlém experimentálním testování a analýze zpracovaných dat.
Result of the defence
práce byla úspěšně obhájena
Persistent identifier
http://hdl.handle.net/11012/4386
Source
AL-DURY, S. Purification of Producer Gas in Biomass Gasification using Carbon Materials [online]. Brno: Vysoké učení technické v Brně. Fakulta strojního inženýrství. 2010.
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  • 2010 [55]
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