Utilization of palm oil mill effluent for polyhydroxyalkanoate production and nutrient removal using statistical design

被引:0
|
作者
M. F. Md. Din
M. Ponraj
M. Van Loosdrecht
Z. Ujang
S. Chelliapan
V. Zambare
机构
[1] Institute of Environmental and Water Resource Management (IPASA),Faculty of Civil Engineering
[2] Water Research Alliance,Faculty of Natural and Chemical Engineering
[3] Universiti Teknologi Malaysia,Kluyver Laboratory for Biotechnology, Department of Biochemical Engineering
[4] Universiti Teknologi Malaysia,undefined
[5] Delft University of Technology,undefined
[6] Sequence Biotech Pvt. Ltd.,undefined
关键词
Biopolymer; Nitrate removal; Palm oil mill effluent; Phosphate removal; Statistical design;
D O I
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中图分类号
学科分类号
摘要
The optimization for poly-β-hydroxyalkanoate production was carried out with nutrient removal efficiency for total organic carbon (TOC), phosphate, and nitrate from palm oil mill effluent waste. The experiment was conducted in a fabricated fed-batch reactor and the data obtained was analyzed using central composite rotatable design and factorial design for response surface methodology as a systematic approach for designing the experiment statistically to obtain valid results with minimum effort, time, and resources. The analysis of numerical optimization with propagation of error showed that 66 % of poly-β-hydroxyalkanoate production can be obtained with nutrient removal of TOC and nitrate by 19 and 3 %, respectively. However, phosphate removal efficiency was not found to be much effective. More over, the chemical oxygen demand: nitrogen phosphate (509 g/g N), chemical oxygen demand: phosphate (200 g/g P), air flow rate (0.59 L/min), substrate feeding rate (20 mL/min), and cycle length (20 h) were the optimized variables for maximum poly-β-hydroxyalkanoate production and nutrient removal.
引用
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页码:671 / 684
页数:13
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