Development and performance tests of a separator for removal of physically emulsified and free oils from wastewaters
A novel oil-water separator with multiple angles parallel coalescence frustums for removal of physically emulsified and free oils from wastewater was recently developed. Performance tests had been carried out to determine its removal efficiency. The primary component of the separator includes a seri...
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The Institution of Engineers, Malaysia
2006
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my.unimas.ir.312042020-08-14T00:51:17Z http://ir.unimas.my/id/eprint/31204/ Development and performance tests of a separator for removal of physically emulsified and free oils from wastewaters Law, Puong Ling Ngu, Lock Hei Wong, Kien Kuok Awangku Abdul Rahman, Pgn. Hj. Yusof TD Environmental technology. Sanitary engineering A novel oil-water separator with multiple angles parallel coalescence frustums for removal of physically emulsified and free oils from wastewater was recently developed. Performance tests had been carried out to determine its removal efficiency. The primary component of the separator includes a series of inverted and upright frustums-shaped coalescence plates to form a multiple angle plate arrangement for enhance gravity separation and coalescence of oil droplets. The oil removal efficiency (E) of this separator was found to be inversely proportional to influent flowrate (Q) and directly proportional to retention time, t. The efficiency (E) of this separator can be expressed as a function of flowrate (Q), retention time (t), and influent oil concentration (Coil) by a series of power equations; E = 59.689Q-0.107 for Coil = 100 mg/L, E = 70.753Q-0.1269 for Coil = 1000 mg/L, and E = 40.16t0.127 for Coil = 1000 mg/L. For Coil = 100 mg/L, E could be best expressed by polynomial equation, i.e., E = 0.0001t2 + 0.0045t + 57.147. The highest achievable oil-water separation efficiency of this separation system was approximately 82.4% at a flowrate (Q) of ≤ 5x10-6 m3/s, and retention time of ≥ 4.80 hours. It was found that the presence of an outlet baffle component for the separator could improve oil removal efficiency by approximately 12.9% as compared to without an outlet baffle. The Institution of Engineers, Malaysia 2006 Article PeerReviewed text en http://ir.unimas.my/id/eprint/31204/1/DEVELOPMENT%20AND%20PERFORMANCE%20TESTS%20OF%20A%20SEPARATOR%20FOR%20REMOVAL%20-%20Copy.pdf Law, Puong Ling and Ngu, Lock Hei and Wong, Kien Kuok and Awangku Abdul Rahman, Pgn. Hj. Yusof (2006) Development and performance tests of a separator for removal of physically emulsified and free oils from wastewaters. IEM Journal, 67 (2). pp. 10-19. ISSN 0126-513X https://www.myiem.org.my/content/journal-122.aspx |
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TD Environmental technology. Sanitary engineering Law, Puong Ling Ngu, Lock Hei Wong, Kien Kuok Awangku Abdul Rahman, Pgn. Hj. Yusof Development and performance tests of a separator for removal of physically emulsified and free oils from wastewaters |
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A novel oil-water separator with multiple angles parallel coalescence frustums for removal of physically emulsified and free oils from wastewater was recently developed. Performance tests had been carried out to determine its removal efficiency. The primary component of the separator includes a series of inverted and upright frustums-shaped coalescence plates to form a multiple angle plate arrangement for enhance gravity separation and coalescence of oil droplets. The oil removal efficiency (E) of this separator was found to be inversely proportional to influent flowrate (Q) and directly proportional to retention time, t.
The efficiency (E) of this separator can be expressed as a function of flowrate (Q), retention time (t), and influent oil concentration (Coil) by a series of power equations; E = 59.689Q-0.107 for Coil = 100 mg/L, E = 70.753Q-0.1269 for Coil = 1000 mg/L, and E = 40.16t0.127 for Coil = 1000 mg/L. For Coil = 100 mg/L, E could be best expressed by polynomial equation, i.e., E =
0.0001t2 + 0.0045t + 57.147. The highest achievable oil-water separation efficiency of this separation system was
approximately 82.4% at a flowrate (Q) of ≤ 5x10-6 m3/s, and retention time of ≥ 4.80 hours. It was found that the presence of an outlet baffle component for the separator could improve oil removal efficiency by approximately 12.9% as compared to without an outlet baffle. |
format |
Article |
author |
Law, Puong Ling Ngu, Lock Hei Wong, Kien Kuok Awangku Abdul Rahman, Pgn. Hj. Yusof |
author_facet |
Law, Puong Ling Ngu, Lock Hei Wong, Kien Kuok Awangku Abdul Rahman, Pgn. Hj. Yusof |
author_sort |
Law, Puong Ling |
title |
Development and performance tests of a separator for removal of physically emulsified and free oils from wastewaters |
title_short |
Development and performance tests of a separator for removal of physically emulsified and free oils from wastewaters |
title_full |
Development and performance tests of a separator for removal of physically emulsified and free oils from wastewaters |
title_fullStr |
Development and performance tests of a separator for removal of physically emulsified and free oils from wastewaters |
title_full_unstemmed |
Development and performance tests of a separator for removal of physically emulsified and free oils from wastewaters |
title_sort |
development and performance tests of a separator for removal of physically emulsified and free oils from wastewaters |
publisher |
The Institution of Engineers, Malaysia |
publishDate |
2006 |
url |
http://ir.unimas.my/id/eprint/31204/1/DEVELOPMENT%20AND%20PERFORMANCE%20TESTS%20OF%20A%20SEPARATOR%20FOR%20REMOVAL%20-%20Copy.pdf http://ir.unimas.my/id/eprint/31204/ https://www.myiem.org.my/content/journal-122.aspx |
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