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Removal of nitrogen and phosphorus in a combined A^2/O-BAF system with a short aerobic SRT 被引量:15
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作者 DING Yong-wei WANG Lin +1 位作者 WANG Bao-zhen WANG Zheng 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2006年第6期1082-1087,共6页
A bench-scale anaerobic/anoxic/aerobic process-biological aerated filter (A^2/O-BAF) combined system was carded out to treat wastewater with lower C/N and C/P ratios. The A^2/O process was operated in a short aerobi... A bench-scale anaerobic/anoxic/aerobic process-biological aerated filter (A^2/O-BAF) combined system was carded out to treat wastewater with lower C/N and C/P ratios. The A^2/O process was operated in a short aerobic sludge retention time (SRT) for organic pollutants and phosphorus removal, and denitrification. The subsequent BAF process was mainly used for nitrification. The BAF effluent was partially returned to anoxic zone of the A^2/O process to provide electron acceptors for denitrification and anoxic P uptake. This unique system formed an environment for reproducing the denitdfying phosphate-accumulating organisms (DPAOs). The ratio of DPAOs to phosphorus accumulating organisms (PAOs) could be maintained at 28% by optimizing the organic loads in the anaerobic zone and the nitrate loads into the anoxic zone in the A^2/O process. The aerobic phosphorus over-uptake and discharge of excess activated sludge was the main mechanism of phosphorus removal in the combined system. The aerobic SRT of the A^2/O process should meet the demands for the development of aerobic PAOs and the restraint on the nitrifiers growth, and the contact time in the aerobic zone of the A^2/O process should be longer than 30 min, which ensured efficient phosphorus removal in the combined system. The adequate BAF effluent return rates should be controlled with 1--4 mg/L nitrate nitrogen in the anoxic zone effluent of A^2/O process to achieve the optimal nitrogen and phosphorus removal efficiencies. 展开更多
关键词 nitrogen and phosphorus removal denitrifying phosphorus removal denitrifying phosphorus accumulating organisms (DPAos) anaerobic/anoxic/aerobic process (A^2/o) biological aerated filter (BAF) aerobic sludge retention time (SRT)
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用气相色谱-原子发射光谱法检测VX、Bz及其降解产物 被引量:9
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作者 周永新 李前远 +1 位作者 靳志云 娄艳红 《分析测试学报》 CAS CSCD 2000年第3期79-81,共3页
应用气相色谱 -原子发射光谱(GC -AED)同时检测S_(2_二异丙基氨乙基 )甲基硫赶膦酸乙酯 (VX)、二苯羟乙酸_3_喹咛环酯 (Bz)战剂及其降解产物等5种化合物 ,得到了C、H、S、N、O、P6种元素色谱图 ,通过选择合适的检测元素 ,其检出限VX为15... 应用气相色谱 -原子发射光谱(GC -AED)同时检测S_(2_二异丙基氨乙基 )甲基硫赶膦酸乙酯 (VX)、二苯羟乙酸_3_喹咛环酯 (Bz)战剂及其降解产物等5种化合物 ,得到了C、H、S、N、O、P6种元素色谱图 ,通过选择合适的检测元素 ,其检出限VX为15.6mg/L ,Bz为16.79mg/L,二异丙基氨基乙硫醇为3.02mg/L ,3_羟基喹咛为28.40mg/L ,二苯羟乙酸甲酯为31.78mg/L。 展开更多
关键词 GC-AED VX Bz 化学战剂 降解产物 检测
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Biological nutrient removal by internal circulation upflow sludge blanket reactor after landfill leachate pretreatment 被引量:6
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作者 Alkhafaji R.Abood Jianguo Bao Zaidun N.Abudi 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2013年第10期2130-2137,共8页
The removal of biological nutrient from mature landfill leachate with a high nitrogen load by an internal circulation upflow sludge blanket (ICUSB) reactor was studied. The reactor is a set of anaerobic-anoxic-aerob... The removal of biological nutrient from mature landfill leachate with a high nitrogen load by an internal circulation upflow sludge blanket (ICUSB) reactor was studied. The reactor is a set of anaerobic-anoxic-aerobic (A^2/O) bioreactors, developed on the basis of an expended granular sludge blanket (EGSB), granular sequencing batch reactor (GSBR) and intermittent cycle extended aeration system (ICEAS). Leachate was subjected to stripping by agitation process and poly ferric sulfate coagulation as a pretreatment process, in order to reduce both ammonia toxicity to microorganisms and the organic contents. The reactor was operated under three different operating systems, consisting of recycling sludge with air (A^2/O), recycling sludge without air (low oxygen) and a combination of both (A^2/O and low oxygen). The lowest effluent nutrient levels were realised by the combined system of A^2/O and low oxygen, which resulted in effluent of chemical oxygen demand (COD), NH3-N and biological oxygen demand (BOD5) concentrations of 98.20, 13.50 and 22.50 mg/L. The optimal operating conditions for the efficient removal of biological nutrient using the ICUSB reactor were examined to evaluate the influence of the parameters on its performance. The results showed that average removal efflciencies of COD and NH3- N of 96.49% and 99.39%, respectively were achieved under the condition of a hydraulic retention time of 12 hr, including 4 hr of pumping air into the reactor, with dissolved oxygen at an rate of 4 mg/L and an upflow velocity 2 m/hr. These combined processes were successfully employed and effectively decreased pollutant loading. 展开更多
关键词 landfill leachate anaerobic-anoxic-aerobic (A^2/o) bioreactor biological nutrient removal combined treatment
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