Performance evaluation and optimization of simultaneous phosphorus and nitrogen removal from anaerobically digested liquid-dairy-manure using an intermittently-aerated-extended-idle sequencing batch reactor

被引:2
|
作者
Asghar, Sehrish [1 ]
Chen, Lide [2 ]
He, B. Brian [3 ]
机构
[1] Univ Idaho, Coll Nat Resources, Environm Sci Program, Moscow, ID USA
[2] Univ Idaho, Twin Falls Res & Extens Ctr, Dept Soil & Water Syst, Twin Falls, ID 83301 USA
[3] Univ Idaho, Dept Chem & Biol Engn, Moscow, ID USA
基金
美国食品与农业研究所;
关键词
simultaneous nitrogen and phosphorus removal; sequencing batch reactor; intermittent aeration; extended idle phase; central composite design; BIOLOGICAL NUTRIENT REMOVAL; NITRATE RECYCLING RATIO; WASTE-WATER; CARBON SOURCE; SIMULTANEOUS NITRIFICATION; PHOSPHATE REMOVAL; SLUDGE; DENITRIFICATION; SBR; MECHANISMS;
D O I
10.3389/fsufs.2023.1225792
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Wastewater from confined dairy operations requires efficient treatment to reduce its potential to pollute the surrounding environments. In this study, a novel intermittently-aerated-extended-idle sequencing batch reactor (IA-EI SBR) process was developed, evaluated, and optimized for simultaneously removing phosphorus (P) and nitrogen (N) from anaerobically digested liquid-dairy-manure (ADLDM) with lower carbon-to-nutrient-ratios. Four influential operating parameters including cycle-time of 5-9 h, intermittent-aeration strategy of 10-50 min/h, two feed-phases of 6-30 min, and idle-phase of 40-120 min were statistically analyzed using central-composite design coupled with response-surface methodology for optimal removal efficiencies of ortho-phosphorus (%OPremoval), total-phosphorus (%TPremoval), ammonia-nitrogen (%NH3-N-removal), total-nitrogen (%TNremoval), and chemical oxygen demand (%CODremoval). Results showed that the interactions of cycle time-idle phase, and aeration strategy-feed phases were significant in affecting %TPremoval (p-value & LE; 0.005). The synergistic effect of aeration strategy-idle phase was significant for %TNremoval and %CODremoval (p-value & LE; 0.006), while the cycle time-feed phases interaction had significant effect on %NH3-N-removal. The maximum simultaneous nitrification-denitrification (SND) efficiency of 85.7% was recorded under influent COD and TN loading of 3,999.2 and 785.7 mg L-1 at 30 min/h aeration time in 7 h. The quadratic regression models based on statistical analysis of the experimental results adequately described the IA-EI SBR performance and showed that the applied levels of operating parameters were highly correlated with all five responses (p-value & LE; 0.030). Operating conditions for optimal IA-EI SBR process efficiency determined by desirability analysis were cycle-time of 8 h, intermittent-aeration strategy of 36 min/h, feed-phases of 24 min, and idle-phase of 100 min. Under these optimal conditions, the corresponding removal efficiencies for OP, TP, NH3-N, TN, and COD of 82.64, 95.82, 92.92, 73.84, and 90.94%, respectively, were achieved in validation experiments.
引用
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页数:17
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