STUDY OF THE EFFECT OF COAL CHARACTERISTICS OF THE BARITO AND MEULABOH BASINS ON GASIFICATION REACTIVITY USING THERMOGRAVIMETRY - MASS SPECTROMETRY ANALYSIS

Indonesia possesses abundant coal resources, but conventional coal utilization contributes to global warming and climate change. Therefore, diversification of coal utilization with more environmentally friendly methods is necessary, one of which is gasification. An essential factor in the gasific...

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Main Author: Maulana Putra Dewanto, Akhmad
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/82798
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:82798
spelling id-itb.:827982024-07-18T08:51:36ZSTUDY OF THE EFFECT OF COAL CHARACTERISTICS OF THE BARITO AND MEULABOH BASINS ON GASIFICATION REACTIVITY USING THERMOGRAVIMETRY - MASS SPECTROMETRY ANALYSIS Maulana Putra Dewanto, Akhmad Indonesia Final Project coal characteristics, pyrolysis, gasification, thermogravimetric - mass spectrometry analysis INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/82798 Indonesia possesses abundant coal resources, but conventional coal utilization contributes to global warming and climate change. Therefore, diversification of coal utilization with more environmentally friendly methods is necessary, one of which is gasification. An essential factor in the gasification process is gasification reactivity. The characteristics of coal in Indonesia are very diverse, so studies are needed to determine their role in coal gasification reactivity. This study used two coal samples. The first sample or BB-01 came from the Barito Basin, while the second sample or BB-02 came from the Meulaboh Basin. Gasification reactivity analysis was determined using thermogravimetric - mass spectrometry analysis (TG-MS) conducted in three treatment segments. First, the samples were heated from 50°C to 900°C with a temperature increase of 10°C/minute using an argon (Ar) atmosphere. Second, the samples were kept at 900°C for 10 minutes. Third, the atmosphere was changed to 100% carbon dioxide (CO2). Coal characteristics were interpreted from the results of proximate analysis, ultimate analysis, and calorific value. Consequentially, both samples exhibit a similar classification, categorized as the Sub-bituminous B/C transition. In the gasification process, sample BB-02 had higher reactivity compared to sample BB-01. This was influenced by the higher ash content of sample BB-02. Inorganic compounds can act as catalysts in the gasification reaction. Then, H2O & CO are the dominant flammable gas products from gasification for both coal samples. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Indonesia possesses abundant coal resources, but conventional coal utilization contributes to global warming and climate change. Therefore, diversification of coal utilization with more environmentally friendly methods is necessary, one of which is gasification. An essential factor in the gasification process is gasification reactivity. The characteristics of coal in Indonesia are very diverse, so studies are needed to determine their role in coal gasification reactivity. This study used two coal samples. The first sample or BB-01 came from the Barito Basin, while the second sample or BB-02 came from the Meulaboh Basin. Gasification reactivity analysis was determined using thermogravimetric - mass spectrometry analysis (TG-MS) conducted in three treatment segments. First, the samples were heated from 50°C to 900°C with a temperature increase of 10°C/minute using an argon (Ar) atmosphere. Second, the samples were kept at 900°C for 10 minutes. Third, the atmosphere was changed to 100% carbon dioxide (CO2). Coal characteristics were interpreted from the results of proximate analysis, ultimate analysis, and calorific value. Consequentially, both samples exhibit a similar classification, categorized as the Sub-bituminous B/C transition. In the gasification process, sample BB-02 had higher reactivity compared to sample BB-01. This was influenced by the higher ash content of sample BB-02. Inorganic compounds can act as catalysts in the gasification reaction. Then, H2O & CO are the dominant flammable gas products from gasification for both coal samples.
format Final Project
author Maulana Putra Dewanto, Akhmad
spellingShingle Maulana Putra Dewanto, Akhmad
STUDY OF THE EFFECT OF COAL CHARACTERISTICS OF THE BARITO AND MEULABOH BASINS ON GASIFICATION REACTIVITY USING THERMOGRAVIMETRY - MASS SPECTROMETRY ANALYSIS
author_facet Maulana Putra Dewanto, Akhmad
author_sort Maulana Putra Dewanto, Akhmad
title STUDY OF THE EFFECT OF COAL CHARACTERISTICS OF THE BARITO AND MEULABOH BASINS ON GASIFICATION REACTIVITY USING THERMOGRAVIMETRY - MASS SPECTROMETRY ANALYSIS
title_short STUDY OF THE EFFECT OF COAL CHARACTERISTICS OF THE BARITO AND MEULABOH BASINS ON GASIFICATION REACTIVITY USING THERMOGRAVIMETRY - MASS SPECTROMETRY ANALYSIS
title_full STUDY OF THE EFFECT OF COAL CHARACTERISTICS OF THE BARITO AND MEULABOH BASINS ON GASIFICATION REACTIVITY USING THERMOGRAVIMETRY - MASS SPECTROMETRY ANALYSIS
title_fullStr STUDY OF THE EFFECT OF COAL CHARACTERISTICS OF THE BARITO AND MEULABOH BASINS ON GASIFICATION REACTIVITY USING THERMOGRAVIMETRY - MASS SPECTROMETRY ANALYSIS
title_full_unstemmed STUDY OF THE EFFECT OF COAL CHARACTERISTICS OF THE BARITO AND MEULABOH BASINS ON GASIFICATION REACTIVITY USING THERMOGRAVIMETRY - MASS SPECTROMETRY ANALYSIS
title_sort study of the effect of coal characteristics of the barito and meulaboh basins on gasification reactivity using thermogravimetry - mass spectrometry analysis
url https://digilib.itb.ac.id/gdl/view/82798
_version_ 1822997836870975488