PENYISIHAN GAS NOX DENGAN PROSES FOTOKATALITIK TIO2 DAN FE203 MENGGUNAKAN REAKTOR SPIRAL

<b>Abstract:<p align=\"justify\"> <br /> Oxides of nitrogen such as nitric oxide (NO) and nitrogen dioxide (NO2) are important air pollutants, because they have significant harm to human health and play an important role of being precursor of photochemical smog. Nitrogen...

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Main Author: Henyningrum, Shinta
Format: Theses
Language:Indonesia
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Online Access:https://digilib.itb.ac.id/gdl/view/5157
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Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:5157
spelling id-itb.:51572006-06-07T09:55:27ZPENYISIHAN GAS NOX DENGAN PROSES FOTOKATALITIK TIO2 DAN FE203 MENGGUNAKAN REAKTOR SPIRAL Henyningrum, Shinta Teknik (Rekayasa, enjinering dan kegiatan berkaitan) Indonesia Theses INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/5157 <b>Abstract:<p align=\"justify\"> <br /> Oxides of nitrogen such as nitric oxide (NO) and nitrogen dioxide (NO2) are important air pollutants, because they have significant harm to human health and play an important role of being precursor of photochemical smog. Nitrogen oxide are formed fossil fuel combustion, exspecially to power plant and mobile sources. To anticipate the rapid increase of NOx concentration, it is important to develop an alternative technology in NOx abatement.<p align=\"justify\"> <br /> The catalytic process using uv light and semiconductor particle, such as titanium dioxide and ferric dioxide is promising alternative of abatement. <br /> A mixture of TiO2 and Fe2O3 was found to be excellent photocatalyst for removal of low concentration NOR. Addition of a small of Fe2O3 to TiO2 could enhance the catalytic activity. <br /> The photocatalytic degradation of oxide nitrogen (NOx) by titanium dioxide and ferric dioxide irradiated with light at the wavelength of 360 nm was studied in a continous flow-through reactor spiral-path. The effects of modifications were investigated.<p align=\"justify\"> <br /> The result of the research showed that illuminated TiO2 and Fe2O3 particles were able to reduce NOx to the significant value. TiO2 and Fe2O3 powder which was coated on the spiral-path reactor wall showed much better photocatalytic activities with pure gas compared with coal burning of gas. Gas from coal burning content another gas, such us sulfur dioxide and carbon oxide which was can decreased removal efficiency NOx. 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
topic Teknik (Rekayasa, enjinering dan kegiatan berkaitan)
spellingShingle Teknik (Rekayasa, enjinering dan kegiatan berkaitan)
Henyningrum, Shinta
PENYISIHAN GAS NOX DENGAN PROSES FOTOKATALITIK TIO2 DAN FE203 MENGGUNAKAN REAKTOR SPIRAL
description <b>Abstract:<p align=\"justify\"> <br /> Oxides of nitrogen such as nitric oxide (NO) and nitrogen dioxide (NO2) are important air pollutants, because they have significant harm to human health and play an important role of being precursor of photochemical smog. Nitrogen oxide are formed fossil fuel combustion, exspecially to power plant and mobile sources. To anticipate the rapid increase of NOx concentration, it is important to develop an alternative technology in NOx abatement.<p align=\"justify\"> <br /> The catalytic process using uv light and semiconductor particle, such as titanium dioxide and ferric dioxide is promising alternative of abatement. <br /> A mixture of TiO2 and Fe2O3 was found to be excellent photocatalyst for removal of low concentration NOR. Addition of a small of Fe2O3 to TiO2 could enhance the catalytic activity. <br /> The photocatalytic degradation of oxide nitrogen (NOx) by titanium dioxide and ferric dioxide irradiated with light at the wavelength of 360 nm was studied in a continous flow-through reactor spiral-path. The effects of modifications were investigated.<p align=\"justify\"> <br /> The result of the research showed that illuminated TiO2 and Fe2O3 particles were able to reduce NOx to the significant value. TiO2 and Fe2O3 powder which was coated on the spiral-path reactor wall showed much better photocatalytic activities with pure gas compared with coal burning of gas. Gas from coal burning content another gas, such us sulfur dioxide and carbon oxide which was can decreased removal efficiency NOx.
format Theses
author Henyningrum, Shinta
author_facet Henyningrum, Shinta
author_sort Henyningrum, Shinta
title PENYISIHAN GAS NOX DENGAN PROSES FOTOKATALITIK TIO2 DAN FE203 MENGGUNAKAN REAKTOR SPIRAL
title_short PENYISIHAN GAS NOX DENGAN PROSES FOTOKATALITIK TIO2 DAN FE203 MENGGUNAKAN REAKTOR SPIRAL
title_full PENYISIHAN GAS NOX DENGAN PROSES FOTOKATALITIK TIO2 DAN FE203 MENGGUNAKAN REAKTOR SPIRAL
title_fullStr PENYISIHAN GAS NOX DENGAN PROSES FOTOKATALITIK TIO2 DAN FE203 MENGGUNAKAN REAKTOR SPIRAL
title_full_unstemmed PENYISIHAN GAS NOX DENGAN PROSES FOTOKATALITIK TIO2 DAN FE203 MENGGUNAKAN REAKTOR SPIRAL
title_sort penyisihan gas nox dengan proses fotokatalitik tio2 dan fe203 menggunakan reaktor spiral
url https://digilib.itb.ac.id/gdl/view/5157
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