Selection and optimization of carriers in biological wastewater treatment applications
The Integrated Wastewater Treatment (IWWT) plant is SUT Sakra Pte Ltd's second industrial biological wastewater treatment plant on Jurong Island in Singapore. The facility was designed to treat an influent at a flow rate of 110 m h-1 with chemical oxygen demand (COD) and 5-day biochemical oxyge...
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sg-ntu-dr.10356-121852023-03-03T19:38:46Z Selection and optimization of carriers in biological wastewater treatment applications Zheng, Qiaogeng Tay Tiong Lee, Stephen School of Civil and Environmental Engineering DRNTU::Engineering::Environmental engineering::Water treatment The Integrated Wastewater Treatment (IWWT) plant is SUT Sakra Pte Ltd's second industrial biological wastewater treatment plant on Jurong Island in Singapore. The facility was designed to treat an influent at a flow rate of 110 m h-1 with chemical oxygen demand (COD) and 5-day biochemical oxygen demand (BOD5) concentrations at 2878 mg /L and 1870 mg/L respectively. The influent is made up of 7 chemical wastewater streams from several chemical manufacturing plants. The treatment system uses a two-stage biological process, which is a three-phase fluidized bed aerobic reactor (TPFBR), and the second is a conventional activated sludge process. MASTER OF ENGINEERING (CEE) 2008-09-25T06:39:29Z 2008-09-25T06:39:29Z 2005 2005 Thesis Zheng, Q. (2005). Selection and optimization of carriers in biological wastewater treatment applications. Master’s thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/12185 10.32657/10356/12185 en Nanyang Technological University 140 p. application/pdf |
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DRNTU::Engineering::Environmental engineering::Water treatment Zheng, Qiaogeng Selection and optimization of carriers in biological wastewater treatment applications |
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The Integrated Wastewater Treatment (IWWT) plant is SUT Sakra Pte Ltd's second industrial biological wastewater treatment plant on Jurong Island in Singapore. The facility was designed to treat an influent at a flow rate of 110 m h-1 with chemical oxygen demand (COD) and 5-day biochemical oxygen demand (BOD5) concentrations at 2878 mg /L and 1870 mg/L respectively. The influent is made up of 7 chemical wastewater streams from several chemical manufacturing plants. The treatment system uses a two-stage biological process, which is a three-phase fluidized bed aerobic reactor (TPFBR), and the second is a conventional activated sludge process. |
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Tay Tiong Lee, Stephen |
author_facet |
Tay Tiong Lee, Stephen Zheng, Qiaogeng |
format |
Theses and Dissertations |
author |
Zheng, Qiaogeng |
author_sort |
Zheng, Qiaogeng |
title |
Selection and optimization of carriers in biological wastewater treatment applications |
title_short |
Selection and optimization of carriers in biological wastewater treatment applications |
title_full |
Selection and optimization of carriers in biological wastewater treatment applications |
title_fullStr |
Selection and optimization of carriers in biological wastewater treatment applications |
title_full_unstemmed |
Selection and optimization of carriers in biological wastewater treatment applications |
title_sort |
selection and optimization of carriers in biological wastewater treatment applications |
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2008 |
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https://hdl.handle.net/10356/12185 |
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