Simulation of total dust emission from palm oil mills in Malaysia using biomass fuel composition and dust collector efficiency models.

Palm oil mills are generally self-sufficient in terms of energy. However, burning of biomass fuel in a boiler has generated serious air pollution problem due to inappropriate boiler operation and inefficient dust collection system. This study aims to simulate the total dust emission from palm oil mi...

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Main Authors: Yau, Chwan Kun, Abdullah, Ahmad Makmom
Format: Article
Language:English
English
Published: Springer 2013
Online Access:http://psasir.upm.edu.my/id/eprint/28930/
http://psasir.upm.edu.my/id/eprint/28930/1/Simulation%20of%20total%20dust%20emission%20from%20palm%20oil%20mills%20in%20Malaysia%20using%20biomass%20fuel%20composition%20and%20dust%20collector%20efficiency%20models.pdf
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author Yau, Chwan Kun
Abdullah, Ahmad Makmom
author_facet Yau, Chwan Kun
Abdullah, Ahmad Makmom
author_sort Yau, Chwan Kun
building UPM Institutional Repository
collection Online Access
description Palm oil mills are generally self-sufficient in terms of energy. However, burning of biomass fuel in a boiler has generated serious air pollution problem due to inappropriate boiler operation and inefficient dust collection system. This study aims to simulate the total dust emission from palm oil mills in Malaysia by modelling biomass fuel composition and dust collector efficiency. It has been found that before removal, the simulated average dust load after biomass boiler was 51.67 ± 5.39 g/s at a confidence level of 95%, and total dust load was 389,961 tonnes/year. Simulation values of total dust emission at different percentages of dust collector efficiency at 60%, 70%, 80%, 90% and 95% were 155,984, 116,988, 77,992, 38,996 and 19,498 tonnes/year, respectively. The simulation has also shown that dust concentration at a boiler outlet was 4.5 g/Nm3. From the study, dust removal efficiency should be above 91% to ensure the compliance of dust concentration at 0.4 g/Nm3 as prescribed by the Environment Quality (Clean Air) Regulations of 1978. Whereas in 2009, Sabah state has processed the most quantities of fresh fruit bunches; it has posed a potential impact on the environment and public in terms of total dust emission. Besides stack sampling that is used to monitor dust emission status, simulation can be a more simple way and an alternative to estimate the emission.
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spelling upm-289302015-10-26T02:33:25Z http://psasir.upm.edu.my/id/eprint/28930/ Simulation of total dust emission from palm oil mills in Malaysia using biomass fuel composition and dust collector efficiency models. Yau, Chwan Kun Abdullah, Ahmad Makmom Palm oil mills are generally self-sufficient in terms of energy. However, burning of biomass fuel in a boiler has generated serious air pollution problem due to inappropriate boiler operation and inefficient dust collection system. This study aims to simulate the total dust emission from palm oil mills in Malaysia by modelling biomass fuel composition and dust collector efficiency. It has been found that before removal, the simulated average dust load after biomass boiler was 51.67 ± 5.39 g/s at a confidence level of 95%, and total dust load was 389,961 tonnes/year. Simulation values of total dust emission at different percentages of dust collector efficiency at 60%, 70%, 80%, 90% and 95% were 155,984, 116,988, 77,992, 38,996 and 19,498 tonnes/year, respectively. The simulation has also shown that dust concentration at a boiler outlet was 4.5 g/Nm3. From the study, dust removal efficiency should be above 91% to ensure the compliance of dust concentration at 0.4 g/Nm3 as prescribed by the Environment Quality (Clean Air) Regulations of 1978. Whereas in 2009, Sabah state has processed the most quantities of fresh fruit bunches; it has posed a potential impact on the environment and public in terms of total dust emission. Besides stack sampling that is used to monitor dust emission status, simulation can be a more simple way and an alternative to estimate the emission. Springer 2013 Article PeerReviewed application/pdf en http://psasir.upm.edu.my/id/eprint/28930/1/Simulation%20of%20total%20dust%20emission%20from%20palm%20oil%20mills%20in%20Malaysia%20using%20biomass%20fuel%20composition%20and%20dust%20collector%20efficiency%20models.pdf Yau, Chwan Kun and Abdullah, Ahmad Makmom (2013) Simulation of total dust emission from palm oil mills in Malaysia using biomass fuel composition and dust collector efficiency models. International Journal of Energy and Environmental Engineering, 4. art. no. 19. pp. 1-13. ISSN 2251-6832; ESSN: 2008-9163 http://www.journal-ijeee.com/content/4/April/2013 10.1186/2251-6832-4-19 English
spellingShingle Yau, Chwan Kun
Abdullah, Ahmad Makmom
Simulation of total dust emission from palm oil mills in Malaysia using biomass fuel composition and dust collector efficiency models.
title Simulation of total dust emission from palm oil mills in Malaysia using biomass fuel composition and dust collector efficiency models.
title_full Simulation of total dust emission from palm oil mills in Malaysia using biomass fuel composition and dust collector efficiency models.
title_fullStr Simulation of total dust emission from palm oil mills in Malaysia using biomass fuel composition and dust collector efficiency models.
title_full_unstemmed Simulation of total dust emission from palm oil mills in Malaysia using biomass fuel composition and dust collector efficiency models.
title_short Simulation of total dust emission from palm oil mills in Malaysia using biomass fuel composition and dust collector efficiency models.
title_sort simulation of total dust emission from palm oil mills in malaysia using biomass fuel composition and dust collector efficiency models.
url http://psasir.upm.edu.my/id/eprint/28930/
http://psasir.upm.edu.my/id/eprint/28930/
http://psasir.upm.edu.my/id/eprint/28930/
http://psasir.upm.edu.my/id/eprint/28930/1/Simulation%20of%20total%20dust%20emission%20from%20palm%20oil%20mills%20in%20Malaysia%20using%20biomass%20fuel%20composition%20and%20dust%20collector%20efficiency%20models.pdf