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Bulking sludge for PHA production:Energy saving and comparative storage capacity with well-settled sludge
作者姓名:Qinxue Wen  Zhiqiang Chen  Changyong Wang  Nanqi Ren
作者单位:State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China. E-mail:wqxshelly@263.net;State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China. E-mail:wqxshelly@263.net;State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China. E-mail:wqxshelly@263.net;State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China. E-mail:wqxshelly@263.net
基金项目:The authors acknowledge the financial support of the National Special S&T Project on the Treatment and Control of Water Pollution of China (No.2008ZX07313-003), and the Science Foundation of Harbin (No.2007RFLXS013), the State Key Lab of Urban Water Resource and Environment at Harbin Institute of Technology (No.2010DX02) and the National Innovation Team supported by the National Science Foundation of China (No.50821002).
摘    要:Two acetate-fed sequencing batch reactors (SBR) were operated under an aerobic dynamic feeding (ADF) model (SBR #2) and with anaerobic phase before aerobic phase (SBR #1) to select mixed cultures with a high polyhydroxyalkanoates (PHA) storage response. Although kinetic selection based on storage response should bring about a predominance of floc-formers, a bulking sludge with storage response comparable to well-settled sludge was steadily established. An anaerobic phase was introduced before the aerobic phase in the ADF model to improve the sludge settleability (SBR #1), however, due to the consequent increased feast/famine ratio, the performance of SBR #1, in terms of both the maximum PHB (polyhydroxybutyrate) cell content and ΔPHB, was lower than that of SBR #2. SBR #2 gradually reached a steady state while SBR #1 failed suddenly after 50 days of operation. The maximum specific substrate uptake rate and storage rate for the selected bulking sludge were 0.4 Cmol Ac/(Cmol X.hr) and 0.18 Cmol Ac/(Cmol PHB.hr), respectively, resulting a yield of 0.45 Cmol PHB/(Cmol Ac) in SBR #2 in the culture enrichment phase. A maximum PHB content of 53% of total suspended solids and PHB storage rate of 1.36 Cmol Ac/(Cmol PHB.hr) was achieved at 10.2 hr in batch accumulation tests under nitrogen starvation. The results indicated that it was feasible to utilize filamentous bacteria to accumulate PHA with a rate comparable to well-settled sludge. Furthermore, the lower dissolved oxygen demand of filamentous bacteria would save energy required for aeration in the culture enrichment stage.

关 键 词:polyhydroxyalkanoates  mixed  cultures  aerobic  dynamic  feeding  bulking  sludge  feast/famine  ratio
收稿时间:23 December 2011
修稿时间:1/7/2012 12:00:00 AM

Bulking sludge for PHA production:Energy saving and comparative storage capacity with well-settled sludge
Qinxue Wen,Zhiqiang Chen,Changyong Wang,Nanqi Ren.Bulking sludge for PHA production:Energy saving and comparative storage capacity with well-settled sludge[J].Journal of Environmental Sciences,2012,24(10):1744-1752.
Authors:Qinxue Wen  Zhiqiang Chen  Changyong Wang and Nanqi Ren
Institution:State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China. E-mail:wqxshelly@263.net;State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China. E-mail:wqxshelly@263.net;State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China. E-mail:wqxshelly@263.net;State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology, Harbin 150090, China. E-mail:wqxshelly@263.net
Abstract:Two acetate-fed sequencing batch reactors (SBR) were operated under an aerobic dynamic feeding (ADF) model (SBR #2) and with anaerobic phase before aerobic phase (SBR #1) to select mixed cultures with a high polyhydroxyalkanoates (PHA) storage response. Although kinetic selection based on storage response should bring about a predominance of floc-formers, a bulking sludge with storage response comparable to well-settled sludge was steadily established. An anaerobic phase was introduced before the aerobic phase in the ADF model to improve the sludge settleability (SBR #1), however, due to the consequent increased feast/famine ratio, the performance of SBR #1, in terms of both the maximum PHB (polyhydroxybutyrate) cell content and ΔPHB, was lower than that of SBR #2. SBR #2 gradually reached a steady state while SBR #1 failed suddenly after 50 days of operation. The maximum specific substrate uptake rate and storage rate for the selected bulking sludge were 0.4 Cmol Ac/(Cmol X·hr) and 0.18 Cmol Ac/(Cmol PHB·hr), respectively, resulting a yield of 0.45 Cmol PHB/(Cmol Ac) in SBR #2 in the culture enrichment phase. A maximum PHB content of 53% of total suspended solids and PHB storage rate of 1.36 Cmol Ac/(Cmol PHB·hr) was achieved at 10.2 hr in batch accumulation tests under nitrogen starvation. The results indicated that it was feasible to utilize filamentous bacteria to accumulate PHA with a rate comparable to well-settled sludge. Furthermore, the lower dissolved oxygen demand of filamentous bacteria would save energy required for aeration in the culture enrichment stage.
Keywords:polyhydroxyalkanoates  mixed cultures  aerobic dynamic feeding  bulking sludge  feast/famine ratio
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