Simulation of Pollutant Gas Dispersion on Case Study of <i>Lontar 3</i> Coal Fired Power Plant in Addition into 1 x 660 MW Capacity in Kemiri, Tangerang District, Banten Province
Air quality simulation has been performed for additional capacity of Banten 1 x 600 MW Coal Fired Power Plant toward air quality degradation in its surrounding environment. The simulation was based on pollutant gas dispersion calculated using Gaussian Plume equation. The research has involved climat...
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Format: | Article |
Language: | English |
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Department of Chemistry, Universitas Gadjah Mada
2014-10-01
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Series: | Indonesian Journal of Chemistry |
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Online Access: | https://jurnal.ugm.ac.id/ijc/article/view/21231 |
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author | Eko Sugiharto Taufik Abdillah Natsir Abdul Rozaq |
author_facet | Eko Sugiharto Taufik Abdillah Natsir Abdul Rozaq |
author_sort | Eko Sugiharto |
collection | DOAJ |
description | Air quality simulation has been performed for additional capacity of Banten 1 x 600 MW Coal Fired Power Plant toward air quality degradation in its surrounding environment. The simulation was based on pollutant gas dispersion calculated using Gaussian Plume equation. The research has involved climate secondary data on Cengkareng climatology Station for last 10 years. Besides, the primary data has also been taken in 7 point sampling locations to determine initial ambient air quality of existing 1 x 600 MW Coal Fired Power Plant. The data of existing 1 x 600 MW coal fired power plant has been taken from Adipala Steam Power Plant while the gas pollutant dispersion simulation has been done well using Gaussian Plume equation. The result showed that gas emission for NO2, and TSP parameter in all scenarios and SO2 gas parameter in several scenarios were exceeding the Threshold Limit Value. Thus, a technology is needed to minimize produced emission gas. The increase of gas pollutant in all sampling locations was not significantly increasing and those gas pollutants were not generally exceeding the Threshold Limit Value permitted by the government regulation. |
first_indexed | 2024-12-19T19:02:45Z |
format | Article |
id | doaj.art-6aff80556d1f4212a0afd3a019a2b768 |
institution | Directory Open Access Journal |
issn | 1411-9420 2460-1578 |
language | English |
last_indexed | 2024-12-19T19:02:45Z |
publishDate | 2014-10-01 |
publisher | Department of Chemistry, Universitas Gadjah Mada |
record_format | Article |
series | Indonesian Journal of Chemistry |
spelling | doaj.art-6aff80556d1f4212a0afd3a019a2b7682022-12-21T20:09:31ZengDepartment of Chemistry, Universitas Gadjah MadaIndonesian Journal of Chemistry1411-94202460-15782014-10-0114321922510.22146/ijc.2123114329Simulation of Pollutant Gas Dispersion on Case Study of <i>Lontar 3</i> Coal Fired Power Plant in Addition into 1 x 660 MW Capacity in Kemiri, Tangerang District, Banten ProvinceEko Sugiharto0Taufik Abdillah Natsir1Abdul Rozaq2Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Gadjah Mada, Sekip Utara, Yogyakarta 55281Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Gadjah Mada, Sekip Utara, Yogyakarta 55281Center for Environmental Studies, Universitas Gadjah Mada, Jl. Lingkungan Budaya, Sekip Utara, Yogyakarta 55281Air quality simulation has been performed for additional capacity of Banten 1 x 600 MW Coal Fired Power Plant toward air quality degradation in its surrounding environment. The simulation was based on pollutant gas dispersion calculated using Gaussian Plume equation. The research has involved climate secondary data on Cengkareng climatology Station for last 10 years. Besides, the primary data has also been taken in 7 point sampling locations to determine initial ambient air quality of existing 1 x 600 MW Coal Fired Power Plant. The data of existing 1 x 600 MW coal fired power plant has been taken from Adipala Steam Power Plant while the gas pollutant dispersion simulation has been done well using Gaussian Plume equation. The result showed that gas emission for NO2, and TSP parameter in all scenarios and SO2 gas parameter in several scenarios were exceeding the Threshold Limit Value. Thus, a technology is needed to minimize produced emission gas. The increase of gas pollutant in all sampling locations was not significantly increasing and those gas pollutants were not generally exceeding the Threshold Limit Value permitted by the government regulation.https://jurnal.ugm.ac.id/ijc/article/view/21231dispersionGaussian PlumeCoal Fired Power Plant |
spellingShingle | Eko Sugiharto Taufik Abdillah Natsir Abdul Rozaq Simulation of Pollutant Gas Dispersion on Case Study of <i>Lontar 3</i> Coal Fired Power Plant in Addition into 1 x 660 MW Capacity in Kemiri, Tangerang District, Banten Province Indonesian Journal of Chemistry dispersion Gaussian Plume Coal Fired Power Plant |
title | Simulation of Pollutant Gas Dispersion on Case Study of <i>Lontar 3</i> Coal Fired Power Plant in Addition into 1 x 660 MW Capacity in Kemiri, Tangerang District, Banten Province |
title_full | Simulation of Pollutant Gas Dispersion on Case Study of <i>Lontar 3</i> Coal Fired Power Plant in Addition into 1 x 660 MW Capacity in Kemiri, Tangerang District, Banten Province |
title_fullStr | Simulation of Pollutant Gas Dispersion on Case Study of <i>Lontar 3</i> Coal Fired Power Plant in Addition into 1 x 660 MW Capacity in Kemiri, Tangerang District, Banten Province |
title_full_unstemmed | Simulation of Pollutant Gas Dispersion on Case Study of <i>Lontar 3</i> Coal Fired Power Plant in Addition into 1 x 660 MW Capacity in Kemiri, Tangerang District, Banten Province |
title_short | Simulation of Pollutant Gas Dispersion on Case Study of <i>Lontar 3</i> Coal Fired Power Plant in Addition into 1 x 660 MW Capacity in Kemiri, Tangerang District, Banten Province |
title_sort | simulation of pollutant gas dispersion on case study of i lontar 3 i coal fired power plant in addition into 1 x 660 mw capacity in kemiri tangerang district banten province |
topic | dispersion Gaussian Plume Coal Fired Power Plant |
url | https://jurnal.ugm.ac.id/ijc/article/view/21231 |
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